diff --git a/ProcessLib/LIE/HydroMechanics/Tests.cmake b/ProcessLib/LIE/HydroMechanics/Tests.cmake
index ffe1c08e92ee7a2f3965356f1323e8516c3191a5..4f0544ffbde42e89955102a39d71debe4054aec8 100644
--- a/ProcessLib/LIE/HydroMechanics/Tests.cmake
+++ b/ProcessLib/LIE/HydroMechanics/Tests.cmake
@@ -218,3 +218,25 @@ AddTest(
     single_fracture_3compartments_flow_CHZ_sigma0_ts_356_t_500.000000.vtu single_fracture_3compartments_flow_CHZ_sigma0_ts_356_t_500.000000.vtu fracture_aperture_avg fracture_aperture_avg 1e-15 1e-15
     single_fracture_3compartments_flow_CHZ_sigma0_ts_356_t_500.000000.vtu single_fracture_3compartments_flow_CHZ_sigma0_ts_356_t_500.000000.vtu sigma_avg sigma_avg 5e-9 1e-15
 )
+
+AddTest(
+    NAME LIE_HM_great_cell_2D_embedded_fracture
+    PATH LIE/HydroMechanics/GreatCellWithTrianglularMesh
+    EXECUTABLE ogs
+    EXECUTABLE_ARGS great_cell_2d_HM_LIE_embedded_fracture.prj
+    WRAPPER time
+    TESTER vtkdiff
+    REQUIREMENTS NOT (OGS_USE_LIS OR OGS_USE_MPI)
+    RUNTIME 10
+    DIFF_DATA
+    great_cell_2D_embedded_fracture_ts_64_t_2500.000000.vtu great_cell_2D_embedded_fracture_ts_64_t_2500.000000.vtu pressure pressure 1e-10 1e-15
+    great_cell_2D_embedded_fracture_ts_64_t_2500.000000.vtu great_cell_2D_embedded_fracture_ts_64_t_2500.000000.vtu pressure_interpolated pressure_interpolated 1e-10 1e-15
+    great_cell_2D_embedded_fracture_ts_64_t_2500.000000.vtu great_cell_2D_embedded_fracture_ts_64_t_2500.000000.vtu displacement displacement 1e-15 1e-15
+    great_cell_2D_embedded_fracture_ts_64_t_2500.000000.vtu great_cell_2D_embedded_fracture_ts_64_t_2500.000000.vtu displacement_jump1 displacement_jump1 1e-15 1e-15
+    great_cell_2D_embedded_fracture_ts_64_t_2500.000000.vtu great_cell_2D_embedded_fracture_ts_64_t_2500.000000.vtu fracture_stress fracture_stress 1e-9 1e-11
+    great_cell_2D_embedded_fracture_ts_64_t_2500.000000.vtu great_cell_2D_embedded_fracture_ts_64_t_2500.000000.vtu fracture_permeability fracture_permeability 1e-15 1e-15
+    great_cell_2D_embedded_fracture_ts_64_t_2500.000000.vtu great_cell_2D_embedded_fracture_ts_64_t_2500.000000.vtu fracture_aperture fracture_aperture 1e-15 1e-15
+    great_cell_2D_embedded_fracture_ts_64_t_2500.000000.vtu great_cell_2D_embedded_fracture_ts_64_t_2500.000000.vtu sigma sigma 1e-8 5e-13
+    great_cell_2D_embedded_fracture_ts_64_t_2500.000000.vtu great_cell_2D_embedded_fracture_ts_64_t_2500.000000.vtu epsilon epsilon 1e-15 1e-15
+    great_cell_2D_embedded_fracture_ts_64_t_2500.000000.vtu great_cell_2D_embedded_fracture_ts_64_t_2500.000000.vtu velocity velocity 1e-15 1e-15
+)
diff --git a/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_BAG1.vtu b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_BAG1.vtu
new file mode 100644
index 0000000000000000000000000000000000000000..506979d50232f8a7a77bd8edd207b61073340af7
--- /dev/null
+++ b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_BAG1.vtu
@@ -0,0 +1,24 @@
+<?xml version="1.0"?>
+<VTKFile type="UnstructuredGrid" version="1.0" byte_order="LittleEndian" header_type="UInt64">
+  <UnstructuredGrid>
+    <Piece NumberOfPoints="5"                    NumberOfCells="4"                   >
+      <PointData>
+        <DataArray type="UInt64" Name="bulk_node_ids" format="appended" RangeMin="0"                    RangeMax="139"                  offset="0"                   />
+      </PointData>
+      <CellData>
+        <DataArray type="UInt64" Name="bulk_element_ids" format="appended" RangeMin="949"                  RangeMax="1045"                 offset="64"                  />
+      </CellData>
+      <Points>
+        <DataArray type="Float64" Name="Points" NumberOfComponents="3" format="appended" RangeMin="0.09894003955"        RangeMax="0.1"                  offset="120"                 />
+      </Points>
+      <Cells>
+        <DataArray type="Int64" Name="connectivity" format="appended" RangeMin=""                     RangeMax=""                     offset="292"                 />
+        <DataArray type="Int64" Name="offsets" format="appended" RangeMin=""                     RangeMax=""                     offset="388"                 />
+        <DataArray type="UInt8" Name="types" format="appended" RangeMin=""                     RangeMax=""                     offset="444"                 />
+      </Cells>
+    </Piece>
+  </UnstructuredGrid>
+  <AppendedData encoding="base64">
+   _KAAAAAAAAAAAAAAAAAAAAAEAAAAAAAAAAgAAAAAAAACKAAAAAAAAAIsAAAAAAAAAIAAAAAAAAAC1AwAAAAAAABQEAAAAAAAAFQQAAAAAAAC3AwAAAAAAAA==eAAAAAAAAADJkCFqIlS5P2UE5tVZvY2/AAAAAAAAAADJkCFqIlS5PwAAAAAAAAAAAAAAAAAAAADJkCFqIlS5P2UE5tVZvY0/AAAAAAAAAADJkCFqIlS5P81W5tVZvX2/AAAAAAAAAADJkCFqIlS5P72v5dVZvX0/AAAAAAAAAAA=QAAAAAAAAAAAAAAAAAAAAAMAAAAAAAAAAwAAAAAAAAABAAAAAAAAAAEAAAAAAAAABAAAAAAAAAAEAAAAAAAAAAIAAAAAAAAAIAAAAAAAAAACAAAAAAAAAAQAAAAAAAAABgAAAAAAAAAIAAAAAAAAAA==BAAAAAAAAAADAwMD
+  </AppendedData>
+</VTKFile>
diff --git a/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_BAG10.vtu b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_BAG10.vtu
new file mode 100644
index 0000000000000000000000000000000000000000..a021332b4c91af0d77ded739490102a1edd883c1
--- /dev/null
+++ b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_BAG10.vtu
@@ -0,0 +1,24 @@
+<?xml version="1.0"?>
+<VTKFile type="UnstructuredGrid" version="1.0" byte_order="LittleEndian" header_type="UInt64">
+  <UnstructuredGrid>
+    <Piece NumberOfPoints="5"                    NumberOfCells="4"                   >
+      <PointData>
+        <DataArray type="UInt64" Name="bulk_node_ids" format="appended" RangeMin="28"                   RangeMax="153"                  offset="0"                   />
+      </PointData>
+      <CellData>
+        <DataArray type="UInt64" Name="bulk_element_ids" format="appended" RangeMin="977"                  RangeMax="1059"                 offset="64"                  />
+      </CellData>
+      <Points>
+        <DataArray type="Float64" Name="Points" NumberOfComponents="3" format="appended" RangeMin="0.09894003955"        RangeMax="0.1"                  offset="120"                 />
+      </Points>
+      <Cells>
+        <DataArray type="Int64" Name="connectivity" format="appended" RangeMin=""                     RangeMax=""                     offset="292"                 />
+        <DataArray type="Int64" Name="offsets" format="appended" RangeMin=""                     RangeMax=""                     offset="388"                 />
+        <DataArray type="UInt8" Name="types" format="appended" RangeMin=""                     RangeMax=""                     offset="444"                 />
+      </Cells>
+    </Piece>
+  </UnstructuredGrid>
+  <AppendedData encoding="base64">
+   _KAAAAAAAAAAcAAAAAAAAAB0AAAAAAAAAHgAAAAAAAACYAAAAAAAAAJkAAAAAAAAAIAAAAAAAAADRAwAAAAAAACIEAAAAAAAAIwQAAAAAAADTAwAAAAAAAA==eAAAAAAAAABzpaYFX/q1v/tNHUgyQao/AAAAAAAAAAAKV18gj2a3v1R/Kdy9YqM/AAAAAAAAAAChCBg7v9K4v1tha+CSCJk/AAAAAAAAAADJ/AITd7C2v7JtIxL40aY/AAAAAAAAAAD5rbstpxy4v/1BX0wH558/AAAAAAAAAAA=QAAAAAAAAAAAAAAAAAAAAAMAAAAAAAAAAwAAAAAAAAABAAAAAAAAAAEAAAAAAAAABAAAAAAAAAAEAAAAAAAAAAIAAAAAAAAAIAAAAAAAAAACAAAAAAAAAAQAAAAAAAAABgAAAAAAAAAIAAAAAAAAAA==BAAAAAAAAAADAwMD
+  </AppendedData>
+</VTKFile>
diff --git a/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_BAG11.vtu b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_BAG11.vtu
new file mode 100644
index 0000000000000000000000000000000000000000..e07f481daa715ec1002886c78380c581b02394c7
--- /dev/null
+++ b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_BAG11.vtu
@@ -0,0 +1,24 @@
+<?xml version="1.0"?>
+<VTKFile type="UnstructuredGrid" version="1.0" byte_order="LittleEndian" header_type="UInt64">
+  <UnstructuredGrid>
+    <Piece NumberOfPoints="5"                    NumberOfCells="4"                   >
+      <PointData>
+        <DataArray type="UInt64" Name="bulk_node_ids" format="appended" RangeMin="24"                   RangeMax="151"                  offset="0"                   />
+      </PointData>
+      <CellData>
+        <DataArray type="UInt64" Name="bulk_element_ids" format="appended" RangeMin="973"                  RangeMax="1057"                 offset="64"                  />
+      </CellData>
+      <Points>
+        <DataArray type="Float64" Name="Points" NumberOfComponents="3" format="appended" RangeMin="0.09894003955"        RangeMax="0.1"                  offset="120"                 />
+      </Points>
+      <Cells>
+        <DataArray type="Int64" Name="connectivity" format="appended" RangeMin=""                     RangeMax=""                     offset="292"                 />
+        <DataArray type="Int64" Name="offsets" format="appended" RangeMin=""                     RangeMax=""                     offset="388"                 />
+        <DataArray type="UInt8" Name="types" format="appended" RangeMin=""                     RangeMax=""                     offset="444"                 />
+      </Cells>
+    </Piece>
+  </UnstructuredGrid>
+  <AppendedData encoding="base64">
+   _KAAAAAAAAAAYAAAAAAAAABkAAAAAAAAAGgAAAAAAAACWAAAAAAAAAJcAAAAAAAAAIAAAAAAAAADNAwAAAAAAACAEAAAAAAAAIQQAAAAAAADPAwAAAAAAAA==eAAAAAAAAAD91I58FpCuvyWq4SzoibQ/AAAAAAAAAABSipS1+eixv1KKlLX56LE/AAAAAAAAAAAlquEs6Im0v/3UjnwWkK4/AAAAAAAAAABz9e15gpiwvzEfO/FwObM/AAAAAAAAAAAuFzvxcDmzv3X97XmCmLA/AAAAAAAAAAA=QAAAAAAAAAAAAAAAAAAAAAMAAAAAAAAAAwAAAAAAAAABAAAAAAAAAAEAAAAAAAAABAAAAAAAAAAEAAAAAAAAAAIAAAAAAAAAIAAAAAAAAAACAAAAAAAAAAQAAAAAAAAABgAAAAAAAAAIAAAAAAAAAA==BAAAAAAAAAADAwMD
+  </AppendedData>
+</VTKFile>
diff --git a/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_BAG12.vtu b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_BAG12.vtu
new file mode 100644
index 0000000000000000000000000000000000000000..4e801f03f3bc76ec0b6d0612e40bc7207347a94c
--- /dev/null
+++ b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_BAG12.vtu
@@ -0,0 +1,24 @@
+<?xml version="1.0"?>
+<VTKFile type="UnstructuredGrid" version="1.0" byte_order="LittleEndian" header_type="UInt64">
+  <UnstructuredGrid>
+    <Piece NumberOfPoints="5"                    NumberOfCells="4"                   >
+      <PointData>
+        <DataArray type="UInt64" Name="bulk_node_ids" format="appended" RangeMin="20"                   RangeMax="149"                  offset="0"                   />
+      </PointData>
+      <CellData>
+        <DataArray type="UInt64" Name="bulk_element_ids" format="appended" RangeMin="969"                  RangeMax="1055"                 offset="64"                  />
+      </CellData>
+      <Points>
+        <DataArray type="Float64" Name="Points" NumberOfComponents="3" format="appended" RangeMin="0.09894003955"        RangeMax="0.1"                  offset="120"                 />
+      </Points>
+      <Cells>
+        <DataArray type="Int64" Name="connectivity" format="appended" RangeMin=""                     RangeMax=""                     offset="292"                 />
+        <DataArray type="Int64" Name="offsets" format="appended" RangeMin=""                     RangeMax=""                     offset="388"                 />
+        <DataArray type="UInt8" Name="types" format="appended" RangeMin=""                     RangeMax=""                     offset="444"                 />
+      </Cells>
+    </Piece>
+  </UnstructuredGrid>
+  <AppendedData encoding="base64">
+   _KAAAAAAAAAAUAAAAAAAAABUAAAAAAAAAFgAAAAAAAACUAAAAAAAAAJUAAAAAAAAAIAAAAAAAAADJAwAAAAAAAB4EAAAAAAAAHwQAAAAAAADLAwAAAAAAAA==eAAAAAAAAABbYWvgkgiZv6EIGDu/0rg/AAAAAAAAAABUfyncvWKjvwpXXyCPZrc/AAAAAAAAAAD7TR1IMkGqv3OlpgVf+rU/AAAAAAAAAAC2HF9MB+efv9Wxuy2nHLg/AAAAAAAAAABiWyMS+NGmv5QAAxN3sLY/AAAAAAAAAAA=QAAAAAAAAAAAAAAAAAAAAAMAAAAAAAAAAwAAAAAAAAABAAAAAAAAAAEAAAAAAAAABAAAAAAAAAAEAAAAAAAAAAIAAAAAAAAAIAAAAAAAAAACAAAAAAAAAAQAAAAAAAAABgAAAAAAAAAIAAAAAAAAAA==BAAAAAAAAAADAwMD
+  </AppendedData>
+</VTKFile>
diff --git a/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_BAG13.vtu b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_BAG13.vtu
new file mode 100644
index 0000000000000000000000000000000000000000..c5a40f4c86456638ddd77c1699598e7aa42ec27e
--- /dev/null
+++ b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_BAG13.vtu
@@ -0,0 +1,24 @@
+<?xml version="1.0"?>
+<VTKFile type="UnstructuredGrid" version="1.0" byte_order="LittleEndian" header_type="UInt64">
+  <UnstructuredGrid>
+    <Piece NumberOfPoints="5"                    NumberOfCells="4"                   >
+      <PointData>
+        <DataArray type="UInt64" Name="bulk_node_ids" format="appended" RangeMin="16"                   RangeMax="147"                  offset="0"                   />
+      </PointData>
+      <CellData>
+        <DataArray type="UInt64" Name="bulk_element_ids" format="appended" RangeMin="965"                  RangeMax="1053"                 offset="64"                  />
+      </CellData>
+      <Points>
+        <DataArray type="Float64" Name="Points" NumberOfComponents="3" format="appended" RangeMin="0.09894003955"        RangeMax="0.1"                  offset="120"                 />
+      </Points>
+      <Cells>
+        <DataArray type="Int64" Name="connectivity" format="appended" RangeMin=""                     RangeMax=""                     offset="292"                 />
+        <DataArray type="Int64" Name="offsets" format="appended" RangeMin=""                     RangeMax=""                     offset="388"                 />
+        <DataArray type="UInt8" Name="types" format="appended" RangeMin=""                     RangeMax=""                     offset="444"                 />
+      </Cells>
+    </Piece>
+  </UnstructuredGrid>
+  <AppendedData encoding="base64">
+   _KAAAAAAAAAAQAAAAAAAAABEAAAAAAAAAEgAAAAAAAACSAAAAAAAAAJMAAAAAAAAAIAAAAAAAAADFAwAAAAAAABwEAAAAAAAAHQQAAAAAAADHAwAAAAAAAA==eAAAAAAAAABlBObVWb2NP8mQIWoiVLk/AAAAAAAAAAABAAAAAABgPMmQIWoiVLk/AAAAAAAAAABlBObVWb2Nv8mQIWoiVLk/AAAAAAAAAACEVObVWb19P8mQIWoiVLk/AAAAAAAAAAAYsOXVWb19v8mQIWoiVLk/AAAAAAAAAAA=QAAAAAAAAAAAAAAAAAAAAAMAAAAAAAAAAwAAAAAAAAABAAAAAAAAAAEAAAAAAAAABAAAAAAAAAAEAAAAAAAAAAIAAAAAAAAAIAAAAAAAAAACAAAAAAAAAAQAAAAAAAAABgAAAAAAAAAIAAAAAAAAAA==BAAAAAAAAAADAwMD
+  </AppendedData>
+</VTKFile>
diff --git a/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_BAG14.vtu b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_BAG14.vtu
new file mode 100644
index 0000000000000000000000000000000000000000..11a97148ac524c762b6696a69fb76a151adb7ea4
--- /dev/null
+++ b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_BAG14.vtu
@@ -0,0 +1,24 @@
+<?xml version="1.0"?>
+<VTKFile type="UnstructuredGrid" version="1.0" byte_order="LittleEndian" header_type="UInt64">
+  <UnstructuredGrid>
+    <Piece NumberOfPoints="5"                    NumberOfCells="4"                   >
+      <PointData>
+        <DataArray type="UInt64" Name="bulk_node_ids" format="appended" RangeMin="12"                   RangeMax="145"                  offset="0"                   />
+      </PointData>
+      <CellData>
+        <DataArray type="UInt64" Name="bulk_element_ids" format="appended" RangeMin="961"                  RangeMax="1051"                 offset="64"                  />
+      </CellData>
+      <Points>
+        <DataArray type="Float64" Name="Points" NumberOfComponents="3" format="appended" RangeMin="0.09894003955"        RangeMax="0.1"                  offset="120"                 />
+      </Points>
+      <Cells>
+        <DataArray type="Int64" Name="connectivity" format="appended" RangeMin=""                     RangeMax=""                     offset="292"                 />
+        <DataArray type="Int64" Name="offsets" format="appended" RangeMin=""                     RangeMax=""                     offset="388"                 />
+        <DataArray type="UInt8" Name="types" format="appended" RangeMin=""                     RangeMax=""                     offset="444"                 />
+      </Cells>
+    </Piece>
+  </UnstructuredGrid>
+  <AppendedData encoding="base64">
+   _KAAAAAAAAAAMAAAAAAAAAA0AAAAAAAAADgAAAAAAAACQAAAAAAAAAJEAAAAAAAAAIAAAAAAAAADBAwAAAAAAABoEAAAAAAAAGwQAAAAAAADDAwAAAAAAAA==eAAAAAAAAAD7TR1IMkGqP3OlpgVf+rU/AAAAAAAAAABUfyncvWKjPwpXXyCPZrc/AAAAAAAAAABbYWvgkgiZP6EIGDu/0rg/AAAAAAAAAACybSMS+NGmP8n8AhN3sLY/AAAAAAAAAAD9QV9MB+efP/mtuy2nHLg/AAAAAAAAAAA=QAAAAAAAAAAAAAAAAAAAAAMAAAAAAAAAAwAAAAAAAAABAAAAAAAAAAEAAAAAAAAABAAAAAAAAAAEAAAAAAAAAAIAAAAAAAAAIAAAAAAAAAACAAAAAAAAAAQAAAAAAAAABgAAAAAAAAAIAAAAAAAAAA==BAAAAAAAAAADAwMD
+  </AppendedData>
+</VTKFile>
diff --git a/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_BAG15.vtu b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_BAG15.vtu
new file mode 100644
index 0000000000000000000000000000000000000000..173a44dc79618ed9a440e541fc51c0606f1d1c4b
--- /dev/null
+++ b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_BAG15.vtu
@@ -0,0 +1,24 @@
+<?xml version="1.0"?>
+<VTKFile type="UnstructuredGrid" version="1.0" byte_order="LittleEndian" header_type="UInt64">
+  <UnstructuredGrid>
+    <Piece NumberOfPoints="5"                    NumberOfCells="4"                   >
+      <PointData>
+        <DataArray type="UInt64" Name="bulk_node_ids" format="appended" RangeMin="8"                    RangeMax="143"                  offset="0"                   />
+      </PointData>
+      <CellData>
+        <DataArray type="UInt64" Name="bulk_element_ids" format="appended" RangeMin="957"                  RangeMax="1049"                 offset="64"                  />
+      </CellData>
+      <Points>
+        <DataArray type="Float64" Name="Points" NumberOfComponents="3" format="appended" RangeMin="0.09894003955"        RangeMax="0.1"                  offset="120"                 />
+      </Points>
+      <Cells>
+        <DataArray type="Int64" Name="connectivity" format="appended" RangeMin=""                     RangeMax=""                     offset="292"                 />
+        <DataArray type="Int64" Name="offsets" format="appended" RangeMin=""                     RangeMax=""                     offset="388"                 />
+        <DataArray type="UInt8" Name="types" format="appended" RangeMin=""                     RangeMax=""                     offset="444"                 />
+      </Cells>
+    </Piece>
+  </UnstructuredGrid>
+  <AppendedData encoding="base64">
+   _KAAAAAAAAAAIAAAAAAAAAAkAAAAAAAAACgAAAAAAAACOAAAAAAAAAI8AAAAAAAAAIAAAAAAAAAC9AwAAAAAAABgEAAAAAAAAGQQAAAAAAAC/AwAAAAAAAA==eAAAAAAAAAAlquEs6Im0P/3UjnwWkK4/AAAAAAAAAABSipS1+eixP1KKlLX56LE/AAAAAAAAAAD91I58FpCuPyWq4SzoibQ/AAAAAAAAAAAxHzvxcDmzP3P17XmCmLA/AAAAAAAAAAB1/e15gpiwPy4XO/FwObM/AAAAAAAAAAA=QAAAAAAAAAAAAAAAAAAAAAMAAAAAAAAAAwAAAAAAAAABAAAAAAAAAAEAAAAAAAAABAAAAAAAAAAEAAAAAAAAAAIAAAAAAAAAIAAAAAAAAAACAAAAAAAAAAQAAAAAAAAABgAAAAAAAAAIAAAAAAAAAA==BAAAAAAAAAADAwMD
+  </AppendedData>
+</VTKFile>
diff --git a/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_BAG16.vtu b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_BAG16.vtu
new file mode 100644
index 0000000000000000000000000000000000000000..950f9e21af84d47086d5f6dbe26146de23f0704e
--- /dev/null
+++ b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_BAG16.vtu
@@ -0,0 +1,24 @@
+<?xml version="1.0"?>
+<VTKFile type="UnstructuredGrid" version="1.0" byte_order="LittleEndian" header_type="UInt64">
+  <UnstructuredGrid>
+    <Piece NumberOfPoints="5"                    NumberOfCells="4"                   >
+      <PointData>
+        <DataArray type="UInt64" Name="bulk_node_ids" format="appended" RangeMin="4"                    RangeMax="141"                  offset="0"                   />
+      </PointData>
+      <CellData>
+        <DataArray type="UInt64" Name="bulk_element_ids" format="appended" RangeMin="953"                  RangeMax="1047"                 offset="64"                  />
+      </CellData>
+      <Points>
+        <DataArray type="Float64" Name="Points" NumberOfComponents="3" format="appended" RangeMin="0.09894003955"        RangeMax="0.1"                  offset="120"                 />
+      </Points>
+      <Cells>
+        <DataArray type="Int64" Name="connectivity" format="appended" RangeMin=""                     RangeMax=""                     offset="292"                 />
+        <DataArray type="Int64" Name="offsets" format="appended" RangeMin=""                     RangeMax=""                     offset="388"                 />
+        <DataArray type="UInt8" Name="types" format="appended" RangeMin=""                     RangeMax=""                     offset="444"                 />
+      </Cells>
+    </Piece>
+  </UnstructuredGrid>
+  <AppendedData encoding="base64">
+   _KAAAAAAAAAAEAAAAAAAAAAUAAAAAAAAABgAAAAAAAACMAAAAAAAAAI0AAAAAAAAAIAAAAAAAAAC5AwAAAAAAABYEAAAAAAAAFwQAAAAAAAC7AwAAAAAAAA==eAAAAAAAAAChCBg7v9K4P3hha+CSCJk/AAAAAAAAAAAKV18gj2a3P1R/Kdy9YqM/AAAAAAAAAABzpaYFX/q1P/tNHUgyQao/AAAAAAAAAAA9srstpxy4P9kYX0wH558/AAAAAAAAAACUAAMTd7C2P2JbIxL40aY/AAAAAAAAAAA=QAAAAAAAAAAAAAAAAAAAAAMAAAAAAAAAAwAAAAAAAAABAAAAAAAAAAEAAAAAAAAABAAAAAAAAAAEAAAAAAAAAAIAAAAAAAAAIAAAAAAAAAACAAAAAAAAAAQAAAAAAAAABgAAAAAAAAAIAAAAAAAAAA==BAAAAAAAAAADAwMD
+  </AppendedData>
+</VTKFile>
diff --git a/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_BAG2.vtu b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_BAG2.vtu
new file mode 100644
index 0000000000000000000000000000000000000000..3efcd47a1a6dc597dd0b94200eacb846467224c1
--- /dev/null
+++ b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_BAG2.vtu
@@ -0,0 +1,24 @@
+<?xml version="1.0"?>
+<VTKFile type="UnstructuredGrid" version="1.0" byte_order="LittleEndian" header_type="UInt64">
+  <UnstructuredGrid>
+    <Piece NumberOfPoints="5"                    NumberOfCells="4"                   >
+      <PointData>
+        <DataArray type="UInt64" Name="bulk_node_ids" format="appended" RangeMin="60"                   RangeMax="169"                  offset="0"                   />
+      </PointData>
+      <CellData>
+        <DataArray type="UInt64" Name="bulk_element_ids" format="appended" RangeMin="1009"                 RangeMax="1075"                 offset="64"                  />
+      </CellData>
+      <Points>
+        <DataArray type="Float64" Name="Points" NumberOfComponents="3" format="appended" RangeMin="0.09894003955"        RangeMax="0.1"                  offset="120"                 />
+      </Points>
+      <Cells>
+        <DataArray type="Int64" Name="connectivity" format="appended" RangeMin=""                     RangeMax=""                     offset="292"                 />
+        <DataArray type="Int64" Name="offsets" format="appended" RangeMin=""                     RangeMax=""                     offset="388"                 />
+        <DataArray type="UInt8" Name="types" format="appended" RangeMin=""                     RangeMax=""                     offset="444"                 />
+      </Cells>
+    </Piece>
+  </UnstructuredGrid>
+  <AppendedData encoding="base64">
+   _KAAAAAAAAAA8AAAAAAAAAD0AAAAAAAAAPgAAAAAAAACoAAAAAAAAAKkAAAAAAAAAIAAAAAAAAADxAwAAAAAAADIEAAAAAAAAMwQAAAAAAADzAwAAAAAAAA==eAAAAAAAAABzpaYFX/q1P+xNHUgyQaq/AAAAAAAAAAAKV18gj2a3P1R/Kdy9YqO/AAAAAAAAAAChCBg7v9K4P1tha+CSCJm/AAAAAAAAAAC1+wITd7C2P+JyIxL40aa/AAAAAAAAAAD5rbstpxy4P/1BX0wH55+/AAAAAAAAAAA=QAAAAAAAAAAAAAAAAAAAAAMAAAAAAAAAAwAAAAAAAAABAAAAAAAAAAEAAAAAAAAABAAAAAAAAAAEAAAAAAAAAAIAAAAAAAAAIAAAAAAAAAACAAAAAAAAAAQAAAAAAAAABgAAAAAAAAAIAAAAAAAAAA==BAAAAAAAAAADAwMD
+  </AppendedData>
+</VTKFile>
diff --git a/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_BAG3.vtu b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_BAG3.vtu
new file mode 100644
index 0000000000000000000000000000000000000000..5bdb83b4c432714fdb07983370bf048151140c60
--- /dev/null
+++ b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_BAG3.vtu
@@ -0,0 +1,24 @@
+<?xml version="1.0"?>
+<VTKFile type="UnstructuredGrid" version="1.0" byte_order="LittleEndian" header_type="UInt64">
+  <UnstructuredGrid>
+    <Piece NumberOfPoints="5"                    NumberOfCells="4"                   >
+      <PointData>
+        <DataArray type="UInt64" Name="bulk_node_ids" format="appended" RangeMin="56"                   RangeMax="167"                  offset="0"                   />
+      </PointData>
+      <CellData>
+        <DataArray type="UInt64" Name="bulk_element_ids" format="appended" RangeMin="1005"                 RangeMax="1073"                 offset="64"                  />
+      </CellData>
