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52 results for “ARPES”
Arp Schnitger (s4239)
<b>-- <a href="https://doi.org/10.5281/zenodo.11582199">Documentation</a> --</b><br><br><u>Name</u>: Arp Schnitger<br><u>musiXplora-ID</u>: s4239<br><u>musiXplora-URI</u>: <a href="https://musixplora.de/mxp/s4239">https://musixplora.de/mxp/s4239</a><br><u>Gender</u>: m<br><u>Confessions</u>: evangelisch-lutherisch<br><u>Date of Birth</u>: 09 July 1648<br><u>Place of Birth</u>: Brake/Unterweser<br><u>Date of Death</u>: 28 July 1719<br><u>Place of Death</u>: Itzehoe<br><u>First Mentioned</u>: 1673<br><u>Sectors</u>: Instrumentenbau, Kirche<br><u>Professions (Historical)</u>: Orgelmacher<br><u>Professions (Musical)</u>: Orgelbauer<br><u>Main Place of Activity</u>: Hamburg<br><u>Other Places of Activity</u>: Achim/Landkreis Verden, Berlin, Brake/Unterweser, Bremen, Buxtehude, Bülkau, Clausthal-Zellerfeld, Cuxhaven, Dargun, De Marne, Delfzijl, Eemsmond, Elmshorn, Eutin, Faro, Ferwert, Flensburg, Ganderkesee, Glückstadt, Groningen, Hollern-Twielenfleth, Itzehoe, Jork, Kiel, Leer/Ostfriesland, Lissabon, Loppersum/Groningen, Loxstedt, Lübeck, Magdeburg, Midden-Groningen, Mittelnkirchen, Moreira/Maia, Norden/Ostfriesland, Nordenham, Oederquart, Oldambt, Ovelgönne, Pellworm, Rendsburg, Schortens, Sneek, Stade, Steinirchen/Altes Land, Stettin, Weener, Zwolle<br><br><br><u>Ausbildung:</u><br><table><tbody><tr><th>Group</th><th>Role</th><th>Name</th><th>mXp-ID</th></tr><tr><td>LehrerInnen und AusbilderInnen</td><td>Lehrer</td><td>Johann Michael Röder</td><td><a href="https://musixplora.de/mxp/r0676">r0676</a></td></tr></tbody></table><br><u>Arbeitsumfeld:</u><br><table><tbody><tr><th>Group</th><th>Role</th><th>Name</th><th>mXp-ID</th></tr><tr><td>ArbeitgeberInnen</td><td>Arbeitgeber</td><td>Christian Vater</td><td><a href="https://musixplora.de/mxp/v0686">v0686</a></td></tr></tbody></table><br><u>Tradition:</u><br><table><tbody><tr><th>Group</th><th>Role</th><th>Name</th><th>mXp-ID</th></tr><tr><td>Interessensbereich</td><td>Interessensbereich</td><td>Gustav Fock</td><td><a href="https://musixplora.de/mxp/f1911">f1911</a></td></tr><tr><td>Interessensbereich</td><td>Interessensbereich</td><td>Paul Rubardt</td><td><a href="https://musixplora.de/mxp/r1820">r1820</a></td></tr></tbody></table><br><u>Titel/Medien:</u><br><table><tbody><tr><th>Role</th><th>Sigel</th><th>Title</th><th>mXp-ID</th></tr><tr><td>Related</td><td>Schiltz/Braun 2020</td><td>Deutsche Orgelpredigtdrucke zwischen 1600 und 1800. Katalogisierung, Texterfassung, Auswertung. Digitale Edition der Universität Regensburg</td><td><a href="https://musixplora.de/mxp/5034070">5034070</a></td></tr></tbody></table><br><br><u>Changelog</u>:<br> - v0.0.1: Initial Upload.<br>
Band structure of KTaO3 two dimensional electron gas: ARPES data and tight binding fits
<p>The dataset contains the angle resolved photoemission spectroscopy measurements of the band structure of the two dimensional electron gas generated at the KTaO3/Al interface. Both dispersion and constant energy maps near the Fermi level are provided.</p> <p>The experimental data are complemented with tight binding fits (eight bands).</p>
3D ARPES angle scan collection
<p>This repository contains a number of 3D Angle Resolved Photoemission Spectroscopy (ARPES) datasets. Each datasets represents the photoemission intensity (normalized) as function of energy and two crystal momoentum components, I(E,k_x,k_y).</p> <p>These were all obtained performing "angle-scans", i.e. measuring a series of 2D spectra I(E,theta) and varying the other emission angle (phi). These angle coordinates were then warped into the crystal momentum components, centered at the Gamma point.</p> <p>These datasets cover 19 material systems: Au(110), Au(111), Bi2Se3(111), CoO2, on Au(111), CrSBr(001), Graphene on Ir(111), Graphene on Ru(0001), single-layer MoS2 on Au(111), single-layer NbSe2 on bilayer graphene, NdTe3(010), Pd(100), Pd(111), Pt(111), Rb-doped Bi2Se3(111), Ru(0001), P-δ-layer on Si(001), single-layer TaS2 on Au(111), single-layer WS2 on Ag(111) and single-layer WS2on Au(111).</p> <p>Instructions on how to load and visualize the data are presented in the Jupyter Notebook file <code>load_dataset.ipynb</code>, with helper functions contained in <code>utils.py.