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10 results for “Epidote”
Epidote - Sample 1 NanED Round Robin, Data: ESR4 & ESR5
<p><em><strong>Epidote</strong></em></p> <p>The following submission contains the data collection and processing of datasets for the sample epidote under the NanEd round-robin project. A single crystal was identified, and continuous rotation and precession data acquisition techniques were used to collect datasets on the same crystal. All the data sets were processed with PETS2 software. The table below summarizes the data collection parameters for the data sets. The following data is also included as a text file in the data folder.</p> <p><strong>Continuous Rotation:</strong></p> <table> <tbody> <tr> <td> <p><strong>General information:</strong></p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p>Project</p> </td> <td> <p>NanED (www.naned.eu)</p> </td> </tr> <tr> <td> <p>ESR Project</p> </td> <td> <p>ESR4 & ESR5 - Round Robin</p> </td> </tr> <tr> <td> <p>Project Label</p> </td> <td> <p>RR1</p> </td> </tr> <tr> <td> <p>Sample Label</p> </td> <td> <p>RR1-S1_PISA</p> </td> </tr> <tr> <td> <p>Data set Label</p> </td> <td> <p>RR1-S1_PISA-CROT</p> </td> </tr> <tr> <td> <p> </p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p><strong>Instrumental:</strong></p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p>Instrument</p> </td> <td> <p>Transmission electron microscope FEI Tecnai G2 20</p> </td> </tr> <tr> <td> <p>Radiation source</p> </td> <td> <p>LaB6</p> </td> </tr> <tr> <td> <p>Accelerating voltage</p> </td> <td> <p>200 kV</p> </td> </tr> <tr> <td> <p>Wavelength</p> </td> <td> <p>0.0251 Å</p> </td> </tr> <tr> <td> <p>Probe Type</p> </td> <td> <p>Microdiffraction</p> </td> </tr> <tr> <td> <p>Beam Diameter</p> </td> <td> <p>900nm</p> </td> </tr> <tr> <td> <p>Beam Convergence</p> </td> <td> <p>Parallel beam, convergence <0.1mrad</p> </td> </tr> <tr> <td> <p>Detector</p> </td> <td> <p>Hybrid pixel detector ASI Cheetah (side mounted)</p> </td> </tr> <tr> <td> <p>Number of pixels in the image</p> </td> <td> <p>512 x 512</p> </td> </tr> <tr> <td> <p>Pixel size</p> </td> <td> <p>55 µm x 55 µm</p> </td> </tr> <tr> <td> <p>Effective camera length</p> </td> <td> <p>1200 mm</p> </td> </tr> <tr> <td> <p>Calibration constant</p> </td> <td> <p>0.006895 Å<sup>-1</sup>/pixel</p> </td> </tr> <tr> <td> <p> </p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p><strong>Sample description:</strong></p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p>Name</p> </td> <td> <p>Epidote</p> </td> </tr> <tr> <td> <p>Chemical composition</p> </td> <td> <p>Ca<sub>2</sub>Fe<sub>x</sub>Al<sub>3-x</sub>Si<sub>3</sub>O<sub>13</sub>H</p> </td> </tr> <tr> <td> <p>Sample source</p> </td> <td> <p>Natural source from Val d'Ossola, Italy</p> </td> </tr> <tr> <td> <p>Sample preparation</p> </td> <td> <p>Powder crushed in an agate mortar and deposited on a Cu grid with holey C film</p> </td> </tr> <tr> <td> <p><strong>Experimental:</strong></p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p>Data Type</p> </td> <td> <p>Electron diffraction data - 3D ED</p> </td> </tr> <tr> <td> <p>Data collection method</p> </td> <td> <p>Continuous Rotation</p> </td> </tr> <tr> <td> <p>Temperature (K) used during data collection</p> </td> <td> <p>293 K</p> </td> </tr> <tr> <td> <p>Number of crystals contributing to the data set</p> </td> <td> <p>1</p> </td> </tr> <tr> <td> <p>Number of experimental frames</p> </td> <td> <p>240</p> </td> </tr> <tr> <td> <p>tilt range, tilt step, tilt per frame</p> </td> <td> <p>-60° to +60°, 0.5°, 0.5°</p> </td> </tr> <tr> <td> <p>Exposure time per frame</p> </td> <td> <p>709ms</p> </td> </tr> <tr> <td> <p> </p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p><strong>Software:</strong></p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p>Software used for the data collection</p> </td> <td> <p>RATS software</p> </td> </tr> <tr> <td> <p>Software used for processing</p> </td> <td> <p>PETS2 (ver 2.2.20220701.0941)</p> </td> </tr> <tr> <td> <p> </p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p><strong>Authorship and bibliography</strong></p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p>Author(s) of the data</p> </td> <td> <p>Hrushikesh Chintakindi (ESR4) & Ashwin Suresh (ESR5)</p> </td> </tr> <tr> <td> <p>Related data</p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p>Publication(s)</p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p> </p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p><strong>Files and data formats</strong></p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p>Image folder</p> </td> <td> <p>dpCROT : Folder containing images of the diffraction pattern from each frames.</p> </td> </tr> <tr> <td> <p>Image format</p> </td> <td> <p>tiff_16bit</p> </td> </tr> <tr> <td> <p>Additional folders/files</p> </td> <td> <p>Crystal_image : image of the crystal</p> </td> </tr> <tr> <td> <p> </p> </td> <td> <p>S1_04c-crot-050_petsdata : Log files of PETS2 processing</p> </td> </tr> <tr> <td> <p> </p> </td> <td> <p>S1_04c-crot-050.pts2 :_input file for the program PETS2 used for processing the data</p> </td> </tr> </tbody> </table> <table> <tbody> <tr> <td> <p><strong>Notes:</strong></p> <p>The software, RATS used for data collection is an in-house software developed in FZU, Praha.