+      <Points>
+        <DataArray type="Float64" Name="Points" NumberOfComponents="3" format="appended" RangeMin="0.09894003955"        RangeMax="0.1"                  offset="120"                 />
+      </Points>
+      <Cells>
+        <DataArray type="Int64" Name="connectivity" format="appended" RangeMin=""                     RangeMax=""                     offset="292"                 />
+        <DataArray type="Int64" Name="offsets" format="appended" RangeMin=""                     RangeMax=""                     offset="388"                 />
+        <DataArray type="UInt8" Name="types" format="appended" RangeMin=""                     RangeMax=""                     offset="444"                 />
+      </Cells>
+    </Piece>
+  </UnstructuredGrid>
+  <AppendedData encoding="base64">
+   _KAAAAAAAAAA4AAAAAAAAADkAAAAAAAAAOgAAAAAAAACmAAAAAAAAAKcAAAAAAAAAIAAAAAAAAADtAwAAAAAAADAEAAAAAAAAMQQAAAAAAADvAwAAAAAAAA==eAAAAAAAAAD91I58FpCuPyWq4SzoibS/AAAAAAAAAABSipS1+eixP1KKlLX56LG/AAAAAAAAAAAtquEs6Im0P/3UjnwWkK6/AAAAAAAAAABz9e15gpiwPzEfO/FwObO/AAAAAAAAAABvFjvxcDmzPzn+7XmCmLC/AAAAAAAAAAA=QAAAAAAAAAAAAAAAAAAAAAMAAAAAAAAAAwAAAAAAAAABAAAAAAAAAAEAAAAAAAAABAAAAAAAAAAEAAAAAAAAAAIAAAAAAAAAIAAAAAAAAAACAAAAAAAAAAQAAAAAAAAABgAAAAAAAAAIAAAAAAAAAA==BAAAAAAAAAADAwMD
+  </AppendedData>
+</VTKFile>
diff --git a/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_BAG4.vtu b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_BAG4.vtu
new file mode 100644
index 0000000000000000000000000000000000000000..2f5237660a4541ad649c637bde5a88c38a81eee0
--- /dev/null
+++ b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_BAG4.vtu
@@ -0,0 +1,24 @@
+<?xml version="1.0"?>
+<VTKFile type="UnstructuredGrid" version="1.0" byte_order="LittleEndian" header_type="UInt64">
+  <UnstructuredGrid>
+    <Piece NumberOfPoints="5"                    NumberOfCells="4"                   >
+      <PointData>
+        <DataArray type="UInt64" Name="bulk_node_ids" format="appended" RangeMin="52"                   RangeMax="165"                  offset="0"                   />
+      </PointData>
+      <CellData>
+        <DataArray type="UInt64" Name="bulk_element_ids" format="appended" RangeMin="1001"                 RangeMax="1071"                 offset="64"                  />
+      </CellData>
+      <Points>
+        <DataArray type="Float64" Name="Points" NumberOfComponents="3" format="appended" RangeMin="0.09894003955"        RangeMax="0.1"                  offset="120"                 />
+      </Points>
+      <Cells>
+        <DataArray type="Int64" Name="connectivity" format="appended" RangeMin=""                     RangeMax=""                     offset="292"                 />
+        <DataArray type="Int64" Name="offsets" format="appended" RangeMin=""                     RangeMax=""                     offset="388"                 />
+        <DataArray type="UInt8" Name="types" format="appended" RangeMin=""                     RangeMax=""                     offset="444"                 />
+      </Cells>
+    </Piece>
+  </UnstructuredGrid>
+  <AppendedData encoding="base64">
+   _KAAAAAAAAAA0AAAAAAAAADUAAAAAAAAANgAAAAAAAACkAAAAAAAAAKUAAAAAAAAAIAAAAAAAAADpAwAAAAAAAC4EAAAAAAAALwQAAAAAAADrAwAAAAAAAA==eAAAAAAAAAB4YWvgkgiZP6EIGDu/0ri/AAAAAAAAAABUfyncvWKjPwpXXyCPZre/AAAAAAAAAAD7TR1IMkGqP3OlpgVf+rW/AAAAAAAAAADZGF9MB+efPz2yuy2nHLi/AAAAAAAAAABiWyMS+NGmP5QAAxN3sLa/AAAAAAAAAAA=QAAAAAAAAAAAAAAAAAAAAAMAAAAAAAAAAwAAAAAAAAABAAAAAAAAAAEAAAAAAAAABAAAAAAAAAAEAAAAAAAAAAIAAAAAAAAAIAAAAAAAAAACAAAAAAAAAAQAAAAAAAAABgAAAAAAAAAIAAAAAAAAAA==BAAAAAAAAAADAwMD
+  </AppendedData>
+</VTKFile>
diff --git a/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_BAG5.vtu b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_BAG5.vtu
new file mode 100644
index 0000000000000000000000000000000000000000..eb7d70b8d17cd536f4f01538ef5ecf773519fe72
--- /dev/null
+++ b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_BAG5.vtu
@@ -0,0 +1,24 @@
+<?xml version="1.0"?>
+<VTKFile type="UnstructuredGrid" version="1.0" byte_order="LittleEndian" header_type="UInt64">
+  <UnstructuredGrid>
+    <Piece NumberOfPoints="5"                    NumberOfCells="4"                   >
+      <PointData>
+        <DataArray type="UInt64" Name="bulk_node_ids" format="appended" RangeMin="48"                   RangeMax="163"                  offset="0"                   />
+      </PointData>
+      <CellData>
+        <DataArray type="UInt64" Name="bulk_element_ids" format="appended" RangeMin="997"                  RangeMax="1069"                 offset="64"                  />
+      </CellData>
+      <Points>
+        <DataArray type="Float64" Name="Points" NumberOfComponents="3" format="appended" RangeMin="0.09894003955"        RangeMax="0.1"                  offset="120"                 />
+      </Points>
+      <Cells>
+        <DataArray type="Int64" Name="connectivity" format="appended" RangeMin=""                     RangeMax=""                     offset="292"                 />
+        <DataArray type="Int64" Name="offsets" format="appended" RangeMin=""                     RangeMax=""                     offset="388"                 />
+        <DataArray type="UInt8" Name="types" format="appended" RangeMin=""                     RangeMax=""                     offset="444"                 />
+      </Cells>
+    </Piece>
+  </UnstructuredGrid>
+  <AppendedData encoding="base64">
+   _KAAAAAAAAAAwAAAAAAAAADEAAAAAAAAAMgAAAAAAAACiAAAAAAAAAKMAAAAAAAAAIAAAAAAAAADlAwAAAAAAACwEAAAAAAAALQQAAAAAAADnAwAAAAAAAA==eAAAAAAAAABlBObVWb2Nv8mQIWoiVLm/AAAAAAAAAAD+//////99PMmQIWoiVLm/AAAAAAAAAABlBObVWb2NP8mQIWoiVLm/AAAAAAAAAABJWObVWb19v8mQIWoiVLm/AAAAAAAAAAAbseXVWb19P8mQIWoiVLm/AAAAAAAAAAA=QAAAAAAAAAAAAAAAAAAAAAMAAAAAAAAAAwAAAAAAAAABAAAAAAAAAAEAAAAAAAAABAAAAAAAAAAEAAAAAAAAAAIAAAAAAAAAIAAAAAAAAAACAAAAAAAAAAQAAAAAAAAABgAAAAAAAAAIAAAAAAAAAA==BAAAAAAAAAADAwMD
+  </AppendedData>
+</VTKFile>
diff --git a/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_BAG6.vtu b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_BAG6.vtu
new file mode 100644
index 0000000000000000000000000000000000000000..c108ecabc9841a1ecf788f8e1789716253808f07
--- /dev/null
+++ b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_BAG6.vtu
@@ -0,0 +1,24 @@
+<?xml version="1.0"?>
+<VTKFile type="UnstructuredGrid" version="1.0" byte_order="LittleEndian" header_type="UInt64">
+  <UnstructuredGrid>
+    <Piece NumberOfPoints="5"                    NumberOfCells="4"                   >
+      <PointData>
+        <DataArray type="UInt64" Name="bulk_node_ids" format="appended" RangeMin="44"                   RangeMax="161"                  offset="0"                   />
+      </PointData>
+      <CellData>
+        <DataArray type="UInt64" Name="bulk_element_ids" format="appended" RangeMin="993"                  RangeMax="1067"                 offset="64"                  />
+      </CellData>
+      <Points>
+        <DataArray type="Float64" Name="Points" NumberOfComponents="3" format="appended" RangeMin="0.09894003955"        RangeMax="0.1"                  offset="120"                 />
+      </Points>
+      <Cells>
+        <DataArray type="Int64" Name="connectivity" format="appended" RangeMin=""                     RangeMax=""                     offset="292"                 />
+        <DataArray type="Int64" Name="offsets" format="appended" RangeMin=""                     RangeMax=""                     offset="388"                 />
+        <DataArray type="UInt8" Name="types" format="appended" RangeMin=""                     RangeMax=""                     offset="444"                 />
+      </Cells>
+    </Piece>
+  </UnstructuredGrid>
+  <AppendedData encoding="base64">
+   _KAAAAAAAAAAsAAAAAAAAAC0AAAAAAAAALgAAAAAAAACgAAAAAAAAAKEAAAAAAAAAIAAAAAAAAADhAwAAAAAAACoEAAAAAAAAKwQAAAAAAADjAwAAAAAAAA==eAAAAAAAAAD7TR1IMkGqv3OlpgVf+rW/AAAAAAAAAABUfyncvWKjvwpXXyCPZre/AAAAAAAAAABbYWvgkgiZv6EIGDu/0ri/AAAAAAAAAACybSMS+NGmv8n8AhN3sLa/AAAAAAAAAAD9QV9MB+efv/mtuy2nHLi/AAAAAAAAAAA=QAAAAAAAAAAAAAAAAAAAAAMAAAAAAAAAAwAAAAAAAAABAAAAAAAAAAEAAAAAAAAABAAAAAAAAAAEAAAAAAAAAAIAAAAAAAAAIAAAAAAAAAACAAAAAAAAAAQAAAAAAAAABgAAAAAAAAAIAAAAAAAAAA==BAAAAAAAAAADAwMD
+  </AppendedData>
+</VTKFile>
diff --git a/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_BAG7.vtu b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_BAG7.vtu
new file mode 100644
index 0000000000000000000000000000000000000000..c072c68747cc592ec23636d1d952ce695724b687
--- /dev/null
+++ b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_BAG7.vtu
@@ -0,0 +1,24 @@
+<?xml version="1.0"?>
+<VTKFile type="UnstructuredGrid" version="1.0" byte_order="LittleEndian" header_type="UInt64">
+  <UnstructuredGrid>
+    <Piece NumberOfPoints="5"                    NumberOfCells="4"                   >
+      <PointData>
+        <DataArray type="UInt64" Name="bulk_node_ids" format="appended" RangeMin="40"                   RangeMax="159"                  offset="0"                   />
+      </PointData>
+      <CellData>
+        <DataArray type="UInt64" Name="bulk_element_ids" format="appended" RangeMin="989"                  RangeMax="1065"                 offset="64"                  />
+      </CellData>
+      <Points>
+        <DataArray type="Float64" Name="Points" NumberOfComponents="3" format="appended" RangeMin="0.09894003955"        RangeMax="0.1"                  offset="120"                 />
+      </Points>
+      <Cells>
+        <DataArray type="Int64" Name="connectivity" format="appended" RangeMin=""                     RangeMax=""                     offset="292"                 />
+        <DataArray type="Int64" Name="offsets" format="appended" RangeMin=""                     RangeMax=""                     offset="388"                 />
+        <DataArray type="UInt8" Name="types" format="appended" RangeMin=""                     RangeMax=""                     offset="444"                 />
+      </Cells>
+    </Piece>
+  </UnstructuredGrid>
+  <AppendedData encoding="base64">
+   _KAAAAAAAAAAoAAAAAAAAACkAAAAAAAAAKgAAAAAAAACeAAAAAAAAAJ8AAAAAAAAAIAAAAAAAAADdAwAAAAAAACgEAAAAAAAAKQQAAAAAAADfAwAAAAAAAA==eAAAAAAAAAAlquEs6Im0v/3UjnwWkK6/AAAAAAAAAABSipS1+eixv1KKlLX56LG/AAAAAAAAAAAL1Y58FpCuvyWq4SzoibS/AAAAAAAAAAAxHzvxcDmzv3P17XmCmLC/AAAAAAAAAADP/u15gpiwv9kVO/FwObO/AAAAAAAAAAA=QAAAAAAAAAAAAAAAAAAAAAMAAAAAAAAAAwAAAAAAAAABAAAAAAAAAAEAAAAAAAAABAAAAAAAAAAEAAAAAAAAAAIAAAAAAAAAIAAAAAAAAAACAAAAAAAAAAQAAAAAAAAABgAAAAAAAAAIAAAAAAAAAA==BAAAAAAAAAADAwMD
+  </AppendedData>
+</VTKFile>
diff --git a/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_BAG8.vtu b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_BAG8.vtu
new file mode 100644
index 0000000000000000000000000000000000000000..7428500698672a0f85060f624ef99c55d9258b95
--- /dev/null
+++ b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_BAG8.vtu
@@ -0,0 +1,24 @@
+<?xml version="1.0"?>
+<VTKFile type="UnstructuredGrid" version="1.0" byte_order="LittleEndian" header_type="UInt64">
+  <UnstructuredGrid>
+    <Piece NumberOfPoints="5"                    NumberOfCells="4"                   >
+      <PointData>
+        <DataArray type="UInt64" Name="bulk_node_ids" format="appended" RangeMin="36"                   RangeMax="157"                  offset="0"                   />
+      </PointData>
+      <CellData>
+        <DataArray type="UInt64" Name="bulk_element_ids" format="appended" RangeMin="985"                  RangeMax="1063"                 offset="64"                  />
+      </CellData>
+      <Points>
+        <DataArray type="Float64" Name="Points" NumberOfComponents="3" format="appended" RangeMin="0.09894003955"        RangeMax="0.1"                  offset="120"                 />
+      </Points>
+      <Cells>
+        <DataArray type="Int64" Name="connectivity" format="appended" RangeMin=""                     RangeMax=""                     offset="292"                 />
+        <DataArray type="Int64" Name="offsets" format="appended" RangeMin=""                     RangeMax=""                     offset="388"                 />
+        <DataArray type="UInt8" Name="types" format="appended" RangeMin=""                     RangeMax=""                     offset="444"                 />
+      </Cells>
+    </Piece>
+  </UnstructuredGrid>
+  <AppendedData encoding="base64">
+   _KAAAAAAAAAAkAAAAAAAAACUAAAAAAAAAJgAAAAAAAACcAAAAAAAAAJ0AAAAAAAAAIAAAAAAAAADZAwAAAAAAACYEAAAAAAAAJwQAAAAAAADbAwAAAAAAAA==eAAAAAAAAAChCBg7v9K4v3hha+CSCJm/AAAAAAAAAAAKV18gj2a3v1R/Kdy9YqO/AAAAAAAAAABzpaYFX/q1v/tNHUgyQaq/AAAAAAAAAAA9srstpxy4v9kYX0wH55+/AAAAAAAAAACUAAMTd7C2v2JbIxL40aa/AAAAAAAAAAA=QAAAAAAAAAAAAAAAAAAAAAMAAAAAAAAAAwAAAAAAAAABAAAAAAAAAAEAAAAAAAAABAAAAAAAAAAEAAAAAAAAAAIAAAAAAAAAIAAAAAAAAAACAAAAAAAAAAQAAAAAAAAABgAAAAAAAAAIAAAAAAAAAA==BAAAAAAAAAADAwMD
+  </AppendedData>
+</VTKFile>
diff --git a/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_BAG9.vtu b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_BAG9.vtu
new file mode 100644
index 0000000000000000000000000000000000000000..8c7f886893ef27d53955d8fed00cdb7f9f9cb49e
--- /dev/null
+++ b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_BAG9.vtu
@@ -0,0 +1,24 @@
+<?xml version="1.0"?>
+<VTKFile type="UnstructuredGrid" version="1.0" byte_order="LittleEndian" header_type="UInt64">
+  <UnstructuredGrid>
+    <Piece NumberOfPoints="5"                    NumberOfCells="4"                   >
+      <PointData>
+        <DataArray type="UInt64" Name="bulk_node_ids" format="appended" RangeMin="32"                   RangeMax="155"                  offset="0"                   />
+      </PointData>
+      <CellData>
+        <DataArray type="UInt64" Name="bulk_element_ids" format="appended" RangeMin="981"                  RangeMax="1061"                 offset="64"                  />
+      </CellData>
+      <Points>
+        <DataArray type="Float64" Name="Points" NumberOfComponents="3" format="appended" RangeMin="0.09894003955"        RangeMax="0.1"                  offset="120"                 />
+      </Points>
+      <Cells>
+        <DataArray type="Int64" Name="connectivity" format="appended" RangeMin=""                     RangeMax=""                     offset="292"                 />
+        <DataArray type="Int64" Name="offsets" format="appended" RangeMin=""                     RangeMax=""                     offset="388"                 />
+        <DataArray type="UInt8" Name="types" format="appended" RangeMin=""                     RangeMax=""                     offset="444"                 />
+      </Cells>
+    </Piece>
+  </UnstructuredGrid>
+  <AppendedData encoding="base64">
+   _KAAAAAAAAAAgAAAAAAAAACEAAAAAAAAAIgAAAAAAAACaAAAAAAAAAJsAAAAAAAAAIAAAAAAAAADVAwAAAAAAACQEAAAAAAAAJQQAAAAAAADXAwAAAAAAAA==eAAAAAAAAADJkCFqIlS5v2UE5tVZvY0/AAAAAAAAAADJkCFqIlS5vwEAAAAAAGa8AAAAAAAAAADJkCFqIlS5v2UE5tVZvY2/AAAAAAAAAADJkCFqIlS5v1xb5tVZvX0/AAAAAAAAAADJkCFqIlS5vxux5dVZvX2/AAAAAAAAAAA=QAAAAAAAAAAAAAAAAAAAAAMAAAAAAAAAAwAAAAAAAAABAAAAAAAAAAEAAAAAAAAABAAAAAAAAAAEAAAAAAAAAAIAAAAAAAAAIAAAAAAAAAACAAAAAAAAAAQAAAAAAAAABgAAAAAAAAAIAAAAAAAAAA==BAAAAAAAAAADAwMD
+  </AppendedData>
+</VTKFile>
diff --git a/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_STRIP1.vtu b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_STRIP1.vtu
new file mode 100644
index 0000000000000000000000000000000000000000..53b8ed3175a5b8d1bd76b1fd5b81b329f309ae02
--- /dev/null
+++ b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_STRIP1.vtu
@@ -0,0 +1,24 @@
+<?xml version="1.0"?>
+<VTKFile type="UnstructuredGrid" version="1.0" byte_order="LittleEndian" header_type="UInt64">
+  <UnstructuredGrid>
+    <Piece NumberOfPoints="3"                    NumberOfCells="2"                   >
+      <PointData>
+        <DataArray type="UInt64" Name="bulk_node_ids" format="appended" RangeMin="0"                    RangeMax="63"                   offset="0"                   />
+      </PointData>
+      <CellData>
+        <DataArray type="UInt64" Name="bulk_element_ids" format="appended" RangeMin="931"                  RangeMax="938"                  offset="44"                  />
+      </CellData>
+      <Points>
+        <DataArray type="Float64" Name="Points" NumberOfComponents="3" format="appended" RangeMin="0.099871902349"       RangeMax="0.1"                  offset="76"                  />
+      </Points>
+      <Cells>
+        <DataArray type="Int64" Name="connectivity" format="appended" RangeMin=""                     RangeMax=""                     offset="184"                 />
+        <DataArray type="Int64" Name="offsets" format="appended" RangeMin=""                     RangeMax=""                     offset="240"                 />
+        <DataArray type="UInt8" Name="types" format="appended" RangeMin=""                     RangeMax=""                     offset="272"                 />
+      </Cells>
+    </Piece>
+  </UnstructuredGrid>
+  <AppendedData encoding="base64">
+   _GAAAAAAAAAAAAAAAAAAAAD4AAAAAAAAAPwAAAAAAAAA=EAAAAAAAAACjAwAAAAAAAKoDAAAAAAAASAAAAAAAAADJkCFqIlS5P2UE5tVZvY2/AAAAAAAAAAChCBg7v9K4P1tha+CSCJm/AAAAAAAAAACxzJzScBO5P9Uxr+Wf85O/AAAAAAAAAAA=IAAAAAAAAAAAAAAAAAAAAAIAAAAAAAAAAgAAAAAAAAABAAAAAAAAAA==EAAAAAAAAAACAAAAAAAAAAQAAAAAAAAAAgAAAAAAAAADAw==
+  </AppendedData>
+</VTKFile>
diff --git a/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_STRIP10.vtu b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_STRIP10.vtu
new file mode 100644
index 0000000000000000000000000000000000000000..88269f954cf2c6923f81ff3345d3cfcaccc72e6c
--- /dev/null
+++ b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_STRIP10.vtu
@@ -0,0 +1,24 @@
+<?xml version="1.0"?>
+<VTKFile type="UnstructuredGrid" version="1.0" byte_order="LittleEndian" header_type="UInt64">
+  <UnstructuredGrid>
+    <Piece NumberOfPoints="3"                    NumberOfCells="2"                   >
+      <PointData>
+        <DataArray type="UInt64" Name="bulk_node_ids" format="appended" RangeMin="26"                   RangeMax="28"                   offset="0"                   />
+      </PointData>
+      <CellData>
+        <DataArray type="UInt64" Name="bulk_element_ids" format="appended" RangeMin="919"                  RangeMax="940"                  offset="44"                  />
+      </CellData>
+      <Points>
+        <DataArray type="Float64" Name="Points" NumberOfComponents="3" format="appended" RangeMin="0.099871902349"       RangeMax="0.1"                  offset="76"                  />
+      </Points>
+      <Cells>
+        <DataArray type="Int64" Name="connectivity" format="appended" RangeMin=""                     RangeMax=""                     offset="184"                 />
+        <DataArray type="Int64" Name="offsets" format="appended" RangeMin=""                     RangeMax=""                     offset="240"                 />
+        <DataArray type="UInt8" Name="types" format="appended" RangeMin=""                     RangeMax=""                     offset="272"                 />
+      </Cells>
+    </Piece>
+  </UnstructuredGrid>
+  <AppendedData encoding="base64">
+   _GAAAAAAAAAAaAAAAAAAAABsAAAAAAAAAHAAAAAAAAAA=EAAAAAAAAACsAwAAAAAAAJcDAAAAAAAASAAAAAAAAAAlquEs6Im0v/3UjnwWkK4/AAAAAAAAAADQJ0SZI0K1v3URVmKkaKw/AAAAAAAAAABzpaYFX/q1v/tNHUgyQao/AAAAAAAAAAA=IAAAAAAAAAACAAAAAAAAAAEAAAAAAAAAAQAAAAAAAAAAAAAAAAAAAA==EAAAAAAAAAACAAAAAAAAAAQAAAAAAAAAAgAAAAAAAAADAw==
+  </AppendedData>
+</VTKFile>
diff --git a/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_STRIP11.vtu b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_STRIP11.vtu
new file mode 100644
index 0000000000000000000000000000000000000000..a179a54252122428fe0627970867cb3a481c35a5
--- /dev/null
+++ b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_STRIP11.vtu
@@ -0,0 +1,24 @@
+<?xml version="1.0"?>
+<VTKFile type="UnstructuredGrid" version="1.0" byte_order="LittleEndian" header_type="UInt64">
+  <UnstructuredGrid>
+    <Piece NumberOfPoints="3"                    NumberOfCells="2"                   >
+      <PointData>
+        <DataArray type="UInt64" Name="bulk_node_ids" format="appended" RangeMin="22"                   RangeMax="24"                   offset="0"                   />
+      </PointData>
+      <CellData>
+        <DataArray type="UInt64" Name="bulk_element_ids" format="appended" RangeMin="922"                  RangeMax="946"                  offset="44"                  />
+      </CellData>
+      <Points>
+        <DataArray type="Float64" Name="Points" NumberOfComponents="3" format="appended" RangeMin="0.099871902349"       RangeMax="0.1"                  offset="76"                  />
+      </Points>
+      <Cells>
+        <DataArray type="Int64" Name="connectivity" format="appended" RangeMin=""                     RangeMax=""                     offset="184"                 />
+        <DataArray type="Int64" Name="offsets" format="appended" RangeMin=""                     RangeMax=""                     offset="240"                 />
+        <DataArray type="UInt8" Name="types" format="appended" RangeMin=""                     RangeMax=""                     offset="272"                 />
+      </Cells>
+    </Piece>
+  </UnstructuredGrid>
+  <AppendedData encoding="base64">
+   _GAAAAAAAAAAWAAAAAAAAABcAAAAAAAAAGAAAAAAAAAA=EAAAAAAAAACyAwAAAAAAAJoDAAAAAAAASAAAAAAAAAD7TR1IMkGqv3OlpgVf+rU/AAAAAAAAAACDEVZipGisv8knRJkjQrU/AAAAAAAAAAD91I58FpCuvyWq4SzoibQ/AAAAAAAAAAA=IAAAAAAAAAACAAAAAAAAAAEAAAAAAAAAAQAAAAAAAAAAAAAAAAAAAA==EAAAAAAAAAACAAAAAAAAAAQAAAAAAAAAAgAAAAAAAAADAw==
+  </AppendedData>
+</VTKFile>
diff --git a/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_STRIP12.vtu b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_STRIP12.vtu
new file mode 100644
index 0000000000000000000000000000000000000000..a1a96cc5d8a449b7f6cb2f57f4542fa831f422dc
--- /dev/null
+++ b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_STRIP12.vtu
@@ -0,0 +1,24 @@
+<?xml version="1.0"?>
+<VTKFile type="UnstructuredGrid" version="1.0" byte_order="LittleEndian" header_type="UInt64">
+  <UnstructuredGrid>
+    <Piece NumberOfPoints="3"                    NumberOfCells="2"                   >
+      <PointData>
+        <DataArray type="UInt64" Name="bulk_node_ids" format="appended" RangeMin="18"                   RangeMax="20"                   offset="0"                   />
+      </PointData>
+      <CellData>
+        <DataArray type="UInt64" Name="bulk_element_ids" format="appended" RangeMin="929"                  RangeMax="939"                  offset="44"                  />
+      </CellData>
+      <Points>
+        <DataArray type="Float64" Name="Points" NumberOfComponents="3" format="appended" RangeMin="0.099871902349"       RangeMax="0.1"                  offset="76"                  />
+      </Points>
+      <Cells>
+        <DataArray type="Int64" Name="connectivity" format="appended" RangeMin=""                     RangeMax=""                     offset="184"                 />
+        <DataArray type="Int64" Name="offsets" format="appended" RangeMin=""                     RangeMax=""                     offset="240"                 />
+        <DataArray type="UInt8" Name="types" format="appended" RangeMin=""                     RangeMax=""                     offset="272"                 />
+      </Cells>
+    </Piece>
+  </UnstructuredGrid>
+  <AppendedData encoding="base64">
+   _GAAAAAAAAAASAAAAAAAAABMAAAAAAAAAFAAAAAAAAAA=EAAAAAAAAACrAwAAAAAAAKEDAAAAAAAASAAAAAAAAABlBObVWb2Nv8mQIWoiVLk/AAAAAAAAAADVMa/ln/OTv7HMnNJwE7k/AAAAAAAAAABbYWvgkgiZv6EIGDu/0rg/AAAAAAAAAAA=IAAAAAAAAAACAAAAAAAAAAEAAAAAAAAAAQAAAAAAAAAAAAAAAAAAAA==EAAAAAAAAAACAAAAAAAAAAQAAAAAAAAAAgAAAAAAAAADAw==
+  </AppendedData>
+</VTKFile>
diff --git a/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_STRIP13.vtu b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_STRIP13.vtu
new file mode 100644
index 0000000000000000000000000000000000000000..ec4598b7174593e26a78a4a5c682820225edcf2f
--- /dev/null
+++ b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_STRIP13.vtu
@@ -0,0 +1,24 @@
+<?xml version="1.0"?>
+<VTKFile type="UnstructuredGrid" version="1.0" byte_order="LittleEndian" header_type="UInt64">
+  <UnstructuredGrid>
+    <Piece NumberOfPoints="3"                    NumberOfCells="2"                   >
+      <PointData>
