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666 results for “Diffraction”
Using Powder Diffraction Patterns to Calibrate the Module Geometry of a Pixel Detector
<p>Powder diffraction data and jupyter notebooks to accompany the publication: </p> <p>"Using Powder Diffraction Patterns to Calibrate the Module Geometry of a Pixel Detector"</p> <p><a href="https://sciprofiles.com/profile/142400">Jonathan P. Wright</a>, <a href="https://sciprofiles.com/profile/author/Wjg3TE9sVlJleUs2bC9IaVdNeXczVFlwK2p6eW9JTWhoREJiSEZnaWw1TT0=">Carlotta Giacobbe</a> and <a href="https://sciprofiles.com/profile/author/V3JYR2UvT1pjTFdPMWF6Y0pidGdNcHlaQndxMHJOK3pNTkFaRmZaMkU5UT0=">Eleanor Lawrence Bright</a></p> <p><em>Crystals</em> <strong>2022</strong>, <em>12</em>(2), 255; <a href="https://doi.org/10.3390/cryst12020255">https://doi.org/10.3390/cryst12020255</a></p>
High-definition electron diffraction patterns and their indexation results of a polycrystal Al-Mg sample
<p>This dataset of 1200 high-resolution (1200×1600) electron diffraction patterns are acquired from an unstrained polycrystal Al-Mg sample. The patterns are recorded by a Bruker eFlashHD camera mounted on Tescan MAIA3. The sample tilt angle is 70°, the step size 1.625 µm, the beam current 10 nA and the accelerate voltage 20kV. The indexation results, in format 'mat' of Matlab, by integrated digital image correlation with radial distortion (IDIC-D EBSD) are also provided. For each diffraction pattern, 7 parameters are stocked, i.e. the Euler angle triplet (expressed in radians and with reference to the EBSD detector), the coordinates of the projection center, and the radial distortion parameter.</p> <p>This dataset was discussed in a published paper (https://doi.org/10.1016/j.matchar.2021.111206).</p>
Binder J61 - diffraction images for PDB record 7AVC
<p>Raw diffraction images for DoBi scaffold variant J61 based on PIH1D1 N-terminal domain - PDB code 7AVC.</p> <p>Primary publication:<br> P.N. Pham, M. Huličiak, L. Biedermannová, J. Černý, T. Charnavets, G. Fuertes, Š. Herynek, L. Kolářová, P. Kolenko, J. Pavlíček, J. Zahradník, P. Mikulecký, B. Schneider. (2021). Protein Binder (ProBi) as a New Classs of Structurally Robust Non-Antibody Protein Scaffold for Directed Evolution. <em>Viruses</em>, <strong>13(2)</strong>, 190.</p>
X-ray diffraction dataset (PDB ID 6OWV, Human Cardiac Calsequestrin)
<p>X-ray diffraction dataset corresponding to PDB ID 6OWV (Crystal structure of a Human Cardiac Calsequestrin Filament)</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>
Diffraction images for PWWP1 domain of NSD2 in complex with MR837
<p>A set of x-ray diffraction images collected at beam line 08ID of the Canadian Light Source.</p>
Raw dataset for "Multi-Objective Bayesian Active Learning for MeV-ultrafast electron diffraction"
<p>this dataset contains raw data collected at the SLAC MeV-UED facility, the data was saved in .npy format. The name of each file starts with a number referring to the time stamp when it was recorded.</p> <p>“xxxxxxxxxx_Andor1.npy” contains the beam images recorded at the diffraction detector plane associated with the q-resolution</p> <p>“xxxxxxxxxx_qm.npy” contains the beam images recorded at the sample plane associated with the spot size</p> <p>“xxxxxxxxxx_scalars.npy” contains the machine settings and readouts from the EPICs system, scalar names are listed in “scalars.txt”</p> <p>“xxxxxxxxxx_vcc.npy” contains the images recorded at a virtual cathode camera</p> <p>“xxxxxxxxxx_THzon_img.npy” contains the THz streaked beam images associated with the temporal length</p> <p>“xxxxxxxxxx_THzoff_img.npy” contains the unstreaked beam images for subtracting intrinsic broadening without THz pulses</p>
Diffraction patterns
<p>to be published </p>
Neutron diffraction data for Magnetic ground state of NdB4: Interplay between anisotropic exchange interactions and hidden order on a Shastry-Sutherland lattice
<p>NdB4_NPD.zip contains TOF neutron powder diffraction patterns collected in the temperature range of 1.5K-100K</p> <p>journal_NdB4.pdf provides information about the NPD data collection temperature and run number</p>
IODP Expedition 360 X-ray diffraction (XRD)
X-ray diffraction (XRD) is used to identify minerals and their proportions in sediment or hard rock sample powders on a Bruker AXS D4 Endeavor X-ray diffractometer. Results are returned as diffractograms in a viewable format (either PDF or PNG).