</p> <p>*Project Label "RR1" stands for Round Robin 1</p> <p>*Data set label "RR1-S1_PISA-CROT" stands for Round Robin 1 sample 1 from Pisa, data collection method Continuous Rotation.</p> <p>*The additional files can be found in the folder:</p> <p>Continuous_rotation\Data_collection_processing</p> </td> </tr> </tbody> </table> <p> </p> <p><strong>Precession:</strong></p> <table> <tbody> <tr> <td> <p><strong>General information:</strong></p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p>Project</p> </td> <td> <p>NanED (www.naned.eu)</p> </td> </tr> <tr> <td> <p>ESR Project</p> </td> <td> <p>ESR4 & ESR5 - Round Robin</p> </td> </tr> <tr> <td> <p>Project Label</p> </td> <td> <p>RR1</p> </td> </tr> <tr> <td> <p>Sample Label</p> </td> <td> <p>RR1-S1_PISA</p> </td> </tr> <tr> <td> <p>Data set Label</p> </td> <td> <p>RR1-S1_PISA-PREC</p> </td> </tr> <tr> <td> <p> </p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p><strong>Instrumental:</strong></p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p>Instrument</p> </td> <td> <p>Transmission electron microscope FEI Tecnai G2 20</p> </td> </tr> <tr> <td> <p>Radiation source</p> </td> <td> <p>LaB6</p> </td> </tr> <tr> <td> <p>Accelerating voltage</p> </td> <td> <p>200 kV</p> </td> </tr> <tr> <td> <p>Wavelength</p> </td> <td> <p>0.0251 Å</p> </td> </tr> <tr> <td> <p>Probe Type</p> </td> <td> <p>Microdiffraction</p> </td> </tr> <tr> <td> <p>Beam Diameter</p> </td> <td> <p>900nm</p> </td> </tr> <tr> <td> <p>Beam Convergence</p> </td> <td> <p>Parallel beam, convergence <0.1mrad</p> </td> </tr> <tr> <td> <p>Detector</p> </td> <td> <p>Hybrid pixel detector ASI Cheetah (side mounted)</p> </td> </tr> <tr> <td> <p>Number of pixels in the image</p> </td> <td> <p>512 x 512</p> </td> </tr> <tr> <td> <p>Pixel size</p> </td> <td> <p>55 µm x 55 µm</p> </td> </tr> <tr> <td> <p>Effective camera length</p> </td> <td> <p>1200 mm</p> </td> </tr> <tr> <td> <p>Calibration constant</p> </td> <td> <p>0.006895 Å<sup>-1</sup>/pixel</p> </td> </tr> <tr> <td> <p> </p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p><strong>Sample description:</strong></p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p>Name</p> </td> <td> <p>Epidote</p> </td> </tr> <tr> <td> <p>Chemical composition</p> </td> <td> <p>Ca<sub>2</sub>Fe<sub>x</sub>Al<sub>3-x</sub>Si<sub>3</sub>O<sub>13</sub>H</p> </td> </tr> <tr> <td> <p>Sample source</p> </td> <td> <p>Natural source from Val d'Ossola, Italy</p> </td> </tr> <tr> <td> <p>Sample preparation</p> </td> <td> <p>Powder crushed in an agate mortar and deposited on a Cu grid with holey C film</p> </td> </tr> <tr> <td> <p><strong>Experimental:</strong></p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p>Data Type</p> </td> <td> <p>Electron diffraction data - 3D ED</p> </td> </tr> <tr> <td> <p>Data collection method</p> </td> <td> <p>Precession</p> </td> </tr> <tr> <td> <p>Temperature (K) used during data collection</p> </td> <td> <p>293 K</p> </td> </tr> <tr> <td> <p>Number of crystals contributing to the data set</p> </td> <td> <p>1</p> </td> </tr> <tr> <td> <p>Number of experimental frames</p> </td> <td> <p>121</p> </td> </tr> <tr> <td> <p>tilt range, tilt step, tilt per frame</p> </td> <td> <p>-60° to +60°, 1°, 0°</p> </td> </tr> <tr> <td> <p>Precession angle</p> </td> <td> <p>1°</p> </td> </tr> <tr> <td> <p>Exposure time per frame</p> </td> <td> <p>700ms</p> </td> </tr> <tr> <td> <p> </p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p><strong>Software:</strong></p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p>Software used for the data collection</p> </td> <td> <p>RATS software</p> </td> </tr> <tr> <td> <p>Software used for processing</p> </td> <td> <p>PETS2 (ver 2.2.20220701.0941)</p> </td> </tr> <tr> <td> <p> </p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p><strong>Authorship and bibliography</strong></p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p>Author(s) of the data</p> </td> <td> <p>Hrushikesh Chintakindi (ESR4) & Ashwin Suresh (ESR5)</p> </td> </tr> <tr> <td> <p>Related data</p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p>Publication(s)</p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p> </p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p><strong>Files and data formats</strong></p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p>Image folder</p> </td> <td> <p>dp100 : Folder containing images of the diffraction pattern from each frames.</p> </td> </tr> <tr> <td> <p>Image format</p> </td> <td> <p>tiff_16bit</p> </td> </tr> <tr> <td> <p>Additional folders/files</p> </td> <td> <p>Crystal_image : image of the crystal</p> </td> </tr> <tr> <td> <p> </p> </td> <td> <p>S1_04p-100_petsdata : Log files of PETS2 processing</p> </td> </tr> <tr> <td> <p> </p> </td> <td> <p>S1_04p-100.pts2 : input file for the program PETS2 used for processing the data</p> </td> </tr> </tbody> </table> <table> <tbody> <tr> <td> <p><strong>Notes:</strong></p> <p>The software, RATS used for data collection is an in-house software developed in FZU, Praha.</p> <p>*Project Label "RR1" stands for Round Robin 1</p> <p>*Data set label "RR1-S1_PISA-PREC" stands for Round Robin 1 sample 1 from Pisa, data collection method Precession.</p> <p>*The additional files can be found in the folder:</p> <p>Precession\Data_collection_processing</p> </td> </tr> </tbody> </table>
