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501 results for “Charging”

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zenodo40/100

Fortran code used in 'A fractal model for effective excess charge density in variably saturated fractured rocks'

<p>This code is uploaded to support the research study &#39;A fractal model for effective excess charge density in variably saturated fractured rocks&#39; by L. Guarracino and&nbsp; D. Jougnot (submitted to JGR: Solid Earth, 2021).</p> <p>Files:<br> a) Fortran source code (qvfrac.f) for estimating the effective excess charge density in fractured rocks. The calculation is based on model equations described in the research study.<br> b) Input data (network1.dat) to calculate the effective excess charge density for fracture network 1 described in Section 3 (Figure 5a).</p>

opencc-by-4.0Jan 2022View details →
zenodo40/100

Equitable Access to Residential (EQUATOR) EV Charging: Optimal Investments in EV charging

<p>This folder&nbsp;comprises Julia&nbsp;codes produced to determine optimal investments in EV charging for&nbsp;Equitable Access to Residential (EQUATOR) EV Charging project. The file descriptions are below:</p> <p>&nbsp;</p> <p>1. Generator.csv: contains generator data for all the generators in the Manhattan power network</p> <p>2. Node.csv: contains the load data for each bus&nbsp;in the Manhattan power network</p> <p>3. Line.csv: contains technical line parameters for all the lines&nbsp;in the Manhattan power network</p> <p>4. NetworkDataType.jl and NetworkLoad.jl: Julia files to process csv data and design the Manhattan power grid</p> <p>5. Justice_LL.jl: Justice modeling of the power utility</p> <p>6. Justice_Case1_fixed.jl: Julia file for determining optimal investments in EV charging in Manhattan.</p>

opencc-by-4.0Feb 2022View details →
zenodo40/100

Dynamics of Collective Modes in an unconventional Charge Density Wave system BaNi2As2 - Raw Data

<p>This repository includes two datasets included in the study &quot;Dynamics of Collective Modes in an unconventional<br> Charge Density Wave system BaNi2As2&quot;. Two datasets are included:</p> <p>Temperature_dependent_reflectivity_changes.dat</p> <p>Fluence_dependent_reflectivity_changes_at 10K.dat</p> <p>Temperature_dependent_reflectivity_changes.dat contain photoinduced reflectivity transients, recorder on BaNi2As2 for sample temperatures between 13 K and 149K. The first column is time-delay, other columns are the corresponding photoinduced reflectivity traces recorded at respective temperatures (constant fluence of 0.4 mJ cm<sup>&minus;2</sup>).</p> <p>&nbsp;</p> <p>Fluence_dependent_reflectivity_changes_at 10K.dat contain photoinduced reflectivity transients, recorder on BaNi2As2 at 10 K. The first column is time-delay, other columns are the corresponding photoinduced reflectivity traces recorded at respective fluences. Each signal has been normalized to the respective fluence.</p> <p>&nbsp;</p>

opencc-by-4.0Apr 2022View details →
zenodo40/100

Supporting data for the article "Charge-Induced Artifacts in Nonlocal Spin-Transport Measurements: How to Prevent Spurious Voltage Signals"

<p>Supporting data for the article &quot;Charge-Induced Artifacts in Nonlocal Spin-Transport Measurements: How to Prevent Spurious Voltage Signals&quot;</p> <p>If the design files are used to reproduce the current source, we ask to cite the peer-reviewed publication of our work in any publication in which the adjustable virtual ground feature is used for measurements.</p> <p>We provide the following data and design files:</p> <p>1.) Data used to create each figure both in the main manuscript and the supplementary material in the zip-folder &quot;Data presented in figures&quot;.<br> The data is provided in two formats:<br> I.) Raw data in freely accessible file formats such as .dat, .txt, or .csv.<br> II.) Graphically processed data (figures as shown in the publication) in the proprietary file format .opju. Used program: OriginPro 2019</p> <p>2.) LTspice models in the zip-folder &quot;LTspice models&quot;. The simulations were conducted with LTspice version XVII(x64).</p> <p>3.) Altium Designer files of the current source in the zip-folder &quot;Altium Designer files&quot;.</p> <p>4.) Gerber X2 and NC drill files (dimensions in millimeters) for the manufacturing of the PCB that is used in our project in the zip-folder &quot;Fabrication files&quot;. See the readme file in the directory for more information on the fabrication process.</p> <p>5.) A bill of materials.</p>

opencc-by-4.0Jul 2022View details →
zenodo40/100

Trajectories used for Tailoring Charge Transfer Kinetics in Organic Radical Batteries