Chemical and Structural In-Situ Characterization of Model Electrocatalysts by Combined Infrared Spectroscopy and Surface X-Ray Diffraction
<p>Raw and treated data</p>
Comparing the compression behavior of the antiperovskites CePt3Si, CePt3B, and YPt3B from combined X-ray diffraction experiments and density functional theory
<p>DFT data for the paper:</p> <p><strong>Comparing the compression behavior of the antiperovskites CePt3Si, CePt3B, and YPt3B from combined X-ray diffraction experiments and density functional theory</strong></p> <p><em>Emma Ehrenreich-Petersen (a) , Morten B. Nielsen (a,b) , Davide Ceresoli (c), Martin Ottesen (a) , Paraskevas Parisiades (d) , Martin Bremholm (a)</em><br><br>(a) Department of Chemistry and iNANO, Aarhus University, Langelandsgade 140, 8000, Aarhus C, Denmark<br>(b) Danish Technological Institute, Kongsvang Allé 29, 8000, Aarhus C, Denmark<br>(c) Consiglio Nazionale delle Ricerche - Istituto di Scienze e Tecnologie Chimiche “G. Natta” (CNR-SCITEC), via Golgi 19, 20133, Milano, Italy<br>(d) Sorbonne Université, Institut de Minéralogie, de Physique des Matériaux et de Cosmochimie, CNRS/MNHN/IRD (UMR 7590), 4 Place Jussieu, 75005, Paris, France</p>
Dataset for 'Mix and measure II – joint high-energy laboratory powder diffraction and microtomography for cement hydration studies'
<p>Dataset for 'Mix and measure II – joint high-energy laboratory powder diffraction and microtomography for cement hydration studies'. Includes data for: calorimetry, PSD, thermal analysis, LXRPD and μCT.</p>
Raw diffraction images for pgp3 IUCrJ 2018 N. E. Chayen and J.R. Helliwell
<p>These are the raw diffraction images linked with PDB deposition 6GJT and article in IUCrJ.</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>
uploaded files: Correlative microscopy approach for biology using x-ray holography, x-ray scanning diffraction and STED microscopy
<p>The data uploaded here corresponds to a manuscript on x-ray /STED correlative imaging by the same authors published under the same title in Nature Communications in 2018.</p> <p>The provided data are subdivided into three parts:<br> 1. The 01_STED_fig2a.mat file contains the main results shown in Fig.2a (main article) as variables:<br> - STED_micrograph: the STED micrograph with each pixel representing single photon counts<br> - STED_dwell_time: the dwell time at each pixel position</p> <p>2. The 02_HOLO_fig2b.mat file contains the main results shown in Fig.2b (main article) as variables:<br> - I: the emptyimage devided, but not yet filtered hologram<br> - geo: a structure including the geometrical magnification M, the fresnel-number F, the waveguide-sample-distance z01, the sample-detector-distance z12, the effective propagation distance z_eff and the effective pixelsize dxeff<br> - lambda: the wavelength used for all x-ray experiments<br> - phi_raar: the reconstructed phasemap. Note, that for depicting the phase shifts, the matlab command angle(phi_raar) has to be used</p> <p>3. The 03_SCANNING_fig2c.mat file contains the main results shown in Fig.2c (main article) and Fig.4 (inset) as variables:<br> - darkfield: the x-ray dark field map of the scan area<br> - sSAXS_dwell_time: the dwell time for each scan point<br> - mask: the dark field mask applied on the diffraction patterns<br> - single_diff_image: a single diffraction pattern</p>
X-Ray diffraction images for the crystal structure of the motor domain of human kinesin family member 22
<p>This dataset underlies Protein Data Bank entry 3BFN. Diffraction images are accompanied by HKL-3000 data reduction scripts and output files.</p>
Raw diffraction images of mercury-bound human muscarinic acetylcholine receptor
<p>Raw data for <a href="https://www.rcsb.org/structure/5YC8">5YC8</a> (S110R-BRIL–NMS:Hg).</p>
Data Bundle for "Rapid electron backscatter diffraction mapping: Painting by numbers"
<p>This data is a release of EBSD data for "Rapid electron backscatter diffraction mapping: Painting by numbers"<br> Figure 5 and Figure 6 contain the EBSD data.<br> FFArgus.png = far field ARGUS image <br> NFArgus.png = near field ARGUS image<br> IPF = image data for the EBSD data<br> *.ctf = export of Bruker CTF data for full EBSD map to plot EBSD maps (e.g. in MTEX)<br> *.txt = reconstructed EBSD data in columns: euler1 euler 2 euler 3 euler 3 xpos ypos phaseID<br> *.prg = Bruker project file (use this to link the EBSD patterns to the NF Argus image)<br> EBSP folder = EBSPs as captured.</p> <p>The data bundle was prepared by Ben Britton (b.britton@imperial.ac.uk).</p> <p>The figures are presented in the powerpoint (which can be extracted as a zip if needed).</p>
X-ray diffraction images for Thiazole synthase from M. thermolithotrophicus.
<p>Anomalous data collected at ESRF (Grenoble, France) using beamline ID23-1. The crystal (Crystal form 3) was in the presence of the crystallophore Tb-Xo4.</p> <p> </p> <p>Related Publication: Engilberge et al. (2019)</p>
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Allen Brain Atlas
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International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.