Epidote - Sample 1 NanED, Data ESR1 & ESR2
<p>The following submission contains the data collection frames for the sample Epidote under the NanEd round-robin project. Precession Electron Diffraction (PED) was carried out on a single crystal. The datasets were processed with PETS2 software and refined kinematically and dynamically using Jana. The table below summarizes the data collection parameters for the data sets.</p> <p> </p> <table> <tbody> <tr> <td><strong>General Information</strong></td> <td> </td> </tr> <tr> <td>Project</td> <td>NanED (www.naned.eu)</td> </tr> <tr> <td>ESR Project</td> <td>ESR1 & ESR2</td> </tr> <tr> <td><strong>Instrumental</strong></td> <td> </td> </tr> <tr> <td>Instrument</td> <td>Zeiss Libra 120</td> </tr> <tr> <td>Radiation source</td> <td>LaB6</td> </tr> <tr> <td>Accelerating voltage</td> <td>120 kV</td> </tr> <tr> <td>Wavelength</td> <td>0.0335 Å</td> </tr> <tr> <td>Probe Type</td> <td>Nanodiffraction</td> </tr> <tr> <td>Beam Diameter</td> <td>150 nm</td> </tr> <tr> <td>Beam Convergence</td> <td>Parallel beam</td> </tr> <tr> <td>Detector</td> <td>Timepix Single Electron Detector</td> </tr> <tr> <td>Number of pixels in the image</td> <td>512 x 512</td> </tr> <tr> <td>Physical pixel size</td> <td>55 µm * 55 µm</td> </tr> <tr> <td>Effective camera length</td> <td>144 mm</td> </tr> <tr> <td>Calibration constant</td> <td>0.006027 Å<sup>-1</sup>/pixel</td> </tr> <tr> <td> </td> <td> </td> </tr> <tr> <td><strong>Sample description</strong></td> <td> </td> </tr> <tr> <td>Name</td> <td>Epidote</td> </tr> <tr> <td>Chemical composition</td> <td>Ca<sub>2</sub>Fe<sub>x</sub>Al<sub>3</sub>-<sub>x</sub>Si<sub>3</sub>O<sub>13</sub>H</td> </tr> <tr> <td>Sample source</td> <td>Natural source from Val d'Ossola, Italy</td> </tr> <tr> <td>Sample preparation</td> <td>Crushed with a mortar and diluted using isopropanol before depositing a drop on a Cu grid.</td> </tr> <tr> <td> </td> <td> </td> </tr> <tr> <td><strong>Experimental</strong></td> <td> </td> </tr> <tr> <td>Data type</td> <td>3D Electron Diffraction (3D-ED)</td> </tr> <tr> <td>Data collection method</td> <td>Precession</td> </tr> <tr> <td>Precession semiangle</td> <td>1º</td> </tr> <tr> <td>Temperature</td> <td>293 K</td> </tr> <tr> <td>Number of crystals contributing to the dataset</td> <td>1</td> </tr> <tr> <td>Number of experimental frames</td> <td>121</td> </tr> <tr> <td>Tilt range, tilt step</td> <td>+60º to -60º, -1º</td> </tr> <tr> <td>Exposure time per frame</td> <td>1000 ms</td> </tr> <tr> <td> </td> <td> </td> </tr> <tr> <td><strong>Software</strong></td> <td> </td> </tr> <tr> <td>Software used for data collection</td> <td>WinTEM (Zeiss), Digistar (NanoMEGAS) and Sophy (Software for Physics)</td> </tr> <tr> <td>Software used for processing</td> <td>PETS2</td> </tr> <tr> <td>Software used for solution</td> <td>Jana</td> </tr> <tr> <td>Software used for refinement</td> <td>Jana</td> </tr> <tr> <td> </td> <td> </td> </tr> <tr> <td><strong>Authorship and bibliography</strong></td> <td> </td> </tr> <tr> <td>Author(s) of the data</td> <td>Moussa Diame FAYE (ESR1) & Vincentia Emerson Agbemeh (ESR2)</td> </tr> <tr> <td>Related data</td> <td> </td> </tr> <tr> <td>Publication(s)</td> <td> </td> </tr> <tr> <td> </td> <td> </td> </tr> </tbody> </table>
Epidote - Sample 1 NanED Round Robin, Data: ESR12
<p><strong><em>Epidote</em></strong></p> <p>The following submission contains the data collection and processing of datasets for the sample epidote under the NanEd round-robin project. A single crystal was identified, and precession data acquisition techniques were used to collect datasets on the same crystal. The data sets were processed with PETS2 software. The table below summarizes the data collection parameters for the data sets. The following data is also included as a text file in the data folder.