+        <DataArray type="UInt64" Name="bulk_node_ids" format="appended" RangeMin="14"                   RangeMax="16"                   offset="0"                   />
+      </PointData>
+      <CellData>
+        <DataArray type="UInt64" Name="bulk_element_ids" format="appended" RangeMin="925"                  RangeMax="933"                  offset="44"                  />
+      </CellData>
+      <Points>
+        <DataArray type="Float64" Name="Points" NumberOfComponents="3" format="appended" RangeMin="0.099871902349"       RangeMax="0.1"                  offset="76"                  />
+      </Points>
+      <Cells>
+        <DataArray type="Int64" Name="connectivity" format="appended" RangeMin=""                     RangeMax=""                     offset="184"                 />
+        <DataArray type="Int64" Name="offsets" format="appended" RangeMin=""                     RangeMax=""                     offset="240"                 />
+        <DataArray type="UInt8" Name="types" format="appended" RangeMin=""                     RangeMax=""                     offset="272"                 />
+      </Cells>
+    </Piece>
+  </UnstructuredGrid>
+  <AppendedData encoding="base64">
+   _GAAAAAAAAAAOAAAAAAAAAA8AAAAAAAAAEAAAAAAAAAA=EAAAAAAAAAClAwAAAAAAAJ0DAAAAAAAASAAAAAAAAABbYWvgkgiZP6EIGDu/0rg/AAAAAAAAAADVMa/ln/OTP7HMnNJwE7k/AAAAAAAAAABlBObVWb2NP8mQIWoiVLk/AAAAAAAAAAA=IAAAAAAAAAACAAAAAAAAAAEAAAAAAAAAAQAAAAAAAAAAAAAAAAAAAA==EAAAAAAAAAACAAAAAAAAAAQAAAAAAAAAAgAAAAAAAAADAw==
+  </AppendedData>
+</VTKFile>
diff --git a/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_STRIP14.vtu b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_STRIP14.vtu
new file mode 100644
index 0000000000000000000000000000000000000000..9deb56e2b4e4f87d3a10b7ea00a483778393f57f
--- /dev/null
+++ b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_STRIP14.vtu
@@ -0,0 +1,24 @@
+<?xml version="1.0"?>
+<VTKFile type="UnstructuredGrid" version="1.0" byte_order="LittleEndian" header_type="UInt64">
+  <UnstructuredGrid>
+    <Piece NumberOfPoints="3"                    NumberOfCells="2"                   >
+      <PointData>
+        <DataArray type="UInt64" Name="bulk_node_ids" format="appended" RangeMin="10"                   RangeMax="12"                   offset="0"                   />
+      </PointData>
+      <CellData>
+        <DataArray type="UInt64" Name="bulk_element_ids" format="appended" RangeMin="917"                  RangeMax="943"                  offset="44"                  />
+      </CellData>
+      <Points>
+        <DataArray type="Float64" Name="Points" NumberOfComponents="3" format="appended" RangeMin="0.099871902349"       RangeMax="0.1"                  offset="76"                  />
+      </Points>
+      <Cells>
+        <DataArray type="Int64" Name="connectivity" format="appended" RangeMin=""                     RangeMax=""                     offset="184"                 />
+        <DataArray type="Int64" Name="offsets" format="appended" RangeMin=""                     RangeMax=""                     offset="240"                 />
+        <DataArray type="UInt8" Name="types" format="appended" RangeMin=""                     RangeMax=""                     offset="272"                 />
+      </Cells>
+    </Piece>
+  </UnstructuredGrid>
+  <AppendedData encoding="base64">
+   _GAAAAAAAAAAKAAAAAAAAAAsAAAAAAAAADAAAAAAAAAA=EAAAAAAAAACvAwAAAAAAAJUDAAAAAAAASAAAAAAAAAD91I58FpCuPyWq4SzoibQ/AAAAAAAAAACDEVZipGisP8knRJkjQrU/AAAAAAAAAAD7TR1IMkGqP3OlpgVf+rU/AAAAAAAAAAA=IAAAAAAAAAACAAAAAAAAAAEAAAAAAAAAAQAAAAAAAAAAAAAAAAAAAA==EAAAAAAAAAACAAAAAAAAAAQAAAAAAAAAAgAAAAAAAAADAw==
+  </AppendedData>
+</VTKFile>
diff --git a/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_STRIP15.vtu b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_STRIP15.vtu
new file mode 100644
index 0000000000000000000000000000000000000000..ddfe950db8521bbcc7785cffa4c7d1c798190d3f
--- /dev/null
+++ b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_STRIP15.vtu
@@ -0,0 +1,24 @@
+<?xml version="1.0"?>
+<VTKFile type="UnstructuredGrid" version="1.0" byte_order="LittleEndian" header_type="UInt64">
+  <UnstructuredGrid>
+    <Piece NumberOfPoints="3"                    NumberOfCells="2"                   >
+      <PointData>
+        <DataArray type="UInt64" Name="bulk_node_ids" format="appended" RangeMin="6"                    RangeMax="8"                    offset="0"                   />
+      </PointData>
+      <CellData>
+        <DataArray type="UInt64" Name="bulk_element_ids" format="appended" RangeMin="921"                  RangeMax="945"                  offset="44"                  />
+      </CellData>
+      <Points>
+        <DataArray type="Float64" Name="Points" NumberOfComponents="3" format="appended" RangeMin="0.099871902349"       RangeMax="0.1"                  offset="76"                  />
+      </Points>
+      <Cells>
+        <DataArray type="Int64" Name="connectivity" format="appended" RangeMin=""                     RangeMax=""                     offset="184"                 />
+        <DataArray type="Int64" Name="offsets" format="appended" RangeMin=""                     RangeMax=""                     offset="240"                 />
+        <DataArray type="UInt8" Name="types" format="appended" RangeMin=""                     RangeMax=""                     offset="272"                 />
+      </Cells>
+    </Piece>
+  </UnstructuredGrid>
+  <AppendedData encoding="base64">
+   _GAAAAAAAAAAGAAAAAAAAAAcAAAAAAAAACAAAAAAAAAA=EAAAAAAAAACxAwAAAAAAAJkDAAAAAAAASAAAAAAAAABzpaYFX/q1P/tNHUgyQao/AAAAAAAAAADJJ0SZI0K1P4MRVmKkaKw/AAAAAAAAAAAlquEs6Im0P/3UjnwWkK4/AAAAAAAAAAA=IAAAAAAAAAACAAAAAAAAAAEAAAAAAAAAAQAAAAAAAAAAAAAAAAAAAA==EAAAAAAAAAACAAAAAAAAAAQAAAAAAAAAAgAAAAAAAAADAw==
+  </AppendedData>
+</VTKFile>
diff --git a/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_STRIP16.vtu b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_STRIP16.vtu
new file mode 100644
index 0000000000000000000000000000000000000000..34e6e138e5327f1c684aa0e0bedbd5d7966087fb
--- /dev/null
+++ b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_STRIP16.vtu
@@ -0,0 +1,24 @@
+<?xml version="1.0"?>
+<VTKFile type="UnstructuredGrid" version="1.0" byte_order="LittleEndian" header_type="UInt64">
+  <UnstructuredGrid>
+    <Piece NumberOfPoints="3"                    NumberOfCells="2"                   >
+      <PointData>
+        <DataArray type="UInt64" Name="bulk_node_ids" format="appended" RangeMin="2"                    RangeMax="4"                    offset="0"                   />
+      </PointData>
+      <CellData>
+        <DataArray type="UInt64" Name="bulk_element_ids" format="appended" RangeMin="928"                  RangeMax="937"                  offset="44"                  />
+      </CellData>
+      <Points>
+        <DataArray type="Float64" Name="Points" NumberOfComponents="3" format="appended" RangeMin="0.099871902349"       RangeMax="0.1"                  offset="76"                  />
+      </Points>
+      <Cells>
+        <DataArray type="Int64" Name="connectivity" format="appended" RangeMin=""                     RangeMax=""                     offset="184"                 />
+        <DataArray type="Int64" Name="offsets" format="appended" RangeMin=""                     RangeMax=""                     offset="240"                 />
+        <DataArray type="UInt8" Name="types" format="appended" RangeMin=""                     RangeMax=""                     offset="272"                 />
+      </Cells>
+    </Piece>
+  </UnstructuredGrid>
+  <AppendedData encoding="base64">
+   _GAAAAAAAAAACAAAAAAAAAAMAAAAAAAAABAAAAAAAAAA=EAAAAAAAAACpAwAAAAAAAKADAAAAAAAASAAAAAAAAADJkCFqIlS5P2UE5tVZvY0/AAAAAAAAAACxzJzScBO5P9Uxr+Wf85M/AAAAAAAAAAChCBg7v9K4P3hha+CSCJk/AAAAAAAAAAA=IAAAAAAAAAACAAAAAAAAAAEAAAAAAAAAAQAAAAAAAAAAAAAAAAAAAA==EAAAAAAAAAACAAAAAAAAAAQAAAAAAAAAAgAAAAAAAAADAw==
+  </AppendedData>
+</VTKFile>
diff --git a/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_STRIP2.vtu b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_STRIP2.vtu
new file mode 100644
index 0000000000000000000000000000000000000000..2f2671096a6ee3fe118dfe517777b41266f84d63
--- /dev/null
+++ b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_STRIP2.vtu
@@ -0,0 +1,24 @@
+<?xml version="1.0"?>
+<VTKFile type="UnstructuredGrid" version="1.0" byte_order="LittleEndian" header_type="UInt64">
+  <UnstructuredGrid>
+    <Piece NumberOfPoints="3"                    NumberOfCells="2"                   >
+      <PointData>
+        <DataArray type="UInt64" Name="bulk_node_ids" format="appended" RangeMin="58"                   RangeMax="60"                   offset="0"                   />
+      </PointData>
+      <CellData>
+        <DataArray type="UInt64" Name="bulk_element_ids" format="appended" RangeMin="920"                  RangeMax="947"                  offset="44"                  />
+      </CellData>
+      <Points>
+        <DataArray type="Float64" Name="Points" NumberOfComponents="3" format="appended" RangeMin="0.099871902349"       RangeMax="0.1"                  offset="76"                  />
+      </Points>
+      <Cells>
+        <DataArray type="Int64" Name="connectivity" format="appended" RangeMin=""                     RangeMax=""                     offset="184"                 />
+        <DataArray type="Int64" Name="offsets" format="appended" RangeMin=""                     RangeMax=""                     offset="240"                 />
+        <DataArray type="UInt8" Name="types" format="appended" RangeMin=""                     RangeMax=""                     offset="272"                 />
+      </Cells>
+    </Piece>
+  </UnstructuredGrid>
+  <AppendedData encoding="base64">
+   _GAAAAAAAAAA6AAAAAAAAADsAAAAAAAAAPAAAAAAAAAA=EAAAAAAAAACYAwAAAAAAALMDAAAAAAAASAAAAAAAAAAtquEs6Im0P/3UjnwWkK6/AAAAAAAAAADQJ0SZI0K1P3URVmKkaKy/AAAAAAAAAABzpaYFX/q1P+xNHUgyQaq/AAAAAAAAAAA=IAAAAAAAAAACAAAAAAAAAAEAAAAAAAAAAQAAAAAAAAAAAAAAAAAAAA==EAAAAAAAAAACAAAAAAAAAAQAAAAAAAAAAgAAAAAAAAADAw==
+  </AppendedData>
+</VTKFile>
diff --git a/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_STRIP3.vtu b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_STRIP3.vtu
new file mode 100644
index 0000000000000000000000000000000000000000..3976aa0fd8ed43a431df1b62c675a150f9271bfb
--- /dev/null
+++ b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_STRIP3.vtu
@@ -0,0 +1,24 @@
+<?xml version="1.0"?>
+<VTKFile type="UnstructuredGrid" version="1.0" byte_order="LittleEndian" header_type="UInt64">
+  <UnstructuredGrid>
+    <Piece NumberOfPoints="3"                    NumberOfCells="2"                   >
+      <PointData>
+        <DataArray type="UInt64" Name="bulk_node_ids" format="appended" RangeMin="54"                   RangeMax="56"                   offset="0"                   />
+      </PointData>
+      <CellData>
+        <DataArray type="UInt64" Name="bulk_element_ids" format="appended" RangeMin="918"                  RangeMax="941"                  offset="44"                  />
+      </CellData>
+      <Points>
+        <DataArray type="Float64" Name="Points" NumberOfComponents="3" format="appended" RangeMin="0.099871902349"       RangeMax="0.1"                  offset="76"                  />
+      </Points>
+      <Cells>
+        <DataArray type="Int64" Name="connectivity" format="appended" RangeMin=""                     RangeMax=""                     offset="184"                 />
+        <DataArray type="Int64" Name="offsets" format="appended" RangeMin=""                     RangeMax=""                     offset="240"                 />
+        <DataArray type="UInt8" Name="types" format="appended" RangeMin=""                     RangeMax=""                     offset="272"                 />
+      </Cells>
+    </Piece>
+  </UnstructuredGrid>
+  <AppendedData encoding="base64">
+   _GAAAAAAAAAA2AAAAAAAAADcAAAAAAAAAOAAAAAAAAAA=EAAAAAAAAACWAwAAAAAAAK0DAAAAAAAASAAAAAAAAAD7TR1IMkGqP3OlpgVf+rW/AAAAAAAAAACDEVZipGisP8knRJkjQrW/AAAAAAAAAAD91I58FpCuPyWq4SzoibS/AAAAAAAAAAA=IAAAAAAAAAACAAAAAAAAAAEAAAAAAAAAAQAAAAAAAAAAAAAAAAAAAA==EAAAAAAAAAACAAAAAAAAAAQAAAAAAAAAAgAAAAAAAAADAw==
+  </AppendedData>
+</VTKFile>
diff --git a/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_STRIP4.vtu b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_STRIP4.vtu
new file mode 100644
index 0000000000000000000000000000000000000000..a90c80ecbe40ffcbdfb5de1b0ace3b4f69b5f30a
--- /dev/null
+++ b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_STRIP4.vtu
@@ -0,0 +1,24 @@
+<?xml version="1.0"?>
+<VTKFile type="UnstructuredGrid" version="1.0" byte_order="LittleEndian" header_type="UInt64">
+  <UnstructuredGrid>
+    <Piece NumberOfPoints="3"                    NumberOfCells="2"                   >
+      <PointData>
+        <DataArray type="UInt64" Name="bulk_node_ids" format="appended" RangeMin="50"                   RangeMax="52"                   offset="0"                   />
+      </PointData>
+      <CellData>
+        <DataArray type="UInt64" Name="bulk_element_ids" format="appended" RangeMin="924"                  RangeMax="932"                  offset="44"                  />
+      </CellData>
+      <Points>
+        <DataArray type="Float64" Name="Points" NumberOfComponents="3" format="appended" RangeMin="0.099871902349"       RangeMax="0.1"                  offset="76"                  />
+      </Points>
+      <Cells>
+        <DataArray type="Int64" Name="connectivity" format="appended" RangeMin=""                     RangeMax=""                     offset="184"                 />
+        <DataArray type="Int64" Name="offsets" format="appended" RangeMin=""                     RangeMax=""                     offset="240"                 />
+        <DataArray type="UInt8" Name="types" format="appended" RangeMin=""                     RangeMax=""                     offset="272"                 />
+      </Cells>
+    </Piece>
+  </UnstructuredGrid>
+  <AppendedData encoding="base64">
+   _GAAAAAAAAAAyAAAAAAAAADMAAAAAAAAANAAAAAAAAAA=EAAAAAAAAACcAwAAAAAAAKQDAAAAAAAASAAAAAAAAABlBObVWb2NP8mQIWoiVLm/AAAAAAAAAADVMa/ln/OTP7HMnNJwE7m/AAAAAAAAAAB4YWvgkgiZP6EIGDu/0ri/AAAAAAAAAAA=IAAAAAAAAAACAAAAAAAAAAEAAAAAAAAAAQAAAAAAAAAAAAAAAAAAAA==EAAAAAAAAAACAAAAAAAAAAQAAAAAAAAAAgAAAAAAAAADAw==
+  </AppendedData>
+</VTKFile>
diff --git a/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_STRIP5.vtu b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_STRIP5.vtu
new file mode 100644
index 0000000000000000000000000000000000000000..599c18ac7a7e87f9b633cbe04e37f6a30b7a1d91
--- /dev/null
+++ b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_STRIP5.vtu
@@ -0,0 +1,24 @@
+<?xml version="1.0"?>
+<VTKFile type="UnstructuredGrid" version="1.0" byte_order="LittleEndian" header_type="UInt64">
+  <UnstructuredGrid>
+    <Piece NumberOfPoints="3"                    NumberOfCells="2"                   >
+      <PointData>
+        <DataArray type="UInt64" Name="bulk_node_ids" format="appended" RangeMin="46"                   RangeMax="48"                   offset="0"                   />
+      </PointData>
+      <CellData>
+        <DataArray type="UInt64" Name="bulk_element_ids" format="appended" RangeMin="927"                  RangeMax="935"                  offset="44"                  />
+      </CellData>
+      <Points>
+        <DataArray type="Float64" Name="Points" NumberOfComponents="3" format="appended" RangeMin="0.099871902349"       RangeMax="0.1"                  offset="76"                  />
+      </Points>
+      <Cells>
+        <DataArray type="Int64" Name="connectivity" format="appended" RangeMin=""                     RangeMax=""                     offset="184"                 />
+        <DataArray type="Int64" Name="offsets" format="appended" RangeMin=""                     RangeMax=""                     offset="240"                 />
+        <DataArray type="UInt8" Name="types" format="appended" RangeMin=""                     RangeMax=""                     offset="272"                 />
+      </Cells>
+    </Piece>
+  </UnstructuredGrid>
+  <AppendedData encoding="base64">
+   _GAAAAAAAAAAuAAAAAAAAAC8AAAAAAAAAMAAAAAAAAAA=EAAAAAAAAACnAwAAAAAAAJ8DAAAAAAAASAAAAAAAAABbYWvgkgiZv6EIGDu/0ri/AAAAAAAAAADVMa/ln/OTv7HMnNJwE7m/AAAAAAAAAABlBObVWb2Nv8mQIWoiVLm/AAAAAAAAAAA=IAAAAAAAAAACAAAAAAAAAAEAAAAAAAAAAQAAAAAAAAAAAAAAAAAAAA==EAAAAAAAAAACAAAAAAAAAAQAAAAAAAAAAgAAAAAAAAADAw==
+  </AppendedData>
+</VTKFile>
diff --git a/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_STRIP6.vtu b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_STRIP6.vtu
new file mode 100644
index 0000000000000000000000000000000000000000..bc62c0b30abf9193f822fd713d44a8ce8cbd8d16
--- /dev/null
+++ b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_STRIP6.vtu
@@ -0,0 +1,24 @@
+<?xml version="1.0"?>
+<VTKFile type="UnstructuredGrid" version="1.0" byte_order="LittleEndian" header_type="UInt64">
+  <UnstructuredGrid>
+    <Piece NumberOfPoints="3"                    NumberOfCells="2"                   >
+      <PointData>
+        <DataArray type="UInt64" Name="bulk_node_ids" format="appended" RangeMin="42"                   RangeMax="44"                   offset="0"                   />
+      </PointData>
+      <CellData>
+        <DataArray type="UInt64" Name="bulk_element_ids" format="appended" RangeMin="916"                  RangeMax="942"                  offset="44"                  />
+      </CellData>
+      <Points>
+        <DataArray type="Float64" Name="Points" NumberOfComponents="3" format="appended" RangeMin="0.099871902349"       RangeMax="0.1"                  offset="76"                  />
+      </Points>
+      <Cells>
+        <DataArray type="Int64" Name="connectivity" format="appended" RangeMin=""                     RangeMax=""                     offset="184"                 />
+        <DataArray type="Int64" Name="offsets" format="appended" RangeMin=""                     RangeMax=""                     offset="240"                 />
+        <DataArray type="UInt8" Name="types" format="appended" RangeMin=""                     RangeMax=""                     offset="272"                 />
+      </Cells>
+    </Piece>
+  </UnstructuredGrid>
+  <AppendedData encoding="base64">
+   _GAAAAAAAAAAqAAAAAAAAACsAAAAAAAAALAAAAAAAAAA=EAAAAAAAAACuAwAAAAAAAJQDAAAAAAAASAAAAAAAAAAL1Y58FpCuvyWq4SzoibS/AAAAAAAAAACDEVZipGisv8knRJkjQrW/AAAAAAAAAAD7TR1IMkGqv3OlpgVf+rW/AAAAAAAAAAA=IAAAAAAAAAACAAAAAAAAAAEAAAAAAAAAAQAAAAAAAAAAAAAAAAAAAA==EAAAAAAAAAACAAAAAAAAAAQAAAAAAAAAAgAAAAAAAAADAw==
+  </AppendedData>
+</VTKFile>
diff --git a/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_STRIP7.vtu b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_STRIP7.vtu
new file mode 100644
index 0000000000000000000000000000000000000000..b68556591044e9480d3608db9e8862e6989de41b
--- /dev/null
+++ b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_STRIP7.vtu
@@ -0,0 +1,24 @@
+<?xml version="1.0"?>
+<VTKFile type="UnstructuredGrid" version="1.0" byte_order="LittleEndian" header_type="UInt64">
+  <UnstructuredGrid>
+    <Piece NumberOfPoints="3"                    NumberOfCells="2"                   >
+      <PointData>
+        <DataArray type="UInt64" Name="bulk_node_ids" format="appended" RangeMin="38"                   RangeMax="40"                   offset="0"                   />
+      </PointData>
+      <CellData>
+        <DataArray type="UInt64" Name="bulk_element_ids" format="appended" RangeMin="923"                  RangeMax="944"                  offset="44"                  />
+      </CellData>
+      <Points>
+        <DataArray type="Float64" Name="Points" NumberOfComponents="3" format="appended" RangeMin="0.099871902349"       RangeMax="0.1"                  offset="76"                  />
+      </Points>
+      <Cells>
+        <DataArray type="Int64" Name="connectivity" format="appended" RangeMin=""                     RangeMax=""                     offset="184"                 />
+        <DataArray type="Int64" Name="offsets" format="appended" RangeMin=""                     RangeMax=""                     offset="240"                 />
+        <DataArray type="UInt8" Name="types" format="appended" RangeMin=""                     RangeMax=""                     offset="272"                 />
+      </Cells>
+    </Piece>
+  </UnstructuredGrid>
+  <AppendedData encoding="base64">
+   _GAAAAAAAAAAmAAAAAAAAACcAAAAAAAAAKAAAAAAAAAA=EAAAAAAAAACwAwAAAAAAAJsDAAAAAAAASAAAAAAAAABzpaYFX/q1v/tNHUgyQaq/AAAAAAAAAADJJ0SZI0K1v4MRVmKkaKy/AAAAAAAAAAAlquEs6Im0v/3UjnwWkK6/AAAAAAAAAAA=IAAAAAAAAAACAAAAAAAAAAEAAAAAAAAAAQAAAAAAAAAAAAAAAAAAAA==EAAAAAAAAAACAAAAAAAAAAQAAAAAAAAAAgAAAAAAAAADAw==
+  </AppendedData>
+</VTKFile>
diff --git a/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_STRIP8.vtu b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_STRIP8.vtu
new file mode 100644
index 0000000000000000000000000000000000000000..2578a13d3661a70da5cd894a29894d2c011bb45f
--- /dev/null
+++ b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_STRIP8.vtu
@@ -0,0 +1,24 @@
+<?xml version="1.0"?>
+<VTKFile type="UnstructuredGrid" version="1.0" byte_order="LittleEndian" header_type="UInt64">
+  <UnstructuredGrid>
+    <Piece NumberOfPoints="3"                    NumberOfCells="2"                   >
+      <PointData>
+        <DataArray type="UInt64" Name="bulk_node_ids" format="appended" RangeMin="34"                   RangeMax="36"                   offset="0"                   />
+      </PointData>
+      <CellData>
+        <DataArray type="UInt64" Name="bulk_element_ids" format="appended" RangeMin="930"                  RangeMax="936"                  offset="44"                  />
+      </CellData>
+      <Points>
+        <DataArray type="Float64" Name="Points" NumberOfComponents="3" format="appended" RangeMin="0.099871902349"       RangeMax="0.1"                  offset="76"                  />
+      </Points>
+      <Cells>
+        <DataArray type="Int64" Name="connectivity" format="appended" RangeMin=""                     RangeMax=""                     offset="184"                 />
+        <DataArray type="Int64" Name="offsets" format="appended" RangeMin=""                     RangeMax=""                     offset="240"                 />
+        <DataArray type="UInt8" Name="types" format="appended" RangeMin=""                     RangeMax=""                     offset="272"                 />
+      </Cells>
+    </Piece>
+  </UnstructuredGrid>
+  <AppendedData encoding="base64">
+   _GAAAAAAAAAAiAAAAAAAAACMAAAAAAAAAJAAAAAAAAAA=EAAAAAAAAACoAwAAAAAAAKIDAAAAAAAASAAAAAAAAADJkCFqIlS5v2UE5tVZvY2/AAAAAAAAAACxzJzScBO5v9Uxr+Wf85O/AAAAAAAAAAChCBg7v9K4v3hha+CSCJm/AAAAAAAAAAA=IAAAAAAAAAACAAAAAAAAAAEAAAAAAAAAAQAAAAAAAAAAAAAAAAAAAA==EAAAAAAAAAACAAAAAAAAAAQAAAAAAAAAAgAAAAAAAAADAw==
+  </AppendedData>
+</VTKFile>
diff --git a/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_STRIP9.vtu b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_STRIP9.vtu
new file mode 100644
index 0000000000000000000000000000000000000000..289feb3c2037655bfcae3813469275c3cd252f47
--- /dev/null
+++ b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_STRIP9.vtu
@@ -0,0 +1,24 @@
+<?xml version="1.0"?>
+<VTKFile type="UnstructuredGrid" version="1.0" byte_order="LittleEndian" header_type="UInt64">
+  <UnstructuredGrid>
+    <Piece NumberOfPoints="3"                    NumberOfCells="2"                   >
+      <PointData>
+        <DataArray type="UInt64" Name="bulk_node_ids" format="appended" RangeMin="30"                   RangeMax="32"                   offset="0"                   />
+      </PointData>
+      <CellData>
+        <DataArray type="UInt64" Name="bulk_element_ids" format="appended" RangeMin="926"                  RangeMax="934"                  offset="44"                  />
+      </CellData>
+      <Points>
+        <DataArray type="Float64" Name="Points" NumberOfComponents="3" format="appended" RangeMin="0.099871902349"       RangeMax="0.1"                  offset="76"                  />
+      </Points>
+      <Cells>
+        <DataArray type="Int64" Name="connectivity" format="appended" RangeMin=""                     RangeMax=""                     offset="184"                 />
+        <DataArray type="Int64" Name="offsets" format="appended" RangeMin=""                     RangeMax=""                     offset="240"                 />
