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107 results for “X-ray diffraction data”
High-pressure x-ray diffraction data for claudetite II
<p>High-pressure x-ray diffraction data for claudetite II collected at the European Synchrotron Radiation Facility.</p>
High-pressure x-ray diffraction data for arsenolite and its inclusion compound with helium
<p>X-ray diffraction data for arsenolite and its inclusion compound collected at the European Synchrotron Radiation Facility.</p>
X-ray diffraction data for urotropine under high pressure - part 3 - data from ID27 beamline
<p>X-ray diffraction data for urotropine collected at the ID27 beamline of the European Synchrotron Radiation Facility under high pressure.</p>
X-ray diffraction data for urotropine under high pressure - part 1 - data from ID15B beamline - He pressure transmitting medium and calibration
<p>X-ray diffraction data for urotropine collected at the ID15B beamline of the European Synchrotron Radiation Facility under high pressure. Calibration data and data collected at He used as pressure transmitting medium.</p>
High-pressure X-ray diffraction data for arsenolite at neon used as pressure transmitting medium
<p>High-pressure x-ray diffraction data for arsenolite at the European Synchrotron Radiation Facility using neon as pressure transmitting medium.</p>
X-ray diffraction data for urotropine under high pressure - part 2 - data from ID15B beamline - Ne pressure transmitting medium
<p>X-ray diffraction data for urotropine collected at the ID15B beamline of the European Synchrotron Radiation Facility under high pressure using Ne used as pressure transmitting medium.</p>
High-pressure X-ray diffraction data for arsenolite helium inclusion compound
<p>High-pressure x-ray diffraction data for arsenolite inclusion compound with helium collected at the European Synchrotron Radiation Facility.</p>
FhuF, a ferric-siderophore reductase from E. coli K-12 - X-ray diffraction raw data set
<p>This diffraction data set was collected at 100 K to 1.9 Å resolution at ALBA Synchrotron Beamline XALOC on December 5, 2021.</p>
Single crystal X-ray diffraction data of Th-TCPE and Ce-TCPE
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X-ray diffraction data, crystallographic information file, infrared spectra, and LA-ICP-MS depthprofiles of davemaoite
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Electron microscopy, energy-dispersive X-ray spectroscopy, & X-ray diffraction data from: Duck-billed dinosaur fleshy midline and hooves reveal terrestrial clay-template “mummification”
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Data from: Visualizing mineralization processes and fossil anatomy using synchronous synchrotron X-ray fluorescence and X-ray diffraction mapping
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X-ray diffraction data for WD-repeat domain of WDR41
<p>X-ray diffraction data for WD-repeat domain of WDR41 were collected at the APS24IDE beamline on 2019-11-14.</p>
Reprocessed / rebinned to 0.5 degree images: Beta-Lactamase X-ray diffraction data recorded at Diamond Light Source I04 as part of commissioning & development
<p>Derived from https://zenodo.org/record/841060; made more compact (though no longer "raw" data) for use in tutorials</p>
Single Crystal X-ray Diffraction Data for mixed PMP/PLP internal aldimine form of Sphingopyxis sp. MTA144 FumI protein
<p>Single Crystal X-ray Diffraction Data for mixed PMP/PLP internal aldimine form of Sphingopyxis sp. MTA144 FumI protein collected at Diamond Light Source, Beamline I04, 2017-09-09</p>
Lysozyme Diffraction Data from Beamline ID7B2 (FlexX), CHESS (broadband monochromatic X-rays at 1.5% bandpass)
<p>This the raw diffraction data for a lysozyme crystal collected at beamline ID7B2 (FlexX), CHESS, Cornell University. ID7B2 utilizes a dual W/B4C multilayer monochromator, resulting in a high-flux beam with 1.5% bandpass. This sample dataset serves to demonstrate the utility of higher-bandwidth X-rays in protein crystallography.</p> <p>These data can be readily treated as standard monochromatic diffraction data and can be processed with standard data processing programs such as XDS, iMosflm, and HKL2000.</p> <p>Data processing parameters (NOTE: IMAGE HEADER METADATA IS UNRELIABLE)</p> <ul> <li>Detector: PILATUS3 6M</li> <li>Beam Center (pixels): X = 1260, Y = 1535</li> <li>Detector Distance: 414 mm</li> <li>Rotation Axis Phi: (XDS coordinates- "reverse phi" in iMosflm): -1 0 0</li> <li>Oscillation Range per frame: 0.1°</li> <li>X-ray wavelength: 0.9783 Å</li> <li>Temperature: 100 K</li> </ul>
X-ray diffraction data of xylose isomerase from Streptomyces avermitilis
<p>X-ray diffraction data of xylose isomerase from Streptomyces avermitilis</p> <p>Data type: X-ray diffraction images<br>Data format: img</p> <p>Data collection<br>Synchrotron: Pohang Light Source II<br>Beamline: 7A</p> <p> </p> <p> </p>
Primary X-ray diffraction data for the study "Femtosecond X-ray snapshots reveal correlated displacements of specific distal atoms in a protein crystal"
<p>The data set contains the primary X-ray diffraction data collected at the FemtoMAX beamline from bovine trypsin crystals at room temperature (motor gony). Every image represents a 150 fs X-ray pulse diffracting on the crystal. The photon energy was 11.15 keV (ΔE/E = 0.01), approximately 1 × 10<sup>7</sup> photon/pulse. The images are stored in compressed numpy file format and the float pixels values describe energy in keV as generated by the time-over-threshold technique. The odd numbered images were recorded without a preceding THz pulse and the even numbered images were recorded after a single cycle THz pulse (2.1 THz peak, FWHM 2 THz) with approximately 50 ps delay.</p> <p>The data set also contain the laser delay associated with a rotation position (motor laserdelay, in seconds). Only one laser delay was recorded per step.</p>
Raw data and Figures for the article "Strain Wave Pathway to Semiconductor-to-Metal Transition Revealed by Time Resolved X-ray Powder Diffraction"
<p>- Raw data from Jungfrau Integrating pixel detector (together with azimuthally averaged curves)</p> <p>- Script to create time resolved data from raw data</p> <p>- Scripts to generates main figures of the article.</p>
Data from: The interaction of fatigue cracks with a residual stress field using thermoelastic stress analysis and synchrotron x-ray diffraction experiments
This article presents an experimental study on the fatigue behaviour of cracks emanating from cold-expanded holes utilising thermoelastic stress analysis (TSA) and synchrotron x-ray diffraction (SXRD) techniques with the aim of resolving the long-standing ambiguity in the literature regarding potential relaxation, or modification, of beneficial compressive residual stresses as a result of fatigue crack propagation. The crack growth rates are found to be substantially lower as the crack tip moved through the residual stress zone induced by cold expansion. The TSA results demonstrated that the crack tip plastic zones were reduced in size by the presence of the residual compressive stresses induced by cold expansion. The crack tip plastic zones were found to be insignificant in size in comparison to the residual stress zone resulting from cold expansion, which implied that they were unlikely to have had a notable impact on the surrounding residual stresses induced by cold expansion. The residual stress distributions measured along the direction of crack growth, using SXRD, showed no signs of any significant stress relaxation or redistribution, which validates the conclusions drawn from the TSA data. Fractographic analysis qualitatively confirmed the influence on crack initiation of the residual stresses induced by the cold expansion. It was found that the application of single compressive overload caused a relaxation, or reduction in the residual stresses, which has wider implications for improving the fatigue life.
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International Brain Laboratory public data
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