</p> <p><strong>Precession:</strong></p> <table> <tbody> <tr> <td> <p><strong>General information:</strong></p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p>Project</p> </td> <td> <p>NanED (www.naned.eu)</p> </td> </tr> <tr> <td> <p>ESR Project</p> </td> <td> <p>ESR12 - Round Robin</p> </td> </tr> <tr> <td> <p>Project Label</p> </td> <td> <p>RR1</p> </td> </tr> <tr> <td> <p>Sample Label</p> </td> <td> <p>RR1-S1</p> </td> </tr> <tr> <td> <p>Data set Label</p> </td> <td> <p>RR1-sample1-PEDT</p> </td> </tr> <tr> <td> <p> </p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p><strong>Instrumental:</strong></p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p>Instrument</p> </td> <td> <p>Transmission electron microscope Jeol F200</p> </td> </tr> <tr> <td> <p>Radiation source</p> </td> <td> <p>Cold FEG</p> </td> </tr> <tr> <td> <p>Accelerating voltage</p> </td> <td> <p>200 kV</p> </td> </tr> <tr> <td> <p>Wavelength</p> </td> <td> <p>0.0251 Å</p> </td> </tr> <tr> <td> <p>Probe Type</p> </td> <td> <p>Microdiffraction</p> </td> </tr> <tr> <td> <p>Beam Diameter</p> </td> <td> <p>75nm</p> </td> </tr> <tr> <td> <p>Beam Convergence</p> </td> <td> <p>Parallel beam, convergence <0.1mrad</p> </td> </tr> <tr> <td> <p>Detector</p> </td> <td> <p>Hybrid pixel detector ASI Cheetah M3 (bottom mounted)</p> </td> </tr> <tr> <td> <p>Number of pixels in the image</p> </td> <td> <p>512 x 512</p> </td> </tr> <tr> <td> <p>Pixel size</p> </td> <td> <p>55 µm x 55 µm</p> </td> </tr> <tr> <td> <p>Effective camera length</p> </td> <td> <p>200 mm</p> </td> </tr> <tr> <td> <p>Calibration constant</p> </td> <td> <p>0.00720 Å<sup>-1</sup>/pixel</p> </td> </tr> <tr> <td> <p> </p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p><strong>Sample description:</strong></p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p>Name</p> </td> <td> <p>Epidote</p> </td> </tr> <tr> <td> <p>Chemical composition</p> </td> <td> <p>Ca<sub>2</sub>Fe<sub>x</sub>Al<sub>3-x</sub>Si<sub>3</sub>O<sub>13</sub>H</p> </td> </tr> <tr> <td> <p>Sample source</p> </td> <td> <p>Natural source from Val d'Ossola, Italy</p> </td> </tr> <tr> <td> <p>Sample preparation</p> </td> <td> <p>Powder crushed on a mortar and dispersed in n-butanol, drop deposited on a Cu grid with holey C film</p> </td> </tr> <tr> <td> <p><strong>Experimental:</strong></p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p>Data Type</p> </td> <td> <p>Electron diffraction data - 3D ED</p> </td> </tr> <tr> <td> <p>Data collection method</p> </td> <td> <p>PEDT</p> </td> </tr> <tr> <td> <p>Temperature (K) used during data collection</p> </td> <td> <p>293 K</p> </td> </tr> <tr> <td> <p>Number of crystals contributing to the data set</p> </td> <td> <p>1</p> </td> </tr> <tr> <td> <p>Number of experimental frames</p> </td> <td> <p>95</p> </td> </tr> <tr> <td> <p>tilt range, tilt step, tilt per frame</p> </td> <td> <p>-49.4° to +61.6°, 1°, 0°</p> </td> </tr> <tr> <td> <p>Precession angle</p> </td> <td> <p>1.25°</p> </td> </tr> <tr> <td> <p>Exposure time per frame</p> </td> <td> <p>500ms</p> </td> </tr> <tr> <td> <p> </p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p><strong>Software:</strong></p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p>Software used for the data collection</p> </td> <td> <p>Instamatic software</p> </td> </tr> <tr> <td> <p>Software used for processing</p> </td> <td> <p>PETS2 (ver 2.1.20211012.1037)</p> </td> </tr> <tr> <td> <p> </p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p><strong>Authorship and bibliography</strong></p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p>Author(s) of the data</p> </td> <td> <p>Sara Passuti (ESR12)</p> </td> </tr> <tr> <td> <p>Related data</p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p>Publication(s)</p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p> </p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p><strong>Files and data formats</strong></p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p>Image folder</p> </td> <td> <p>tiff : Folder containing images of the diffraction pattern from each frames.</p> </td> </tr> <tr> <td> <p>Image format</p> </td> <td> <p>tiff_16bit</p> </td> </tr> <tr> <td> <p>Additional folders/files</p> </td> <td> <p>sample1_crystal_image : image of the crystal</p> </td> </tr> <tr> <td> <p> </p> </td> <td> <p>sample1-exp4_petsdata : Log files of PETS2 processing</p> </td> </tr> <tr> <td> <p> </p> </td> <td> <p>sample1-exp4.pts2 :_input file for the program PETS2 used for processing the data</p> </td> </tr> </tbody> </table> <p> </p> <table> <tbody> <tr> <td> <p><strong>Notes:</strong></p> <p>*Project Label "RR1" stands for Round Robin 1</p> <p>*Data set label "RR1-sample-PEDT" stands for Round Robin 1 sample 1, data collection method Precession.</p> <p>*The additional files can be found in the folder:</p> <p>Precession\Data_collection_processing</p> </td> </tr> </tbody> </table>
Epidote - Sample 1 NanED Round Robin, Data ESR3