<p>Trajectories, which are discussed in our work &quot;Tailored Charge Transfer Kinetics in Organic Radical Batteries - A Joint Synthetic-Theoretical Approach&quot;</p> <p>The trajectories were obtained by linearly interpolating in internal coordinates (LIICs) of the relaxed ground state species of molecules A to F, where the charge is either localized on the thiophene backbone (B) or the TEMPO moiety (T1 and T2). Thereby, the program suite pysisyphus (Steinmetzer <em>et. al.</em> 2021) was used to obtain the LIICs. Endpoints represent the fully optimized redox species. The trajectories were used to calculate the intramolecular charge transfer reactions.</p> <p>Trajectories of the following charge transfer reactions are uploaded:</p> <p>1. A<sub>B</sub>&rarr;A<sub>T1</sub> (ABtAT1.trj)</p> <p>2. A<sub>B</sub>&rarr;A<sub>T2 </sub>(ABtAT2.trj)</p> <p>3. B<sub>B</sub>&rarr;B<sub>T1 </sub>(BBtBT1.trj)</p> <p>4. B<sub>B</sub>&rarr;B<sub>T2 </sub>(BBtBT2.trj)</p> <p>5. C<sub>B</sub>&rarr;C<sub>T1 </sub>(CBtCT1.trj)</p> <p>6. C<sub>B</sub>&rarr;C<sub>T2 </sub>(CBtCT2.trj)</p> <p>7. D<sub>B</sub>&rarr;D<sub>T1 </sub>(DBtDT1.trj)</p> <p>8. D<sub>B</sub>&rarr;D<sub>T2 </sub>(DBtDT2.trj)</p> <p>9. E<sub>B</sub>&rarr;E<sub>T </sub>(EBtET.trj)</p> <p>10. F<sub>B</sub>&rarr;F<sub>T </sub>(FBtFT.trj)</p>

opencc-by-4.0Aug 2022View details →
zenodo40/100

Data associated to the manuscript "Co-Ion Desorption as the Main Charging Mechanism in Metallic 1T-MoS2 Supercapacitors"

<p>Supporting data for the article:</p> <p>Co-Ion Desorption as the Main Charging Mechanism in Metallic 1T-MoS<sub>2</sub> Supercapacitors</p> <p>Sheng Bi, Salanne Mathieu, <em>ACS Nano</em>, 2022</p> <p>https://pubs.acs.org/doi/10.1021/acsnano.2c07272</p> <p>The folders <em>slab&nbsp; </em>and <em>slit</em> contain typical MetalWalls input files used to perform the simulations for two electrode geometries.</p>

opencc-by-4.0Oct 2022View details →
zenodo40/100

Table: Critical assessment of charge mobility extraction in field-effect transistors.

<p>This TABLE lists the measurement reliability factor, <em>r</em>, the maximum power density, <em>P</em><sub>max</sub>, dissipated in the transistor<br> channel, as well as the maximum current density, <em>j</em><sub>SD</sub><sup>max</sup>, in the channel of (organic) field-effect transistors (FETs) calculated from the data shown in recent literature reports. For the exact definitions of these parameters see Nature Mater. DOI: 10.1038/nmat5035.</p>

opencc-by-4.0Nov 2017View details →
zenodo40/100

Data used in article 'Tuning Charge Carrier Dynamics and Surface Passivation in Organolead Halide Perovskites with Capping Ligands and Metal Oxide Interfaces'