</code></p> <p>The data here provided was used to produce the images used for training <a href="https://github.com/ARPES-on-the-fly/arpesnet">ARPESNet</a>, an autoencoder Neural Network designed to efficiently compress ARPES spectra. The training dataset can be found here: <a href="10.5281/zenodo.12648783">10.5281/zenodo.12648783</a></p> <p>Deatails of the autoencoder and its applications can be found in this publication:</p> <p>Steinn Ýmir Ágústsson, Mohammad Ahsanul Haque, Thi Tam Truong, Marco Bianchi, Nikita Klyuchnikov, Davide Mottin, Panagiotis Karras, Philip Hofmann; <strong>An autoencoder for compressing angle-resolved photoemission spectroscopy data</strong>. <em>Mach. Learn.: Sci. Technol.</em> <strong>6</strong> 015019 (2025) DOI: <a href="https://doi.org/10.1088/2632-2153/ada8f2" target="_blank" rel="noopener">10.1088/2632-2153/ada8f2</a></p> <p>Please cite the paper above in case of re-use of these data in a scientific publication.</p>
ARP Shelter Alexandra Park
ARP (air raid) shelter from World War 2 at the junction of Alexandra Park Road and Palace Gates Road, London. It is made of brick with possible concrete roof and core. Pastcape record: https://www.pastscape.org.uk/hob.aspx?hob_id=1414364 Date: WW2 420 photos taken in November 2019 with a Sony a6000 and processed in Reality Capture. Source: Objaverse 1.0 / Sketchfab
Time-resolved ARPES RAW data of bulk WSe2 for a quantitative comparison of time-of-flight momentum microscopes and hemispherical analyzers: RAW MM data
<p>Time- and angle-resolved photoemission spectroscopy data of bulk WSe2 using a laser-based XUV source and a time-of-flight momentum microscope analyzer.</p> <p>The dataset here comprises part of the machine RAW data used to construct the processed data stored in the datasets at</p> <pre>https://doi.org/10.5281/zenodo.4067968</pre> <p>Analysis scripts and conversion tools into NeXus format can be found at</p> <p>https://github.com/nomad-coe/nomad-parser-nexus/tree/master/tests/data/tools/dataconverter/readers/mpes</p>
Figure S1-S3: The ARPE-19 cells were cultured in low glucose (5 mM), osmotic Control and high glucose (25 mM) medium.
<p><span>Figure S1-S3: The ARPE-19 cells were cultured in low glucose (5 mM), osmotic Control and high glucose (25 mM) medium.</span></p>
Fortran/Python Interface in ARP-GEM1: Online Test of Neural Network Deep Convection
<p>Manuscript under review in AIES. Supporting Code and Dataset. </p> <p><strong>Abstract.</strong></p> <p>In this study, we present the integration of a neural network-based parameterization into the global atmospheric model ARP-GEM1, leveraging the Python interface of the OASIS coupler. This approach facilitates the exchange of fields between the Fortran-based ARP-GEM1 model and a Python component responsible for neural network inference. As a proof-of-concept experiment, we trained a neural network to emulate the deep convection parameterization of ARP-GEM1. Using the flexible Fortran/Python interface, we have successfully replaced ARP-GEM1's deep convection scheme with a neural network emulator. To assess the performance of the neural network deep convection scheme, we have run a 5-years ARP-GEM1 simulation where the neural network replaced ARP-GEM1's deep convection parameterization. The evaluation of averaged fields showed good agreement with output from an ARP-GEM1 simulation using the physics-based deep convection scheme. The Python component was deployed on a separate partition from the general circulation model, using GPUs to increase inference speed of the neural network.</p>
ARP-Issues-Dataset
<p>ARP-Issues Dataset</p> <ul> <li>APMINER : a tool to analyze the Javadoc and annotation of the Android SDK to infer API-DP mappings.</li> <li>ARP-DP : API-Permission mapping on API levels 23-30.</li> <li>ARPBENCH : Benchmark for experimental.</li> <li>GitHub Issues </li> <li>StackOverflow Posts </li> </ul>
Arlequin input file for phylogenetic analysis [ARP file]
<p>Input file for Arlequin program to conduct phylogenetic analysis on the correlates of stress in the languages surveyed in the author's dissertation, "Archival Phonetics & Prosodic Typology in Sixteen Australian Languages," 2022.</p>
Transcriptional profiling of ARPE-19 cells infected with high capacity MCMV vector.