<table> <tbody> <tr> <td> <p><strong>General information:</strong></p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p>Project</p> </td> <td> <p>NanED (www.naned.eu)</p> </td> </tr> <tr> <td> <p>ESR Project</p> </td> <td> <p>ESR3</p> </td> </tr> <tr> <td> <p> </p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p><strong>Instrumental:</strong></p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p>Instrument</p> </td> <td> <p>FEI TECNAI</p> </td> </tr> <tr> <td> <p>Radiation source</p> </td> <td> <p>FEG</p> </td> </tr> <tr> <td> <p>Accelerating voltage</p> </td> <td> <p>200 kV</p> </td> </tr> <tr> <td> <p>Wavelength</p> </td> <td> <p>0.0251 Å</p> </td> </tr> <tr> <td> <p>Acquisiton Method</p> </td> <td> <p>SAED</p> </td> </tr> <tr> <td> <p>Detector</p> </td> <td> <p>Eagle – CCD Camera</p> </td> </tr> <tr> <td> <p>Number of pixels in the image</p> </td> <td> <p>2048 x 2048</p> </td> </tr> <tr> <td> <p>Calibration constant (not corrected for Effective Camera length)</p> </td> <td> <p>0.00182 Å<sup>-1</sup>/pixel</p> </td> </tr> <tr> <td> <p><strong>Sample description:</strong></p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p>Name</p> </td> <td> <p>Epidote</p> </td> </tr> <tr> <td> <p>Chemical composition</p> </td> <td> <p>Ca2FexAl3-xSi3O13H</p> </td> </tr> <tr> <td> </td> <td> </td> </tr> <tr> <td> <p><strong>Experimental:</strong></p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p>Data Type</p> </td> <td> <p>Electron diffraction data - 3D ED</p> </td> </tr> <tr> <td> <p>Data collection method</p> </td> <td> <p>Stepwise</p> </td> </tr> <tr> <td> <p>Temperature (K) used during data collection</p> </td> <td> <p>293 K</p> </td> </tr> <tr> <td> <p>Number of crystals contributing to the data set</p> </td> <td> <p>1</p> </td> </tr> <tr> <td> <p>Number of experimental frames</p> </td> <td> <p>351</p> </td> </tr> <tr> <td> <p>tilt range, tilt step</p> </td> <td> <p>-35° to +35°, 0.2°</p> </td> </tr> <tr> <td> <p>Exposure time per frame</p> </td> <td> <p>1s</p> </td> </tr> <tr> <td> <p> </p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p><strong>Software:</strong></p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p>Software used for the data collection</p> </td> <td> <p>TIA</p> </td> </tr> <tr> <td> <p>Software used for processing</p> </td> <td> <p>PETS2</p> </td> </tr> <tr> <td> <p>Software used for Solution</p> </td> <td> <p>Jana</p> </td> </tr> <tr> <td> <p>Software used for refinement</p> </td> <td> <p>Olex2</p> </td> </tr> </tbody> </table>
Epidote - Sample 1 NanED Round Robin, Data: ESR10
<p><strong><em>Epidote</em></strong></p> <p>The following submission contains the data collection of datasets for the sample epidote under the NanEd round-robin project. 5 single crystals were identified, and the continuous rotation data acquisition technique was used to collect datasets. All the datasets were processed with REDp, XDS and shelx software. The table below summarizes the data collection parameters for the datasets. The following data is also in the zip folder as a word file.</p> <p><strong>Continuous Rotation:</strong></p> <table> <tbody> <tr> <td> <p><strong>General information:</strong></p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p>Project</p> </td> <td> <p>NanED (www.naned.eu)</p> </td> </tr> <tr> <td> <p>ESR Project</p> </td> <td> <p>ESR10 - Round Robin</p> </td> </tr> <tr> <td> <p>Project Label</p> </td> <td> <p>RR-1</p> </td> </tr> <tr> <td> <p>Sample Label</p> </td> <td> <p>RR-1_SU</p> </td> </tr> <tr> <td> <p>Data set Label</p> </td> <td> <p>RR1-1 to 5</p> </td> </tr> <tr> <td> <p> </p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p><strong>Instrumental:</strong></p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p>Instrument</p> </td> <td> <p>Transmission electron microscope JEOL 2100 LaB6</p> </td> </tr> <tr> <td> <p>Radiation source</p> </td> <td> <p>LaB6</p> </td> </tr> <tr> <td> <p>Accelerating voltage</p> </td> <td> <p>200 kV</p> </td> </tr> <tr> <td> <p>Wavelength</p> </td> <td> <p>0.0251 Å</p> </td> </tr> <tr> <td> <p>Probe Type</p> </td> <td> <p>Parallel beam</p> </td> </tr> <tr> <td> <p>Beam Diameter</p> </td> <td> <p>6 μm</p> </td> </tr> <tr> <td> <p>Beam Convergence</p> </td> <td> <p>Parallel beam, convergence <0.1mrad</p> </td> </tr> <tr> <td> <p>Detector</p> </td> <td> <p>Hybrid pixel detector ASI Timepix (bottom mounted)</p> </td> </tr> <tr> <td> <p>Number of pixels in the image</p> </td> <td> <p>512 x 512</p> </td> </tr> <tr> <td> <p>Pixel size</p> </td> <td> <p>55 µm x 55 µm</p> </td> </tr> <tr> <td> <p>Effective camera length</p> </td> <td> <p>250 mm</p> </td> </tr> <tr> <td> <p>Calibration constant</p> </td> <td> <p>0.004990 Å<sup>-1</sup>/pixel</p> </td> </tr> <tr> <td> <p> </p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p><strong>Sample description:</strong></p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p>Name</p> </td> <td> <p>Epidote</p> </td> </tr> <tr> <td> <p>Chemical composition</p> </td> <td> <p>Ca<sub>2</sub>Fe<sub>x</sub>Al<sub>3-x</sub>Si<sub>3</sub>O<sub>13</sub>H</p> </td> </tr> <tr> <td> <p>Sample source</p> </td> <td> <p>Natural source from Val d'Ossola, Italy</p> </td> </tr> <tr> <td> <p>Sample preparation</p> </td> <td> <p>Powder crushed in an agate mortar and deposited on a Cu grid with lacey C film</p> </td> </tr> <tr> <td> <p><strong>Experimental:</strong></p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p>Data Type</p> </td> <td> <p>Electron diffraction data - 3D ED</p> </td> </tr> <tr> <td> <p>Data collection method</p> </td> <td> <p>Continuous Rotation</p> </td> </tr> <tr> <td> <p>Temperature (K) used during data collection</p> </td> <td> <p>293 K</p> </td> </tr> <tr> <td> <p>Number of crystals contributing