<p>Data underlying the article &#39;Tuning Charge Carrier Dynamics and Surface Passivation in Organolead Halide Perovskites with Capping Ligands and Metal Oxide Interfaces&#39; published in Advanced Optical Materials.</p>

opencc-by-4.0Jan 2018View details →
zenodo40/100

РИС. 8. Примеры проблем с иЗображением при работе на СЭМ. А, В. Засветка раЗличных частей раковин глохидиев (А. Anodonta anatina (=Colletopterum), оЗ. Красное, ХакасиЯ. В. Inversiunio reinianus, оЗ. Бива, о-в Хонсю, ЯпониЯ). C. РаЗнаЯ скорость сканированиЯ (слева – очень быстраЯ, справа – медленнаЯ) наружной поверхности глохидиЯ (Anodonta cygnea, р. Ялма, МосковскаЯ обл.). D. Артефакты в виде гориЗонтальных полос вследствие накоплениЯ отрицательного ЗарЯда при недостаточном напылении внутренней поверхности глохидиЯ (Nodularia douglasiae, ПетровскаЯ протока, бассейн р. Амур, Хабаровский кр.). МасШтаб 50 мкм (А, В), 2 мкм (С), 5 мкм (D). Микроскопы Zeiss EVO 40 (А, С, D), Zeiss MERLIN (В), напыление углеродом (А, С), хромом (В, D). FIG. 8. Illustration of different problems with SEM images. A, B. Overall illumination of some glochidia shells parts (A. Anodonta anatina (= Colletopterum), Krasnoe Lake, Khakassia. B. Inversiunio reinianus, Biwa Lake, Honshu Island, Japan). C. Different scanning speed (faster on the left and slower on the right) of the exterior glochidia valve (Anodonta cygnea, Yalma River, Moscow Oblast). D. Artifacts as horizontal stripes because of additional accumulation of a negative charge due to insufficient coating of the interior glochidia valve (Nodularia douglasiae, Petrovskaya channel, Amur River basin, Khabarovsk Krai). Scale bars 50 μm (A, B), 2 μm (C), 5 μm (D). Zeiss EVO 40 (A, C, D) and Zeiss MERLIN (B) microscopes, sputter coating with carbon (A, C) and chromium (B, D). in Методика подготовки раковин глохидиев (Bivalvia, Unionidae) длЯ работы на сканируюЩем Электронном микроскопе

РИС. 8. Примеры проблем с иЗображением при работе на СЭМ. А, В. Засветка раЗличных частей раковин глохидиев (А. Anodonta anatina (=Colletopterum), оЗ. Красное, ХакасиЯ. В. Inversiunio reinianus, оЗ. Бива, о-в Хонсю, ЯпониЯ). C. РаЗнаЯ скорость сканированиЯ (слева – очень быстраЯ, справа – медленнаЯ) наружной поверхности глохидиЯ (Anodonta cygnea, р. Ялма, МосковскаЯ обл.). D. Артефакты в виде гориЗонтальных полос вследствие накоплениЯ отрицательного ЗарЯда при недостаточном напылении внутренней поверхности глохидиЯ (Nodularia douglasiae, ПетровскаЯ протока, бассейн р. Амур, Хабаровский кр.). МасШтаб 50 мкм (А, В), 2 мкм (С), 5 мкм (D). Микроскопы Zeiss EVO 40 (А, С, D), Zeiss MERLIN (В), напыление углеродом (А, С), хромом (В, D). FIG. 8. Illustration of different problems with SEM images. A, B. Overall illumination of some glochidia shells parts (A. Anodonta anatina (= Colletopterum), Krasnoe Lake, Khakassia. B. Inversiunio reinianus, Biwa Lake, Honshu Island, Japan). C. Different scanning speed (faster on the left and slower on the right) of the exterior glochidia valve (Anodonta cygnea, Yalma River, Moscow Oblast). D. Artifacts as horizontal stripes because of additional accumulation of a negative charge due to insufficient coating of the interior glochidia valve (Nodularia douglasiae, Petrovskaya channel, Amur River basin, Khabarovsk Krai). Scale bars 50 μm (A, B), 2 μm (C), 5 μm (D). Zeiss EVO 40 (A, C, D) and Zeiss MERLIN (B) microscopes, sputter coating with carbon (A, C) and chromium (B, D).