+        <DataArray type="UInt8" Name="types" format="appended" RangeMin=""                     RangeMax=""                     offset="272"                 />
+      </Cells>
+    </Piece>
+  </UnstructuredGrid>
+  <AppendedData encoding="base64">
+   _GAAAAAAAAAAeAAAAAAAAAB8AAAAAAAAAIAAAAAAAAAA=EAAAAAAAAACmAwAAAAAAAJ4DAAAAAAAASAAAAAAAAAChCBg7v9K4v1tha+CSCJk/AAAAAAAAAACxzJzScBO5v9Uxr+Wf85M/AAAAAAAAAADJkCFqIlS5v2UE5tVZvY0/AAAAAAAAAAA=IAAAAAAAAAACAAAAAAAAAAEAAAAAAAAAAQAAAAAAAAAAAAAAAAAAAA==EAAAAAAAAAACAAAAAAAAAAQAAAAAAAAAAgAAAAAAAAADAw==
+  </AppendedData>
+</VTKFile>
diff --git a/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_injection_position.vtu b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_injection_position.vtu
new file mode 100644
index 0000000000000000000000000000000000000000..a297f6a24ed73d6a4ea9a3e1d46cd4694e618486
--- /dev/null
+++ b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_injection_position.vtu
@@ -0,0 +1,24 @@
+<?xml version="1.0"?>
+<VTKFile type="UnstructuredGrid" version="1.0" byte_order="LittleEndian" header_type="UInt64">
+  <UnstructuredGrid>
+    <Piece NumberOfPoints="1"                    NumberOfCells="1"                   >
+      <PointData>
+        <DataArray type="UInt64" Name="bulk_node_ids" format="appended" RangeMin="64"                   RangeMax="64"                   offset="0"                   />
+      </PointData>
+      <CellData>
+        <DataArray type="UInt64" Name="bulk_element_ids" format="appended" RangeMin="64"                   RangeMax="64"                   offset="24"                  />
+      </CellData>
+      <Points>
+        <DataArray type="Float64" Name="Points" NumberOfComponents="3" format="appended" RangeMin="0"                    RangeMax="0"                    offset="48"                  />
+      </Points>
+      <Cells>
+        <DataArray type="Int64" Name="connectivity" format="appended" RangeMin=""                     RangeMax=""                     offset="92"                  />
+        <DataArray type="Int64" Name="offsets" format="appended" RangeMin=""                     RangeMax=""                     offset="116"                 />
+        <DataArray type="UInt8" Name="types" format="appended" RangeMin=""                     RangeMax=""                     offset="140"                 />
+      </Cells>
+    </Piece>
+  </UnstructuredGrid>
+  <AppendedData encoding="base64">
+   _CAAAAAAAAABAAAAAAAAAAA==CAAAAAAAAABAAAAAAAAAAA==GAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA=CAAAAAAAAAAAAAAAAAAAAA==CAAAAAAAAAABAAAAAAAAAA==AQAAAAAAAAAB
+  </AppendedData>
+</VTKFile>
diff --git a/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_outflow_position.vtu b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_outflow_position.vtu
new file mode 100644
index 0000000000000000000000000000000000000000..8009047edbd34ec52b2dd5227033fbc40520105d
--- /dev/null
+++ b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_outflow_position.vtu
@@ -0,0 +1,24 @@
+<?xml version="1.0"?>
+<VTKFile type="UnstructuredGrid" version="1.0" byte_order="LittleEndian" header_type="UInt64">
+  <UnstructuredGrid>
+    <Piece NumberOfPoints="1"                    NumberOfCells="1"                   >
+      <PointData>
+        <DataArray type="UInt64" Name="bulk_node_ids" format="appended" RangeMin="77"                   RangeMax="77"                   offset="0"                   />
+      </PointData>
+      <CellData>
+        <DataArray type="UInt64" Name="bulk_element_ids" format="appended" RangeMin="77"                   RangeMax="77"                   offset="24"                  />
+      </CellData>
+      <Points>
+        <DataArray type="Float64" Name="Points" NumberOfComponents="3" format="appended" RangeMin="0.04"                 RangeMax="0.04"                 offset="48"                  />
+      </Points>
+      <Cells>
+        <DataArray type="Int64" Name="connectivity" format="appended" RangeMin=""                     RangeMax=""                     offset="92"                  />
+        <DataArray type="Int64" Name="offsets" format="appended" RangeMin=""                     RangeMax=""                     offset="116"                 />
+        <DataArray type="UInt8" Name="types" format="appended" RangeMin=""                     RangeMax=""                     offset="140"                 />
+      </Cells>
+    </Piece>
+  </UnstructuredGrid>
+  <AppendedData encoding="base64">
+   _CAAAAAAAAABNAAAAAAAAAA==CAAAAAAAAABNAAAAAAAAAA==GAAAAAAAAAB7FK5H4XqkPwAAAAAAAAAAAAAAAAAAAAA=CAAAAAAAAAAAAAAAAAAAAA==CAAAAAAAAAABAAAAAAAAAA==AQAAAAAAAAAB
+  </AppendedData>
+</VTKFile>
diff --git a/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_p_bottom.vtu b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_p_bottom.vtu
new file mode 100644
index 0000000000000000000000000000000000000000..d824d17f3a5c316deb3e62fd599dcaa07ccdd963
--- /dev/null
+++ b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_p_bottom.vtu
@@ -0,0 +1,24 @@
+<?xml version="1.0"?>
+<VTKFile type="UnstructuredGrid" version="1.0" byte_order="LittleEndian" header_type="UInt64">
+  <UnstructuredGrid>
+    <Piece NumberOfPoints="1"                    NumberOfCells="1"                   >
+      <PointData>
+        <DataArray type="UInt64" Name="bulk_node_ids" format="appended" RangeMin="49"                   RangeMax="49"                   offset="0"                   />
+      </PointData>
+      <CellData>
+        <DataArray type="UInt64" Name="bulk_element_ids" format="appended" RangeMin="49"                   RangeMax="49"                   offset="24"                  />
+      </CellData>
+      <Points>
+        <DataArray type="Float64" Name="Points" NumberOfComponents="3" format="appended" RangeMin="0.09894003955"        RangeMax="0.09894003955"        offset="48"                  />
+      </Points>
+      <Cells>
+        <DataArray type="Int64" Name="connectivity" format="appended" RangeMin=""                     RangeMax=""                     offset="92"                  />
+        <DataArray type="Int64" Name="offsets" format="appended" RangeMin=""                     RangeMax=""                     offset="116"                 />
+        <DataArray type="UInt8" Name="types" format="appended" RangeMin=""                     RangeMax=""                     offset="140"                 />
+      </Cells>
+    </Piece>
+  </UnstructuredGrid>
+  <AppendedData encoding="base64">
+   _CAAAAAAAAAAxAAAAAAAAAA==CAAAAAAAAAAxAAAAAAAAAA==GAAAAAAAAAD+//////99PMmQIWoiVLm/AAAAAAAAAAA=CAAAAAAAAAAAAAAAAAAAAA==CAAAAAAAAAABAAAAAAAAAA==AQAAAAAAAAAB
+  </AppendedData>
+</VTKFile>
diff --git a/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_p_left.vtu b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_p_left.vtu
new file mode 100644
index 0000000000000000000000000000000000000000..5b42f93ec9e27d6606eabd499b73d9a7bf828422
--- /dev/null
+++ b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_p_left.vtu
@@ -0,0 +1,24 @@
+<?xml version="1.0"?>
+<VTKFile type="UnstructuredGrid" version="1.0" byte_order="LittleEndian" header_type="UInt64">
+  <UnstructuredGrid>
+    <Piece NumberOfPoints="1"                    NumberOfCells="1"                   >
+      <PointData>
+        <DataArray type="UInt64" Name="bulk_node_ids" format="appended" RangeMin="33"                   RangeMax="33"                   offset="0"                   />
+      </PointData>
+      <CellData>
+        <DataArray type="UInt64" Name="bulk_element_ids" format="appended" RangeMin="33"                   RangeMax="33"                   offset="24"                  />
+      </CellData>
+      <Points>
+        <DataArray type="Float64" Name="Points" NumberOfComponents="3" format="appended" RangeMin="0.09894003955"        RangeMax="0.09894003955"        offset="48"                  />
+      </Points>
+      <Cells>
+        <DataArray type="Int64" Name="connectivity" format="appended" RangeMin=""                     RangeMax=""                     offset="92"                  />
+        <DataArray type="Int64" Name="offsets" format="appended" RangeMin=""                     RangeMax=""                     offset="116"                 />
+        <DataArray type="UInt8" Name="types" format="appended" RangeMin=""                     RangeMax=""                     offset="140"                 />
+      </Cells>
+    </Piece>
+  </UnstructuredGrid>
+  <AppendedData encoding="base64">
+   _CAAAAAAAAAAhAAAAAAAAAA==CAAAAAAAAAAhAAAAAAAAAA==GAAAAAAAAADJkCFqIlS5vwEAAAAAAGa8AAAAAAAAAAA=CAAAAAAAAAAAAAAAAAAAAA==CAAAAAAAAAABAAAAAAAAAA==AQAAAAAAAAAB
+  </AppendedData>
+</VTKFile>
diff --git a/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_p_right.vtu b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_p_right.vtu
new file mode 100644
index 0000000000000000000000000000000000000000..3a0136b1fa21b575ae50df092767bef926ee0ffb
--- /dev/null
+++ b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_p_right.vtu
@@ -0,0 +1,24 @@
+<?xml version="1.0"?>
+<VTKFile type="UnstructuredGrid" version="1.0" byte_order="LittleEndian" header_type="UInt64">
+  <UnstructuredGrid>
+    <Piece NumberOfPoints="1"                    NumberOfCells="1"                   >
+      <PointData>
+        <DataArray type="UInt64" Name="bulk_node_ids" format="appended" RangeMin="1"                    RangeMax="1"                    offset="0"                   />
+      </PointData>
+      <CellData>
+        <DataArray type="UInt64" Name="bulk_element_ids" format="appended" RangeMin="1"                    RangeMax="1"                    offset="24"                  />
+      </CellData>
+      <Points>
+        <DataArray type="Float64" Name="Points" NumberOfComponents="3" format="appended" RangeMin="0.09894003955"        RangeMax="0.09894003955"        offset="48"                  />
+      </Points>
+      <Cells>
+        <DataArray type="Int64" Name="connectivity" format="appended" RangeMin=""                     RangeMax=""                     offset="92"                  />
+        <DataArray type="Int64" Name="offsets" format="appended" RangeMin=""                     RangeMax=""                     offset="116"                 />
+        <DataArray type="UInt8" Name="types" format="appended" RangeMin=""                     RangeMax=""                     offset="140"                 />
+      </Cells>
+    </Piece>
+  </UnstructuredGrid>
+  <AppendedData encoding="base64">
+   _CAAAAAAAAAABAAAAAAAAAA==CAAAAAAAAAABAAAAAAAAAA==GAAAAAAAAADJkCFqIlS5PwAAAAAAAAAAAAAAAAAAAAA=CAAAAAAAAAAAAAAAAAAAAA==CAAAAAAAAAABAAAAAAAAAA==AQAAAAAAAAAB
+  </AppendedData>
+</VTKFile>
diff --git a/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_p_top.vtu b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_p_top.vtu
new file mode 100644
index 0000000000000000000000000000000000000000..350c11a9a192a673de96386e9655725d89a50988
--- /dev/null
+++ b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2D_p_top.vtu
@@ -0,0 +1,24 @@
+<?xml version="1.0"?>
+<VTKFile type="UnstructuredGrid" version="1.0" byte_order="LittleEndian" header_type="UInt64">
+  <UnstructuredGrid>
+    <Piece NumberOfPoints="1"                    NumberOfCells="1"                   >
+      <PointData>
+        <DataArray type="UInt64" Name="bulk_node_ids" format="appended" RangeMin="17"                   RangeMax="17"                   offset="0"                   />
+      </PointData>
+      <CellData>
+        <DataArray type="UInt64" Name="bulk_element_ids" format="appended" RangeMin="17"                   RangeMax="17"                   offset="24"                  />
+      </CellData>
+      <Points>
+        <DataArray type="Float64" Name="Points" NumberOfComponents="3" format="appended" RangeMin="0.09894003955"        RangeMax="0.09894003955"        offset="48"                  />
+      </Points>
+      <Cells>
+        <DataArray type="Int64" Name="connectivity" format="appended" RangeMin=""                     RangeMax=""                     offset="92"                  />
+        <DataArray type="Int64" Name="offsets" format="appended" RangeMin=""                     RangeMax=""                     offset="116"                 />
+        <DataArray type="UInt8" Name="types" format="appended" RangeMin=""                     RangeMax=""                     offset="140"                 />
+      </Cells>
+    </Piece>
+  </UnstructuredGrid>
+  <AppendedData encoding="base64">
+   _CAAAAAAAAAARAAAAAAAAAA==CAAAAAAAAAARAAAAAAAAAA==GAAAAAAAAAABAAAAAABgPMmQIWoiVLk/AAAAAAAAAAA=CAAAAAAAAAAAAAAAAAAAAA==CAAAAAAAAAABAAAAAAAAAA==AQAAAAAAAAAB
+  </AppendedData>
+</VTKFile>
diff --git a/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2d_mesh.vtu b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2d_mesh.vtu
new file mode 100644
index 0000000000000000000000000000000000000000..500c5ff02ad650beab0d73f7303022e117a1806c
--- /dev/null
+++ b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/2d_mesh.vtu
@@ -0,0 +1,23 @@
+<?xml version="1.0"?>
+<VTKFile type="UnstructuredGrid" version="1.0" byte_order="LittleEndian" header_type="UInt64">
+  <UnstructuredGrid>
+    <Piece NumberOfPoints="585"                  NumberOfCells="1076"                >
+      <PointData>
+      </PointData>
+      <CellData>
+        <DataArray type="Int32" Name="MaterialIDs" format="appended" RangeMin="0"                    RangeMax="2"                    offset="0"                   />
+      </CellData>
+      <Points>
+        <DataArray type="Float64" Name="Points" NumberOfComponents="3" format="appended" RangeMin="0"                    RangeMax="0.1"                  offset="5752"                />
+      </Points>
+      <Cells>
+        <DataArray type="Int64" Name="connectivity" format="appended" RangeMin=""                     RangeMax=""                     offset="24484"               />
+        <DataArray type="Int64" Name="offsets" format="appended" RangeMin=""                     RangeMax=""                     offset="58884"               />
+        <DataArray type="UInt8" Name="types" format="appended" RangeMin=""                     RangeMax=""                     offset="70372"               />
+      </Cells>
+    </Piece>
+  </UnstructuredGrid>
+  <AppendedData encoding="base64">
+   _0BAAAAAAAAACAAAAAgAAAAIAAAACAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAQAAAAEAAAABAAAAAQAAAAEAAAABAAAAAQAAAAEAAAABAAAAAQAAAAEAAAABAAAAAQAAAAEAAAABAAAAAQAAAAEAAAABAAAAAQAAAAEAAAABAAAAAQAAAAEAAAABAAAAAQAAAAEAAAABAAAAAQAAAAEAAAABAAAAAQAAAAEAAAABAAAAAQAAAAEAAAABAAAAAQAAAAEAAAABAAAAAQAAAAEAAAABAAAAAQAAAAEAAAABAAAAAQAAAAEAAAABAAAAAQAAAAEAAAABAAAAAQAAAAEAAAABAAAAAQAAAAEAAAABAAAAAQAAAAEAAAABAAAAAQAAAAEAAAABAAAAAQAAAAEAAAABAAAAAQAAAAEAAAABAAAAAQAAAAEAAAABAAAAAQAAAAEAAAABAAAAAQAAAAEAAAABAAAAAQAAAAEAAAABAAAAAQAAAAEAAAABAAAAAQAAAAEAAAABAAAAAQAAAAEAAAABAAAAAQAAAAEAAAABAAAAAQAAAAEAAAABAAAAAQAAAAEAAAABAAAAAQAAAAEAAAABAAAAAQAAAAEAAAABAAAAAQAAAAEAAAABAAAAAQAAAAEAAAABAAAAAQAAAAEAAAABAAAAAQAAAAEAAAABAAAAAQAAAAEAAAABAAAAAQAAAAEAAAABAAAAAQAAAAEAAAABAAAAAQAAAAEAAAABAAAAAQAAAAEAAAABAAAAAQAAAAEAAAABAAAAAQAAAAEAAAABAAAAAQAAAAEAAAABAAAAAQAAAAEAAAABAAAAAQAAAAEAAAABAAAAAQAAAAEAAAABAAAAAQAAAAEAAAABAAAAAQAAAAEAAAABAAAAAQAAAAEAAAABAAAAAQAAAA==2DYAAAAAAADJkCFqIlS5P2UE5tVZvY2/AAAAAAAAAADJkCFqIlS5PwAAAAAAAAAAAAAAAAAAAADJkCFqIlS5P2UE5tVZvY0/AAAAAAAAAACxzJzScBO5P9Uxr+Wf85M/AAAAAAAAAAChCBg7v9K4P3hha+CSCJk/AAAAAAAAAAAKV18gj2a3P1R/Kdy9YqM/AAAAAAAAAABzpaYFX/q1P/tNHUgyQao/AAAAAAAAAADJJ0SZI0K1P4MRVmKkaKw/AAAAAAAAAAAlquEs6Im0P/3UjnwWkK4/AAAAAAAAAABSipS1+eixP1KKlLX56LE/AAAAAAAAAAD91I58FpCuPyWq4SzoibQ/AAAAAAAAAACDEVZipGisP8knRJkjQrU/AAAAAAAAAAD7TR1IMkGqP3OlpgVf+rU/AAAAAAAAAABUfyncvWKjPwpXXyCPZrc/AAAAAAAAAABbYWvgkgiZP6EIGDu/0rg/AAAAAAAAAADVMa/ln/OTP7HMnNJwE7k/AAAAAAAAAABlBObVWb2NP8mQIWoiVLk/AAAAAAAAAAABAAAAAABgPMmQIWoiVLk/AAAAAAAAAABlBObVWb2Nv8mQIWoiVLk/AAAAAAAAAADVMa/ln/OTv7HMnNJwE7k/AAAAAAAAAABbYWvgkgiZv6EIGDu/0rg/AAAAAAAAAABUfyncvWKjvwpXXyCPZrc/AAAAAAAAAAD7TR1IMkGqv3OlpgVf+rU/AAAAAAAAAACDEVZipGisv8knRJkjQrU/AAAAAAAAAAD91I58FpCuvyWq4SzoibQ/AAAAAAAAAABSipS1+eixv1KKlLX56LE/AAAAAAAAAAAlquEs6Im0v/3UjnwWkK4/AAAAAAAAAADQJ0SZI0K1v3URVmKkaKw/AAAAAAAAAABzpaYFX/q1v/tNHUgyQao/AAAAAAAAAAAKV18gj2a3v1R/Kdy9YqM/AAAAAAAAAAChCBg7v9K4v1tha+CSCJk/AAAAAAAAAACxzJzScBO5v9Uxr+Wf85M/AAAAAAAAAADJkCFqIlS5v2UE5tVZvY0/AAAAAAAAAADJkCFqIlS5vwEAAAAAAGa8AAAAAAAAAADJkCFqIlS5v2UE5tVZvY2/AAAAAAAAAACxzJzScBO5v9Uxr+Wf85O/AAAAAAAAAAChCBg7v9K4v3hha+CSCJm/AAAAAAAAAAAKV18gj2a3v1R/Kdy9YqO/AAAAAAAAAABzpaYFX/q1v/tNHUgyQaq/AAAAAAAAAADJJ0SZI0K1v4MRVmKkaKy/AAAAAAAAAAAlquEs6Im0v/3UjnwWkK6/AAAAAAAAAABSipS1+eixv1KKlLX56LG/AAAAAAAAAAAL1Y58FpCuvyWq4SzoibS/AAAAAAAAAACDEVZipGisv8knRJkjQrW/AAAAAAAAAAD7TR1IMkGqv3OlpgVf+rW/AAAAAAAAAABUfyncvWKjvwpXXyCPZre/AAAAAAAAAABbYWvgkgiZv6EIGDu/0ri/AAAAAAAAAADVMa/ln/OTv7HMnNJwE7m/AAAAAAAAAABlBObVWb2Nv8mQIWoiVLm/AAAAAAAAAAD+//////99PMmQIWoiVLm/AAAAAAAAAABlBObVWb2NP8mQIWoiVLm/AAAAAAAAAADVMa/ln/OTP7HMnNJwE7m/AAAAAAAAAAB4YWvgkgiZP6EIGDu/0ri/AAAAAAAAAABUfyncvWKjPwpXXyCPZre/AAAAAAAAAAD7TR1IMkGqP3OlpgVf+rW/AAAAAAAAAACDEVZipGisP8knRJkjQrW/AAAAAAAAAAD91I58FpCuPyWq4SzoibS/AAAAAAAAAABSipS1+eixP1KKlLX56LG/AAAAAAAAAAAtquEs6Im0P/3UjnwWkK6/AAAAAAAAAADQJ0SZI0K1P3URVmKkaKy/AAAAAAAAAABzpaYFX/q1P+xNHUgyQaq/AAAAAAAAAAAKV18gj2a3P1R/Kdy9YqO/AAAAAAAAAAChCBg7v9K4P1tha+CSCJm/AAAAAAAAAACxzJzScBO5P9Uxr+Wf85O/AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAACiRbbz/dS4PwAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAgKJFtvP91Lg/AAAAAAAAAACiRbbz/dS4vwAAAAAAAACAAAAAAAAAAAAAAAAAAAAAAKJFtvP91Li/AAAAAAAAAACkcD0K16OwPwAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAgKRwPQrXo7A/AAAAAAAAAACkcD0K16OwvwAAAAAAAACAAAAAAAAAAAAAAAAAAAAAAKRwPQrXo7C/AAAAAAAAAAAK16NwPQq3PwAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAgArXo3A9Crc/AAAAAAAAAAAK16NwPQq3vwAAAAAAAACAAAAAAAAAAAAAAAAAAAAAAArXo3A9Cre/AAAAAAAAAAB7FK5H4XqkPwAAAAAAAAAAAAAAAAAAAADMXOGfYba4P4dEn+DAeIM/AAAAAAAAAABA2jcc2Fq4P4C1Xx/AYJM/AAAAAAAAAAAipy0WQ8O3P2YuJHlZ1Zw/AAAAAAAAAACazG9EGPG2P7WyS1luAaM/AAAAAAAAAAAZT4/NXea1P9lFQaFUaac/AAAAAAAAAAC753VKpaW0P4E3n9WCl6s/AAAAAAAAAABD5kFxBTKzP3GAkYSqga8/AAAAAAAAAAAGJ8t3Eo+xP3eoM3kSj7E/AAAAAAAAAACiHOaBqoGvPz1SWnIFMrM/AAAAAAAAAAA1wyrTgperP3TdR0ulpbQ/AAAAAAAAAAAqxwyfVGmnP2MsJs5d5rU/AAAAAAAAAAD7bGtXbgGjP1RE00QY8bY/AAAAAAAAAABQUl52WdWcP318YxZDw7c/AAAAAAAAAAClp4IdwGCTP1eTTxzYWrg/AAAAAAAAAAA25OHewHiDP4HY5p9htrg/AAAAAAAAAADMXOGfYba4P4dEn+DAeIO/AAAAAAAAAABA2jcc2Fq4P4C1Xx/AYJO/AAAAAAAAAAAipy0WQ8O3P2YuJHlZ1Zy/AAAAAAAAAACazG9EGPG2P7WyS1luAaO/AAAAAAAAAAAZT4/NXea1P9lFQaFUaae/AAAAAAAAAAC753VKpaW0P4E3n9WCl6u/AAAAAAAAAABD5kFxBTKzP3GAkYSqga+/AAAAAAAAAAAGJ8t3Eo+xP3eoM3kSj7G/AAAAAAAAAACiHOaBqoGvPz1SWnIFMrO/AAAAAAAAAAA1wyrTgperP3TdR0ulpbS/AAAAAAAAAAAqxwyfVGmnP2MsJs5d5rW/AAAAAAAAAAD7bGtXbgGjP1RE00QY8ba/AAAAAAAAAABQUl52WdWcP318YxZDw7e/AAAAAAAAAAClp4IdwGCTP1eTTxzYWri/AAAAAAAAAAA25OHewHiDP4HY5p9htri/AAAAAAAAAACHRJ/gwHiDv8xc4Z9htrg/AAAAAAAAAACAtV8fwGCTv0DaNxzYWrg/AAAAAAAAAABmLiR5WdWcvyKnLRZDw7c/AAAAAAAAAAC1sktZbgGjv5rMb0QY8bY/AAAAAAAAAADZRUGhVGmnvxlPj81d5rU/AAAAAAAAAACBN5/Vgperv7vndUqlpbQ/AAAAAAAAAABxgJGEqoGvv0PmQXEFMrM/AAAAAAAAAAB3qDN5Eo+xvwYny3cSj7E/AAAAAAAAAAA9UlpyBTKzv6Ic5oGqga8/AAAAAAAAAAB03UdLpaW0vzXDKtOCl6s/AAAAAAAAAABjLCbOXea1vyrHDJ9Uaac/AAAAAAAAAABURNNEGPG2v/tsa1duAaM/AAAAAAAAAAB9fGMWQ8O3v1BSXnZZ1Zw/AAAAAAAAAABXk08c2Fq4v6Wngh3AYJM/AAAAAAAAAACB2OafYba4vzbk4d7AeIM/AAAAAAAAAADMXOGfYba4v4dEn+DAeIO/AAAAAAAAAABA2jcc2Fq4v4C1Xx/AYJO/AAAAAAAAAAAipy0WQ8O3v2YuJHlZ1Zy/AAAAAAAAAACazG9EGPG2v7WyS1luAaO/AAAAAAAAAAAZT4/NXea1v9lFQaFUaae/AAAAAAAAAAC753VKpaW0v4E3n9WCl6u/AAAAAAAAAABD5kFxBTKzv3GAkYSqga+/AAAAAAAAAAAGJ8t3Eo+xv3eoM3kSj7G/AAAAAAAAAACiHOaBqoGvvz1SWnIFMrO/AAAAAAAAAAA1wyrTgperv3TdR0ulpbS/AAAAAAAAAAAqxwyfVGmnv2MsJs5d5rW/AAAAAAAAAAD7bGtXbgGjv1RE00QY8ba/AAAAAAAAAABQUl52WdWcv318YxZDw7e/AAAAAAAAAAClp4IdwGCTv1eTTxzYWri/AAAAAAAAAAA25OHewHiDv4HY5p9htri/AAAAAAAAAADJkCFqIlS5P81W5tVZvX2/AAAAAAAAAADJkCFqIlS5P72v5dVZvX0/AAAAAAAAAAA9srstpxy4P9kYX0wH558/AAAAAAAAAACUAAMTd7C2P2JbIxL40aY/AAAAAAAAAAAxHzvxcDmzP3P17XmCmLA/AAAAAAAAAAB1/e15gpiwPy4XO/FwObM/AAAAAAAAAACybSMS+NGmP8n8AhN3sLY/AAAAAAAAAAD9QV9MB+efP/mtuy2nHLg/AAAAAAAAAACEVObVWb19P8mQIWoiVLk/AAAAAAAAAAAYsOXVWb19v8mQIWoiVLk/AAAAAAAAAAC2HF9MB+efv9Wxuy2nHLg/AAAAAAAAAABiWyMS+NGmv5QAAxN3sLY/AAAAAAAAAABz9e15gpiwvzEfO/FwObM/AAAAAAAAAAAuFzvxcDmzv3X97XmCmLA/AAAAAAAAAADJ/AITd7C2v7JtIxL40aY/AAAAAAAAAAD5rbstpxy4v/1BX0wH558/AAAAAAAAAADJkCFqIlS5v1xb5tVZvX0/AAAAAAAAAADJkCFqIlS5vxux5dVZvX2/AAAAAAAAAAA9srstpxy4v9kYX0wH55+/AAAAAAAAAACUAAMTd7C2v2JbIxL40aa/AAAAAAAAAAAxHzvxcDmzv3P17XmCmLC/AAAAAAAAAADP/u15gpiwv9kVO/FwObO/AAAAAAAAAACybSMS+NGmv8n8AhN3sLa/AAAAAAAAAAD9QV9MB+efv/mtuy2nHLi/AAAAAAAAAABJWObVWb19v8mQIWoiVLm/AAAAAAAAAAAbseXVWb19P8mQIWoiVLm/AAAAAAAAAADZGF9MB+efPz2yuy2nHLi/AAAAAAAAAABiWyMS+NGmP5QAAxN3sLa/AAAAAAAAAABz9e15gpiwPzEfO/FwObO/AAAAAAAAAABvFjvxcDmzPzn+7XmCmLC/AAAAAAAAAAC1+wITd7C2P+JyIxL40aa/AAAAAAAAAAD5rbstpxy4P/1BX0wH55+/AAAAAAAAAACHnuYge3iwP+w4VFTo8YI/AAAAAAAAAAAXrGW2ku6vPxImcN+KwJI/AAAAAAAAAAACWQQFxkWuPyDs6e1npps/AAAAAAAAAAABG/X8Nf+rP+LKpTYW/qE/AAAAAAAAAACImwOZviapPzVZgDM0y6U/AAAAAAAAAAAIssgxNMulP62RgJq+Jqk/AAAAAAAAAAAEEiY1Fv6hP3G16/01/6s/AAAAAAAAAAClY2TrZ6abPw/AlwXGRa4/AAAAAAAAAAAg7KrdisCSPzo2qLaS7q8/AAAAAAAAAAB0BY9S6PGCP6rD7iB7eLA/AAAAAAAAAACHnuYge3iwP+w4VFTo8YK/AAAAAAAAAAAXrGW2ku6vPxImcN+KwJK/AAAAAAAAAAACWQQFxkWuPyDs6e1nppu/AAAAAAAAAAABG/X8Nf+rP+LKpTYW/qG/AAAAAAAAAACImwOZviapPzVZgDM0y6W/AAAAAAAAAAAIssgxNMulP62RgJq+Jqm/AAAAAAAAAAAEEiY1Fv6hP3G16/01/6u/AAAAAAAAAAClY2TrZ6abPw/AlwXGRa6/AAAAAAAAAAAg7KrdisCSPzo2qLaS7q+/AAAAAAAAAAB0BY9S6PGCP6rD7iB7eLC/AAAAAAAAAADsOFRU6PGCv4ee5iB7eLA/AAAAAAAAAAASJnDfisCSvxesZbaS7q8/AAAAAAAAAAAg7OntZ6abvwJZBAXGRa4/AAAAAAAAAADiyqU2Fv6hvwEb9fw1/6s/AAAAAAAAAAA1WYAzNMulv4ibA5m+Jqk/AAAAAAAAAACtkYCaviapvwiyyDE0y6U/AAAAAAAAAABxtev9Nf+rvwQSJjUW/qE/AAAAAAAAAAAPwJcFxkWuv6VjZOtnpps/AAAAAAAAAAA6Nqi2ku6vvyDsqt2KwJI/AAAAAAAAAACqw+4ge3iwv3QFj1Lo8YI/AAAAAAAAAACHnuYge3iwv+w4VFTo8YK/AAAAAAAAAAAXrGW2ku6vvxImcN+KwJK/AAAAAAAAAAACWQQFxkWuvyDs6e1nppu/AAAAAAAAAAABG/X8Nf+rv+LKpTYW/qG/AAAAAAAAAACImwOZviapvzVZgDM0y6W/AAAAAAAAAAAIssgxNMulv62RgJq+Jqm/AAAAAAAAAAAEEiY1Fv6hv3G16/01/6u/AAAAAAAAAAClY2TrZ6abvw/AlwXGRa6/AAAAAAAAAAAg7KrdisCSvzo2qLaS7q+/AAAAAAAAAAB0BY9S6PGCv6rD7iB7eLC/AAAAAAAAAACnqGjH7em2P1ylPI9FRIM/AAAAAAAAAAAjlvprWYm2Pw3/VpFAKZM/AAAAAAAAAAB8RvZAj+m1P/aj3Segepw/AAAAAAAAAAAPro5zTwy1P9g4UokPvqI/AAAAAAAAAADeX4GSBvSzPwGFsHE9Cqc/AAAAAAAAAAAc13zBxqOyP9aDrwfMFas/AAAAAAAAAAA6WVUcPx+xP821JsZi1a4/AAAAAAAAAAALzH/DYtWuPyL/hh0/H7E/AAAAAAAAAAB6i04FzBWrP8gPWsLGo7I/AAAAAAAAAAC0M4pvPQqnP8w8IJMG9LM/AAAAAAAAAAAjHXyHD76iPy9V93NPDLU/AAAAAAAAAAC1/CkloHqcP1N1LkGP6bU/AAAAAAAAAAA3bYGPQCmTP/yJE2xZibY/AAAAAAAAAAB8i5GNRUSDPyRFbsft6bY/AAAAAAAAAACnqGjH7em2P1ylPI9FRIO/AAAAAAAAAAAjlvprWYm2Pw3/VpFAKZO/AAAAAAAAAAB8RvZAj+m1P/aj3Segepy/AAAAAAAAAAAPro5zTwy1P9g4UokPvqK/AAAAAAAAAADeX4GSBvSzPwGFsHE9Cqe/AAAAAAAAAAAc13zBxqOyP9aDrwfMFau/AAAAAAAAAAA6WVUcPx+xP821JsZi1a6/AAAAAAAAAAALzH/DYtWuPyL/hh0/H7G/AAAAAAAAAAB6i04FzBWrP8gPWsLGo7K/AAAAAAAAAAC0M4pvPQqnP8w8IJMG9LO/AAAAAAAAAAAjHXyHD76iPy9V93NPDLW/AAAAAAAAAAC1/CkloHqcP1N1LkGP6bW/AAAAAAAAAAA3bYGPQCmTP/yJE2xZiba/AAAAAAAAAAB8i5GNRUSDPyRFbsft6ba/AAAAAAAAAABcpTyPRUSDv6eoaMft6bY/AAAAAAAAAAAN/1aRQCmTvyOW+mtZibY/AAAAAAAAAAD2o90noHqcv3xG9kCP6bU/AAAAAAAAAADYOFKJD76ivw+ujnNPDLU/AAAAAAAAAAABhbBxPQqnv95fgZIG9LM/AAAAAAAAAADWg68HzBWrvxzXfMHGo7I/AAAAAAAAAADNtSbGYtWuvzpZVRw/H7E/AAAAAAAAAAAi/4YdPx+xvwvMf8Ni1a4/AAAAAAAAAADID1rCxqOyv3qLTgXMFas/AAAAAAAAAADMPCCTBvSzv7Qzim89Cqc/AAAAAAAAAAAvVfdzTwy1vyMdfIcPvqI/AAAAAAAAAABTdS5Bj+m1v7X8KSWgepw/AAAAAAAAAAD8iRNsWYm2vzdtgY9AKZM/AAAAAAAAAAAkRW7H7em2v3yLkY1FRIM/AAAAAAAAAACnqGjH7em2v1ylPI9FRIO/AAAAAAAAAAAjlvprWYm2vw3/VpFAKZO/AAAAAAAAAAB8RvZAj+m1v/aj3Segepy/AAAAAAAAAAAPro5zTwy1v9g4UokPvqK/AAAAAAAAAADeX4GSBvSzvwGFsHE9Cqe/AAAAAAAAAAAc13zBxqOyv9aDrwfMFau/AAAAAAAAAAA6WVUcPx+xv821JsZi1a6/AAAAAAAAAAALzH/DYtWuvyL/hh0/H7G/AAAAAAAAAAB6i04FzBWrv8gPWsLGo7K/AAAAAAAAAAC0M4pvPQqnv8w8IJMG9LO/AAAAAAAAAAAjHXyHD76ivy9V93NPDLW/AAAAAAAAAAC1/CkloHqcv1N1LkGP6bW/AAAAAAAAAAA3bYGPQCmTv/yJE2xZiba/AAAAAAAAAAB8i5GNRUSDvyRFbsft6ba/AAAAAAAAAAAl361H4XqEPwAAAAAAAAAAAAAAAAAAAAC+2a1H4XqUPwAAAAAAAAAAAAAAAAAAAAD2AIXrUbiePwAAAAAAAAAAAAAAAAAAAAD+zxnLDjmdv4fQzS/QzZM/AAAAAAAAAABHOjsdozyUv6kG/qtyS5u/AAAAAAAAAACGT93xhVyCPxHNrdiNRaA/AAAAAAAAAACUmsF2vM+KP+LokM39+p+/AAAAAAAAAAAGpWgFmfaiv4g0+7UnxXi/AAAAAAAAAAC6JGIETYqfP2L5tprfc5k/AAAAAAAAAAAVKxCkOEGhP9/VU1b6sJe/AAAAAAAAAAB1SlLVvDCRv/3q9L4X86M/AAAAAAAAAAAqEa/j4pl5v0Aoxcv83aW/AAAAAAAAAACHD1C7Grymv7sPt11WDoo/AAAAAAAAAACOvOuE/w2jv7dlJez2UJi/AAAAAAAAAABGF6Nq2wd+vxNfocT/G5E/AAAAAAAAAABi9usq3QOUv0iyMRdbl1k/AAAAAAAAAACsczWBfi2XP/AYTA8xOaU/AAAAAAAAAABXcUALjigdv6vM2ylBS5W/AAAAAAAAAADMc5TmYxWcP7Tr3WwkkaS/AAAAAAAAAADYUO/eyVigv+XM2oUtOaI/AAAAAAAAAACnJ3wuANWXvzGlFgaT0qW/AAAAAAAAAACYrhPmUBBXvzwvF/1U46g/AAAAAAAAAADD4qLllIKQP4YKEMzOw5E/AAAAAAAAAACtmZuHDWmnP5Ig+xeWdpE/AAAAAAAAAABfKSXp11iFP2pkd7ReiKi/AAAAAAAAAADq+bBPb2WTP/H593nO85C/AAAAAAAAAAC1C58WzhOoP6/bBgvQJo2/AAAAAAAAAAD2DqksUfOlv1qoAQERm5s/AAAAAAAAAAD/+mqDEe+pv0EqD2YeFBa/AAAAAAAAAAAsaczsFiWpv5Wb0+i8342/AAAAAAAAAABJ+peJViqav9g3KHOqp4i/AAAAAAAAAADd4fGhLkiiv/XgSCSXQKO/AAAAAAAAAADCTSnlDzagv/SbVq7qn3w/AAAAAAAAAADjwcMG2LuiPxfM70PYNaM/AAAAAAAAAACcE5cuysSKP/tt3Ndgy6k/AAAAAAAAAADjehSuR+GqP4NW47CKwm4/AAAAAAAAAACLWv9/G3GHv3/oPtVm/IK/AAAAAAAAAAB4+kTz8NOZv752c7J+A6g/AAAAAAAAAAAz1EI8mjGjP5Mvx/gBkqK/AAAAAAAAAAD9d0No00+Fv9US94uhG6o/AAAAAAAAAAAADu1JnsahP4rBT8OTKo8/AAAAAAAAAADiaMVTlqRQvxBlaf2KG6C/AAAAAAAAAABDH4fsuF2Rv77LSfs1fJw/AAAAAAAAAADiX8EH1emTP7uitAAsG50/AAAAAAAAAAArrSPaPJ5uP+Xd5XyMI4c/AAAAAAAAAAD3r+uHB/pyv+xn1TzhQKE/AAAAAAAAAABaf+MR37NAv8XQVIdRnKu/AAAAAAAAAAAI+DA4PZKoP8U63ZnNZpq/AAAAAAAAAABxxGTaU3WiP+VUl5/s/Ia/AAAAAAAAAABVjfP5+8WOv4IEPXWoIqq/AAAAAAAAAABtdB83LbOXP18pzj/N2Ju/AAAAAAAAAAC1Wzb3GBKnP49EyhMGVZ0/AAAAAAAAAACG6d+qonF/P8WYcIU3NIq/AAAAAAAAAAClPVD70O+TPx7rd8z026i/AAAAAAAAAAAp7ytsliyRvygMSgfwEIo/AAAAAAAAAACIsW2Pri6OvzkuMXeJX6K/AAAAAAAAAABHEswvP52qvyy8IFpr2pM/AAAAAAAAAACw7AyQyECovxG0Ox2XI5q/AAAAAAAAAAA6AdHfQbOrP1F3kaGdJHu/AAAAAAAAAACDjLmKCbSev5AiOK1VFp+/AAAAAAAAAADUnPmyh72rvwYo+Ba5jYM/AAAAAAAAAADNXwP3lOZ+vwj1tdpMvH8/AAAAAAAAAAAL+vuyMCNlPyzFtLLc7ZY/AAAAAAAAAACgrFoRQ1+hv1B82GzZ2o6/AAAAAAAAAABS2zGpDjGjvw0+lLd7K5U/AAAAAAAAAAA3spN873KRPxsuLxttlaS/AAAAAAAAAACQ9Czss5SZP4hEsY906YI/AAAAAAAAAABK6UNjZHNoP/VilQ4BdKS/AAAAAAAAAADlpJ+g/D2gP2VU0mbrPKc/AAAAAAAAAAAyRqPehIuJP/esAh8swaQ/AAAAAAAAAABzrxry3+F+P/ae4hWVrJa/AAAAAAAAAABmfh7/hXSDv+q+BrBsi5q/AAAAAAAAAAA3L/PL6Bilv2Ixi4oO5qI/AAAAAAAAAABloChb7Uylv9F0AgXQ62o/AAAAAAAAAAC5sW07nAuaP2ScEQRyRYK/AAAAAAAAAADWdrErr36cv4vzLbBQzWm/AAAAAAAAAAAsudpZICd1P3lMETcybKw/AAAAAAAAAABp4dDYStmrP4tRt6qd0Yo/AAAAAAAAAACOU51uxwOXP9qeFgBeC6o/AAAAAAAAAACkkblaIN+gvwtJnlFxFKc/AAAAAAAAAAAbLXjr9tuWv/N7cHtwXKE/AAAAAAAAAAC63wRykjOiP/yK6MafR6e/AAAAAAAAAABXiO9HluGgv+QVVWKpDae/AAAAAAAAAAC8FzH+Y8umv5BCIQRPQqK/AAAAAAAAAACmggMfq7mcP4F6YF+BzaE/AAAAAAAAAABq2EmpR36sv9Ba9Bpio3i/AAAAAAAAAAAZ+89pWcaRv/ifFuCPKZG/AAAAAAAAAADDdf01LDZkv1NZMu5B+oK/AAAAAAAAAAA47zRzK9aevwa2PdxfgJw/AAAAAAAAAADt6O53i7GBvznjCb6AUqU/AAAAAAAAAACT6iKL3Z+rPzbR9dtVb5S/AAAAAAAAAAAeOG1OTKWmP1JvEtG+9oA/AAAAAAAAAAA+gEOf+Ylzv7a4RYR5Q60/AAAAAAAAAAAIhCGcPZOUv8OqiWQClas/AAAAAAAAAADAl1GhpfSbv9UWk4PtRJW/AAAAAAAAAADfq/lF+wuZP1NdOB4kYJM/AAAAAAAAAAB6CwwnvNWMP2dfXfzjI4I/AAAAAAAAAACLaadkJIWLP6pRXRTnzKy/AAAAAAAAAAC7FUr8tGeYvy5DmahNNqq/AAAAAAAAAABdohfR1LaNP5o5gc5csH2/AAAAAAAAAABN1doGMHKfP5vU2qBNKqC/AAAAAAAAAACZJVrQO+ZiP3Wah6UOBKQ/AAAAAAAAAABfawadZWqHP35f+87Tt5g/AAAAAAAAAABazyZ8qLaAv/kW1MWV+6y/AAAAAAAAAAB6kGJYJ+CFv4qyT0KDqEC/AAAAAAAAAAArYuZvMmWqP68sIqtBwpc/AAAAAAAAAAA7Zm5ZEB2cP/hJyUb00pG/AAAAAAAAAAAR9bkkrRCkP4nAs9u/CJc/AAAAAAAAAADe9fAGi+irv5/Awz4tqpS/AAAAAAAAAABiETLKXoanvxsjicVJ5nu/AAAAAAAAAADLMHDlNdGpv9Egkp+F8ps/AAAAAAAAAACxG8KbZFmXv+a4gsj3kqG/AAAAAAAAAADQrkE0gHunP1Y2PVbwZXi/AAAAAAAAAADg+a2vPA6QP8lqTqcL3Zi/AAAAAAAAAAAZmzXNcT2lP5qXoOxHoZS/AAAAAAAAAACFC/ZuQm6Zv5F4dXuYeIc/AAAAAAAAAAAWjVc/ZB+nP5v/Ke493KG/AAAAAAAAAABpfaSZRJmtv7za34CmFGY/AAAAAAAAAAB5c46sIVuTvwRXMK1tj3q/AAAAAAAAAADmVS/kL96mP289hfbAl6I/AAAAAAAAAAC8xQ4QDlWlv3lBDjHpRZG/AAAAAAAAAABa5MI5MRqSv7AYzQiBqKc/AAAAAAAAAACTQjpoHayPv/5yDoNLhaa/AAAAAAAAAADmjyyKBfukv6ltJniAgKW/AAAAAAAAAACZyiAO+/aLP8Q3tTTlBq0/AAAAAAAAAAChKyt+x56cPxr79nRl9Km/AAAAAAAAAAAcnKV00malP5O3G3bSZqW/AAAAAAAAAAA8DaRwjBV7P5WfcLt0y6c/AAAAAAAAAAAkzqpe22R2Pypq9vKjXK2/AAAAAAAAAACVaQt2mHGAvz+EDCRltZo/AAAAAAAAAAAm5y0oZt2Xv2/rPBKLZpo/AAAAAAAAAAD1XtWe/e6sP3g0Kseb24u/AAAAAAAAAAAwhGoD+tp7v+VAEGdUMKK/AAAAAAAAAAB/PzxI8v6iP1rO8HIqnZ4/AAAAAAAAAAA95l9C+GWSv1a9e3zRd5Q/AAAAAAAAAABtwbbPXvymv5zDPiczx5Q/AAAAAAAAAAAFFxVcKi+kP02dEdKxUZ2/AAAAAAAAAAB/70N/1r6Av7H1iQXqy5C/AAAAAAAAAABq7Av4zHeiv7wPWwBE7Ig/AAAAAAAAAACyFIawVfCiv6k+4849Xp8/AAAAAAAAAAAEvrEXFGeov5krJw3USqE/AAAAAAAAAADxUTdTaG2ov1DbkZxtFXo/AAAAAAAAAADbIPLUZKSdvz/hwwj+cqO/AAAAAAAAAABk2TfwRPetP0iaSyY0yES/AAAAAAAAAACkYD67SaeJv4FdAwTAFaE/AAAAAAAAAAC+rRjyn4OVP6y9LmwFjqy/AAAAAAAAAADEw8xrQQmEP56dFj1ZQaO/AAAAAAAAAADxCHqy/lqWPx0wqED/yaG/AAAAAAAAAAC6HxxnnSyCPxLb2Pa7upE/AAAAAAAAAACnm6x3MfWkP8JB26/kmKU/AAAAAAAAAACqqsYods+hP1yV1HQc0Xo/AAAAAAAAAAA2rpRexDWdv2qIXKFo0Ko/AAAAAAAAAABTgfI8kPiJv22UXY/5160/AAAAAAAAAACEbCE7NIuav7/79Qq6YaQ/AAAAAAAAAADCqDKAJtKjv1jD75Y8s5+/AAAAAAAAAAAm361H4Xp0P44HI9yfX3W/AAAAAAAAAABLmdPWWLVlP47TwSE6f6i/AAAAAAAAAABY5+yhX5uSP6H/mZOehKI/AAAAAAAAAABBSWNBlcidPy4am1pR46o/AAAAAAAAAAAC/wPeegZ2P8Z+8APc6J2/AAAAAAAAAAAbBbR4L9Wfv9NywvkaloK/AAAAAAAAAADDHPbBuvyhv3kASqcJIlI/AAAAAAAAAAC2Xs+5ewJCP22vXv1Sfp4/AAAAAAAAAACVpEodVwCOvxhEzMepAXo/AAAAAAAAAACvXruX/Xmbv2G6B6AIrGw/AAAAAAAAAAD8bdJBEL17v/IYZGvXUam/AAAAAAAAAABS0z6EsEitv0P2ARuO/ou/AAAAAAAAAAByomEIuQKsP9VESwq5Aqw/AAAAAAAAAAByomEIuQKsP9dESwq5Aqy/AAAAAAAAAADVREsKuQKsv3KiYQi5Aqw/AAAAAAAAAAByomEIuQKsv9VESwq5Aqy/AAAAAAAAAADyHjSCdoiaP1hbaEmdiLI/AAAAAAAAAADvHjSCdoiaP1dbaEmdiLK/AAAAAAAAAAAsuq+vVxKcvxR5ycdTbrK/AAAAAAAAAABYW2hJnYiyv+0eNIJ2iJo/AAAAAAAAAABDI3DHU26yPyOKMrJXEpw/AAAAAAAAAAAjijKyVxKcv0MjcMdTbrI/AAAAAAAAAABrkRJJnYiyP3u8g4R2iJq/AAAAAAAAAABDI3DHU26yvyOKMrJXEpy/AAAAAAAAAAA+/alHn6Szv6tdtE7yKng/AAAAAAAAAACeXbRO8ip4Pz79qUefpLM/AAAAAAAAAAD00DJP8ip4P3EnrUefpLO/AAAAAAAAAABL5JhHn6SzP6F4ilHyKni/AAAAAAAAAACmJMk/neqHv5IF2/VzQ7O/AAAAAAAAAABoNL/1c0OzPzca60Gd6oc/AAAAAAAAAAASLvdBneqHvxaqw/VzQ7M/AAAAAAAAAAAWqsP1c0OzvxIu90Gd6oe/AAAAAAAAAACx3rLD7zilP9mab2WHX7A/AAAAAAAAAADYmm9lh1+wv7HessPvOKU/AAAAAAAAAACx3rLD7zilv9mab2WHX7C/AAAAAAAAAACy3rLD7zilP9mab2WHX7C/AAAAAAAAAACcdMpkh1+wP1P8jsXvOKU/AAAAAAAAAABT/I7F7zilv5x0ymSHX7A/AAAAAAAAAACcdMpkh1+wv1P8jsXvOKW/AAAAAAAAAACcdMpkh1+wP1H8jsXvOKW/AAAAAAAAAABkEhok/NWzvxGgO4eVKJE/AAAAAAAAAAAOoDuHlSiRP2QSGiT81bM/AAAAAAAAAAA3UD6HlSiRP0pXGiT81bO/AAAAAAAAAACAntsj/NWzP5l3voiVKJG/AAAAAAAAAABdW/igmARxvzcu8VFp57Q/AAAAAAAAAAA3LvFRaee0v1Bb+KCYBHG/AAAAAAAAAABHy2+emARxv5dO+VFp57S/AAAAAAAAAADh1PBRaee0P5OU3p+YBHE/AAAAAAAAAADRBJMoL6qyv8g5WNCCAKM/AAAAAAAAAADKOVjQggCjP9EEkygvqrI/AAAAAAAAAADIOVjQggCjP9EEkygvqrK/AAAAAAAAAADwybxDnxGjvzvWS1DPq7K/AAAAAAAAAADLsxYoL6qyP4nDGNKCAKO/AAAAAAAAAABD+shPz6uyP9VJj0WfEaM/AAAAAAAAAADVSY9FnxGjv0P6yE/Pq7I/AAAAAAAAAABD+shPz6uyv9VJj0WfEaO/AAAAAAAAAADFS3ZWN2OqP7dYG8IoVLA/AAAAAAAAAAC3WBvCKFSwv8VLdlY3Y6o/AAAAAAAAAADFS3ZWN2Oqv7dYG8IoVLC/AAAAAAAAAADGS3ZWN2OqP7dYG8IoVLC/AAAAAAAAAAB3YjjBKFSwP87roFg3Y6q/AAAAAAAAAAB3YjjBKFSwP9DroFg3Y6o/AAAAAAAAAADQ66BYN2Oqv3diOMEoVLA/AAAAAAAAAAB3YjjBKFSwv9DroFg3Y6q/AAAAAAAAAADoS6JHxX2VvzLJEtyMR7S/AAAAAAAAAAAHXNnbjEe0P7CZiknFfZU/AAAAAAAAAACwmYpJxX2Vvwdc2duMR7Q/AAAAAAAAAAAHXNnbjEe0v7CZiknFfZW/AAAAAAAAAADNAbtMlVxjvz1zJoGHeLK/AAAAAAAAAADfgF9QlVxjv2BRH4GHeLI/AAAAAAAAAABfUR+Bh3iyv9aAX1CVXGO/AAAAAAAAAABx6BiBh3iyP+nAaE6VXGM/AAAAAAAAAADHrB1ViU+gP8S2grbylrA/AAAAAAAAAADHrB1ViU+gP8S2grbylrC/AAAAAAAAAAAuZwZYsrGgv4THwSU0jrC/AAAAAAAAAADEtoK28pawv8esHVWJT6A/AAAAAAAAAAAjhkQlNI6wP3AdoFmysaA/AAAAAAAAAABwHaBZsrGgvyOGRCU0jrA/AAAAAAAAAAAjhkQlNI6wv3AdoFmysaC/AAAAAAAAAACk3Re28pawPyIGj1aJT6C/AAAAAAAAAAC2sQ0Us22nP14vOgaf2ay/AAAAAAAAAACzsQ0Us22nP1wvOgaf2aw/AAAAAAAAAABcLzoGn9msv7OxDRSzbac/AAAAAAAAAACzsQ0Us22nv1wvOgaf2ay/AAAAAAAAAADMCbsEn9msP9DI3BWzbac/AAAAAAAAAADQyNwVs22nv8wJuwSf2aw/AAAAAAAAAADMCbsEn9msv9DI3BWzbae/AAAAAAAAAADMCbsEn9msP9DI3BWzbae/AAAAAAAAAABn8fbWKgSTv8A9wuILBbK/AAAAAAAAAACgqJniCwWyP1qxN9gqBJM/AAAAAAAAAADQNDjYKgSTv7QJmuILBbI/AAAAAAAAAAC0CZriCwWyv9A0ONgqBJO/AAAAAAAAAADzdNTcbumOP06ygdgs4rE/AAAAAAAAAADQQd7cbumOP+Mvgtgs4rG/AAAAAAAAAABPsoHYLOKxv/N01Nxu6Y4/AAAAAAAAAABj9lfYLOKxP31bqd9u6Y6/AAAAAAAAAADT41AGPp+GP4RVtkm9J7U/AAAAAAAAAACCVbZJvSe1v97jUAY+n4Y/AAAAAAAAAADa41cGPp+GPzivtkm9J7W/AAAAAAAAAADKGqBJvSe1P/jzDgk+n4a/AAAAAAAAAADxp9sN4my0v7HB8K0qh5g/AAAAAAAAAAC0wfCtKoeYP/Cn2w3ibLQ/AAAAAAAAAADtB/GtKoeYP/iu2w3ibLS/AAAAAAAAAABYOacN4my0P/Wc568qh5i/AAAAAAAAAADVj1ei2/ZwP1oq4irphLU/AAAAAAAAAADMj1ei2/ZwP1oq4irphLW/AAAAAAAAAABbKuIq6YS1vyqQV6Lb9nA/AAAAAAAAAADu4f4q6YS1PzTns6fb9nC/AAAAAAAAAABsKKqOQvqev44KSCfCLLS/AAAAAAAAAAAc8Acnwiy0P9MNupFC+p4/AAAAAAAAAADTDbqRQvqevxzwByfCLLQ/AAAAAAAAAAAc8Acnwiy0v9MNupFC+p6/AAAAAAAAAABQPwzsWm6pP0rKyO1abqm/AAAAAAAAAABQPwzsWm6pP0rKyO1abqk/AAAAAAAAAABKysjtWm6pv1A/DOxabqk/AAAAAAAAAABQPwzsWm6pv0rKyO1abqm/AAAAAAAAAADWYfwT1zOYPwfZtddh0rC/AAAAAAAAAADzZvsT1zOYP+q/tddh0rA/AAAAAAAAAADqv7XXYdKwv/Nm+xPXM5g/AAAAAAAAAACLW42ZK2CZv+ax4qJZ0rC/AAAAAAAAAAAeRJqiWdKwP+m0zZsrYJk/AAAAAAAAAAAzz82bK2CZv4hXmqJZ0rA/AAAAAAAAAACIV5qiWdKwvzPPzZsrYJm/AAAAAAAAAAAze3HXYdKwP/G0KRbXM5i/AAAAAAAAAACUOkZjiJiuP+3PpGWImK4/AAAAAAAAAADtz6RliJiuv5Q6RmOImK4/AAAAAAAAAACUOkZjiJiuv+3PpGWImK6/AAAAAAAAAACXOkZjiJiuP/DPpGWImK6/AAAAAAAAAAAfxrw0Edd2P8f/GVxU0rG/AAAAAAAAAABnUEI0Edd2P3LXF1xU0rE/AAAAAAAAAABy1xdcVNKxv2pQQjQR13Y/AAAAAAAAAAAPKglcVNKxPwAN3TYR13a/AAAAAAAAAACF4aVslZSfP11um48XB7S/AAAAAAAAAACI4aVslZSfP1xum48XB7Q/AAAAAAAAAABfbpuPFwe0v3zhpWyVlJ8/AAAAAAAAAACzlIWPFwe0P1KD7W6VlJ+/AAAAAAAAAAA2LXGw4sKKv1qb8N78QLW/AAAAAAAAAAAqf9/e/EC1P7k85rLiwoo/AAAAAAAAAADkFvyy4sKKvwYv4N78QLU/AAAAAAAAAAAGL+De/EC1v+QW/LLiwoq/AAAAAAAAAAC43+lC7m6nP2fbOD+yDbI/AAAAAAAAAABn2zg/sg2yv7jf6ULubqc/AAAAAAAAAAAIYkEKYHGnvwpnnLLtDbK/AAAAAAAAAAC63+lC7m6nP2jbOD+yDbK/AAAAAAAAAABpHYk+sg2yP/m0A0Xubqe/AAAAAAAAAADEueux7Q2yPyrIXQxgcac/AAAAAAAAAAAqyF0MYHGnv8S567HtDbI/AAAAAAAAAADEueux7Q2yvyrIXQxgcae/AAAAAAAAAACICOmy4t+3P/L07TeDXnM/AAAAAAAAAACICOmy4t+3P/L07TeDXnO/AAAAAAAAAADx9O03g15zv4gI6bLi37c/AAAAAAAAAACICOmy4t+3v/L07TeDXnO/AAAAAAAAAADZtzk2g15zP5TO67Li37c/AAAAAAAAAACUzuuy4t+3v9i3OTaDXnM/AAAAAAAAAADZtzk2g15zv5TO67Li37e/AAAAAAAAAADZtzk2g15zP5TO67Li37e/AAAAAAAAAADBVFL0QfSMv3Ud3zsgobc/AAAAAAAAAAB0Hd87IKG3P8FUUvRB9Iw/AAAAAAAAAAB0Hd87IKG3v8FUUvRB9Iy/AAAAAAAAAAB1Hd87IKG3P8FUUvRB9Iy/AAAAAAAAAAC+Du47IKG3v1zmnvFB9Iw/AAAAAAAAAABc5p7xQfSMv74O7jsgobe/AAAAAAAAAABc5p7xQfSMP74O7jsgobc/AAAAAAAAAABc5p7xQfSMP74O7jsgobe/AAAAAAAAAAA=wGQAAAAAAABAAAAAAAAAAAoBAAAAAAAACgEAAAAAAAALAQAAAAAAAAsBAAAAAAAADAEAAAAAAAAMAQAAAAAAAE0AAAAAAAAAQAAAAAAAAAAKAQAAAAAAADYBAAAAAAAANgEAAAAAAAAYAQAAAAAAAEcBAAAAAAAALQEAAAAAAACqAAAAAAAAAFcBAAAAAAAAMAEAAAAAAAAcAQAAAAAAAFsBAAAAAAAAtwAAAAAAAAC2AAAAAAAAADkBAAAAAAAAGgEAAAAAAAAsAQAAAAAAAE8BAAAAAAAAIwEAAAAAAAA+AQAAAAAAAFABAAAAAAAAfQEAAAAAAAANAQAAAAAAAJQBAAAAAAAALAEAAAAAAAAaAQAAAAAAAFgBAAAAAAAAHwEAAAAAAAAxAQAAAAAAAGMBAAAAAAAAQAAAAAAAAAA2AQAAAAAAAEcBAAAAAAAAqgAAAAAAAAAtAQAAAAAAAJkBAAAAAAAA0AAAAAAAAAA7AQAAAAAAAGwBAAAAAAAAYwEAAAAAAAAxAQAAAAAAAIMBAAAAAAAAwgAAAAAAAABSAQAAAAAAAFkBAAAAAAAAEQEAAAAAAAB3AQAAAAAAAIIBAAAAAAAADQEAAAAAAABKAQAAAAAAAJQBAAAAAAAAIQEAAAAAAAAyAQAAAAAAAGUBAAAAAAAASAAAAAAAAAA4AQAAAAAAAHEBAAAAAAAAFAEAAAAAAABjAQAAAAAAAIMBAAAAAAAANQEAAAAAAAAgAQAAAAAAAGkBAAAAAAAArQAAAAAAAAA9AQAAAAAAAHMBAAAAAAAAMgEAAAAAAAAhAQAAAAAAAHUBAAAAAAAAWAEAAAAAAACyAAAAAAAAAIYBAAAAAAAAEgEAAAAAAAAyAQAAAAAAAHUBAAAAAAAAOwEAAAAAAADQAAAAAAAAAHEBAAAAAAAAQgEAAAAAAADGAAAAAAAAAEYBAAAAAAAAwgAAAAAAAADDAAAAAAAAAFIBAAAAAAAAMgEAAAAAAAASAQAAAAAAAGkBAAAAAAAARwAAAAAAAABfAQAAAAAAAH8BAAAAAAAAGwEAAAAAAAAzAQAAAAAAAKkBAAAAAAAALQEAAAAAAABNAAAAAAAAAHoBAAAAAAAAEgEAAAAAAAA1AQAAAAAAAGkBAAAAAAAAJwEAAAAAAABDAQAAAAAAAIIBAAAAAAAARwAAAAAAAADIAAAAAAAAAF8BAAAAAAAATQAAAAAAAAAMAQAAAAAAADoBAAAAAAAANgEAAAAAAAAKAQAAAAAAAGoBAAAAAAAASQEAAAAAAAARAQAAAAAAAIIBAAAAAAAAMwEAAAAAAAAbAQAAAAAAAFEBAAAAAAAAMQEAAAAAAAAfAQAAAAAAAGYBAAAAAAAAGAEAAAAAAAA2AQAAAAAAAEgBAAAAAAAAIAEAAAAAAAA1AQAAAAAAAHABAAAAAAAAxgAAAAAAAADHAAAAAAAAAEYBAAAAAAAADwEAAAAAAAA1AQAAAAAAAKcBAAAAAAAAHAEAAAAAAAAwAQAAAAAAAG4BAAAAAAAATQAAAAAAAAAtAQAAAAAAAGUBAAAAAAAAQwEAAAAAAAAnAQAAAAAAAHYBAAAAAAAAzwAAAAAAAADQAAAAAAAAAGwBAAAAAAAANQEAAAAAAAASAQAAAAAAAF4BAAAAAAAAsQAAAAAAAACyAAAAAAAAAFgBAAAAAAAAIwEAAAAAAAA8AQAAAAAAAHQBAAAAAAAAPwEAAAAAAAAiAQAAAAAAAGsBAAAAAAAAVwEAAAAAAACrAAAAAAAAAHMBAAAAAAAArAAAAAAAAACtAAAAAAAAAHMBAAAAAAAAOgEAAAAAAAAkAQAAAAAAAHoBAAAAAAAAIwEAAAAAAABQAQAAAAAAAHsBAAAAAAAAXAEAAAAAAADOAAAAAAAAAGwBAAAAAAAAPAEAAAAAAAATAQAAAAAAAHQBAAAAAAAA0QAAAAAAAABIAAAAAAAAAHEBAAAAAAAATQAAAAAAAAA6AQAAAAAAAHoBAAAAAAAANQEAAAAAAAAPAQAAAAAAAHABAAAAAAAADgEAAAAAAABBAQAAAAAAAFEBAAAAAAAAOQEAAAAAAAC2AAAAAAAAAGQBAAAAAAAAFwEAAAAAAABFAQAAAAAAAGgBAAAAAAAAKwEAAAAAAABOAQAAAAAAAF4BAAAAAAAAzgAAAAAAAADPAAAAAAAAAGwBAAAAAAAASQEAAAAAAAAXAQAAAAAAAGgBAAAAAAAAPgEAAAAAAAAbAQAAAAAAAFABAAAAAAAATgEAAAAAAAAaAQAAAAAAAF4BAAAAAAAAGAEAAAAAAABAAQAAAAAAAEcBAAAAAAAAPwEAAAAAAAAcAQAAAAAAAEsBAAAAAAAA0AAAAAAAAADRAAAAAAAAAHEBAAAAAAAAGAEAAAAAAACLAQAAAAAAAJABAAAAAAAAYQEAAAAAAABAAAAAAAAAAHIBAAAAAAAAIgEAAAAAAAA/AQAAAAAAAEsBAAAAAAAAJAEAAAAAAAA6AQAAAAAAAHwBAAAAAAAAOgEAAAAAAAATAQAAAAAAAHwBAAAAAAAATAEAAAAAAAAMAQAAAAAAAKABAAAAAAAAUAEAAAAAAAAbAQAAAAAAAKkBAAAAAAAALAEAAAAAAABYAQAAAAAAAIYBAAAAAAAAHAEAAAAAAAA/AQAAAAAAAIcBAAAAAAAAOgEAAAAAAAAMAQAAAAAAAFQBAAAAAAAArwAAAAAAAACwAAAAAAAAAE4BAAAAAAAAQAEAAAAAAAAYAQAAAAAAAJABAAAAAAAAFgEAAAAAAABCAQAAAAAAAEYBAAAAAAAAKgEAAAAAAAB9AQAAAAAAAJQBAAAAAAAAqwAAAAAAAACsAAAAAAAAAHMBAAAAAAAAtwAAAAAAAAA5AQAAAAAAAH4BAAAAAAAAPwEAAAAAAABrAQAAAAAAAJsBAAAAAAAAOAEAAAAAAABIAAAAAAAAAIoBAAAAAAAAPAEAAAAAAAAjAQAAAAAAAHsBAAAAAAAAEwEAAAAAAAA6AQAAAAAAAHQBAAAAAAAAMgEAAAAAAABMAQAAAAAAAKABAAAAAAAAGwEAAAAAAAA+AQAAAAAAAGEBAAAAAAAALgEAAAAAAABhAQAAAAAAAHIBAAAAAAAACwEAAAAAAAAMAQAAAAAAAEwBAAAAAAAATQEAAAAAAACcAQAAAAAAAKkBAAAAAAAAQwEAAAAAAAAXAQAAAAAAAIIBAAAAAAAARQAAAAAAAACqAAAAAAAAAJkBAAAAAAAAigEAAAAAAAAiAQAAAAAAAKYBAAAAAAAAJAEAAAAAAAA5AQAAAAAAAGQBAAAAAAAALAEAAAAAAABWAQAAAAAAAIkBAAAAAAAAPQEAAAAAAACtAAAAAAAAAIEBAAAAAAAARAEAAAAAAAAtAQAAAAAAAHoBAAAAAAAAfQEAAAAAAAAZAQAAAAAAAK0BAAAAAAAAJQEAAAAAAABKAQAAAAAAAJUBAAAAAAAAxQAAAAAAAADGAAAAAAAAAEIBAAAAAAAAzQAAAAAAAABcAQAAAAAAAIUBAAAAAAAAPAEAAAAAAAAQAQAAAAAAAJ0BAAAAAAAAMwEAAAAAAABNAQAAAAAAAKkBAAAAAAAAOQEAAAAAAAAkAQAAAAAAAHwBAAAAAAAAQAEAAAAAAAB9AQAAAAAAAK0BAAAAAAAASgEAAAAAAABiAQAAAAAAAJUBAAAAAAAAGAEAAAAAAABIAQAAAAAAAIsBAAAAAAAAzQAAAAAAAADOAAAAAAAAAFwBAAAAAAAAMAEAAAAAAABbAQAAAAAAAIgBAAAAAAAAWgEAAAAAAAAdAQAAAAAAAGIBAAAAAAAAEwEAAAAAAAA8AQAAAAAAAG4BAAAAAAAAygAAAAAAAADLAAAAAAAAAEMBAAAAAAAATwEAAAAAAAAPAQAAAAAAAKcBAAAAAAAAFQEAAAAAAABNAQAAAAAAAI4BAAAAAAAAFAEAAAAAAACDAQAAAAAAAKMBAAAAAAAArwAAAAAAAABOAQAAAAAAAJ8BAAAAAAAATQEAAAAAAAAzAQAAAAAAAI4BAAAAAAAAawEAAAAAAAAiAQAAAAAAAIoBAAAAAAAAhAEAAAAAAAA7AQAAAAAAAK8BAAAAAAAAGgEAAAAAAABOAQAAAAAAAFgBAAAAAAAAWwEAAAAAAAAcAQAAAAAAAIcBAAAAAAAAQwEAAAAAAADLAAAAAAAAAF0BAAAAAAAAPgEAAAAAAAAjAQAAAAAAAG0BAAAAAAAAiwEAAAAAAABIAQAAAAAAAKwBAAAAAAAAEAEAAAAAAAA8AQAAAAAAAHsBAAAAAAAAUgEAAAAAAAAdAQAAAAAAAFkBAAAAAAAAFQEAAAAAAACEAQAAAAAAAK8BAAAAAAAAiwEAAAAAAAA0AQAAAAAAAJABAAAAAAAAPQEAAAAAAAAhAQAAAAAAAHMBAAAAAAAADgEAAAAAAABRAQAAAAAAAGABAAAAAAAAFwEAAAAAAABDAQAAAAAAAKQBAAAAAAAATAEAAAAAAAAyAQAAAAAAAGkBAAAAAAAADgEAAAAAAABgAQAAAAAAAGgBAAAAAAAAdwEAAAAAAAAnAQAAAAAAAIIBAAAAAAAAqgAAAAAAAACrAAAAAAAAAFcBAAAAAAAAIQEAAAAAAAA9AQAAAAAAAHUBAAAAAAAAVwEAAAAAAAAhAQAAAAAAAGUBAAAAAAAAVgEAAAAAAAAfAQAAAAAAAIkBAAAAAAAANgEAAAAAAABqAQAAAAAAAJ4BAAAAAAAALQEAAAAAAABXAQAAAAAAAGUBAAAAAAAAYAEAAAAAAAAoAQAAAAAAAGgBAAAAAAAAQwEAAAAAAABdAQAAAAAAAKQBAAAAAAAAWgEAAAAAAABiAQAAAAAAAIwBAAAAAAAAUQEAAAAAAABBAQAAAAAAAI4BAAAAAAAAGQEAAAAAAAB9AQAAAAAAAK4BAAAAAAAAWAEAAAAAAABOAQAAAAAAAKgBAAAAAAAAywAAAAAAAADMAAAAAAAAAF0BAAAAAAAARAEAAAAAAAC0AAAAAAAAAJkBAAAAAAAAZQEAAAAAAAAyAQAAAAAAAKABAAAAAAAAXwEAAAAAAAAmAQAAAAAAAH8BAAAAAAAAQAAAAAAAAABHAQAAAAAAAHIBAAAAAAAAbAEAAAAAAAA7AQAAAAAAAIQBAAAAAAAAwQAAAAAAAADCAAAAAAAAAFkBAAAAAAAAUwEAAAAAAAAmAQAAAAAAAHcBAAAAAAAAOAEAAAAAAACKAQAAAAAAAKYBAAAAAAAAHgEAAAAAAABsAQAAAAAAAIQBAAAAAAAAWgEAAAAAAAAUAQAAAAAAAKMBAAAAAAAADAEAAAAAAAALAQAAAAAAAFQBAAAAAAAAEQEAAAAAAABTAQAAAAAAAHcBAAAAAAAATQEAAAAAAAAVAQAAAAAAAKYBAAAAAAAAHwEAAAAAAABWAQAAAAAAAGYBAAAAAAAAFQEAAAAAAABBAQAAAAAAAIQBAAAAAAAADwEAAAAAAABPAQAAAAAAAG8BAAAAAAAAIQEAAAAAAABXAQAAAAAAAHMBAAAAAAAAXAEAAAAAAAApAQAAAAAAAIUBAAAAAAAAagEAAAAAAAAgAQAAAAAAAJ4BAAAAAAAAVgEAAAAAAAAsAQAAAAAAAIYBAAAAAAAAQQEAAAAAAAAOAQAAAAAAAHkBAAAAAAAAbwEAAAAAAAA3AQAAAAAAAKwBAAAAAAAApgEAAAAAAAAVAQAAAAAAAK8BAAAAAAAAKAEAAAAAAABgAQAAAAAAAIABAAAAAAAAswAAAAAAAABGAAAAAAAAAFYBAAAAAAAAHgEAAAAAAABBAQAAAAAAAHkBAAAAAAAARQEAAAAAAAAOAQAAAAAAAGgBAAAAAAAAtAAAAAAAAABFAAAAAAAAAJkBAAAAAAAAYAEAAAAAAAAuAQAAAAAAAIABAAAAAAAAYAEAAAAAAABRAQAAAAAAAJMBAAAAAAAAUwEAAAAAAAAqAQAAAAAAAJQBAAAAAAAAQQEAAAAAAAAeAQAAAAAAAIQBAAAAAAAAgwEAAAAAAAAvAQAAAAAAAKMBAAAAAAAAbQEAAAAAAAAKAQAAAAAAAKUBAAAAAAAAQQEAAAAAAAAVAQAAAAAAAI4BAAAAAAAARAEAAAAAAAAkAQAAAAAAAI0BAAAAAAAAEAEAAAAAAABLAQAAAAAAAJ0BAAAAAAAAugAAAAAAAAC5AAAAAAAAAFsBAAAAAAAAxQAAAAAAAABCAQAAAAAAAHgBAAAAAAAAPgEAAAAAAABtAQAAAAAAAKUBAAAAAAAASgEAAAAAAAANAQAAAAAAAGIBAAAAAAAAYwEAAAAAAAA3AQAAAAAAAG8BAAAAAAAAygAAAAAAAABDAQAAAAAAAHYBAAAAAAAAKAEAAAAAAABJAQAAAAAAAGgBAAAAAAAARgEAAAAAAADHAAAAAAAAAH8BAAAAAAAADwEAAAAAAABIAQAAAAAAAHABAAAAAAAACwEAAAAAAABMAQAAAAAAAGoBAAAAAAAArQAAAAAAAACuAAAAAAAAAIEBAAAAAAAAnAEAAAAAAAAQAQAAAAAAAKkBAAAAAAAAKgEAAAAAAABTAQAAAAAAAKsBAAAAAAAAHgEAAAAAAABcAQAAAAAAAGwBAAAAAAAAFgEAAAAAAABGAQAAAAAAAJcBAAAAAAAAVgEAAAAAAABGAAAAAAAAAGYBAAAAAAAAIAEAAAAAAABMAQAAAAAAAGkBAAAAAAAATgEAAAAAAAArAQAAAAAAAJ8BAAAAAAAARgAAAAAAAAC+AAAAAAAAAGYBAAAAAAAATAEAAAAAAAAgAQAAAAAAAGoBAAAAAAAAMwEAAAAAAABRAQAAAAAAAI4BAAAAAAAADgEAAAAAAABFAQAAAAAAAHkBAAAAAAAAVAEAAAAAAAALAQAAAAAAAG0BAAAAAAAANQEAAAAAAABeAQAAAAAAAKcBAAAAAAAAXwEAAAAAAAAnAQAAAAAAAHcBAAAAAAAAJgEAAAAAAABfAQAAAAAAAHcBAAAAAAAAtAAAAAAAAABEAQAAAAAAAI0BAAAAAAAACwEAAAAAAAAKAQAAAAAAAG0BAAAAAAAAOgEAAAAAAABUAQAAAAAAAHQBAAAAAAAAKQEAAAAAAABFAQAAAAAAAKQBAAAAAAAARQEAAAAAAAAXAQAAAAAAAKQBAAAAAAAAwQAAAAAAAABZAQAAAAAAAKEBAAAAAAAAIwEAAAAAAABUAQAAAAAAAG0BAAAAAAAADwEAAAAAAABvAQAAAAAAAKwBAAAAAAAARQEAAAAAAAApAQAAAAAAAJgBAAAAAAAAJAEAAAAAAABEAQAAAAAAAHoBAAAAAAAAtgAAAAAAAAC1AAAAAAAAAGQBAAAAAAAAFgEAAAAAAABTAQAAAAAAAJQBAAAAAAAAFAEAAAAAAABaAQAAAAAAAJoBAAAAAAAAIgEAAAAAAABLAQAAAAAAAJwBAAAAAAAATQEAAAAAAAAiAQAAAAAAAJwBAAAAAAAACgEAAAAAAAALAQAAAAAAAGoBAAAAAAAAQgEAAAAAAAAWAQAAAAAAAJEBAAAAAAAAYwEAAAAAAAAUAQAAAAAAAJoBAAAAAAAAXgEAAAAAAAAaAQAAAAAAAKcBAAAAAAAAWgEAAAAAAAA0AQAAAAAAAJoBAAAAAAAALQEAAAAAAABEAQAAAAAAAJkBAAAAAAAARwEAAAAAAABAAQAAAAAAAK0BAAAAAAAASAEAAAAAAAAPAQAAAAAAAKwBAAAAAAAAvwAAAAAAAADAAAAAAAAAAGcBAAAAAAAANwEAAAAAAABjAQAAAAAAAJoBAAAAAAAADQEAAAAAAAB9AQAAAAAAAJABAAAAAAAAeAEAAAAAAABCAQAAAAAAAJEBAAAAAAAAfQEAAAAAAABAAQAAAAAAAJABAAAAAAAAvQAAAAAAAAC8AAAAAAAAAGsBAAAAAAAAUAEAAAAAAAAQAQAAAAAAAHsBAAAAAAAAVQEAAAAAAAAoAQAAAAAAAIABAAAAAAAAKwEAAAAAAABeAQAAAAAAAI8BAAAAAAAAxwAAAAAAAABHAAAAAAAAAH8BAAAAAAAAPQEAAAAAAACBAQAAAAAAAI8BAAAAAAAAJgEAAAAAAABGAQAAAAAAAH8BAAAAAAAASgEAAAAAAAAlAQAAAAAAAJEBAAAAAAAAFwEAAAAAAABJAQAAAAAAAIIBAAAAAAAAUQEAAAAAAAAbAQAAAAAAAJMBAAAAAAAAFgEAAAAAAABKAQAAAAAAAJEBAAAAAAAAGQEAAAAAAABVAQAAAAAAAIABAAAAAAAAJQEAAAAAAAB4AQAAAAAAAJEBAAAAAAAAEQEAAAAAAABJAQAAAAAAAKoBAAAAAAAALwEAAAAAAABZAQAAAAAAAKMBAAAAAAAAVAEAAAAAAAAjAQAAAAAAAHQBAAAAAAAAXgEAAAAAAAASAQAAAAAAAI8BAAAAAAAAWQEAAAAAAAAdAQAAAAAAAKMBAAAAAAAASwEAAAAAAAAcAQAAAAAAAJ0BAAAAAAAARgEAAAAAAAAmAQAAAAAAAJcBAAAAAAAAWQEAAAAAAAAvAQAAAAAAAKEBAAAAAAAAgQEAAAAAAAArAQAAAAAAAI8BAAAAAAAAuAAAAAAAAAC3AAAAAAAAAH4BAAAAAAAAJAEAAAAAAABkAQAAAAAAAI0BAAAAAAAAcgEAAAAAAAAZAQAAAAAAAIABAAAAAAAALgEAAAAAAAByAQAAAAAAAIABAAAAAAAAbwEAAAAAAABPAQAAAAAAAIkBAAAAAAAASAEAAAAAAAA2AQAAAAAAAJ4BAAAAAAAAUgEAAAAAAADDAAAAAAAAAJYBAAAAAAAAYQEAAAAAAAAuAQAAAAAAAJMBAAAAAAAASQEAAAAAAAAoAQAAAAAAAKoBAAAAAAAAGwEAAAAAAABhAQAAAAAAAJMBAAAAAAAAHAEAAAAAAABuAQAAAAAAAJ0BAAAAAAAAyQAAAAAAAADKAAAAAAAAAHYBAAAAAAAAIgEAAAAAAABNAQAAAAAAAKYBAAAAAAAAJQEAAAAAAABSAQAAAAAAAJYBAAAAAAAASgEAAAAAAAAWAQAAAAAAAJQBAAAAAAAAbgEAAAAAAAA8AQAAAAAAAJ0BAAAAAAAAxAAAAAAAAADFAAAAAAAAAHgBAAAAAAAAuAAAAAAAAAB+AQAAAAAAAIgBAAAAAAAAEAEAAAAAAABQAQAAAAAAAKkBAAAAAAAAHwEAAAAAAABjAQAAAAAAAG8BAAAAAAAATgEAAAAAAACwAAAAAAAAAKgBAAAAAAAAswAAAAAAAABWAQAAAAAAAIYBAAAAAAAATwEAAAAAAAAsAQAAAAAAAIkBAAAAAAAASwEAAAAAAAAQAQAAAAAAAJwBAAAAAAAAuwAAAAAAAACHAQAAAAAAAJsBAAAAAAAAuwAAAAAAAAC6AAAAAAAAAIcBAAAAAAAASAAAAAAAAAC9AAAAAAAAAIoBAAAAAAAAbgEAAAAAAAAwAQAAAAAAAJIBAAAAAAAAGgEAAAAAAABPAQAAAAAAAKcBAAAAAAAAtQAAAAAAAAC0AAAAAAAAAI0BAAAAAAAAWwEAAAAAAAC5AAAAAAAAAIgBAAAAAAAAwwAAAAAAAADEAAAAAAAAAJYBAAAAAAAAEwEAAAAAAABuAQAAAAAAAJIBAAAAAAAAyAAAAAAAAADJAAAAAAAAALABAAAAAAAAHQEAAAAAAABSAQAAAAAAAJUBAAAAAAAAUgEAAAAAAAAlAQAAAAAAAJUBAAAAAAAATQAAAAAAAABlAQAAAAAAAKABAAAAAAAAEQEAAAAAAABVAQAAAAAAAKsBAAAAAAAAXwEAAAAAAADIAAAAAAAAALABAAAAAAAAOAEAAAAAAACmAQAAAAAAAK8BAAAAAAAAKQEAAAAAAABcAQAAAAAAAJgBAAAAAAAAYQEAAAAAAAA+AQAAAAAAAKUBAAAAAAAAXAEAAAAAAAAeAQAAAAAAAJgBAAAAAAAAUwEAAAAAAAAWAQAAAAAAAJcBAAAAAAAAfgEAAAAAAAAwAQAAAAAAAIgBAAAAAAAAhwEAAAAAAAA/AQAAAAAAAJsBAAAAAAAAJgEAAAAAAABTAQAAAAAAAJcBAAAAAAAANwEAAAAAAACLAQAAAAAAAKwBAAAAAAAAqwEAAAAAAABVAQAAAAAAAK4BAAAAAAAAsQAAAAAAAABYAQAAAAAAAKgBAAAAAAAAMAEAAAAAAAB+AQAAAAAAAJIBAAAAAAAAfgEAAAAAAAA5AQAAAAAAAJIBAAAAAAAAOwEAAAAAAABxAQAAAAAAAK8BAAAAAAAAKAEAAAAAAABVAQAAAAAAAKoBAAAAAAAAzAAAAAAAAADNAAAAAAAAAIUBAAAAAAAAsgAAAAAAAACzAAAAAAAAAIYBAAAAAAAAJwEAAAAAAABfAQAAAAAAALABAAAAAAAAuQAAAAAAAAC4AAAAAAAAAIgBAAAAAAAArgAAAAAAAACvAAAAAAAAAJ8BAAAAAAAAVQEAAAAAAAARAQAAAAAAAKoBAAAAAAAAsAAAAAAAAACxAAAAAAAAAKgBAAAAAAAALwEAAAAAAABnAQAAAAAAAKEBAAAAAAAAXQEAAAAAAADMAAAAAAAAAIUBAAAAAAAAUwEAAAAAAAARAQAAAAAAAKsBAAAAAAAAugAAAAAAAABbAQAAAAAAAIcBAAAAAAAAZwEAAAAAAADAAAAAAAAAAKEBAAAAAAAAvwAAAAAAAABnAQAAAAAAAKIBAAAAAAAAKQEAAAAAAABdAQAAAAAAAIUBAAAAAAAAZwEAAAAAAAAxAQAAAAAAAKIBAAAAAAAANAEAAAAAAABaAQAAAAAAAIwBAAAAAAAAawEAAAAAAAC8AAAAAAAAAJsBAAAAAAAAVQEAAAAAAAAZAQAAAAAAAK4BAAAAAAAADAEAAAAAAABNAAAAAAAAAKABAAAAAAAACgEAAAAAAABAAAAAAAAAAKUBAAAAAAAAvAAAAAAAAAC7AAAAAAAAAJsBAAAAAAAAHQEAAAAAAABaAQAAAAAAAKMBAAAAAAAAwAAAAAAAAADBAAAAAAAAAKEBAAAAAAAAvgAAAAAAAAC/AAAAAAAAAKIBAAAAAAAAKgEAAAAAAACrAQAAAAAAAK4BAAAAAAAAYgEAAAAAAAANAQAAAAAAAIwBAAAAAAAAeQEAAAAAAABFAQAAAAAAAJgBAAAAAAAAZwEAAAAAAAAvAQAAAAAAAIMBAAAAAAAAZgEAAAAAAAC+AAAAAAAAAKIBAAAAAAAAMQEAAAAAAABnAQAAAAAAAIMBAAAAAAAAMQEAAAAAAABmAQAAAAAAAKIBAAAAAAAAeAEAAAAAAAAlAQAAAAAAAJYBAAAAAAAALgEAAAAAAABgAQAAAAAAAJMBAAAAAAAAXQEAAAAAAAApAQAAAAAAAKQBAAAAAAAAQAAAAAAAAABhAQAAAAAAAKUBAAAAAAAAZAEAAAAAAAC1AAAAAAAAAI0BAAAAAAAAdQEAAAAAAAA9AQAAAAAAAI8BAAAAAAAAdgEAAAAAAAAnAQAAAAAAALABAAAAAAAAHwEAAAAAAABvAQAAAAAAAIkBAAAAAAAAYgEAAAAAAAAdAQAAAAAAAJUBAAAAAAAAvQAAAAAAAABrAQAAAAAAAIoBAAAAAAAAcAEAAAAAAABIAQAAAAAAAJ4BAAAAAAAAIAEAAAAAAABwAQAAAAAAAJ4BAAAAAAAAEgEAAAAAAAB1AQAAAAAAAI8BAAAAAAAAOQEAAAAAAAB8AQAAAAAAAJIBAAAAAAAAGQEAAAAAAAByAQAAAAAAAK0BAAAAAAAAfAEAAAAAAAATAQAAAAAAAJIBAAAAAAAAcgEAAAAAAABHAQAAAAAAAK0BAAAAAAAAfQEAAAAAAAAqAQAAAAAAAK4BAAAAAAAAiwEAAAAAAAA3AQAAAAAAAJoBAAAAAAAANAEAAAAAAACLAQAAAAAAAJoBAAAAAAAAgQEAAAAAAACuAAAAAAAAAJ8BAAAAAAAAxAAAAAAAAAB4AQAAAAAAAJYBAAAAAAAANAEAAAAAAACMAQAAAAAAAJABAAAAAAAAjAEAAAAAAAANAQAAAAAAAJABAAAAAAAAHgEAAAAAAAB5AQAAAAAAAJgBAAAAAAAAcQEAAAAAAAA4AQAAAAAAAK8BAAAAAAAAyQAAAAAAAAB2AQAAAAAAALABAAAAAAAAKwEAAAAAAACBAQAAAAAAAJ8BAAAAAAAA0QAAAAAAAAD9AQAAAAAAAMEBAAAAAAAAwgEAAAAAAAD+AQAAAAAAAKoAAAAAAAAAwwEAAAAAAAD/AQAAAAAAAL4AAAAAAAAAxAEAAAAAAAAAAgAAAAAAAMgAAAAAAAAAyAEAAAAAAAD1AQAAAAAAALoAAAAAAAAAsAAAAAAAAAD2AQAAAAAAAMUBAAAAAAAAxAAAAAAAAAD3AQAAAAAAAMYBAAAAAAAAzgAAAAAAAAD4AQAAAAAAAMcBAAAAAAAAyQEAAAAAAAD5AQAAAAAAAK0AAAAAAAAAygEAAAAAAAD6AQAAAAAAAMEAAAAAAAAAywEAAAAAAAD7AQAAAAAAAMsAAAAAAAAAtwAAAAAAAAD8AQAAAAAAAMwBAAAAAAAAwQEAAAAAAADpAQAAAAAAANEAAAAAAAAAvgAAAAAAAADqAQAAAAAAAMMBAAAAAAAAyAAAAAAAAADrAQAAAAAAAMQBAAAAAAAAqgAAAAAAAADsAQAAAAAAAMIBAAAAAAAAxQEAAAAAAADtAQAAAAAAALAAAAAAAAAAxwEAAAAAAADvAQAAAAAAAM4AAAAAAAAAxgEAAAAAAADwAQAAAAAAAMQAAAAAAAAAugAAAAAAAADuAQAAAAAAAMgBAAAAAAAArQAAAAAAAADxAQAAAAAAAMkBAAAAAAAAwQAAAAAAAADyAQAAAAAAAMoBAAAAAAAAywAAAAAAAADzAQAAAAAAAMsBAAAAAAAAzAEAAAAAAAD0AQAAAAAAALcAAAAAAAAAzQEAAAAAAAADAgAAAAAAALgBAAAAAAAAzgEAAAAAAAABAgAAAAAAALUBAAAAAAAAtgEAAAAAAAACAgAAAAAAAM8BAAAAAAAA0AEAAAAAAAAEAgAAAAAAALsBAAAAAAAAvgEAAAAAAAABAgAAAAAAAM4BAAAAAAAAvQEAAAAAAAADAgAAAAAAAM0BAAAAAAAAzwEAAAAAAAACAgAAAAAAAL8BAAAAAAAAwAEAAAAAAAAEAgAAAAAAANABAAAAAAAAAwIAAAAAAAAbAgAAAAAAALgBAAAAAAAAAQIAAAAAAAAaAgAAAAAAALUBAAAAAAAAtgEAAAAAAAAZAgAAAAAAAAICAAAAAAAABAIAAAAAAAAgAgAAAAAAALsBAAAAAAAAvgEAAAAAAAAmAgAAAAAAAAECAAAAAAAAAgIAAAAAAAAlAgAAAAAAAL8BAAAAAAAAvQEAAAAAAAAnAgAAAAAAAAMCAAAAAAAAwAEAAAAAAAAoAgAAAAAAAAQCAAAAAAAA0gEAAAAAAADrAQAAAAAAAL0BAAAAAAAA0QEAAAAAAADqAQAAAAAAAL4BAAAAAAAA1AEAAAAAAADsAQAAAAAAAMABAAAAAAAAvwEAAAAAAADpAQAAAAAAANMBAAAAAAAA0AAAAAAAAAD9AQAAAAAAANEAAAAAAAAAqgAAAAAAAAD+AQAAAAAAAKsAAAAAAAAAvgAAAAAAAAD/AQAAAAAAAL8AAAAAAAAAyAAAAAAAAAAAAgAAAAAAAMkAAAAAAAAA7AAAAAAAAAALAgAAAAAAAM8BAAAAAAAAzgEAAAAAAAAKAgAAAAAAAN4AAAAAAAAAzQEAAAAAAAAJAgAAAAAAAPoAAAAAAAAA0AEAAAAAAAAMAgAAAAAAAOEAAAAAAAAA6gEAAAAAAAAmAgAAAAAAAL4BAAAAAAAA6wEAAAAAAAAnAgAAAAAAAL0BAAAAAAAA7AEAAAAAAAAoAgAAAAAAAMABAAAAAAAAvwEAAAAAAAAlAgAAAAAAAOkBAAAAAAAA7gAAAAAAAADRAQAAAAAAAEoAAAAAAAAA/AAAAAAAAADSAQAAAAAAAEsAAAAAAAAATAAAAAAAAADTAQAAAAAAAAkBAAAAAAAA0gAAAAAAAADUAQAAAAAAAEkAAAAAAAAA+gAAAAAAAAAGAgAAAAAAAM0BAAAAAAAAzwEAAAAAAAAHAgAAAAAAAOwAAAAAAAAA3gAAAAAAAAAFAgAAAAAAAM4BAAAAAAAA4QAAAAAAAAAIAgAAAAAAANABAAAAAAAAuAEAAAAAAAAJAgAAAAAAAM0BAAAAAAAAzwEAAAAAAAALAgAAAAAAALYBAAAAAAAAtQEAAAAAAAAKAgAAAAAAAM4BAAAAAAAAuwEAAAAAAAAMAgAAAAAAANABAAAAAAAAzQEAAAAAAAAGAgAAAAAAAL0BAAAAAAAAzgEAAAAAAAAFAgAAAAAAAL4BAAAAAAAAvwEAAAAAAAAHAgAAAAAAAM8BAAAAAAAA0AEAAAAAAAAIAgAAAAAAAMABAAAAAAAAugAAAAAAAAD1AQAAAAAAALkAAAAAAAAArwAAAAAAAAD2AQAAAAAAALAAAAAAAAAAwwAAAAAAAAD3AQAAAAAAAMQAAAAAAAAAzQAAAAAAAAD4AQAAAAAAAM4AAAAAAAAArQAAAAAAAAD5AQAAAAAAAK4AAAAAAAAAwQAAAAAAAAD6AQAAAAAAAMIAAAAAAAAAywAAAAAAAAD7AQAAAAAAAMwAAAAAAAAAuAAAAAAAAAD8AQAAAAAAALcAAAAAAAAA2gEAAAAAAADxAQAAAAAAALkBAAAAAAAA2wEAAAAAAADyAQAAAAAAALoBAAAAAAAA3AEAAAAAAADzAQAAAAAAALwBAAAAAAAAuwEAAAAAAAD0AQAAAAAAANkBAAAAAAAA1wEAAAAAAADuAQAAAAAAALYBAAAAAAAAtQEAAAAAAADtAQAAAAAAANYBAAAAAAAAtwEAAAAAAADvAQAAAAAAANgBAAAAAAAAuAEAAAAAAADwAQAAAAAAANUBAAAAAAAA+AAAAAAAAADVAQAAAAAAAPcAAAAAAAAA3AAAAAAAAADWAQAAAAAAANsAAAAAAAAABgEAAAAAAADYAQAAAAAAAAUBAAAAAAAA6QAAAAAAAADXAQAAAAAAAOoAAAAAAAAA1gAAAAAAAADaAQAAAAAAANUAAAAAAAAA8gAAAAAAAADbAQAAAAAAAPEAAAAAAAAAAAEAAAAAAADcAQAAAAAAAP8AAAAAAAAA4wAAAAAAAADZAQAAAAAAAOQAAAAAAAAA0wEAAAAAAAAtAgAAAAAAAAkBAAAAAAAA0gAAAAAAAAAuAgAAAAAAANQBAAAAAAAA/AAAAAAAAAAwAgAAAAAAANIBAAAAAAAA7gAAAAAAAAAvAgAAAAAAANEBAAAAAAAAsAAAAAAAAADtAQAAAAAAALEAAAAAAAAAzgAAAAAAAADvAQAAAAAAAM8AAAAAAAAAuwAAAAAAAADuAQAAAAAAALoAAAAAAAAAxAAAAAAAAADwAQAAAAAAAMUAAAAAAAAAtwAAAAAAAAD0AQAAAAAAALYAAAAAAAAArAAAAAAAAADxAQAAAAAAAK0AAAAAAAAAwAAAAAAAAADyAQAAAAAAAMEAAAAAAAAAygAAAAAAAADzAQAAAAAAAMsAAAAAAAAA2gAAAAAAAADdAQAAAAAAANkAAAAAAAAA9gAAAAAAAADeAQAAAAAAAPUAAAAAAAAABAEAAAAAAADfAQAAAAAAAAMBAAAAAAAA5wAAAAAAAADgAQAAAAAAAOgAAAAAAAAA5QAAAAAAAADhAQAAAAAAAOYAAAAAAAAA2AAAAAAAAADiAQAAAAAAANcAAAAAAAAA9AAAAAAAAADjAQAAAAAAAPMAAAAAAAAAAgEAAAAAAADkAQAAAAAAAAEBAAAAAAAA8QEAAAAAAAAdAgAAAAAAALkBAAAAAAAA8gEAAAAAAAAeAgAAAAAAALoBAAAAAAAA8wEAAAAAAAAfAgAAAAAAALwBAAAAAAAAuwEAAAAAAAAgAgAAAAAAAPQBAAAAAAAA7gEAAAAAAAAZAgAAAAAAALYBAAAAAAAAuAEAAAAAAAAbAgAAAAAAAPABAAAAAAAAtQEAAAAAAAAaAgAAAAAAAO0BAAAAAAAAtwEAAAAAAAAcAgAAAAAAAO8BAAAAAAAAwQEAAAAAAAAtAgAAAAAAANMBAAAAAAAA1AEAAAAAAAAuAgAAAAAAAMIBAAAAAAAA0gEAAAAAAAAwAgAAAAAAAMQBAAAAAAAA0QEAAAAAAAAvAgAAAAAAAMMBAAAAAAAACAEAAAAAAADlAQAAAAAAAAcBAAAAAAAA1AAAAAAAAADmAQAAAAAAANMAAAAAAAAA8AAAAAAAAADnAQAAAAAAAO8AAAAAAAAA/gAAAAAAAADoAQAAAAAAAP0AAAAAAAAA+gAAAAAAAAAJAgAAAAAAAPkAAAAAAAAA3gAAAAAAAAAKAgAAAAAAAN0AAAAAAAAA6wAAAAAAAAALAgAAAAAAAOwAAAAAAAAA4QAAAAAAAAAMAgAAAAAAAOIAAAAAAAAA3QEAAAAAAAD2AQAAAAAAALEBAAAAAAAA3gEAAAAAAAD3AQAAAAAAALMBAAAAAAAA3wEAAAAAAAD4AQAAAAAAALQBAAAAAAAAsgEAAAAAAAD1AQAAAAAAAOABAAAAAAAA4QEAAAAAAAD8AQAAAAAAALIBAAAAAAAAsQEAAAAAAAD5AQAAAAAAAOIBAAAAAAAAswEAAAAAAAD6AQAAAAAAAOMBAAAAAAAAtAEAAAAAAAD7AQAAAAAAAOQBAAAAAAAA1QEAAAAAAAAyAgAAAAAAAPcAAAAAAAAA1gEAAAAAAAAxAgAAAAAAANsAAAAAAAAA2AEAAAAAAAAzAgAAAAAAAAUBAAAAAAAA6QAAAAAAAAA0AgAAAAAAANcBAAAAAAAA2QEAAAAAAAA1AgAAAAAAAOQAAAAAAAAA1gAAAAAAAAA2AgAAAAAAANoBAAAAAAAA8gAAAAAAAAA3AgAAAAAAANsBAAAAAAAAAAEAAAAAAAA4AgAAAAAAANwBAAAAAAAA0QAAAAAAAADpAQAAAAAAAEgAAAAAAAAARgAAAAAAAADqAQAAAAAAAL4AAAAAAAAARwAAAAAAAADrAQAAAAAAAMgAAAAAAAAARQAAAAAAAADsAQAAAAAAAKoAAAAAAAAA0wEAAAAAAADpAQAAAAAAAMEBAAAAAAAAxAEAAAAAAADrAQAAAAAAANIBAAAAAAAAwwEAAAAAAADqAQAAAAAAANEBAAAAAAAAwgEAAAAAAADsAQAAAAAAANQBAAAAAAAA1gEAAAAAAADtAQAAAAAAAMUBAAAAAAAA2AEAAAAAAADvAQAAAAAAAMcBAAAAAAAA1QEAAAAAAADwAQAAAAAAAMYBAAAAAAAAyAEAAAAAAADuAQAAAAAAANcBAAAAAAAAyQEAAAAAAADxAQAAAAAAANoBAAAAAAAAygEAAAAAAADyAQAAAAAAANsBAAAAAAAAywEAAAAAAADzAQAAAAAAANwBAAAAAAAA2QEAAAAAAAD0AQAAAAAAAMwBAAAAAAAAxgEAAAAAAAAyAgAAAAAAANUBAAAAAAAA1wEAAAAAAAA0AgAAAAAAAMgBAAAAAAAAxQEAAAAAAAAxAgAAAAAAANYBAAAAAAAAxwEAAAAAAAAzAgAAAAAAANgBAAAAAAAA2gEAAAAAAAA2AgAAAAAAAMkBAAAAAAAA2wEAAAAAAAA3AgAAAAAAAMoBAAAAAAAA3AEAAAAAAAA4AgAAAAAAAMsBAAAAAAAAzAEAAAAAAAA1AgAAAAAAANkBAAAAAAAA3wAAAAAAAAAFAgAAAAAAAN4AAAAAAAAA+wAAAAAAAAAGAgAAAAAAAPoAAAAAAAAA7AAAAAAAAAAHAgAAAAAAAO0AAAAAAAAA4AAAAAAAAAAIAgAAAAAAAOEAAAAAAAAARgAAAAAAAAAmAgAAAAAAAOoBAAAAAAAARwAAAAAAAAAnAgAAAAAAAOsBAAAAAAAARQAAAAAAAAAoAgAAAAAAAOwBAAAAAAAA6QEAAAAAAAAlAgAAAAAAAEgAAAAAAAAA4AEAAAAAAAD1AQAAAAAAAMgBAAAAAAAAxQEAAAAAAAD2AQAAAAAAAN0BAAAAAAAAxgEAAAAAAAD3AQAAAAAAAN4BAAAAAAAAxwEAAAAAAAD4AQAAAAAAAN8BAAAAAAAA4gEAAAAAAAD5AQAAAAAAAMkBAAAAAAAA4wEAAAAAAAD6AQAAAAAAAMoBAAAAAAAA5AEAAAAAAAD7AQAAAAAAAMsBAAAAAAAAzAEAAAAAAAD8AQAAAAAAAOEBAAAAAAAAsgAAAAAAAAAaAgAAAAAAAAECAAAAAAAAxgAAAAAAAAAbAgAAAAAAAAMCAAAAAAAAAgIAAAAAAAAZAgAAAAAAALwAAAAAAAAAtQAAAAAAAAAgAgAAAAAAAAQCAAAAAAAAAwIAAAAAAAAnAgAAAAAAAMcAAAAAAAAAvQAAAAAAAAAlAgAAAAAAAAICAAAAAAAAAQIAAAAAAAAmAgAAAAAAALMAAAAAAAAABAIAAAAAAAAoAgAAAAAAALQAAAAAAAAA5QEAAAAAAAD9AQAAAAAAALcBAAAAAAAAuQEAAAAAAAD+AQAAAAAAAOYBAAAAAAAAugEAAAAAAAD/AQAAAAAAAOcBAAAAAAAAvAEAAAAAAAAAAgAAAAAAAOgBAAAAAAAAwQEAAAAAAAD9AQAAAAAAAOUBAAAAAAAA5gEAAAAAAAD+AQAAAAAAAMIBAAAAAAAA5wEAAAAAAAD/AQAAAAAAAMMBAAAAAAAA6AEAAAAAAAAAAgAAAAAAAMQBAAAAAAAA2gAAAAAAAAAxAgAAAAAAAN0BAAAAAAAA9gAAAAAAAAAyAgAAAAAAAN4BAAAAAAAABAEAAAAAAAAzAgAAAAAAAN8BAAAAAAAA4AEAAAAAAAA0AgAAAAAAAOgAAAAAAAAA4gEAAAAAAAA2AgAAAAAAANcAAAAAAAAA4wEAAAAAAAA3AgAAAAAAAPMAAAAAAAAA5AEAAAAAAAA4AgAAAAAAAAEBAAAAAAAA5QAAAAAAAAA1AgAAAAAAAOEBAAAAAAAA5QEAAAAAAAARAgAAAAAAAAcBAAAAAAAA1AAAAAAAAAASAgAAAAAAAOYBAAAAAAAA8AAAAAAAAAATAgAAAAAAAOcBAAAAAAAA/gAAAAAAAAAUAgAAAAAAAOgBAAAAAAAA3QEAAAAAAAAxAgAAAAAAAMUBAAAAAAAA3gEAAAAAAAAyAgAAAAAAAMYBAAAAAAAA3wEAAAAAAAAzAgAAAAAAAMcBAAAAAAAAyAEAAAAAAAA0AgAAAAAAAOABAAAAAAAAyQEAAAAAAAA2AgAAAAAAAOIBAAAAAAAAygEAAAAAAAA3AgAAAAAAAOMBAAAAAAAAywEAAAAAAAA4AgAAAAAAAOQBAAAAAAAA4QEAAAAAAAA1AgAAAAAAAMwBAAAAAAAAtwEAAAAAAAARAgAAAAAAAOUBAAAAAAAA5gEAAAAAAAASAgAAAAAAALkBAAAAAAAA5wEAAAAAAAATAgAAAAAAALoBAAAAAAAA6AEAAAAAAAAUAgAAAAAAALwBAAAAAAAA/AEAAAAAAAAVAgAAAAAAALIBAAAAAAAAsQEAAAAAAAAWAgAAAAAAAPkBAAAAAAAAswEAAAAAAAAXAgAAAAAAAPoBAAAAAAAAtAEAAAAAAAAYAgAAAAAAAPsBAAAAAAAA9gEAAAAAAAAWAgAAAAAAALEBAAAAAAAA9wEAAAAAAAAXAgAAAAAAALMBAAAAAAAA+AEAAAAAAAAYAgAAAAAAALQBAAAAAAAAsgEAAAAAAAAVAgAAAAAAAPUBAAAAAAAA4gEAAAAAAAAhAgAAAAAAALEBAAAAAAAA4wEAAAAAAAAiAgAAAAAAALMBAAAAAAAA5AEAAAAAAAAjAgAAAAAAALQBAAAAAAAAsgEAAAAAAAAkAgAAAAAAAOEBAAAAAAAA4AEAAAAAAAAkAgAAAAAAALIBAAAAAAAAsQEAAAAAAAAhAgAAAAAAAN0BAAAAAAAAswEAAAAAAAAiAgAAAAAAAN4BAAAAAAAAtAEAAAAAAAAjAgAAAAAAAN8BAAAAAAAA2AEAAAAAAAARAgAAAAAAALcBAAAAAAAAuQEAAAAAAAASAgAAAAAAANoBAAAAAAAAugEAAAAAAAATAgAAAAAAANsBAAAAAAAAvAEAAAAAAAAUAgAAAAAAANwBAAAAAAAA4QEAAAAAAAAkAgAAAAAAAOYAAAAAAAAA2AAAAAAAAAAhAgAAAAAAAOIBAAAAAAAA9AAAAAAAAAAiAgAAAAAAAOMBAAAAAAAAAgEAAAAAAAAjAgAAAAAAAOQBAAAAAAAA3QEAAAAAAAAhAgAAAAAAANkAAAAAAAAA3gEAAAAAAAAiAgAAAAAAAPUAAAAAAAAA3wEAAAAAAAAjAgAAAAAAAAMBAAAAAAAA5wAAAAAAAAAkAgAAAAAAAOABAAAAAAAABgEAAAAAAAARAgAAAAAAANgBAAAAAAAA2gEAAAAAAAASAgAAAAAAANUAAAAAAAAA2wEAAAAAAAATAgAAAAAAAPEAAAAAAAAA3AEAAAAAAAAUAgAAAAAAAP8AAAAAAAAAvQEAAAAAAAAPAgAAAAAAANIBAAAAAAAAvgEAAAAAAAANAgAAAAAAANEBAAAAAAAA0wEAAAAAAAAOAgAAAAAAAL8BAAAAAAAAwAEAAAAAAAAQAgAAAAAAANQBAAAAAAAArAAAAAAAAAAdAgAAAAAAAPEBAAAAAAAAwAAAAAAAAAAeAgAAAAAAAPIBAAAAAAAAygAAAAAAAAAfAgAAAAAAAPMBAAAAAAAA9AEAAAAAAAAgAgAAAAAAALYAAAAAAAAA7QEAAAAAAAAaAgAAAAAAALEAAAAAAAAA7wEAAAAAAAAcAgAAAAAAAM8AAAAAAAAAuwAAAAAAAAAZAgAAAAAAAO4BAAAAAAAA8AEAAAAAAAAbAgAAAAAAAMUAAAAAAAAA0gEAAAAAAAAPAgAAAAAAAEsAAAAAAAAA0QEAAAAAAAANAgAAAAAAAEoAAAAAAAAA1AEAAAAAAAAQAgAAAAAAAEkAAAAAAAAATAAAAAAAAAAOAgAAAAAAANMBAAAAAAAA5QEAAAAAAAAtAgAAAAAAAMEBAAAAAAAAwgEAAAAAAAAuAgAAAAAAAOYBAAAAAAAAwwEAAAAAAAAvAgAAAAAAAOcBAAAAAAAAxAEAAAAAAAAwAgAAAAAAAOgBAAAAAAAACAEAAAAAAAAtAgAAAAAAAOUBAAAAAAAA5gEAAAAAAAAuAgAAAAAAANMAAAAAAAAA5wEAAAAAAAAvAgAAAAAAAO8AAAAAAAAA6AEAAAAAAAAwAgAAAAAAAP0AAAAAAAAAvQAAAAAAAAACAgAAAAAAALwAAAAAAAAAsgAAAAAAAAABAgAAAAAAALMAAAAAAAAAxgAAAAAAAAADAgAAAAAAAMcAAAAAAAAAtQAAAAAAAAAEAgAAAAAAALQAAAAAAAAAtgEAAAAAAAApAgAAAAAAANcBAAAAAAAA1gEAAAAAAAAqAgAAAAAAALUBAAAAAAAA1QEAAAAAAAArAgAAAAAAALgBAAAAAAAA2QEAAAAAAAAsAgAAAAAAALsBAAAAAAAA+AAAAAAAAAArAgAAAAAAANUBAAAAAAAA1wEAAAAAAAApAgAAAAAAAOoAAAAAAAAA3AAAAAAAAAAqAgAAAAAAANYBAAAAAAAA4wAAAAAAAAAsAgAAAAAAANkBAAAAAAAA3QAAAAAAAAAqAgAAAAAAANwAAAAAAAAA6gAAAAAAAAApAgAAAAAAAOsAAAAAAAAA+QAAAAAAAAArAgAAAAAAAPgAAAAAAAAA4gAAAAAAAAAsAgAAAAAAAOMAAAAAAAAA7QAAAAAAAAAOAgAAAAAAAEwAAAAAAAAASgAAAAAAAAANAgAAAAAAAN8AAAAAAAAASwAAAAAAAAAPAgAAAAAAAPsAAAAAAAAASQAAAAAAAAAQAgAAAAAAAOAAAAAAAAAA9QEAAAAAAAAVAgAAAAAAALkAAAAAAAAArwAAAAAAAAAWAgAAAAAAAPYBAAAAAAAAwwAAAAAAAAAXAgAAAAAAAPcBAAAAAAAAzQAAAAAAAAAYAgAAAAAAAPgBAAAAAAAA+QEAAAAAAAAWAgAAAAAAAK4AAAAAAAAA+gEAAAAAAAAXAgAAAAAAAMIAAAAAAAAA+wEAAAAAAAAYAgAAAAAAAMwAAAAAAAAAuAAAAAAAAAAVAgAAAAAAAPwBAAAAAAAABwEAAAAAAAARAgAAAAAAAAYBAAAAAAAA1QAAAAAAAAASAgAAAAAAANQAAAAAAAAA8QAAAAAAAAATAgAAAAAAAPAAAAAAAAAA/wAAAAAAAAAUAgAAAAAAAP4AAAAAAAAArgAAAAAAAAAWAgAAAAAAAK8AAAAAAAAAwgAAAAAAAAAXAgAAAAAAAMMAAAAAAAAAzAAAAAAAAAAYAgAAAAAAAM0AAAAAAAAAuQAAAAAAAAAVAgAAAAAAALgAAAAAAAAA5gAAAAAAAAAkAgAAAAAAAOcAAAAAAAAA2QAAAAAAAAAhAgAAAAAAANgAAAAAAAAA9QAAAAAAAAAiAgAAAAAAAPQAAAAAAAAAAwEAAAAAAAAjAgAAAAAAAAIBAAAAAAAAvAAAAAAAAAAZAgAAAAAAALsAAAAAAAAAxQAAAAAAAAAbAgAAAAAAAMYAAAAAAAAAsQAAAAAAAAAaAgAAAAAAALIAAAAAAAAAzwAAAAAAAAAcAgAAAAAAANAAAAAAAAAAqwAAAAAAAAAdAgAAAAAAAKwAAAAAAAAAvwAAAAAAAAAeAgAAAAAAAMAAAAAAAAAAyQAAAAAAAAAfAgAAAAAAAMoAAAAAAAAAtgAAAAAAAAAgAgAAAAAAALUAAAAAAAAAswAAAAAAAAAmAgAAAAAAAEYAAAAAAAAAxwAAAAAAAAAnAgAAAAAAAEcAAAAAAAAASAAAAAAAAAAlAgAAAAAAAL0AAAAAAAAAtAAAAAAAAAAoAgAAAAAAAEUAAAAAAAAACQEAAAAAAAAtAgAAAAAAAAgBAAAAAAAA0wAAAAAAAAAuAgAAAAAAANIAAAAAAAAA7wAAAAAAAAAvAgAAAAAAAO4AAAAAAAAA/QAAAAAAAAAwAgAAAAAAAPwAAAAAAAAA6AAAAAAAAAA0AgAAAAAAAOkAAAAAAAAA2wAAAAAAAAAxAgAAAAAAANoAAAAAAAAA9wAAAAAAAAAyAgAAAAAAAPYAAAAAAAAABQEAAAAAAAAzAgAAAAAAAAQBAAAAAAAA1wAAAAAAAAA2AgAAAAAAANYAAAAAAAAA8wAAAAAAAAA3AgAAAAAAAPIAAAAAAAAAAQEAAAAAAAA4AgAAAAAAAAABAAAAAAAA5AAAAAAAAAA1AgAAAAAAAOUAAAAAAAAA0AAAAAAAAAAcAgAAAAAAAP0BAAAAAAAA/gEAAAAAAAAdAgAAAAAAAKsAAAAAAAAA/wEAAAAAAAAeAgAAAAAAAL8AAAAAAAAAAAIAAAAAAAAfAgAAAAAAAMkAAAAAAAAAuQEAAAAAAAAdAgAAAAAAAP4BAAAAAAAAugEAAAAAAAAeAgAAAAAAAP8BAAAAAAAAvAEAAAAAAAAfAgAAAAAAAAACAAAAAAAA/QEAAAAAAAAcAgAAAAAAALcBAAAAAAAACgIAAAAAAAAqAgAAAAAAAN0AAAAAAAAA6wAAAAAAAAApAgAAAAAAAAsCAAAAAAAACQIAAAAAAAArAgAAAAAAAPkAAAAAAAAADAIAAAAAAAAsAgAAAAAAAOIAAAAAAAAABwIAAAAAAAAOAgAAAAAAAO0AAAAAAAAA3wAAAAAAAAANAgAAAAAAAAUCAAAAAAAA+wAAAAAAAAAPAgAAAAAAAAYCAAAAAAAA4AAAAAAAAAAQAgAAAAAAAAgCAAAAAAAABQIAAAAAAAANAgAAAAAAAL4BAAAAAAAAvwEAAAAAAAAOAgAAAAAAAAcCAAAAAAAABgIAAAAAAAAPAgAAAAAAAL0BAAAAAAAACAIAAAAAAAAQAgAAAAAAAMABAAAAAAAACwIAAAAAAAApAgAAAAAAALYBAAAAAAAAtQEAAAAAAAAqAgAAAAAAAAoCAAAAAAAAuAEAAAAAAAArAgAAAAAAAAkCAAAAAAAAuwEAAAAAAAAsAgAAAAAAAAwCAAAAAAAAUgAAAAAAAADVAAAAAAAAAFEAAAAAAAAAcAAAAAAAAADxAAAAAAAAAG8AAAAAAAAAfwAAAAAAAAD/AAAAAAAAAH4AAAAAAAAAYAAAAAAAAADjAAAAAAAAAGEAAAAAAAAAWQAAAAAAAADcAAAAAAAAAFgAAAAAAAAAdwAAAAAAAAD4AAAAAAAAAHYAAAAAAAAAhgAAAAAAAAAGAQAAAAAAAIUAAAAAAAAAZwAAAAAAAADqAAAAAAAAAGgAAAAAAAAAUgAAAAAAAADWAAAAAAAAANUAAAAAAAAA4wAAAAAAAADkAAAAAAAAAGEAAAAAAAAAcAAAAAAAAADyAAAAAAAAAPEAAAAAAAAAfwAAAAAAAAAAAQAAAAAAAP8AAAAAAAAAWAAAAAAAAADcAAAAAAAAANsAAAAAAAAAdgAAAAAAAAD4AAAAAAAAAPcAAAAAAAAAhQAAAAAAAAAGAQAAAAAAAAUBAAAAAAAA6QAAAAAAAADqAAAAAAAAAGcAAAAAAAAA4AAAAAAAAAA6AgAAAAAAAEkAAAAAAAAASQAAAAAAAAA5AgAAAAAAANIAAAAAAAAASgAAAAAAAAA7AgAAAAAAAO4AAAAAAAAASwAAAAAAAAA8AgAAAAAAAPwAAAAAAAAA3wAAAAAAAAA9AgAAAAAAAEoAAAAAAAAATAAAAAAAAABAAgAAAAAAAO0AAAAAAAAACQEAAAAAAAA/AgAAAAAAAEwAAAAAAAAA+wAAAAAAAAA+AgAAAAAAAEsAAAAAAAAA4QAAAAAAAABEAgAAAAAAAOAAAAAAAAAA0gAAAAAAAABCAgAAAAAAANMAAAAAAAAA7gAAAAAAAABBAgAAAAAAAO8AAAAAAAAA/AAAAAAAAABDAgAAAAAAAP0AAAAAAAAA+gAAAAAAAABFAgAAAAAAAPsAAAAAAAAACAEAAAAAAABGAgAAAAAAAAkBAAAAAAAA7QAAAAAAAABIAgAAAAAAAOwAAAAAAAAA3gAAAAAAAABHAgAAAAAAAN8AAAAAAAAAUwAAAAAAAADWAAAAAAAAAFIAAAAAAAAAcQAAAAAAAADyAAAAAAAAAHAAAAAAAAAAgAAAAAAAAAAAAQAAAAAAAH8AAAAAAAAAYQAAAAAAAADkAAAAAAAAAGIAAAAAAAAAWAAAAAAAAADbAAAAAAAAAFcAAAAAAAAAdgAAAAAAAAD3AAAAAAAAAHUAAAAAAAAAhQAAAAAAAAAFAQAAAAAAAIQAAAAAAAAAZgAAAAAAAADpAAAAAAAAAGcAAAAAAAAA5AAAAAAAAADlAAAAAAAAAGIAAAAAAAAAcQAAAAAAAADzAAAAAAAAAPIAAAAAAAAAgAAAAAAAAAABAQAAAAAAAAABAAAAAAAA1wAAAAAAAADWAAAAAAAAAFMAAAAAAAAA6AAAAAAAAADpAAAAAAAAAGYAAAAAAAAAVwAAAAAAAADbAAAAAAAAANoAAAAAAAAAdQAAAAAAAAD3AAAAAAAAAPYAAAAAAAAAhAAAAAAAAAAFAQAAAAAAAAQBAAAAAAAAYgAAAAAAAADlAAAAAAAAAGMAAAAAAAAAUwAAAAAAAABUAAAAAAAAANcAAAAAAAAAcgAAAAAAAADzAAAAAAAAAHEAAAAAAAAAgQAAAAAAAAABAQAAAAAAAIAAAAAAAAAAVwAAAAAAAADaAAAAAAAAAFYAAAAAAAAAdQAAAAAAAAD2AAAAAAAAAHQAAAAAAAAAhAAAAAAAAAAEAQAAAAAAAIMAAAAAAAAAZQAAAAAAAADoAAAAAAAAAGYAAAAAAAAA5QAAAAAAAADmAAAAAAAAAGMAAAAAAAAA9AAAAAAAAADzAAAAAAAAAHIAAAAAAAAA1wAAAAAAAABUAAAAAAAAANgAAAAAAAAAgQAAAAAAAAACAQAAAAAAAAEBAAAAAAAAVgAAAAAAAADaAAAAAAAAANkAAAAAAAAAdAAAAAAAAAD2AAAAAAAAAPUAAAAAAAAAgwAAAAAAAAAEAQAAAAAAAAMBAAAAAAAA5wAAAAAAAADoAAAAAAAAAGUAAAAAAAAA9AAAAAAAAABzAAAAAAAAAPUAAAAAAAAAVQAAAAAAAADZAAAAAAAAANgAAAAAAAAAggAAAAAAAAADAQAAAAAAAAIBAAAAAAAA5gAAAAAAAADnAAAAAAAAAGQAAAAAAAAAVAAAAAAAAABVAAAAAAAAANgAAAAAAAAAcgAAAAAAAABzAAAAAAAAAPQAAAAAAAAAggAAAAAAAAACAQAAAAAAAIEAAAAAAAAAYwAAAAAAAADmAAAAAAAAAGQAAAAAAAAAcwAAAAAAAAB0AAAAAAAAAPUAAAAAAAAAZAAAAAAAAADnAAAAAAAAAGUAAAAAAAAAVgAAAAAAAADZAAAAAAAAAFUAAAAAAAAAgwAAAAAAAAADAQAAAAAAAIIAAAAAAAAAXgAAAAAAAABEAgAAAAAAAOEAAAAAAAAA0wAAAAAAAABCAgAAAAAAAE8AAAAAAAAA/QAAAAAAAABDAgAAAAAAAHwAAAAAAAAA7wAAAAAAAABBAgAAAAAAAG0AAAAAAAAAWwAAAAAAAABHAgAAAAAAAN4AAAAAAAAAeQAAAAAAAABFAgAAAAAAAPoAAAAAAAAAiAAAAAAAAABGAgAAAAAAAAgBAAAAAAAA7AAAAAAAAABIAgAAAAAAAGoAAAAAAAAA7gAAAAAAAAA7AgAAAAAAAGwAAAAAAAAA0gAAAAAAAAA5AgAAAAAAAE4AAAAAAAAA/AAAAAAAAAA8AgAAAAAAAHsAAAAAAAAAXQAAAAAAAAA6AgAAAAAAAOAAAAAAAAAAegAAAAAAAAA+AgAAAAAAAPsAAAAAAAAA7QAAAAAAAABAAgAAAAAAAGsAAAAAAAAAXAAAAAAAAAA9AgAAAAAAAN8AAAAAAAAAiQAAAAAAAAA/AgAAAAAAAAkBAAAAAAAAQQAAAAAAAAA5AgAAAAAAAEkAAAAAAAAASQAAAAAAAAA6AgAAAAAAAEEAAAAAAAAAQwAAAAAAAAA8AgAAAAAAAEsAAAAAAAAAQgAAAAAAAAA7AgAAAAAAAEoAAAAAAAAARAAAAAAAAABAAgAAAAAAAEwAAAAAAAAASgAAAAAAAAA9AgAAAAAAAEIAAAAAAAAASwAAAAAAAAA+AgAAAAAAAEMAAAAAAAAATAAAAAAAAAA/AgAAAAAAAEQAAAAAAAAATgAAAAAAAABCAgAAAAAAANIAAAAAAAAAbAAAAAAAAABBAgAAAAAAAO4AAAAAAAAAewAAAAAAAABDAgAAAAAAAPwAAAAAAAAA4AAAAAAAAABEAgAAAAAAAF0AAAAAAAAA+wAAAAAAAABFAgAAAAAAAHoAAAAAAAAACQEAAAAAAABGAgAAAAAAAIkAAAAAAAAA3wAAAAAAAABHAgAAAAAAAFwAAAAAAAAAawAAAAAAAABIAgAAAAAAAO0AAAAAAAAATgAAAAAAAAA5AgAAAAAAAEEAAAAAAAAAQQAAAAAAAAA6AgAAAAAAAF0AAAAAAAAAQgAAAAAAAAA9AgAAAAAAAFwAAAAAAAAAbAAAAAAAAAA7AgAAAAAAAEIAAAAAAAAAQwAAAAAAAAA+AgAAAAAAAHoAAAAAAAAAewAAAAAAAAA8AgAAAAAAAEMAAAAAAAAAawAAAAAAAABAAgAAAAAAAEQAAAAAAAAARAAAAAAAAAA/AgAAAAAAAIkAAAAAAAAATwAAAAAAAABCAgAAAAAAAE4AAAAAAAAAXAAAAAAAAABHAgAAAAAAAFsAAAAAAAAAXQAAAAAAAABEAgAAAAAAAF4AAAAAAAAAagAAAAAAAABIAgAAAAAAAGsAAAAAAAAAbQAAAAAAAABBAgAAAAAAAGwAAAAAAAAAegAAAAAAAABFAgAAAAAAAHkAAAAAAAAAfAAAAAAAAABDAgAAAAAAAHsAAAAAAAAAiQAAAAAAAABGAgAAAAAAAIgAAAAAAAAAUAAAAAAAAADTAAAAAAAAAE8AAAAAAAAAUQAAAAAAAADUAAAAAAAAAFAAAAAAAAAAUAAAAAAAAADUAAAAAAAAANMAAAAAAAAAUQAAAAAAAADVAAAAAAAAANQAAAAAAAAAWQAAAAAAAABaAAAAAAAAAN0AAAAAAAAA3QAAAAAAAADcAAAAAAAAAFkAAAAAAAAAWgAAAAAAAABbAAAAAAAAAN4AAAAAAAAA3QAAAAAAAABaAAAAAAAAAN4AAAAAAAAAXgAAAAAAAADhAAAAAAAAAF8AAAAAAAAAXwAAAAAAAADiAAAAAAAAAGAAAAAAAAAA4QAAAAAAAADiAAAAAAAAAF8AAAAAAAAA4gAAAAAAAADjAAAAAAAAAGAAAAAAAAAAaAAAAAAAAADrAAAAAAAAAGkAAAAAAAAA6gAAAAAAAADrAAAAAAAAAGgAAAAAAAAAaQAAAAAAAADsAAAAAAAAAGoAAAAAAAAA6wAAAAAAAADsAAAAAAAAAGkAAAAAAAAA7wAAAAAAAABtAAAAAAAAAG4AAAAAAAAAbwAAAAAAAADwAAAAAAAAAG4AAAAAAAAAbgAAAAAAAADwAAAAAAAAAO8AAAAAAAAAbwAAAAAAAADxAAAAAAAAAPAAAAAAAAAAdwAAAAAAAAB4AAAAAAAAAPkAAAAAAAAA+QAAAAAAAAD4AAAAAAAAAHcAAAAAAAAAeAAAAAAAAAB5AAAAAAAAAPoAAAAAAAAAeAAAAAAAAAD6AAAAAAAAAPkAAAAAAAAAfAAAAAAAAAB9AAAAAAAAAP0AAAAAAAAAfgAAAAAAAAD+AAAAAAAAAH0AAAAAAAAAfQAAAAAAAAD+AAAAAAAAAP0AAAAAAAAAfgAAAAAAAAD/AAAAAAAAAP4AAAAAAAAAhwAAAAAAAAAHAQAAAAAAAIYAAAAAAAAAhgAAAAAAAAAHAQAAAAAAAAYBAAAAAAAAiAAAAAAAAAAIAQAAAAAAAIcAAAAAAAAAhwAAAAAAAAAIAQAAAAAAAAcBAAAAAAAAhAAAAAAAAAAqAAAAAAAAACsAAAAAAAAACgAAAAAAAAALAAAAAAAAAFcAAAAAAAAAZgAAAAAAAAA3AAAAAAAAADgAAAAAAAAAGwAAAAAAAAB1AAAAAAAAABoAAAAAAAAAYgAAAAAAAAA7AAAAAAAAADwAAAAAAAAABwAAAAAAAABTAAAAAAAAAAYAAAAAAAAAFwAAAAAAAABxAAAAAAAAABYAAAAAAAAAgAAAAAAAAAAmAAAAAAAAACcAAAAAAAAAagAAAAAAAAAzAAAAAAAAADQAAAAAAAAADwAAAAAAAABbAAAAAAAAAA4AAAAAAAAAHwAAAAAAAAB5AAAAAAAAAB4AAAAAAAAAiAAAAAAAAAAuAAAAAAAAAC8AAAAAAAAAAwAAAAAAAABPAAAAAAAAAAIAAAAAAAAAEwAAAAAAAABtAAAAAAAAABIAAAAAAAAAfAAAAAAAAAAiAAAAAAAAACMAAAAAAAAAXgAAAAAAAAA/AAAAAAAAAAAAAAAAAAAAagAAAAAAAAAyAAAAAAAAADMAAAAAAAAAEAAAAAAAAABbAAAAAAAAAA8AAAAAAAAAIAAAAAAAAAB5AAAAAAAAAB8AAAAAAAAAiAAAAAAAAAAvAAAAAAAAADAAAAAAAAAAfAAAAAAAAAAjAAAAAAAAACQAAAAAAAAABAAAAAAAAABPAAAAAAAAAAMAAAAAAAAAXgAAAAAAAAA+AAAAAAAAAD8AAAAAAAAAFAAAAAAAAABtAAAAAAAAABMAAAAAAAAAHAAAAAAAAAB1AAAAAAAAABsAAAAAAAAAZgAAAAAAAAA2AAAAAAAAADcAAAAAAAAAKwAAAAAAAAAsAAAAAAAAAIQAAAAAAAAAVwAAAAAAAAALAAAAAAAAAAwAAAAAAAAAgAAAAAAAAAAnAAAAAAAAACgAAAAAAAAACAAAAAAAAABTAAAAAAAAAAcAAAAAAAAAGAAAAAAAAABxAAAAAAAAABcAAAAAAAAAYgAAAAAAAAA6AAAAAAAAADsAAAAAAAAAXgAAAAAAAAAAAAAAAAAAAF0AAAAAAAAAAAAAAAAAAACKAAAAAAAAAF0AAAAAAAAATwAAAAAAAABOAAAAAAAAAAIAAAAAAAAATgAAAAAAAACLAAAAAAAAAAIAAAAAAAAAUAAAAAAAAABPAAAAAAAAAAQAAAAAAAAABAAAAAAAAACMAAAAAAAAAFAAAAAAAAAAUwAAAAAAAABSAAAAAAAAAAYAAAAAAAAAUgAAAAAAAACNAAAAAAAAAAYAAAAAAAAAVAAAAAAAAABTAAAAAAAAAAgAAAAAAAAACAAAAAAAAACOAAAAAAAAAFQAAAAAAAAAVwAAAAAAAABWAAAAAAAAAAoAAAAAAAAAVgAAAAAAAACPAAAAAAAAAAoAAAAAAAAAWAAAAAAAAABXAAAAAAAAAAwAAAAAAAAAkAAAAAAAAABYAAAAAAAAAAwAAAAAAAAADgAAAAAAAABbAAAAAAAAAFoAAAAAAAAADgAAAAAAAABaAAAAAAAAAJEAAAAAAAAAEAAAAAAAAABcAAAAAAAAAFsAAAAAAAAAkgAAAAAAAABcAAAAAAAAABAAAAAAAAAAbQAAAAAAAABsAAAAAAAAABIAAAAAAAAAEgAAAAAAAABsAAAAAAAAAJMAAAAAAAAAbgAAAAAAAABtAAAAAAAAABQAAAAAAAAAlAAAAAAAAABuAAAAAAAAABQAAAAAAAAAcQAAAAAAAABwAAAAAAAAABYAAAAAAAAAFgAAAAAAAABwAAAAAAAAAJUAAAAAAAAAcgAAAAAAAABxAAAAAAAAABgAAAAAAAAAlgAAAAAAAAByAAAAAAAAABgAAAAAAAAAdQAAAAAAAAB0AAAAAAAAABoAAAAAAAAAGgAAAAAAAAB0AAAAAAAAAJcAAAAAAAAAHAAAAAAAAAB2AAAAAAAAAHUAAAAAAAAAmAAAAAAAAAB2AAAAAAAAABwAAAAAAAAAeQAAAAAAAAB4AAAAAAAAAB4AAAAAAAAAHgAAAAAAAAB4AAAAAAAAAJkAAAAAAAAAegAAAAAAAAB5AAAAAAAAACAAAAAAAAAAmgAAAAAAAAB6AAAAAAAAACAAAAAAAAAAewAAAAAAAAAiAAAAAAAAAHwAAAAAAAAAmwAAAAAAAAAiAAAAAAAAAHsAAAAAAAAAfAAAAAAAAAAkAAAAAAAAAH0AAAAAAAAAJAAAAAAAAACcAAAAAAAAAH0AAAAAAAAAfwAAAAAAAAAmAAAAAAAAAIAAAAAAAAAAfwAAAAAAAACdAAAAAAAAACYAAAAAAAAAgAAAAAAAAAAoAAAAAAAAAIEAAAAAAAAAKAAAAAAAAACeAAAAAAAAAIEAAAAAAAAAgwAAAAAAAAAqAAAAAAAAAIQAAAAAAAAAgwAAAAAAAACfAAAAAAAAACoAAAAAAAAAhAAAAAAAAAAsAAAAAAAAAIUAAAAAAAAALAAAAAAAAACgAAAAAAAAAIUAAAAAAAAAhwAAAAAAAAAuAAAAAAAAAIgAAAAAAAAAhwAAAAAAAAChAAAAAAAAAC4AAAAAAAAAiAAAAAAAAAAwAAAAAAAAAIkAAAAAAAAAMAAAAAAAAACiAAAAAAAAAIkAAAAAAAAAawAAAAAAAAAyAAAAAAAAAGoAAAAAAAAAawAAAAAAAACjAAAAAAAAADIAAAAAAAAAagAAAAAAAAA0AAAAAAAAAGkAAAAAAAAANAAAAAAAAACkAAAAAAAAAGkAAAAAAAAAZwAAAAAAAAA2AAAAAAAAAGYAAAAAAAAAZwAAAAAAAAClAAAAAAAAADYAAAAAAAAAZgAAAAAAAAA4AAAAAAAAAGUAAAAAAAAAOAAAAAAAAACmAAAAAAAAAGUAAAAAAAAAYwAAAAAAAAA6AAAAAAAAAGIAAAAAAAAAYwAAAAAAAACnAAAAAAAAADoAAAAAAAAAYgAAAAAAAAA8AAAAAAAAAGEAAAAAAAAAPAAAAAAAAACoAAAAAAAAAGEAAAAAAAAAXwAAAAAAAAA+AAAAAAAAAF4AAAAAAAAAXwAAAAAAAACpAAAAAAAAAD4AAAAAAAAAQQAAAAAAAACLAAAAAAAAAE4AAAAAAAAAXQAAAAAAAACKAAAAAAAAAEEAAAAAAAAAQgAAAAAAAABcAAAAAAAAAJIAAAAAAAAAbAAAAAAAAABCAAAAAAAAAJMAAAAAAAAAmgAAAAAAAABDAAAAAAAAAHoAAAAAAAAAewAAAAAAAABDAAAAAAAAAJsAAAAAAAAARAAAAAAAAACjAAAAAAAAAGsAAAAAAAAAiQAAAAAAAACiAAAAAAAAAEQAAAAAAAAAUAAAAAAAAACMAAAAAAAAAFEAAAAAAAAAUQAAAAAAAACNAAAAAAAAAFIAAAAAAAAAVAAAAAAAAACOAAAAAAAAAFUAAAAAAAAAVQAAAAAAAACPAAAAAAAAAFYAAAAAAAAAkAAAAAAAAABZAAAAAAAAAFgAAAAAAAAAkQAAAAAAAABaAAAAAAAAAFkAAAAAAAAAYAAAAAAAAACpAAAAAAAAAF8AAAAAAAAAYQAAAAAAAACoAAAAAAAAAGAAAAAAAAAAZAAAAAAAAACnAAAAAAAAAGMAAAAAAAAAZQAAAAAAAACmAAAAAAAAAGQAAAAAAAAAaAAAAAAAAAClAAAAAAAAAGcAAAAAAAAAaQAAAAAAAACkAAAAAAAAAGgAAAAAAAAAbwAAAAAAAABuAAAAAAAAAJQAAAAAAAAAcAAAAAAAAABvAAAAAAAAAJUAAAAAAAAAcwAAAAAAAAByAAAAAAAAAJYAAAAAAAAAdAAAAAAAAABzAAAAAAAAAJcAAAAAAAAAdwAAAAAAAAB2AAAAAAAAAJgAAAAAAAAAeAAAAAAAAAB3AAAAAAAAAJkAAAAAAAAAfQAAAAAAAACcAAAAAAAAAH4AAAAAAAAAfgAAAAAAAACdAAAAAAAAAH8AAAAAAAAAgQAAAAAAAACeAAAAAAAAAIIAAAAAAAAAggAAAAAAAACfAAAAAAAAAIMAAAAAAAAAhQAAAAAAAACgAAAAAAAAAIYAAAAAAAAAhgAAAAAAAAChAAAAAAAAAIcAAAAAAAAAQQAAAAAAAACKAAAAAAAAAAEAAAAAAAAAAQAAAAAAAACLAAAAAAAAAEEAAAAAAAAAUQAAAAAAAACMAAAAAAAAAAUAAAAAAAAABQAAAAAAAACNAAAAAAAAAFEAAAAAAAAAVQAAAAAAAACOAAAAAAAAAAkAAAAAAAAACQAAAAAAAACPAAAAAAAAAFUAAAAAAAAADQAAAAAAAABZAAAAAAAAAJAAAAAAAAAAkQAAAAAAAABZAAAAAAAAAA0AAAAAAAAAEQAAAAAAAABCAAAAAAAAAJIAAAAAAAAAkwAAAAAAAABCAAAAAAAAABEAAAAAAAAAFQAAAAAAAABvAAAAAAAAAJQAAAAAAAAAlQAAAAAAAABvAAAAAAAAABUAAAAAAAAAGQAAAAAAAABzAAAAAAAAAJYAAAAAAAAAlwAAAAAAAABzAAAAAAAAABkAAAAAAAAAHQAAAAAAAAB3AAAAAAAAAJgAAAAAAAAAmQAAAAAAAAB3AAAAAAAAAB0AAAAAAAAAmgAAAAAAAAAhAAAAAAAAAEMAAAAAAAAAQwAAAAAAAAAhAAAAAAAAAJsAAAAAAAAAfgAAAAAAAACcAAAAAAAAACUAAAAAAAAAJQAAAAAAAACdAAAAAAAAAH4AAAAAAAAAggAAAAAAAACeAAAAAAAAACkAAAAAAAAAKQAAAAAAAACfAAAAAAAAAIIAAAAAAAAAhgAAAAAAAACgAAAAAAAAAC0AAAAAAAAALQAAAAAAAAChAAAAAAAAAIYAAAAAAAAARAAAAAAAAACiAAAAAAAAADEAAAAAAAAAMQAAAAAAAACjAAAAAAAAAEQAAAAAAAAAaAAAAAAAAACkAAAAAAAAADUAAAAAAAAANQAAAAAAAAClAAAAAAAAAGgAAAAAAAAAZAAAAAAAAACmAAAAAAAAADkAAAAAAAAAOQAAAAAAAACnAAAAAAAAAGQAAAAAAAAAYAAAAAAAAACoAAAAAAAAAD0AAAAAAAAAPQAAAAAAAACpAAAAAAAAAGAAAAAAAAAAoCEAAAAAAAACAAAAAAAAAAQAAAAAAAAABgAAAAAAAAAIAAAAAAAAAAsAAAAAAAAADgAAAAAAAAARAAAAAAAAABQAAAAAAAAAFwAAAAAAAAAaAAAAAAAAAB0AAAAAAAAAIAAAAAAAAAAjAAAAAAAAACYAAAAAAAAAKQAAAAAAAAAsAAAAAAAAAC8AAAAAAAAAMgAAAAAAAAA1AAAAAAAAADgAAAAAAAAAOwAAAAAAAAA+AAAAAAAAAEEAAAAAAAAARAAAAAAAAABHAAAAAAAAAEoAAAAAAAAATQAAAAAAAABQAAAAAAAAAFMAAAAAAAAAVgAAAAAAAABZAAAAAAAAAFwAAAAAAAAAXwAAAAAAAABiAAAAAAAAAGUAAAAAAAAAaAAAAAAAAABrAAAAAAAAAG4AAAAAAAAAcQAAAAAAAAB0AAAAAAAAAHcAAAAAAAAAegAAAAAAAAB9AAAAAAAAAIAAAAAAAAAAgwAAAAAAAACGAAAAAAAAAIkAAAAAAAAAjAAAAAAAAACPAAAAAAAAAJIAAAAAAAAAlQAAAAAAAACYAAAAAAAAAJsAAAAAAAAAngAAAAAAAAChAAAAAAAAAKQAAAAAAAAApwAAAAAAAACqAAAAAAAAAK0AAAAAAAAAsAAAAAAAAACzAAAAAAAAALYAAAAAAAAAuQAAAAAAAAC8AAAAAAAAAL8AAAAAAAAAwgAAAAAAAADFAAAAAAAAAMgAAAAAAAAAywAAAAAAAADOAAAAAAAAANEAAAAAAAAA1AAAAAAAAADXAAAAAAAAANoAAAAAAAAA3QAAAAAAAADgAAAAAAAAAOMAAAAAAAAA5gAAAAAAAADpAAAAAAAAAOwAAAAAAAAA7wAAAAAAAADyAAAAAAAAAPUAAAAAAAAA+AAAAAAAAAD7AAAAAAAAAP4AAAAAAAAAAQEAAAAAAAAEAQAAAAAAAAcBAAAAAAAACgEAAAAAAAANAQAAAAAAABABAAAAAAAAEwEAAAAAAAAWAQAAAAAAABkBAAAAAAAAHAEAAAAAAAAfAQAAAAAAACIBAAAAAAAAJQEAAAAAAAAoAQAAAAAAACsBAAAAAAAALgEAAAAAAAAxAQAAAAAAADQBAAAAAAAANwEAAAAAAAA6AQAAAAAAAD0BAAAAAAAAQAEAAAAAAABDAQAAAAAAAEYBAAAAAAAASQEAAAAAAABMAQAAAAAAAE8BAAAAAAAAUgEAAAAAAABVAQAAAAAAAFgBAAAAAAAAWwEAAAAAAABeAQAAAAAAAGEBAAAAAAAAZAEAAAAAAABnAQAAAAAAAGoBAAAAAAAAbQEAAAAAAABwAQAAAAAAAHMBAAAAAAAAdgEAAAAAAAB5AQAAAAAAAHwBAAAAAAAAfwEAAAAAAACCAQAAAAAAAIUBAAAAAAAAiAEAAAAAAACLAQAAAAAAAI4BAAAAAAAAkQEAAAAAAACUAQAAAAAAAJcBAAAAAAAAmgEAAAAAAACdAQAAAAAAAKABAAAAAAAAowEAAAAAAACmAQAAAAAAAKkBAAAAAAAArAEAAAAAAACvAQAAAAAAALIBAAAAAAAAtQEAAAAAAAC4AQAAAAAAALsBAAAAAAAAvgEAAAAAAADBAQAAAAAAAMQBAAAAAAAAxwEAAAAAAADKAQAAAAAAAM0BAAAAAAAA0AEAAAAAAADTAQAAAAAAANYBAAAAAAAA2QEAAAAAAADcAQAAAAAAAN8BAAAAAAAA4gEAAAAAAADlAQAAAAAAAOgBAAAAAAAA6wEAAAAAAADuAQAAAAAAAPEBAAAAAAAA9AEAAAAAAAD3AQAAAAAAAPoBAAAAAAAA/QEAAAAAAAAAAgAAAAAAAAMCAAAAAAAABgIAAAAAAAAJAgAAAAAAAAwCAAAAAAAADwIAAAAAAAASAgAAAAAAABUCAAAAAAAAGAIAAAAAAAAbAgAAAAAAAB4CAAAAAAAAIQIAAAAAAAAkAgAAAAAAACcCAAAAAAAAKgIAAAAAAAAtAgAAAAAAADACAAAAAAAAMwIAAAAAAAA2AgAAAAAAADkCAAAAAAAAPAIAAAAAAAA/AgAAAAAAAEICAAAAAAAARQIAAAAAAABIAgAAAAAAAEsCAAAAAAAATgIAAAAAAABRAgAAAAAAAFQCAAAAAAAAVwIAAAAAAABaAgAAAAAAAF0CAAAAAAAAYAIAAAAAAABjAgAAAAAAAGYCAAAAAAAAaQIAAAAAAABsAgAAAAAAAG8CAAAAAAAAcgIAAAAAAAB1AgAAAAAAAHgCAAAAAAAAewIAAAAAAAB+AgAAAAAAAIECAAAAAAAAhAIAAAAAAACHAgAAAAAAAIoCAAAAAAAAjQIAAAAAAACQAgAAAAAAAJMCAAAAAAAAlgIAAAAAAACZAgAAAAAAAJwCAAAAAAAAnwIAAAAAAACiAgAAAAAAAKUCAAAAAAAAqAIAAAAAAACrAgAAAAAAAK4CAAAAAAAAsQIAAAAAAAC0AgAAAAAAALcCAAAAAAAAugIAAAAAAAC9AgAAAAAAAMACAAAAAAAAwwIAAAAAAADGAgAAAAAAAMkCAAAAAAAAzAIAAAAAAADPAgAAAAAAANICAAAAAAAA1QIAAAAAAADYAgAAAAAAANsCAAAAAAAA3gIAAAAAAADhAgAAAAAAAOQCAAAAAAAA5wIAAAAAAADqAgAAAAAAAO0CAAAAAAAA8AIAAAAAAADzAgAAAAAAAPYCAAAAAAAA+QIAAAAAAAD8AgAAAAAAAP8CAAAAAAAAAgMAAAAAAAAFAwAAAAAAAAgDAAAAAAAACwMAAAAAAAAOAwAAAAAAABEDAAAAAAAAFAMAAAAAAAAXAwAAAAAAABoDAAAAAAAAHQMAAAAAAAAgAwAAAAAAACMDAAAAAAAAJgMAAAAAAAApAwAAAAAAACwDAAAAAAAALwMAAAAAAAAyAwAAAAAAADUDAAAAAAAAOAMAAAAAAAA7AwAAAAAAAD4DAAAAAAAAQQMAAAAAAABEAwAAAAAAAEcDAAAAAAAASgMAAAAAAABNAwAAAAAAAFADAAAAAAAAUwMAAAAAAABWAwAAAAAAAFkDAAAAAAAAXAMAAAAAAABfAwAAAAAAAGIDAAAAAAAAZQMAAAAAAABoAwAAAAAAAGsDAAAAAAAAbgMAAAAAAABxAwAAAAAAAHQDAAAAAAAAdwMAAAAAAAB6AwAAAAAAAH0DAAAAAAAAgAMAAAAAAACDAwAAAAAAAIYDAAAAAAAAiQMAAAAAAACMAwAAAAAAAI8DAAAAAAAAkgMAAAAAAACVAwAAAAAAAJgDAAAAAAAAmwMAAAAAAACeAwAAAAAAAKEDAAAAAAAApAMAAAAAAACnAwAAAAAAAKoDAAAAAAAArQMAAAAAAACwAwAAAAAAALMDAAAAAAAAtgMAAAAAAAC5AwAAAAAAALwDAAAAAAAAvwMAAAAAAADCAwAAAAAAAMUDAAAAAAAAyAMAAAAAAADLAwAAAAAAAM4DAAAAAAAA0QMAAAAAAADUAwAAAAAAANcDAAAAAAAA2gMAAAAAAADdAwAAAAAAAOADAAAAAAAA4wMAAAAAAADmAwAAAAAAAOkDAAAAAAAA7AMAAAAAAADvAwAAAAAAAPIDAAAAAAAA9QMAAAAAAAD4AwAAAAAAAPsDAAAAAAAA/gMAAAAAAAABBAAAAAAAAAQEAAAAAAAABwQAAAAAAAAKBAAAAAAAAA0EAAAAAAAAEAQAAAAAAAATBAAAAAAAABYEAAAAAAAAGQQAAAAAAAAcBAAAAAAAAB8EAAAAAAAAIgQAAAAAAAAlBAAAAAAAACgEAAAAAAAAKwQAAAAAAAAuBAAAAAAAADEEAAAAAAAANAQAAAAAAAA3BAAAAAAAADoEAAAAAAAAPQQAAAAAAABABAAAAAAAAEMEAAAAAAAARgQAAAAAAABJBAAAAAAAAEwEAAAAAAAATwQAAAAAAABSBAAAAAAAAFUEAAAAAAAAWAQAAAAAAABbBAAAAAAAAF4EAAAAAAAAYQQAAAAAAABkBAAAAAAAAGcEAAAAAAAAagQAAAAAAABtBAAAAAAAAHAEAAAAAAAAcwQAAAAAAAB2BAAAAAAAAHkEAAAAAAAAfAQAAAAAAAB/BAAAAAAAAIIEAAAAAAAAhQQAAAAAAACIBAAAAAAAAIsEAAAAAAAAjgQAAAAAAACRBAAAAAAAAJQEAAAAAAAAlwQAAAAAAACaBAAAAAAAAJ0EAAAAAAAAoAQAAAAAAACjBAAAAAAAAKYEAAAAAAAAqQQAAAAAAACsBAAAAAAAAK8EAAAAAAAAsgQAAAAAAAC1BAAAAAAAALgEAAAAAAAAuwQAAAAAAAC+BAAAAAAAAMEEAAAAAAAAxAQAAAAAAADHBAAAAAAAAMoEAAAAAAAAzQQAAAAAAADQBAAAAAAAANMEAAAAAAAA1gQAAAAAAADZBAAAAAAAANwEAAAAAAAA3wQAAAAAAADiBAAAAAAAAOUEAAAAAAAA6AQAAAAAAADrBAAAAAAAAO4EAAAAAAAA8QQAAAAAAAD0BAAAAAAAAPcEAAAAAAAA+gQAAAAAAAD9BAAAAAAAAAAFAAAAAAAAAwUAAAAAAAAGBQAAAAAAAAkFAAAAAAAADAUAAAAAAAAPBQAAAAAAABIFAAAAAAAAFQUAAAAAAAAYBQAAAAAAABsFAAAAAAAAHgUAAAAAAAAhBQAAAAAAACQFAAAAAAAAJwUAAAAAAAAqBQAAAAAAAC0FAAAAAAAAMAUAAAAAAAAzBQAAAAAAADYFAAAAAAAAOQUAAAAAAAA8BQAAAAAAAD8FAAAAAAAAQgUAAAAAAABFBQAAAAAAAEgFAAAAAAAASwUAAAAAAABOBQAAAAAAAFEFAAAAAAAAVAUAAAAAAABXBQAAAAAAAFoFAAAAAAAAXQUAAAAAAABgBQAAAAAAAGMFAAAAAAAAZgUAAAAAAABpBQAAAAAAAGwFAAAAAAAAbwUAAAAAAAByBQAAAAAAAHUFAAAAAAAAeAUAAAAAAAB7BQAAAAAAAH4FAAAAAAAAgQUAAAAAAACEBQAAAAAAAIcFAAAAAAAAigUAAAAAAACNBQAAAAAAAJAFAAAAAAAAkwUAAAAAAACWBQAAAAAAAJkFAAAAAAAAnAUAAAAAAACfBQAAAAAAAKIFAAAAAAAApQUAAAAAAACoBQAAAAAAAKsFAAAAAAAArgUAAAAAAACxBQAAAAAAALQFAAAAAAAAtwUAAAAAAAC6BQAAAAAAAL0FAAAAAAAAwAUAAAAAAADDBQAAAAAAAMYFAAAAAAAAyQUAAAAAAADMBQAAAAAAAM8FAAAAAAAA0gUAAAAAAADVBQAAAAAAANgFAAAAAAAA2wUAAAAAAADeBQAAAAAAAOEFAAAAAAAA5AUAAAAAAADnBQAAAAAAAOoFAAAAAAAA7QUAAAAAAADwBQAAAAAAAPMFAAAAAAAA9gUAAAAAAAD5BQAAAAAAAPwFAAAAAAAA/wUAAAAAAAACBgAAAAAAAAUGAAAAAAAACAYAAAAAAAALBgAAAAAAAA4GAAAAAAAAEQYAAAAAAAAUBgAAAAAAABcGAAAAAAAAGgYAAAAAAAAdBgAAAAAAACAGAAAAAAAAIwYAAAAAAAAmBgAAAAAAACkGAAAAAAAALAYAAAAAAAAvBgAAAAAAADIGAAAAAAAANQYAAAAAAAA4BgAAAAAAADsGAAAAAAAAPgYAAAAAAABBBgAAAAAAAEQGAAAAAAAARwYAAAAAAABKBgAAAAAAAE0GAAAAAAAAUAYAAAAAAABTBgAAAAAAAFYGAAAAAAAAWQYAAAAAAABcBgAAAAAAAF8GAAAAAAAAYgYAAAAAAABlBgAAAAAAAGgGAAAAAAAAawYAAAAAAABuBgAAAAAAAHEGAAAAAAAAdAYAAAAAAAB3BgAAAAAAAHoGAAAAAAAAfQYAAAAAAACABgAAAAAAAIMGAAAAAAAAhgYAAAAAAACJBgAAAAAAAIwGAAAAAAAAjwYAAAAAAACSBgAAAAAAAJUGAAAAAAAAmAYAAAAAAACbBgAAAAAAAJ4GAAAAAAAAoQYAAAAAAACkBgAAAAAAAKcGAAAAAAAAqgYAAAAAAACtBgAAAAAAALAGAAAAAAAAswYAAAAAAAC2BgAAAAAAALkGAAAAAAAAvAYAAAAAAAC/BgAAAAAAAMIGAAAAAAAAxQYAAAAAAADIBgAAAAAAAMsGAAAAAAAAzgYAAAAAAADRBgAAAAAAANQGAAAAAAAA1wYAAAAAAADaBgAAAAAAAN0GAAAAAAAA4AYAAAAAAADjBgAAAAAAAOYGAAAAAAAA6QYAAAAAAADsBgAAAAAAAO8GAAAAAAAA8gYAAAAAAAD1BgAAAAAAAPgGAAAAAAAA+wYAAAAAAAD+BgAAAAAAAAEHAAAAAAAABAcAAAAAAAAHBwAAAAAAAAoHAAAAAAAADQcAAAAAAAAQBwAAAAAAABMHAAAAAAAAFgcAAAAAAAAZBwAAAAAAABwHAAAAAAAAHwcAAAAAAAAiBwAAAAAAACUHAAAAAAAAKAcAAAAAAAArBwAAAAAAAC4HAAAAAAAAMQcAAAAAAAA0BwAAAAAAADcHAAAAAAAAOgcAAAAAAAA9BwAAAAAAAEAHAAAAAAAAQwcAAAAAAABGBwAAAAAAAEkHAAAAAAAATAcAAAAAAABPBwAAAAAAAFIHAAAAAAAAVQcAAAAAAABYBwAAAAAAAFsHAAAAAAAAXgcAAAAAAABhBwAAAAAAAGQHAAAAAAAAZwcAAAAAAABqBwAAAAAAAG0HAAAAAAAAcAcAAAAAAABzBwAAAAAAAHYHAAAAAAAAeQcAAAAAAAB8BwAAAAAAAH8HAAAAAAAAggcAAAAAAACFBwAAAAAAAIgHAAAAAAAAiwcAAAAAAACOBwAAAAAAAJEHAAAAAAAAlAcAAAAAAACXBwAAAAAAAJoHAAAAAAAAnQcAAAAAAACgBwAAAAAAAKMHAAAAAAAApgcAAAAAAACpBwAAAAAAAKwHAAAAAAAArwcAAAAAAACyBwAAAAAAALUHAAAAAAAAuAcAAAAAAAC7BwAAAAAAAL4HAAAAAAAAwQcAAAAAAADEBwAAAAAAAMcHAAAAAAAAygcAAAAAAADNBwAAAAAAANAHAAAAAAAA0wcAAAAAAADWBwAAAAAAANkHAAAAAAAA3AcAAAAAAADfBwAAAAAAAOIHAAAAAAAA5QcAAAAAAADoBwAAAAAAAOsHAAAAAAAA7gcAAAAAAADxBwAAAAAAAPQHAAAAAAAA9wcAAAAAAAD6BwAAAAAAAP0HAAAAAAAAAAgAAAAAAAADCAAAAAAAAAYIAAAAAAAACQgAAAAAAAAMCAAAAAAAAA8IAAAAAAAAEggAAAAAAAAVCAAAAAAAABgIAAAAAAAAGwgAAAAAAAAeCAAAAAAAACEIAAAAAAAAJAgAAAAAAAAnCAAAAAAAACoIAAAAAAAALQgAAAAAAAAwCAAAAAAAADMIAAAAAAAANggAAAAAAAA5CAAAAAAAADwIAAAAAAAAPwgAAAAAAABCCAAAAAAAAEUIAAAAAAAASAgAAAAAAABLCAAAAAAAAE4IAAAAAAAAUQgAAAAAAABUCAAAAAAAAFcIAAAAAAAAWggAAAAAAABdCAAAAAAAAGAIAAAAAAAAYwgAAAAAAABmCAAAAAAAAGkIAAAAAAAAbAgAAAAAAABvCAAAAAAAAHIIAAAAAAAAdQgAAAAAAAB4CAAAAAAAAHsIAAAAAAAAfggAAAAAAACBCAAAAAAAAIQIAAAAAAAAhwgAAAAAAACKCAAAAAAAAI0IAAAAAAAAkAgAAAAAAACTCAAAAAAAAJYIAAAAAAAAmQgAAAAAAACcCAAAAAAAAJ8IAAAAAAAAoggAAAAAAAClCAAAAAAAAKgIAAAAAAAAqwgAAAAAAACuCAAAAAAAALEIAAAAAAAAtAgAAAAAAAC3CAAAAAAAALoIAAAAAAAAvQgAAAAAAADACAAAAAAAAMMIAAAAAAAAxggAAAAAAADJCAAAAAAAAMwIAAAAAAAAzwgAAAAAAADSCAAAAAAAANUIAAAAAAAA2AgAAAAAAADbCAAAAAAAAN4IAAAAAAAA4QgAAAAAAADkCAAAAAAAAOcIAAAAAAAA6ggAAAAAAADtCAAAAAAAAPAIAAAAAAAA8wgAAAAAAAD2CAAAAAAAAPkIAAAAAAAA/AgAAAAAAAD/CAAAAAAAAAIJAAAAAAAABQkAAAAAAAAICQAAAAAAAAsJAAAAAAAADgkAAAAAAAARCQAAAAAAABQJAAAAAAAAFwkAAAAAAAAaCQAAAAAAAB0JAAAAAAAAIAkAAAAAAAAjCQAAAAAAACYJAAAAAAAAKQkAAAAAAAAsCQAAAAAAAC8JAAAAAAAAMgkAAAAAAAA1CQAAAAAAADgJAAAAAAAAOwkAAAAAAAA+CQAAAAAAAEEJAAAAAAAARAkAAAAAAABHCQAAAAAAAEoJAAAAAAAATQkAAAAAAABQCQAAAAAAAFMJAAAAAAAAVgkAAAAAAABZCQAAAAAAAFwJAAAAAAAAXwkAAAAAAABiCQAAAAAAAGUJAAAAAAAAaAkAAAAAAABrCQAAAAAAAG4JAAAAAAAAcQkAAAAAAAB0CQAAAAAAAHcJAAAAAAAAegkAAAAAAAB9CQAAAAAAAIAJAAAAAAAAgwkAAAAAAACGCQAAAAAAAIkJAAAAAAAAjAkAAAAAAACPCQAAAAAAAJIJAAAAAAAAlQkAAAAAAACYCQAAAAAAAJsJAAAAAAAAngkAAAAAAAChCQAAAAAAAKQJAAAAAAAApwkAAAAAAACqCQAAAAAAAK0JAAAAAAAAsAkAAAAAAACzCQAAAAAAALYJAAAAAAAAuQkAAAAAAAC8CQAAAAAAAL8JAAAAAAAAwgkAAAAAAADFCQAAAAAAAMgJAAAAAAAAywkAAAAAAADOCQAAAAAAANEJAAAAAAAA1AkAAAAAAADXCQAAAAAAANoJAAAAAAAA3QkAAAAAAADgCQAAAAAAAOMJAAAAAAAA5gkAAAAAAADpCQAAAAAAAOwJAAAAAAAA7wkAAAAAAADyCQAAAAAAAPUJAAAAAAAA+AkAAAAAAAD7CQAAAAAAAP4JAAAAAAAAAQoAAAAAAAAECgAAAAAAAAcKAAAAAAAACgoAAAAAAAANCgAAAAAAABAKAAAAAAAAEwoAAAAAAAAWCgAAAAAAABkKAAAAAAAAHAoAAAAAAAAfCgAAAAAAACIKAAAAAAAAJQoAAAAAAAAoCgAAAAAAACsKAAAAAAAALgoAAAAAAAAxCgAAAAAAADQKAAAAAAAANwoAAAAAAAA6CgAAAAAAAD0KAAAAAAAAQAoAAAAAAABDCgAAAAAAAEYKAAAAAAAASQoAAAAAAABMCgAAAAAAAE8KAAAAAAAAUgoAAAAAAABVCgAAAAAAAFgKAAAAAAAAWwoAAAAAAABeCgAAAAAAAGEKAAAAAAAAZAoAAAAAAABnCgAAAAAAAGoKAAAAAAAAbQoAAAAAAABwCgAAAAAAAHMKAAAAAAAAdgoAAAAAAAB5CgAAAAAAAHwKAAAAAAAAfwoAAAAAAACCCgAAAAAAAIUKAAAAAAAAiAoAAAAAAACLCgAAAAAAAI4KAAAAAAAAkQoAAAAAAACUCgAAAAAAAJcKAAAAAAAAmgoAAAAAAACdCgAAAAAAAKAKAAAAAAAAowoAAAAAAACmCgAAAAAAAKkKAAAAAAAArAoAAAAAAACvCgAAAAAAALIKAAAAAAAAtQoAAAAAAAC4CgAAAAAAALsKAAAAAAAAvgoAAAAAAADBCgAAAAAAAMQKAAAAAAAAxwoAAAAAAADKCgAAAAAAAM0KAAAAAAAA0AoAAAAAAADTCgAAAAAAANYKAAAAAAAA2QoAAAAAAADcCgAAAAAAAN8KAAAAAAAA4goAAAAAAADlCgAAAAAAAOgKAAAAAAAA6woAAAAAAADuCgAAAAAAAPEKAAAAAAAA9AoAAAAAAAD3CgAAAAAAAPoKAAAAAAAA/QoAAAAAAAAACwAAAAAAAAMLAAAAAAAABgsAAAAAAAAJCwAAAAAAAAwLAAAAAAAADwsAAAAAAAASCwAAAAAAABULAAAAAAAAGAsAAAAAAAAbCwAAAAAAAB4LAAAAAAAAIQsAAAAAAAAkCwAAAAAAACcLAAAAAAAAKgsAAAAAAAAtCwAAAAAAADALAAAAAAAAMwsAAAAAAAA2CwAAAAAAADkLAAAAAAAAPAsAAAAAAAA/CwAAAAAAAEILAAAAAAAARQsAAAAAAABICwAAAAAAAEsLAAAAAAAATgsAAAAAAABRCwAAAAAAAFQLAAAAAAAAVwsAAAAAAABaCwAAAAAAAF0LAAAAAAAAYAsAAAAAAABjCwAAAAAAAGYLAAAAAAAAaQsAAAAAAABsCwAAAAAAAG8LAAAAAAAAcgsAAAAAAAB1CwAAAAAAAHgLAAAAAAAAewsAAAAAAAB+CwAAAAAAAIELAAAAAAAAhAsAAAAAAACHCwAAAAAAAIoLAAAAAAAAjQsAAAAAAACQCwAAAAAAAJMLAAAAAAAAlgsAAAAAAACZCwAAAAAAAJwLAAAAAAAAnwsAAAAAAACiCwAAAAAAAKULAAAAAAAAqAsAAAAAAACrCwAAAAAAAK4LAAAAAAAAsQsAAAAAAAC0CwAAAAAAALcLAAAAAAAAugsAAAAAAAC9CwAAAAAAAMALAAAAAAAAwwsAAAAAAADGCwAAAAAAAMkLAAAAAAAAzAsAAAAAAADPCwAAAAAAANILAAAAAAAA1QsAAAAAAADYCwAAAAAAANsLAAAAAAAA3gsAAAAAAADhCwAAAAAAAOQLAAAAAAAA5wsAAAAAAADqCwAAAAAAAO0LAAAAAAAA8AsAAAAAAADzCwAAAAAAAPYLAAAAAAAA+QsAAAAAAAD8CwAAAAAAAP8LAAAAAAAAAgwAAAAAAAAFDAAAAAAAAAgMAAAAAAAACwwAAAAAAAAODAAAAAAAABEMAAAAAAAAFAwAAAAAAAAXDAAAAAAAABoMAAAAAAAAHQwAAAAAAAAgDAAAAAAAACMMAAAAAAAAJgwAAAAAAAApDAAAAAAAACwMAAAAAAAALwwAAAAAAAAyDAAAAAAAADUMAAAAAAAAOAwAAAAAAAA7DAAAAAAAAD4MAAAAAAAAQQwAAAAAAABEDAAAAAAAAEcMAAAAAAAASgwAAAAAAABNDAAAAAAAAFAMAAAAAAAAUwwAAAAAAABWDAAAAAAAAFkMAAAAAAAAXAwAAAAAAABfDAAAAAAAAGIMAAAAAAAAZQwAAAAAAABoDAAAAAAAAGsMAAAAAAAAbgwAAAAAAABxDAAAAAAAAHQMAAAAAAAAdwwAAAAAAAB6DAAAAAAAAH0MAAAAAAAAgAwAAAAAAACDDAAAAAAAAIYMAAAAAAAAiQwAAAAAAACMDAAAAAAAAI8MAAAAAAAAkgwAAAAAAACVDAAAAAAAAJgMAAAAAAAANAQAAAAAAAADAwMDBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQUFBQ==
+  </AppendedData>
+</VTKFile>
diff --git a/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/great_cell_2D_embedded_fracture_ts_64_t_2500.000000.vtu b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/great_cell_2D_embedded_fracture_ts_64_t_2500.000000.vtu
new file mode 100644
index 0000000000000000000000000000000000000000..f90d1cfeae16bdb0e95786d70e40984c611892c4
--- /dev/null
+++ b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/great_cell_2D_embedded_fracture_ts_64_t_2500.000000.vtu
@@ -0,0 +1,38 @@
+<?xml version="1.0"?>
+<VTKFile type="UnstructuredGrid" version="1.0" byte_order="LittleEndian" header_type="UInt64" compressor="vtkZLibDataCompressor">
+  <UnstructuredGrid>
+    <FieldData>
+      <DataArray type="Int8" Name="OGS_VERSION" NumberOfTuples="25" format="appended" RangeMin="45"                   RangeMax="121"                  offset="0"                   />
+    </FieldData>
+    <Piece NumberOfPoints="585"                  NumberOfCells="1076"                >
+      <PointData>
+        <DataArray type="Float64" Name="displacement" NumberOfComponents="2" format="appended" RangeMin="0"                    RangeMax="0.00017170623997"     offset="88"                  />
+        <DataArray type="Float64" Name="displacement_jump1" NumberOfComponents="2" format="appended" RangeMin="0"                    RangeMax="2.727844241e-05"      offset="12224"               />
+        <DataArray type="Float64" Name="epsilon" NumberOfComponents="4" format="appended" RangeMin="6.0167995675e-05"     RangeMax="0.065938956335"       offset="12416"               />
+        <DataArray type="Float64" Name="fracture_aperture" format="appended" RangeMin="0"                    RangeMax="3.7067361756e-05"     offset="31112"               />
+        <DataArray type="Float64" Name="fracture_permeability" format="appended" RangeMin="0"                    RangeMax="1.1396331905e-10"     offset="31268"               />
+        <DataArray type="Float64" Name="fracture_stress" NumberOfComponents="2" format="appended" RangeMin="0"                    RangeMax="2000000"              offset="31432"               />
+        <DataArray type="Float64" Name="fracture_velocity" NumberOfComponents="2" format="appended" RangeMin="0"                    RangeMax="6.4851065203"         offset="31664"               />
+        <DataArray type="Float64" Name="pressure" format="appended" RangeMin="0"                    RangeMax="3450000"              offset="31856"               />
+        <DataArray type="Float64" Name="pressure_interpolated" format="appended" RangeMin="0"                    RangeMax="3450000"              offset="32016"               />
+        <DataArray type="Float64" Name="sigma" NumberOfComponents="4" format="appended" RangeMin="1036372.1742"         RangeMax="11383223.547"         offset="32176"               />
+        <DataArray type="Float64" Name="velocity" NumberOfComponents="2" format="appended" RangeMin="0"                    RangeMax="0"                    offset="56012"               />
+      </PointData>
+      <CellData>
+        <DataArray type="Int32" Name="MaterialIDs" format="appended" RangeMin="0"                    RangeMax="2"                    offset="56100"               />
+        <DataArray type="Float64" Name="levelset1" format="appended" RangeMin="-0.5"                 RangeMax="0.5"                  offset="56192"               />
+      </CellData>
+      <Points>
+        <DataArray type="Float64" Name="Points" NumberOfComponents="3" format="appended" RangeMin="0"                    RangeMax="0.1"                  offset="56724"               />
+      </Points>
+      <Cells>
+        <DataArray type="Int64" Name="connectivity" format="appended" RangeMin=""                     RangeMax=""                     offset="64760"               />
+        <DataArray type="Int64" Name="offsets" format="appended" RangeMin=""                     RangeMax=""                     offset="72224"               />
+        <DataArray type="UInt8" Name="types" format="appended" RangeMin=""                     RangeMax=""                     offset="74520"               />
+      </Cells>
+    </Piece>
+  </UnstructuredGrid>
+  <AppendedData encoding="base64">
+   _AQAAAAAAAAAAgAAAAAAAABkAAAAAAAAAIQAAAAAAAAA=eF4z0zPVM9I1tDTXTTcwNjC3SDU30UvJLCqpBABIQQaIAQAAAAAAAAAAgAAAAAAAAJAkAAAAAAAAayMAAAAAAAA=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AQAAAAAAAAAAgAAAAAAAAJAkAAAAAAAAbwAAAAAAAAA=eF7tzCEKwlAAANCBVxBExLpjfKw2o8LKYCDexOgVdoElrX/gYCvmXWB2w4JFxCMYV947wEsSAAAAgGmt0mo7X3exid9s1o7hdjg2xekRy0v96vNPqDfDuNy38Xxd7O7Pd/j3AQAAAADT+QFAqBrrAQAAAAAAAAAAgAAAAAAAACBJAAAAAAAAozYAAAAAAAA=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AQAAAAAAAAAAgAAAAAAAAEgSAAAAAAAAVAAAAAAAAAA=eF5jYBgFIxl8zHjcsfXHEztC6igF7+lkzygYBaNgFIyCgQE2xQWKcU7/7HoWSdySyGe2b9ji0tVnwGhPSN8oGAWjYBSMglEwCkbBKBhaAACjNxQqAQAAAAAAAAAAgAAAAAAAAEgSAAAAAAAAWQAAAAAAAAA=eF5jYBgFIxms1i74fEFyoi0hdZSC20/S6+6aNtDcnlEwCkbBKBgFAwNWJqkruUdesr0Sybe0JPi+7cQ3FVxOm6+PlvujYBSMglEwCkbBKBgFwwwAAPcFEzI=AQAAAAAAAAAAgAAAAAAAAJAkAAAAAAAAiwAAAAAAAAA=eF5jYBgFo2AUjGxQsvc/ENS32B0kpHJogAZbMDls/DMKRsEoGAWjYBSMglEwCkbByAC77rUu2Np29MDDd+cDHi62PqjQYK/9oPTUgc6U54l6yVYHPVyiCp3OHznwTUX8RwqX9Wh7fxSMglEwCkbBKBgFo2AUjIJRMApGwSgYBaNgFIyCQQwA5nIkBA==AQAAAAAAAAAAgAAAAAAAAJAkAAAAAAAAbwAAAAAAAAA=eF7tz7ENQEAAheEb4UoWUJtAZwk1a1jAAgoLSBQWkJMoiMQMiusUIpFoqVyrxf1f9yeveUIAsFXcl3lSafW0+wq/CfZZj7/5AwAAANgkqtNObW57t3cEZ1hI08swZXJ1TAMAAAAAAAB4rwuDcBhGAQAAAAAAAAAAgAAAAAAAAEgSAAAAAAAAVQAAAAAAAAA=eF5jYBgFIxmIZuv9vvltth0hddQAHkFejoTUjIJRMApGwSgYmqDBbwpntIKFo806r1J5ZTtHxVvu2rfmO46W+6NgFIyCUTAKRsEoGAXDDAAAvBANqA==AQAAAAAAAAAAgAAAAAAAAEgSAAAAAAAAVQAAAAAAAAA=eF5jYACCrB8ODKP0yKVhgJA6CmmPIC9HYtSN0qP0KD1Kj9JDj27wm8IZrWDhaLPOq1Re2c5R8Za79q35jqPl/ig9So/So/QoPUqP0qP0MKMBe6O8jA==AQAAAAAAAAAAgAAAAAAAACBJAAAAAAAAtEUAAAAAAAA=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eF7twTEBAAAAwqD1T20JT6AAAAAAAAAAAAA+BiSQAAE=AQAAAAAAAAAAgAAAAAAAANAQAAAAAAAAIgAAAAAAAAA=eF7tw6ENAAAIA7DB/0djkThMm7ST9AoAAAAXpY8HYG8AqQ==AQAAAAAAAAAAgAAAAAAAAKAhAAAAAAAAbAEAAAAAAAA=eF7lz8ttAzEQA1B35tLdSkrJfYHBIzWbRQDrQkj86vVKzs97wM8Fr++Tb8rZvgvlu/5n+lfKa8+0SzktL5Qv5bWv3aE8ofrSnvZ9+ke7L/Wl78pRnnLTHr2nqNxTvXae8tMevStXmOa2fu2bMM0Vpntb1E79V7z+I5382/7p3+ld79q79Sln2q/etl/5aa96tvltj/KnPuWlfuXqn8qTXv/QTuWn+hS3e8XL1/aluqf56d7mtHzqa/Pa+9Qjnfzi011/nX+qV450W7/2yp/mnu7b+vUf5ci37U39p7x08qf8dG9z7t4nnfziU91/7Rcvn3Typ7ze05yn+e1d+eLlk27rF3/qa3Wn/dLJP+nb/K2/9aX98kvX9rZ+7ROvPWmO9qf9rf8ufrpLl+aLT+/Spe/K0V25bX/KtzjtSlH5QuWneM2b7lPvxMuX6trcVj/pvg0/X4bXf78HlD9F7Xk6/7TnbtS+2/EX1VO+nA==AQAAAAAAAAAAgAAAAAAAANg2AAAAAAAAaRcAAAAAAAA=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AQAAAAAAAAAAgAAAAAAAAMBkAAAAAAAAuxUAAAAAAAA=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AQAAAAAAAAAAgAAAAAAAAKAhAAAAAAAAlwYAAAAAAAA=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AQAAAAAAAAAAgAAAAAAAADQEAAAAAAAAFQAAAAAAAAA=eF5jZmZmZh0Fo2AUjAIiAQAaHhT9
+  </AppendedData>
+</VTKFile>
diff --git a/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/great_cell_2d_HM_LIE_embedded_fracture.prj b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/great_cell_2d_HM_LIE_embedded_fracture.prj
new file mode 100644
index 0000000000000000000000000000000000000000..7f7da5c14d89e6fa6089d36270882b7531b46800
--- /dev/null
+++ b/Tests/Data/LIE/HydroMechanics/GreatCellWithTrianglularMesh/great_cell_2d_HM_LIE_embedded_fracture.prj
@@ -0,0 +1,889 @@
+<?xml version='1.0' encoding='ISO-8859-1'?>
+<OpenGeoSysProject>
+    <meshes>
+        <mesh>2d_mesh.vtu</mesh>
+        <mesh>2D_STRIP1.vtu</mesh>
+        <mesh>2D_STRIP2.vtu</mesh>
+        <mesh>2D_STRIP3.vtu</mesh>
+        <mesh>2D_STRIP4.vtu</mesh>
+        <mesh>2D_STRIP5.vtu</mesh>
+        <mesh>2D_STRIP6.vtu</mesh>
+        <mesh>2D_STRIP7.vtu</mesh>
+        <mesh>2D_STRIP8.vtu</mesh>
+        <mesh>2D_STRIP9.vtu</mesh>
+        <mesh>2D_STRIP10.vtu</mesh>
+        <mesh>2D_STRIP11.vtu</mesh>
+        <mesh>2D_STRIP12.vtu</mesh>
+        <mesh>2D_STRIP13.vtu</mesh>
+        <mesh>2D_STRIP14.vtu</mesh>
+        <mesh>2D_STRIP15.vtu</mesh>
+        <mesh>2D_STRIP16.vtu</mesh>
+        <mesh>2D_BAG1.vtu</mesh>
+        <mesh>2D_BAG2.vtu</mesh>
+        <mesh>2D_BAG3.vtu</mesh>
+        <mesh>2D_BAG4.vtu</mesh>
+        <mesh>2D_BAG5.vtu</mesh>
+        <mesh>2D_BAG6.vtu</mesh>
+        <mesh>2D_BAG7.vtu</mesh>
+        <mesh>2D_BAG8.vtu</mesh>
+        <mesh>2D_BAG9.vtu</mesh>
+        <mesh>2D_BAG10.vtu</mesh>
+        <mesh>2D_BAG11.vtu</mesh>
+        <mesh>2D_BAG12.vtu</mesh>
+        <mesh>2D_BAG13.vtu</mesh>
+        <mesh>2D_BAG14.vtu</mesh>
+        <mesh>2D_BAG15.vtu</mesh>
+        <mesh>2D_BAG16.vtu</mesh>
+        <mesh>2D_p_left.vtu</mesh>
+        <mesh>2D_p_right.vtu</mesh>
+        <mesh>2D_p_top.vtu</mesh>
+        <mesh>2D_p_bottom.vtu</mesh>
+        <mesh>2D_injection_position.vtu</mesh>
+        <mesh>2D_outflow_position.vtu</mesh>        
+    </meshes>
+    <processes>
+        <process>
+            <name>HM</name>
+            <type>HYDRO_MECHANICS_WITH_LIE</type>
+            <integration_order>3</integration_order>
+            <constitutive_relation id="0">
+                <type>LinearElasticIsotropic</type>
+                <youngs_modulus>E1</youngs_modulus>
+                <poissons_ratio>nu1</poissons_ratio>
+            </constitutive_relation>
+            <constitutive_relation id="1">
+                <type>LinearElasticIsotropic</type>
+                <youngs_modulus>E2</youngs_modulus>
+                <poissons_ratio>nu2</poissons_ratio>
+            </constitutive_relation>
+            <specific_body_force>0 0.0</specific_body_force>
+            <process_variables>
+                <process_variable>pressure</process_variable>
+                <process_variable>displacement</process_variable>
+                <process_variable>displacement_jump1</process_variable>
+            </process_variables>
+            <secondary_variables>
+                <secondary_variable internal_name="sigma" output_name="sigma"/>
+                <secondary_variable internal_name="epsilon" output_name="epsilon"/>
+                <secondary_variable internal_name="velocity" output_name="velocity"/>
+                <secondary_variable internal_name="fracture_aperture" output_name="fracture_aperture"/>
+                <secondary_variable internal_name="fracture_permeability" output_name="fracture_permeability"/>
+                <secondary_variable internal_name="fracture_stress" output_name="fracture_stress"/>
+                <secondary_variable internal_name="fracture_velocity" output_name="fracture_velocity"/>
+            </secondary_variables>
+            <intrinsic_permeability>k</intrinsic_permeability>
+            <specific_storage>S</specific_storage>
+            <fluid_viscosity>mu</fluid_viscosity>
+            <biot_coefficient>biot_m</biot_coefficient>
+            <porosity>phi</porosity>
+            <solid_density>rho_sr</solid_density>
+            <fluid_density>rho_fr</fluid_density>
+            <initial_effective_stress>effective_stress0</initial_effective_stress>
+            <fracture_model>
+                <type>LinearElasticIsotropic</type>
+                <normal_stiffness>Kn</normal_stiffness>
+                <shear_stiffness>Ks</shear_stiffness>
+                <penalty_aperture_cutoff>1e-5</penalty_aperture_cutoff>
+                <tension_cutoff>1</tension_cutoff>
+            </fracture_model>
+            <fracture_properties>
+                <material_id>2</material_id>
+                <initial_aperture>aperture0</initial_aperture>
+                <specific_storage>S_f</specific_storage>
+                <biot_coefficient>biot_f</biot_coefficient>
+                <permeability_model>
+                    <type>CubicLaw</type>
+                </permeability_model>
+            </fracture_properties>
+            <deactivate_matrix_in_flow>true</deactivate_matrix_in_flow>
+            <initial_fracture_effective_stress>fracture_effective_stress0</initial_fracture_effective_stress>
+        </process>
+    </processes>
+    <time_loop>
+        <processes>
+            <process ref="HM">
+                <nonlinear_solver>basic_newton_u</nonlinear_solver>
+                <convergence_criterion>
+                    <type>PerComponentDeltaX</type>
+                    <norm_type>NORM2</norm_type>
+                    <reltols>1.0e-13 1e-13 1e-13 1e-14 1e-14</reltols>
+                </convergence_criterion>
+                <time_discretization>
+                    <type>BackwardEuler</type>
+                </time_discretization>
+                <time_stepping>
+                    <type>IterationNumberBasedTimeStepping</type>
+                    <t_initial>0</t_initial>
+                    <t_end>2500</t_end>
+                    <initial_dt>0.001</initial_dt>
+                    <minimum_dt>0.001</minimum_dt>
+                    <maximum_dt>100</maximum_dt>
+                    <number_iterations>1 2 5 10  20</number_iterations>
+                    <multiplier>       1.6 1.4 1.0 0.7 0.5</multiplier>
+                </time_stepping>
+            </process>
+        </processes>
+        <output>
+            <type>VTK</type>
+            <prefix>great_cell_2D_embedded_fracture</prefix>
+            <variables>
+                <variable>MaterialIDs</variable>
+                <variable>pressure</variable>
+                <variable>pressure_interpolated</variable>
+                <variable>displacement</variable>
+                <variable>displacement_jump1</variable>
+                <variable>velocity</variable>
+                <variable>fracture_stress</variable>
+                <variable>fracture_aperture</variable>
+                <variable>fracture_permeability</variable>
+                <variable>fracture_velocity</variable>
+                <variable>sigma</variable>
+                <variable>epsilon</variable>
+                <variable>levelset1</variable>
+            </variables>
+            <output_iteration_results>false</output_iteration_results>
+            <timesteps>
+                <pair>
+                    <repeat>100</repeat>
+                    <each_steps>10</each_steps>
+                </pair>
+            </timesteps>
+        </output>
+    </time_loop>
+    <parameters>
+        <parameter>
+            <name>E1</name>
+            <type>Constant</type>
+            <value>3.85e9</value>
+        </parameter>
+        <parameter>
+            <name>nu1</name>
+            <type>Constant</type>
+            <value>0.4</value>
+        </parameter>
+        <parameter>
+            <name>E2</name>
+            <type>Constant</type>
+            <value>1e8</value>
+        </parameter>
+        <parameter>
+            <name>nu2</name>
+            <type>Constant</type>
+            <value>0.4</value>
+        </parameter>
+        <parameter>
+            <name>rho_sr</name>
+            <type>Constant</type>
+            <value>2650</value>
+        </parameter>
+        <parameter>
+            <name>rho_fr</name>
+            <type>Constant</type>
+            <value>1e3</value>
+        </parameter>
+        <parameter>
+            <name>mu</name>
+            <type>Constant</type>
+            <value>1e-3</value>
+        </parameter>
+        <!-- Porous medium properties -->
+        <parameter>
+            <name>phi</name>
+            <type>Constant</type>
+            <value>1e-3</value>
+        </parameter>
+        <parameter>
+            <name>k</name>
+            <type>Constant</type>
+            <value>2.58e-19</value>
+        </parameter>
+        <parameter>
+            <name>S</name>
+            <type>Constant</type>
+            <value>0.0</value>
+        </parameter>
+        <parameter>
+            <name>biot_m</name>
+            <type>Constant</type>
+            <value>0.005</value>            
+        </parameter>
+        <!-- Fracture properties -->
+        <parameter>
+            <name>f_thickness</name>
+            <type>Constant</type>
+            <value>1.0</value>
+        </parameter>
+        <parameter>
+            <name>aperture0</name>
+            <type>Constant</type>
+            <value>1e-5</value>
+        </parameter>
+        <parameter>
+            <name>S_f</name>
+            <type>Constant</type> 	
+            <value>1e-11</value>
+        </parameter>
+        <parameter>
+            <name>biot_f</name>
+            <type>Constant</type>
+            <value>1</value>
+        </parameter>
+        <parameter>
+            <name>Kn</name>
+            <type>Constant</type>
+            <value>10e9</value>
+        </parameter>
+        <parameter>
+            <name>Ks</name>
+            <type>Constant</type>
+            <value>4e9</value>
+        </parameter>
+        <parameter>
+            <name>effective_stress0</name>
+            <type>Constant</type>
+            <values>-3e6 -3e6 -3e6 0</values>
+        </parameter>
+        <parameter>
+            <name>fracture_effective_stress0</name>
+            <type>Constant</type>
+            <values>0.0 -2e6</values>
+        </parameter>
+        <!-- initial values -->
+        <parameter>
+            <name>p0</name>
+            <type>Constant</type>