to the data set</p> </td> <td> <p>5</p> </td> </tr> <tr> <td> <p>Number of experimental frames</p> </td> <td> <p>See cRED_log.txt in each dataset</p> </td> </tr> <tr> <td> <p>tilt range, tilt step, tilt per frame</p> </td> <td> <p>See cRED_log.txt in each dataset</p> </td> </tr> <tr> <td> <p>Exposure time per frame</p> </td> <td> <p>See cRED_log.txt in each dataset</p> </td> </tr> <tr> <td> <p> </p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p><strong>Software:</strong></p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p>Software used for the data collection</p> </td> <td> <p>Instamatic</p> </td> </tr> <tr> <td> <p>Software used for processing</p> </td> <td> <p>XDS</p> </td> </tr> <tr> <td> <p> </p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p><strong>Authorship and bibliography</strong></p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p>Author(s) of the data</p> </td> <td> <p>Lei Wang (ESR 10)</p> </td> </tr> <tr> <td> <p>Related data</p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p>Publication(s)</p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p> </p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p><strong>Files and data formats</strong></p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p>Image folder</p> </td> <td> <p>REDp: Folder containing images of the diffraction pattern from each frame</p> <p>XDS: Folder containing images of the diffraction pattern from each frame</p> </td> </tr> <tr> <td> <p>Image format</p> </td> <td> <p>mrc and img</p> </td> </tr> <tr> <td> <p>Additional folders/files</p> </td> <td> <p>Crystal image : image of the crystal</p> </td> </tr> <tr> <td> <p> </p> </td> <td> <p>cRED_log: log file of data collection</p> </td> </tr> <tr> <td> <p> </p> </td> <td> <p>1.ed3d: input file for REDp</p> </td> </tr> <tr> <td> <p> </p> </td> <td> <p>XDS.INP: input file for the program XDS</p> </td> </tr> </tbody> </table> <p> </p> <table> <tbody> <tr> <td> <p><strong>Notes:</strong></p> <p>*Project Label "RR-1" stands for Round Robin 1</p> <p>*RR-1 contains 5 individual datasets.</p> </td> </tr> </tbody> </table>
Epidote - Sample 1 NanED Round Robin, Data: ESR8 & ESR9
<p><em><strong>Epidote</strong></em></p> <p>The following submission contains the data collection and processing for the sample epidote under the NanEd round-robin project. Precession Electron Diffraction (PED) was used to collect the dataset on the target crystal. The dataset was processed with PETS2 and eADT software. The table below summarizes the data collection parameters for the dataset.</p> <p> </p> <table> <tbody> <tr> <td> <p><strong>General information:</strong></p> </td> <td> <p> </p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p>Project</p> </td> <td> <p> </p> </td> <td> <p>NanED (www.naned.eu)</p> </td> </tr> <tr> <td> <p>ESR Project</p> </td> <td> <p> </p> </td> <td> <p>ESR8 & ESR9 - Round Robin</p> </td> </tr> <tr> <td> <p>Project Label</p> </td> <td> <p> </p> </td> <td> <p>RR1</p> </td> </tr> <tr> <td> <p>Sample Label</p> </td> <td> <p> </p> </td> <td> <p>RR1-S1_PISA</p> </td> </tr> <tr> <td> <p>Data set Label</p> </td> <td> <p> </p> </td> <td> <p>RR_Cry4</p> </td> </tr> <tr> <td> <p> </p> </td> <td> <p> </p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p><strong>Instrumental:</strong></p> </td> <td> <p> </p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p>Instrument</p> </td> <td> <p> </p> </td> <td> <p>FEI TECNAI F30 STWIN</p> </td> </tr> <tr> <td> <p>Radiation source</p> </td> <td> <p> </p> </td> <td> <p>FEG</p> </td> </tr> <tr> <td> <p>Accelerating voltage</p> </td> <td> <p> </p> </td> <td> <p>300 kV</p> </td> </tr> <tr> <td> <p>Wavelength</p> </td> <td> <p> </p> </td> <td> <p>0.0197 Å</p> </td> </tr> <tr> <td> <p>Probe Type</p> </td> <td> <p> </p> </td> <td> <p>Nanodiffraction</p> </td> </tr> <tr> <td> <p>Beam Diameter</p> </td> <td> <p> </p> </td> <td> <p>200nm</p> </td> </tr> <tr> <td> <p>Beam Convergence</p> </td> <td> <p> </p> </td> <td> <p>Semi-parallel beam</p> </td> </tr> <tr> <td> <p>Detector</p> </td> <td> <p> </p> </td> <td> <p>US4000 - CCD camera GATAN (16-bit) (bottom mounted)</p> </td> </tr> <tr> <td> <p>Number of pixels in the image</p> </td> <td> <p> </p> </td> <td> <p>2048 x 2048</p> </td> </tr> <tr> <td> <p>Pixel size</p> </td> <td> <p> </p> </td> <td> <p>15 µm x 15 µm</p> </td> </tr> <tr> <td> <p>Camera Length / Effective Camera Length</p> </td> <td> <p> </p> </td> <td> <p>1000 mm / 1200 mm</p> </td> </tr> <tr> <td> <p>Calibration constant (not corrected for Effective Camera length)</p> </td> <td> <p> </p> </td> <td> <p>0.00126 Å<sup>-1</sup>/pixel</p> </td> </tr> <tr> <td> <p> Hardware Binning</p> </td> <td> <p> </p> </td> <td> <p>2 </p> </td> </tr> <tr> <td> <p><strong>Sample description:</strong></p> </td> <td> <p> </p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p>Name</p> </td> <td> <p> </p> </td> <td> <p>Epidote</p> </td> </tr> <tr> <td> <p>Chemical composition</p> </td> <td> <p> </p> </td> <td> <p>Ca<sub>2</sub>Fe<sub>x</sub>Al<sub>3-x</sub>Si<sub>3</sub>O<sub>13</sub>H</p> </td> </tr> <tr> <td> <p>Sample source</p> </td> <td> <p> </p> </td> <td> <p>Natural source from Val d'Ossola, Italy</p> </td> </tr> <tr> <td> <p>Sample preparation</p> </td> <td> <p> </p> </td> <td> <p>Grinded in an Agatha mortar and suspended in 1ml of EtOH. 4 µL of the suspension were dropped with a pipette on the carbon side of a carbon-coated copper grid (300 mesh).