opencc-by-4.0Jan 2022View details →
zenodo40/100

Charge-Selective Photocatalytic Degradation of Organic Dyes using Halloysite Nanotubes

<p>This study explores the use of Halloysite NanoTubes (HNTs) as photocatalysts capable of<br>decomposing organic dyes under exposure to visible or ultraviolet light.&nbsp;We observe that the extent of RhB<br>photocatalytic degradation in 100 min in the presence of the HNTs is ~4 times higher compared to<br>that of bare RhB. Moreover, under optimized conditions, the as-extracted photodegradation rate of<br>RhB (~0.0022 /min) is comparable to that of the previously reported work on the photodegradation<br>of RhB in the presence of tubular nanostructures. A parallel effect is observed for anionic Coumarin<br>photodegradation, albeit less efficiently.&nbsp;By leveraging the unique properties of HNTs, a family of naturally occurring<br>nanotube structures, this research offers valuable insights for optimizing photocatalytic systems in<br>the pursuit of effective and eco-friendly solutions for environmental remediation.</p>

opencc-by-4.0May 2024View details →
zenodo40/100

Mixed salt systems in the built environment - charge balance calculations

<p>A large database of salt mixtures found in the built environment and a charge balance calculations&nbsp;toolkit. Output of the <a href="http://predict.kikirpa.be/">PREDICT</a> project predominantly including measurements of Belgian historic sites collected by KIK-IRPA Monuments Lab.</p> <p>Contents:</p> <ul> <li>Full&nbsp;integrated database and charge balance&nbsp;calculation sheet, including raw ion&nbsp;concentrations and balanced outputs (.xlsx)</li> <li>Sample integrated database (25 mixtures) and charge balance calculation sheet, including raw ion&nbsp;concentrations and balanced outputs (.xlsx)</li> <li>R scripts for charge balance calculations (.R)</li> <li>Full set of raw ion concentrations for the R scripts (.txt)</li> <li>Sample of 25 raw ion concentrations for the R scripts (.txt)</li> <li>Full set of balanced outputs from the R script (.txt)</li> <li>Sample of 25 balanced outputs from the R script (.txt)</li> </ul>

opencc-by-4.0Dec 2021View details →
zenodo40/100

Robust quantum dots charge autotuning using neural network uncertainty - Output data

<p>Outputs of the model training and the offline autotuning experiments presented in the paper: "<em>Robust quantum dots charge autotuning using neural network uncertainty</em>".</p> <p>For convenience, the results are splitted in several zipped files:</p> <ul> <li><strong>run_outputs_light.zip</strong>: contains only settings and results text files (sufficient for compiling result tables).</li> <li><strong>run_outputs_full_scan.zip</strong>: contains complete scan of the diagrams (for qualitative analyse)</li> <li><strong>run_outputs_part&lt;N&gt;.zip</strong>: contains all autotuning simulation output, grouped by seed (images and video output types might vary between seeds)</li> </ul> <p>Each folder in the zipped files represent a run that includes:</p> <ul> <li>log file</li> <li>plots / images</li> <li>run settings</li> <li>performance results</li> <li>pytorch model parameters</li> </ul> <p>See README.txt for more information about the file strucutre.</p>

opencc-by-4.0May 2024View details →
zenodo40/100

Dataset: Blink Charging Co. (BLNK) Stock Performance

This dataset provides historical stock market performance data for specific companies. It enables users to analyze and understand the past trends and fluctuations in stock prices over time. This information can be utilized for various purposes such as investment analysis, financial research, and market trend forecasting.

opencc-zeroJun 2024View details →
zenodo40/100

Data for article: Understanding the Visible-light Photocatalytic Activity of GaN:ZnO Solid Solution: the Role of Rh2-yCryO3 Cocatalyst and Charge Carrier Lifetimes Over Tens of Seconds

<p>Dataset underlying the publication &#39;Understanding the Visible-light Photocatalytic Activity of GaN:ZnO Solid Solution: the Role of Rh<sub>2-y</sub>Cr<sub>y</sub>O<sub>3</sub> Cocatalyst and Charge Carrier Lifetimes Over Tens of Seconds&#39;, published in Chemical Science (doi:&nbsp;10.1039/C8SC02348D)</p>

opencc-by-4.0Aug 2018View details →
zenodo40/100

Annexes du projet de recherche " Facteurs déterminants du processus décisionnel de la prise en charge du hallux valgus par les ostéopathes; une approche par la théorie du jugement social"