+            <value>2.0e6</value>
+        </parameter>        
+        <!-- BC -->
+        <parameter>
+            <name>p_down_stream</name>
+            <type>Constant</type>
+            <value>3.45e6</value>
+        </parameter>
+        <parameter>
+            <name>p_injection_rate</name>
+            <type>Constant</type>
+            <value>4.167e-7</value>
+        </parameter>
+
+        <parameter>
+            <name>p_injection_ramp</name>
+            <type>CurveScaled</type>
+            <curve>timeRamp</curve>
+            <parameter>p_injection_rate</parameter>
+        </parameter>
+
+        <parameter>
+            <name>u0</name>
+            <type>Constant</type>
+            <values>0 0</values>
+        </parameter>
+        <parameter>
+            <name>pressure_ic</name>
+            <type>Constant</type>
+            <value>0.1e6</value>
+        </parameter>
+        <parameter>
+            <name>zero</name>
+            <type>Constant</type>
+            <value>0</value>
+        </parameter>
+        <parameter>
+            <name>loading</name>
+            <type>Constant</type>
+            <value>1</value>
+        </parameter>
+        <parameter>
+            <name>BAG_1_SURFACE_CURVE</name>
+            <type>CurveScaled</type>
+            <curve>BAG_1_SURFACE_CURVE</curve>
+            <parameter>loading</parameter>
+        </parameter>
+        <parameter>
+            <name>BAG_2_SURFACE_CURVE</name>
+            <type>CurveScaled</type>
+            <curve>BAG_2_SURFACE_CURVE</curve>
+            <parameter>loading</parameter>
+        </parameter>
+        <parameter>
+            <name>BAG_3_SURFACE_CURVE</name>
+            <type>CurveScaled</type>
+            <curve>BAG_3_SURFACE_CURVE</curve>
+            <parameter>loading</parameter>
+        </parameter>
+        <parameter>
+            <name>BAG_5_SURFACE_CURVE</name>
+            <type>CurveScaled</type>
+            <curve>BAG_5_SURFACE_CURVE</curve>
+            <parameter>loading</parameter>
+        </parameter>
+        <parameter>
+            <name>BAG_4_SURFACE_CURVE</name>
+            <type>CurveScaled</type>
+            <curve>BAG_4_SURFACE_CURVE</curve>
+            <parameter>loading</parameter>
+        </parameter>
+        <parameter>
+            <name>BAG_6_SURFACE_CURVE</name>
+            <type>CurveScaled</type>
+            <curve>BAG_6_SURFACE_CURVE</curve>
+            <parameter>loading</parameter>
+        </parameter>
+        <parameter>
+            <name>BAG_7_SURFACE_CURVE</name>
+            <type>CurveScaled</type>
+            <curve>BAG_7_SURFACE_CURVE</curve>
+            <parameter>loading</parameter>
+        </parameter>
+        <parameter>
+            <name>BAG_8_SURFACE_CURVE</name>
+            <type>CurveScaled</type>
+            <curve>BAG_8_SURFACE_CURVE</curve>
+            <parameter>loading</parameter>
+        </parameter>
+        <parameter>
+            <name>BAG_9_SURFACE_CURVE</name>
+            <type>CurveScaled</type>
+            <curve>BAG_9_SURFACE_CURVE</curve>
+            <parameter>loading</parameter>
+        </parameter>
+        <parameter>
+            <name>BAG_10_SURFACE_CURVE</name>
+            <type>CurveScaled</type>
+            <curve>BAG_10_SURFACE_CURVE</curve>
+            <parameter>loading</parameter>
+        </parameter>
+        <parameter>
+            <name>BAG_11_SURFACE_CURVE</name>
+            <type>CurveScaled</type>
+            <curve>BAG_11_SURFACE_CURVE</curve>
+            <parameter>loading</parameter>
+        </parameter>
+        <parameter>
+            <name>BAG_12_SURFACE_CURVE</name>
+            <type>CurveScaled</type>
+            <curve>BAG_12_SURFACE_CURVE</curve>
+            <parameter>loading</parameter>
+        </parameter>
+        <parameter>
+            <name>BAG_13_SURFACE_CURVE</name>
+            <type>CurveScaled</type>
+            <curve>BAG_13_SURFACE_CURVE</curve>
+            <parameter>loading</parameter>
+        </parameter>
+        <parameter>
+            <name>BAG_14_SURFACE_CURVE</name>
+            <type>CurveScaled</type>
+            <curve>BAG_14_SURFACE_CURVE</curve>
+            <parameter>loading</parameter>
+        </parameter>
+        <parameter>
+            <name>BAG_15_SURFACE_CURVE</name>
+            <type>CurveScaled</type>
+            <curve>BAG_15_SURFACE_CURVE</curve>
+            <parameter>loading</parameter>
+        </parameter>
+        <parameter>
+            <name>BAG_16_SURFACE_CURVE</name>
+            <type>CurveScaled</type>
+            <curve>BAG_16_SURFACE_CURVE</curve>
+            <parameter>loading</parameter>
+        </parameter>
+        <parameter>
+            <name>STRIP_1_SURFACE_CURVE</name>
+            <type>CurveScaled</type>
+            <curve>STRIP_1_SURFACE_CURVE</curve>
+            <parameter>loading</parameter>
+        </parameter>
+        <parameter>
+            <name>STRIP_2_SURFACE_CURVE</name>
+            <type>CurveScaled</type>
+            <curve>STRIP_2_SURFACE_CURVE</curve>
+            <parameter>loading</parameter>
+        </parameter>
+        <parameter>
+            <name>STRIP_3_SURFACE_CURVE</name>
+            <type>CurveScaled</type>
+            <curve>STRIP_3_SURFACE_CURVE</curve>
+            <parameter>loading</parameter>
+        </parameter>
+        <parameter>
+            <name>STRIP_5_SURFACE_CURVE</name>
+            <type>CurveScaled</type>
+            <curve>STRIP_5_SURFACE_CURVE</curve>
+            <parameter>loading</parameter>
+        </parameter>
+        <parameter>
+            <name>STRIP_4_SURFACE_CURVE</name>
+            <type>CurveScaled</type>
+            <curve>STRIP_4_SURFACE_CURVE</curve>
+            <parameter>loading</parameter>
+        </parameter>
+        <parameter>
+            <name>STRIP_6_SURFACE_CURVE</name>
+            <type>CurveScaled</type>
+            <curve>STRIP_6_SURFACE_CURVE</curve>
+            <parameter>loading</parameter>
+        </parameter>
+        <parameter>
+            <name>STRIP_7_SURFACE_CURVE</name>
+            <type>CurveScaled</type>
+            <curve>STRIP_7_SURFACE_CURVE</curve>
+            <parameter>loading</parameter>
+        </parameter>
+        <parameter>
+            <name>STRIP_8_SURFACE_CURVE</name>
+            <type>CurveScaled</type>
+            <curve>STRIP_8_SURFACE_CURVE</curve>
+            <parameter>loading</parameter>
+        </parameter>
+        <parameter>
+            <name>STRIP_9_SURFACE_CURVE</name>
+            <type>CurveScaled</type>
+            <curve>STRIP_9_SURFACE_CURVE</curve>
+            <parameter>loading</parameter>
+        </parameter>
+        <parameter>
+            <name>STRIP_10_SURFACE_CURVE</name>
+            <type>CurveScaled</type>
+            <curve>STRIP_10_SURFACE_CURVE</curve>
+            <parameter>loading</parameter>
+        </parameter>
+        <parameter>
+            <name>STRIP_11_SURFACE_CURVE</name>
+            <type>CurveScaled</type>
+            <curve>STRIP_11_SURFACE_CURVE</curve>
+            <parameter>loading</parameter>
+        </parameter>
+        <parameter>
+            <name>STRIP_12_SURFACE_CURVE</name>
+            <type>CurveScaled</type>
+            <curve>STRIP_12_SURFACE_CURVE</curve>
+            <parameter>loading</parameter>
+        </parameter>
+        <parameter>
+            <name>STRIP_13_SURFACE_CURVE</name>
+            <type>CurveScaled</type>
+            <curve>STRIP_13_SURFACE_CURVE</curve>
+            <parameter>loading</parameter>
+        </parameter>
+        <parameter>
+            <name>STRIP_14_SURFACE_CURVE</name>
+            <type>CurveScaled</type>
+            <curve>STRIP_14_SURFACE_CURVE</curve>
+            <parameter>loading</parameter>
+        </parameter>
+        <parameter>
+            <name>STRIP_15_SURFACE_CURVE</name>
+            <type>CurveScaled</type>
+            <curve>STRIP_15_SURFACE_CURVE</curve>
+            <parameter>loading</parameter>
+        </parameter>
+        <parameter>
+            <name>STRIP_16_SURFACE_CURVE</name>
+            <type>CurveScaled</type>
+            <curve>STRIP_16_SURFACE_CURVE</curve>
+            <parameter>loading</parameter>
+        </parameter>
+    </parameters>
+    <curves>
+        <curve>
+            <name>timeRamp</name>
+            <coords>0 499.9 500 2500</coords>
+            <values>0 0.0 1.0 1.0</values>
+        </curve>
+        <curve>
+            <name>BAG_1_SURFACE_CURVE</name>
+            <coords>0 500</coords>
+            <values>-7730000.0 -7730000.0 </values>
+        </curve>
+        <curve>
+            <name>BAG_2_SURFACE_CURVE</name>
+            <coords>0 500</coords>
+            <values>-5700000.0 -5700000.0</values>
+        </curve>
+        <curve>
+            <name>BAG_3_SURFACE_CURVE</name>
+            <coords>0 500</coords>
+            <values>-4390000.0 -4390000.0</values>
+        </curve>
+        <curve>
+            <name>BAG_4_SURFACE_CURVE</name>
+            <coords>0 500</coords>
+            <values>-2400000.0 -2400000.0</values>
+        </curve>
+        <curve>
+            <name>BAG_5_SURFACE_CURVE</name>
+            <coords>0 500</coords>
+            <values>-2300000.0 -2300000.0</values>
+        </curve>
+        <curve>
+            <name>BAG_6_SURFACE_CURVE</name>
+            <coords>0 500</coords>
+            <values>-4000000.0 -4000000.0</values>
+        </curve>
+        <curve>
+            <name>BAG_7_SURFACE_CURVE</name>
+            <coords>0 500</coords>
+            <values>-6400000.0 -6400000.0</values>
+        </curve>
+        <curve>
+            <name>BAG_8_SURFACE_CURVE</name>
+            <coords>0 500</coords>
+            <values>-7700000.0 -7700000.0</values>
+        </curve>
+        <curve>
+            <name>BAG_9_SURFACE_CURVE</name>
+            <coords>0 500</coords>
+            <values>-7730000.0 -7730000.0</values>
+        </curve>
+        <curve>
+            <name>BAG_10_SURFACE_CURVE</name>
+            <coords>0 500</coords>
+            <values>-5700000.0 -5700000.0</values>
+        </curve>
+        <curve>
+            <name>BAG_11_SURFACE_CURVE</name>
+            <coords>0 500</coords>
+            <values>-4390000.0 -4390000.0</values>
+        </curve>
+        <curve>
+            <name>BAG_12_SURFACE_CURVE</name>
+            <coords>0 500</coords>
+            <values>-2400000.0 -2400000.0</values>
+        </curve>
+        <curve>
+            <name>BAG_13_SURFACE_CURVE</name>
+            <coords>0 500</coords>
+            <values>-2300000.0 -2300000.0</values>
+        </curve>
+        <curve>
+            <name>BAG_14_SURFACE_CURVE</name>
+            <coords>0 500</coords>
+            <values>-4000000.0 -4000000.0</values>
+        </curve>
+        <curve>
+            <name>BAG_15_SURFACE_CURVE</name>
+            <coords>0 500</coords>
+            <values>-6400000.0 -6400000.0</values>
+        </curve>
+        <curve>
+            <name>BAG_16_SURFACE_CURVE</name>
+            <coords>0 500</coords>
+            <values>-7700000.0 -7700000.0</values>
+        </curve>
+        <curve>
+            <name>STRIP_1_SURFACE_CURVE</name>
+            <coords>0 500</coords>
+            <values>-6715000.0 -6715000.0</values>
+        </curve>
+        <curve>
+            <name>STRIP_2_SURFACE_CURVE</name>
+            <coords>0 500</coords>
+            <values>-5045000.0 -5045000.0</values>
+        </curve>
+        <curve>
+            <name>STRIP_3_SURFACE_CURVE</name>
+            <coords>0 500</coords>
+            <values>-3395000.0 -3395000.0</values>
+        </curve>
+        <curve>
+            <name>STRIP_4_SURFACE_CURVE</name>
+            <coords>0 500</coords>
+            <values>-2350000.0 -2350000.0</values>
+        </curve>
+        <curve>
+            <name>STRIP_5_SURFACE_CURVE</name>
+            <coords>0 500</coords>
+            <values>-3150000.0 -3150000.0</values>
+        </curve>
+        <curve>
+            <name>STRIP_6_SURFACE_CURVE</name>
+            <coords>0 500</coords>
+            <values>-5200000.0 -5200000.0</values>
+        </curve>
+        <curve>
+            <name>STRIP_7_SURFACE_CURVE</name>
+            <coords>0 500</coords>
+            <values>-7050000.0 -7050000.0</values>
+        </curve>
+        <curve>
+            <name>STRIP_8_SURFACE_CURVE</name>
+            <coords>0 500</coords>
+            <values>-7715000.0 -7715000.0</values>
+        </curve>
+        <curve>
+            <name>STRIP_9_SURFACE_CURVE</name>
+            <coords>0 500</coords>
+            <values>-6715000.0 -6715000.0</values>
+        </curve>
+        <curve>
+            <name>STRIP_10_SURFACE_CURVE</name>
+            <coords>0 500</coords>
+            <values>-5045000.0 -5045000.0</values>
+        </curve>
+        <curve>
+            <name>STRIP_11_SURFACE_CURVE</name>
+            <coords>0 500</coords>
+            <values>-3395000.0 -3395000.0</values>
+        </curve>
+        <curve>
+            <name>STRIP_12_SURFACE_CURVE</name>
+            <coords>0 500</coords>
+            <values>-2350000.0 -2350000.0</values>
+        </curve>
+        <curve>
+            <name>STRIP_13_SURFACE_CURVE</name>
+            <coords>0 500</coords>
+            <values>-3150000.0 -3150000.0</values>
+        </curve>
+        <curve>
+            <name>STRIP_14_SURFACE_CURVE</name>
+            <coords>0 500</coords>
+            <values>-5200000.0 -5200000.0</values>
+        </curve>
+        <curve>
+            <name>STRIP_15_SURFACE_CURVE</name>
+            <coords>0 500</coords>
+            <values>-7050000.0 -7050000.0</values>
+        </curve>
+        <curve>
+            <name>STRIP_16_SURFACE_CURVE</name>
+            <coords>0 500</coords>
+            <values>-7715000.0 -7715000.0</values>
+        </curve>
+    </curves>
+    <process_variables>
+        <process_variable>
+            <name>pressure</name>
+            <components>1</components>
+            <order>1</order>
+            <initial_condition>pressure_ic</initial_condition>
+            <boundary_conditions>
+                <boundary_condition>
+                    <mesh>2D_injection_position</mesh>
+                    <type>Dirichlet</type>
+                    <component>0</component>
+                    <parameter>p_injection_ramp</parameter>
+                </boundary_condition>
+                <boundary_condition>
+                    <mesh>2D_outflow_position</mesh>
+                    <type>Dirichlet</type>
+                    <component>0</component>
+                    <parameter>p_down_stream</parameter>
+                </boundary_condition>
+            </boundary_conditions>
+        </process_variable>
+        <process_variable>
+            <name>displacement</name>
+            <components>2</components>
+            <order>1</order>
+            <initial_condition>u0</initial_condition>
+            <boundary_conditions>
+                <boundary_condition>
+                    <mesh>2D_injection_position</mesh>
+                    <type>Dirichlet</type>
+                    <component>0</component>
+                    <parameter>zero</parameter>
+                </boundary_condition>
+                <boundary_condition>
+                    <mesh>2D_injection_position</mesh>
+                    <type>Dirichlet</type>
+                    <component>1</component>
+                    <parameter>zero</parameter>
+                </boundary_condition>
+                <boundary_condition>
+                    <mesh>2D_p_bottom</mesh>
+                    <type>Dirichlet</type>
+                    <component>0</component>
+                    <parameter>zero</parameter>
+                </boundary_condition>
+                <boundary_condition>
+                    <mesh>2D_BAG1</mesh>
+                    <type>NormalTraction</type>
+                    <parameter>BAG_1_SURFACE_CURVE</parameter>
+                </boundary_condition>
+                <boundary_condition>
+                    <mesh>2D_BAG2</mesh>
+                    <type>NormalTraction</type>
+                    <parameter>BAG_2_SURFACE_CURVE</parameter>
+                </boundary_condition>
+                <boundary_condition>
+                    <mesh>2D_BAG3</mesh>
+                    <type>NormalTraction</type>
+                    <parameter>BAG_3_SURFACE_CURVE</parameter>
+                </boundary_condition>
+                <boundary_condition>
+                    <mesh>2D_BAG4</mesh>
+                    <type>NormalTraction</type>
+                    <parameter>BAG_4_SURFACE_CURVE</parameter>
+                </boundary_condition>
+                <boundary_condition>
+                    <mesh>2D_BAG5</mesh>
+                    <type>NormalTraction</type>
+                    <parameter>BAG_5_SURFACE_CURVE</parameter>
+                </boundary_condition>
+                <boundary_condition>
+                    <mesh>2D_BAG6</mesh>
+                    <type>NormalTraction</type>
+                    <parameter>BAG_6_SURFACE_CURVE</parameter>
+                </boundary_condition>
+                <boundary_condition>
+                    <mesh>2D_BAG7</mesh>
+                    <type>NormalTraction</type>
+                    <parameter>BAG_7_SURFACE_CURVE</parameter>
+                </boundary_condition>
+                <boundary_condition>
+                    <mesh>2D_BAG8</mesh>
+                    <type>NormalTraction</type>
+                    <parameter>BAG_8_SURFACE_CURVE</parameter>
+                </boundary_condition>
+                <boundary_condition>
+                    <mesh>2D_BAG9</mesh>
+                    <type>NormalTraction</type>
+                    <parameter>BAG_9_SURFACE_CURVE</parameter>
+                </boundary_condition>
+                <boundary_condition>
+                    <mesh>2D_BAG10</mesh>
+                    <type>NormalTraction</type>
+                    <parameter>BAG_10_SURFACE_CURVE</parameter>
+                </boundary_condition>
+                <boundary_condition>
+                    <mesh>2D_BAG11</mesh>
+                    <type>NormalTraction</type>
+                    <parameter>BAG_11_SURFACE_CURVE</parameter>
+                </boundary_condition>
+                <boundary_condition>
+                    <mesh>2D_BAG12</mesh>
+                    <type>NormalTraction</type>
+                    <parameter>BAG_12_SURFACE_CURVE</parameter>
+                </boundary_condition>
+                <boundary_condition>
+                    <mesh>2D_BAG13</mesh>
+                    <type>NormalTraction</type>
+                    <parameter>BAG_13_SURFACE_CURVE</parameter>
+                </boundary_condition>
+                <boundary_condition>
+                    <mesh>2D_BAG14</mesh>
+                    <type>NormalTraction</type>
+                    <parameter>BAG_14_SURFACE_CURVE</parameter>
+                </boundary_condition>
+                <boundary_condition>
+                    <mesh>2D_BAG15</mesh>
+                    <type>NormalTraction</type>
+                    <parameter>BAG_15_SURFACE_CURVE</parameter>
+                </boundary_condition>
+                <boundary_condition>
+                    <mesh>2D_BAG16</mesh>
+                    <type>NormalTraction</type>
+                    <parameter>BAG_16_SURFACE_CURVE</parameter>
+                </boundary_condition>
+                <boundary_condition>
+                    <mesh>2D_STRIP1</mesh>
+                    <type>NormalTraction</type>
+                    <parameter>STRIP_1_SURFACE_CURVE</parameter>
+                </boundary_condition>
+                <boundary_condition>
+                    <mesh>2D_STRIP2</mesh>
+                    <type>NormalTraction</type>
+                    <parameter>STRIP_2_SURFACE_CURVE</parameter>
+                </boundary_condition>
+                <boundary_condition>
+                    <mesh>2D_STRIP3</mesh>
+                    <type>NormalTraction</type>
+                    <parameter>STRIP_3_SURFACE_CURVE</parameter>
+                </boundary_condition>
+                <boundary_condition>
+                    <mesh>2D_STRIP4</mesh>
+                    <type>NormalTraction</type>
+                    <parameter>STRIP_4_SURFACE_CURVE</parameter>
+                </boundary_condition>
+                <boundary_condition>
+                    <mesh>2D_STRIP5</mesh>
+                    <type>NormalTraction</type>
+                    <parameter>STRIP_5_SURFACE_CURVE</parameter>
+                </boundary_condition>
+                <boundary_condition>
+                    <mesh>2D_STRIP6</mesh>
+                    <type>NormalTraction</type>
+                    <parameter>STRIP_6_SURFACE_CURVE</parameter>
+                </boundary_condition>
+                <boundary_condition>
+                    <mesh>2D_STRIP7</mesh>
+                    <type>NormalTraction</type>
+                    <parameter>STRIP_7_SURFACE_CURVE</parameter>
+                </boundary_condition>
+                <boundary_condition>
+                    <mesh>2D_STRIP8</mesh>
+                    <type>NormalTraction</type>
+                    <parameter>STRIP_8_SURFACE_CURVE</parameter>
+                </boundary_condition>
+                <boundary_condition>
+                    <mesh>2D_STRIP9</mesh>
+                    <type>NormalTraction</type>
+                    <parameter>STRIP_9_SURFACE_CURVE</parameter>
+                </boundary_condition>
+                <boundary_condition>
+                    <mesh>2D_STRIP10</mesh>
+                    <type>NormalTraction</type>
+                    <parameter>STRIP_10_SURFACE_CURVE</parameter>
+                </boundary_condition>
+                <boundary_condition>
+                    <mesh>2D_STRIP11</mesh>
+                    <type>NormalTraction</type>
+                    <parameter>STRIP_11_SURFACE_CURVE</parameter>
+                </boundary_condition>
+                <boundary_condition>
+                    <mesh>2D_STRIP12</mesh>
+                    <type>NormalTraction</type>
+                    <parameter>STRIP_12_SURFACE_CURVE</parameter>
+                </boundary_condition>
+                <boundary_condition>
+                    <mesh>2D_STRIP13</mesh>
+                    <type>NormalTraction</type>
+                    <parameter>STRIP_13_SURFACE_CURVE</parameter>
+                </boundary_condition>
+                <boundary_condition>
+                    <mesh>2D_STRIP14</mesh>
+                    <type>NormalTraction</type>
+                    <parameter>STRIP_14_SURFACE_CURVE</parameter>
+                </boundary_condition>
+                <boundary_condition>
+                    <mesh>2D_STRIP15</mesh>
+                    <type>NormalTraction</type>
+                    <parameter>STRIP_15_SURFACE_CURVE</parameter>
+                </boundary_condition>
+                <boundary_condition>
+                    <mesh>2D_STRIP16</mesh>
+                    <type>NormalTraction</type>
+                    <parameter>STRIP_16_SURFACE_CURVE</parameter>
+                </boundary_condition>
+            </boundary_conditions>
+        </process_variable>
+        <process_variable>
+            <name>displacement_jump1</name>
+            <components>2</components>
+            <order>1</order>
+            <initial_condition>u0</initial_condition>
+            <boundary_conditions>
+            </boundary_conditions>
+        </process_variable>
+    </process_variables>
+    <nonlinear_solvers>
+        <nonlinear_solver>
+            <name>basic_newton_u</name>
+            <type>Newton</type>
+            <max_iter>100</max_iter>
+            <linear_solver>linear_solver_u</linear_solver>
+        </nonlinear_solver>
+    </nonlinear_solvers>
+    <linear_solvers>
+        <linear_solver>
+            <name>linear_solver_u</name>
+            <eigen>
+                <solver_type>SparseLU</solver_type>
+                <scaling>true</scaling>
+            </eigen>
+        </linear_solver>
+    </linear_solvers>
+</OpenGeoSysProject>