</p> </td> </tr> <tr> <td> <p><strong>Experimental:</strong></p> </td> <td> <p> </p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p>Data Type</p> </td> <td> <p> </p> </td> <td> <p>Electron diffraction data - 3D ED</p> </td> </tr> <tr> <td> <p>Data collection method</p> </td> <td> <p> </p> </td> <td> <p>Precession</p> </td> </tr> <tr> <td> <p>Temperature (K) used during data collection</p> </td> <td> <p> </p> </td> <td> <p>293 K</p> </td> </tr> <tr> <td> <p>Number of crystals contributing to the data set</p> </td> <td> <p> </p> </td> <td> <p>1</p> </td> </tr> <tr> <td> <p>Number of experimental frames</p> </td> <td> <p> </p> </td> <td> <p>141</p> </td> </tr> <tr> <td> <p>tilt range, tilt step, tilt per frame</p> </td> <td> <p> </p> </td> <td> <p>-70° to +70°, 1°, 0°</p> </td> </tr> <tr> <td> <p>Precession angle</p> </td> <td> <p> </p> </td> <td> <p>1°</p> </td> </tr> <tr> <td> <p>Exposure time per frame</p> </td> <td> <p> </p> </td> <td> <p>2 s</p> </td> </tr> <tr> <td> <p> </p> </td> <td> <p> </p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p><strong>Software:</strong></p> </td> <td> <p> </p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p>Software used for the data collection</p> </td> <td> <p> </p> </td> <td> <p>Gatan Digital Micrograph software</p> </td> </tr> <tr> <td> <p>Software used for processing</p> </td> <td> <p> </p> </td> <td> <p>PETS2 and eADT</p> </td> </tr> <tr> <td> <p> </p> </td> <td> <p> </p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p><strong>Authorship and bibliography</strong></p> </td> <td> <p> </p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p>Author(s) of the data</p> </td> <td> <p> </p> </td> <td> <p>Laura Gemmrich Hernández (ESR8) & Marco Santucci (ESR9)</p> </td> </tr> <tr> <td> <p>Related data</p> </td> <td> <p> </p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p>Publication(s)</p> </td> <td> <p> </p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p> </p> </td> <td> <p> </p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p><strong>Files and data formats</strong></p> </td> <td> <p> </p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p>Image folder</p> </td> <td> <p> </p> </td> <td> <p>img: Folder containing images of the diffraction pattern from each frame.</p> </td> </tr> <tr> <td> <p>Image format</p> </td> <td> <p> </p> </td> <td> <p>tiff_16bit_unsigned</p> </td> </tr> <tr> <td> <p> </p> </td> <td> <p> </p> </td> <td> <p> </p> </td> </tr> </tbody> </table> <p> </p> <p> </p>
Epidote - NanED Round Robin, Data: ESR14 & ESR15
<p><em><strong>Epidote </strong></em></p> <p>The following submission contains the data collection and processing for the sample Epidote under the NanEd round-robin project. Many crystals were identified, and data were collected using the continuous rotation data acquisition technique. All the data sets were processed with Dials software. The table below summarizes the data collection parameters. </p> <table align="right"> <tbody> <tr> <td> <p><strong> General Information</strong></p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p> Project</p> </td> <td> <p> NanED (www.naned.eu)</p> </td> </tr> <tr> <td> <p> ESR Project</p> </td> <td> <p> ESR14 & ESR15 - Round Robin</p> </td> </tr> <tr> <td> <p> Project Label</p> </td> <td> <p> RR1</p> </td> </tr> <tr> <td> <p> Sample Label</p> </td> <td> <p> RR1-S1_PISA</p> </td> </tr> <tr> <td> <p> Data set Label</p> </td> <td> <p> RR1-PISA-CROT</p> </td> </tr> <tr> <td> <p> </p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p><strong> Instrumental</strong></p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p> Instrument</p> </td> <td> <p> JEOL F200 TEM</p> </td> </tr> <tr> <td> <p> Radiation source</p> </td> <td> <p> Schottky FEG</p> </td> </tr> <tr> <td> <p> Accelerating voltage</p> </td> <td> <p> 200 kV</p> </td> </tr> <tr> <td> <p> Wavelength</p> </td> <td> <p> 0.0251 Å</p> </td> </tr> <tr> <td> <p> Probe Type</p> </td> <td> <p> Nanodiffraction</p> </td> </tr> <tr> <td> <p> Beam Diameter</p> </td> <td> <p> CLA4</p> </td> </tr> <tr> <td> <p> Beam Convergence</p> </td> <td> <p> Parallel beam</p> </td> </tr> <tr> <td> <p> Detector</p> </td> <td> <p> ASI Cheetah M3 retractable hybrid pixel detecor</p> </td> </tr> <tr> <td> <p> Number of pixels in the image</p> </td> <td> <p> 515x515 </p> </td> </tr> <tr> <td> <p> Pixel size</p> </td> <td> <p> 55µm x 55µm</p> </td> </tr> <tr> <td> <p> Camera Length / Effective Camera Length</p> </td> <td> <p> 441- 460 mm </p> </td> </tr> <tr> <td> <p> </p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p><strong> Sample description:</strong></p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p> Name</p> </td> <td> <p> Epidote</p> </td> </tr> <tr> <td> <p> Chemical composition</p> </td> <td> <p> Ca<sub>2</sub>Fe<sub>x</sub>Al<sub>3-x</sub>Si<sub>3</sub>O<sub>13</sub>H</p> </td> </tr> <tr> <td> <p> Sample source</p> </td> <td> <p> Natural source from Val d'Ossola, Italy</p> </td> </tr> <tr> <td> <p> Sample preparation</p> </td> <td> <p> The crystals were grinded between two glass slides and part of the resulting powder was loaded on top of a carbon-coated copper grid.