<p><span>To gain a detailed knowledge about the virus cycle of murine cytomegalovirus (MCMV) and its high capacity vector in cross-species settings, we analyzed the early and late viral and host transcriptome upon infection of human cells. ARPE-19, A549, and 911 cells (5.0×10<sup>5 </sup>cells/well) were infected in a 24-well format 4 h post-seeding with MCMV-wt or Q4-LRBAs-GLuc, a high capacity replication competent vector based on MCMV, at an MOI of 3. As control, we used infection of mouse embryonic fibroblast, which is the natural host of the wild type MCMV, treated similarly. Harvesting occurred at 8 hpi and 31 hpi through centrifugation at 1.000 g for 5 min. Cell pellets were washed with PBS, re-suspended in 350 µL of RLT buffer, and processed using the RNeasy Mini kit as per the manufacturer’s instructions in independent triplicates. At least 1.500 ng of RNA in a 30 µL volume was isolated and sent for Illumina next-generation sequencing, resulting in paired-end sequencing with a read length of 2×100 bp and a depth of 20 million reads. This submission contains the reads, we obtained analyzing the infections of ARPE-19 cells. The data sheet for the samples and the reference genomes (.gb), which we used in the analysis published in Riedl et al. Vaccines 2024 can be found in the REFERENCES_ARPE-19.zip folder. Please, find the control reads for uninfected cells in a separate upload entitled: Mock infected controls for transcriptional profiling of infections with high capacity MCMV vector (DOI 10.5281/zenodo.1250410).</span></p>
tr-arpes nickel
<p>time resolved and angle resolved photoemission is measured on Ni/W.</p>
A Comparative Clinical Study Between a Collagen Matrix and Collagen Membrane as Wound Protection During Ridge Preservation ARP
ClinicalTrials.gov study NCT06029322. IPD Sharing: UNDECIDED. Countries: 1. Publications: 7.
Time-resolved ARPES data of bulk WSe2 for a quantitative comparison of time-of-flight momentum microscopes and hemispherical analyzers
<p>Time- and angle-resolved photoemission spectroscopy data of bulk WSe2 using a laser-based XUV source and a combination of a hemispherical analyzer and a time-of-flight momentum microscope for photoelectron detection.</p> <p>The data and associated metadata are stored in the NeXus data format (https://www.nexusformat.org/).</p>
Comparison of ARPE Prosthesis With the Literature
ClinicalTrials.gov study NCT01904019. IPD Sharing: UNDECIDED. Countries: 1. Publications: 0.
ARPE Training for Manual Handling Workers: A Quasi-Experimental Study on Ergonomic Knowledge and Practice
ClinicalTrials.gov study NCT06993298. IPD Sharing: Not stated. Countries: 0. Publications: 1.
Adolescent Anterior Knee Pain: ARP Wave Therapy vs. Physical Therapy
ClinicalTrials.gov study NCT03225014. IPD Sharing: YES. Countries: 1. Publications: 0.
Effect of POLDIP2 knockout in ARPE-19 cells
GEO Series GSE207158. Homo sapiens. 6 samples. Type: Expression profiling by high throughput sequencing.
ARPE-19 adriamycin gene expression II
GEO Series GSE104662. Homo sapiens. 4 samples. Type: Expression profiling by array.
RNA-seq analysis of trans-differentiated ARPE-19 cells transduced by AAV9-AIPL1 vectors
GEO Series GSE252276. Homo sapiens. 12 samples. Type: Expression profiling by high throughput sequencing.
Assessing the Effects of Silver Nanoparticles on ARPE-19 Cells via High-Throughput Phenotypic Profiling with the Cell Painting Assay.
GEO Series GSE297342. Homo sapiens. 88 samples. Type: Expression profiling by high throughput sequencing.
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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.