</p> </td> </tr> <tr> <td> <p> <strong>Experimental:</strong></p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p> Data Type</p> </td> <td> <p> Electron diffraction data - 3D ED</p> </td> </tr> <tr> <td> <p> Data collection method</p> </td> <td> <p> Continuous Rotation</p> </td> </tr> <tr> <td> <p> Temperature (K) used during data collection</p> </td> <td> <p> 293 K</p> </td> </tr> <tr> <td> <p> Number of crystals contributing to the data set</p> </td> <td> <p> Multiple</p> </td> </tr> <tr> <td> <p> Number of experimental frames</p> </td> <td> <p> 450</p> </td> </tr> <tr> <td> <p> Tilt range, tilt step, tilt per frame</p> </td> <td> <p> -30° to +30°, 0.13°, 0.13°</p> </td> </tr> <tr> <td> <p> Exposure time per frame</p> </td> <td> <p> 100 ms</p> </td> </tr> <tr> <td> <p> </p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p><strong> Software:</strong></p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p> Software used for the data collection</p> </td> <td> <p> CEOS CEFID energy filter controlling program</p> </td> </tr> <tr> <td> <p> Software used for processing</p> </td> <td> <p> DIALS</p> </td> </tr> <tr> <td> <p> </p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p><strong> Authorship and bibliography</strong></p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p> Author(s) of the data</p> </td> <td> <p> Senik Matinyan (ESR14) & Amatassalam Ben Meriem (ESR15)</p> </td> </tr> <tr> <td> <p> Related data</p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p> Publication(s)</p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p> </p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p><strong> Files and data formats</strong></p> </td> <td> <p> </p> </td> </tr> <tr> <td> <p> Image folder</p> </td> <td> <p> Set3_6: Folders containing images of the diffraction pattern from each frame.</p> </td> </tr> <tr> <td> <p> Image format</p> </td> <td> <p> .img</p> </td> </tr> <tr> <td> <p> </p> </td> <td> <p> </p> </td> </tr> </tbody> </table>
Experimental data about epidote
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Data from: Frictional stability of metamorphic epidote in granitoid faults under hydrothermal conditions and implications for injection-induced seismicity
<p>The effect of low-grade metamorphic epidote on fault stability in granitoids at shallow depth is not well understood. We present structured laboratory observations of epidote and simulated Pohang granodiorite (an EGS site) gouges and mixtures to evaluate their frictional responses. The experiments were performed on powdered rock gouges at a constant confining pressure of 110 <i>MPa</i>, pore fluid pressures of 42 and 63 <i>MPa</i>, temperatures of 100-250℃ and epidote percentages in the range of 0-100 <i>vol</i>.%. Results show that the simulated Pohang granodiorite gouge is frictionally strong (friction coefficient of ~0.71) but exhibits a transition from velocity-strengthening to velocity-weakening behavior at <i>in-situ</i> temperatures >150℃. Epidote gouge displays similar frictional strength to the simulated granodiorite gouge but a stronger velocity-weakening response at 150℃. Increasing the epidote content in the homogeneously mixed gouges maintains the high frictional strength but increases velocity-weakening response approximately proportionately with epidote content. Modes of epidote precipitation likely control patch dimension and this in turn potentially changes the response of the 50:50 epidote-granodiorite mixed gouges in different geometric configurations. However, 50:50 mixtures that are variously homogeneously mixed, encapsulated and checkerboarded in their architectures are insensitive to their various geometries – all reflect the high frictional strength and strong velocity-weakening response of 100:0 pure epidote. This suggests that small volume percentages of epidote present as thin coatings on fractures and faults can impart velocity-weakening behavior, independent of individual patch size and can thereby support the potential seismic reactivation of faults. Considering the frictional and stability properties of epidote at conditions typical of shallow depths, the presence of low-grade metamorphism exerts a potentially important control on fault stability in granitoids with relevance as a marker mineral for susceptibility to injection-induced seismicity.</p>
Data from: Frictional stability of metamorphic epidote in granitoid faults under hydrothermal conditions and implications for injection-induced seismicity
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