<p>Les fichiers disponibles sont les annexes du projet de recherche &quot;Facteurs d&eacute;terminants du processus d&eacute;cisionnel de la prise en charge du hallux valgus par les ost&eacute;opathes; une approche par la th&eacute;orie du jugement social&quot; &eacute;crit par Camie K&auml;ppeli, &eacute;tudiante en Master en sciences mention ost&eacute;opathie, et supervis&eacute; par Paul Vaucher.</p> <ul> <li>Protocole</li> <li>Site web externe avec explications de l&#39;étude (1ère étape)</li> <li>Questionnaire 1 + données personnelles (1ère étape)</li> <li>Rapport du questionnaire 1 (1ère étape)</li> <li>Questionnaire 2 (1ère étape)</li> <li>Rapport du questionnaire 2 (1ère étape)</li> <li>Site externe avec explications de l&#39;étude (2ème étape)</li> <li>Exemple questionnaire (2ème étape)</li> <li>Rapport du questionnaire sur la non-participation au test pilote des vignettes cliniques</li> <li>Analyses STATA sous forme txt.</li> </ul>

opencc-by-4.0Feb 2019View details →
zenodo40/100

The adoption of Article Processing Charges as a business model by Brazilian Open Access journals

<p>These&nbsp;are&nbsp;the raw data behind the publication:</p> <p>Appel, A.L.; Albagli, S. The adoption of Article Processing Charges as a business model by Brazilian Open Access journals. <em>Transinforma&ccedil;&atilde;o</em>, 31:e180045, 2019. <a href="https://doi.org/10.1590/2318-0889201931e180045">https://doi.org/10.1590/2318-0889201931e180045</a></p> <p>Different funding and business model alternatives for Open Access to scientific publication have been discussed and tried, either by Gold open access journals or by the &lsquo;hybrid&rsquo; ones. A growing number of both types of scholarly journals have adopted a publication fee &ndash; more specifically an Article Processing Charge &ndash; as their open access business model, a procedure that has been the subject of controversies. The objective of this study is to characterize Brazilian open access journals that adopt article processing charges. The main contribution of this study is to audit and support decision making of editorial policies and business models for open access that are being proposed by and for Brazilian journals. We defined a sample of Brazilian open access journals using article processing charges extracted from the Directory of Open Access Journals database in April 2018 along with their classification in the Scimago Journal Ranking, Journal Citation Reports and Qualis Capes system, considered as an indicator of prestige of academic journals. The study reveals that a small number of Brazilian open access journals are currently applying article processing charges, with practices varying mainly according to fields of study, types of organization and classification according to the Qualis system.</p>

opencc-by-4.0Dec 2018View details →
zenodo40/100

Anomaly-free, flavour-dependent U(1) charge assignments for Standard Model/Standard Model plus three right-handed neutrino fermionic content

<p>We present lists of anomaly-free charge combinations up to a&nbsp;maximum magnitude charge Qmax given by the number at the end of the filename. Filenames beginning &quot;SMcharges&quot; are for the Standard Model fermion content, whereas &quot;SMnuRcharges&quot; are for Standard Model plus three right-handed neutrino fermion content. Use the bunzip2 program to unpack the larger files with a bz2 suffix.</p> <p>The files searchU1.cpp and searchU1.h contain C++ files (in the 2014 standard) to produce the solutions. runme.sh is a bash script that compiles the programs and then runs it several times, once to produce each file.</p> <p>filterNeut.cpp contains an example program that reads in one of the solution lists, applies a filter to it, and only prints out solutions that satisfy the filter.</p> <p>These data and programs are based on this paper:&nbsp;https://arxiv.org/abs/1812.04602</p> <p>&nbsp;</p>

opencc-by-4.0Dec 2018View details →
zenodo40/100

Validation of experimental charge-density refinement strategies: when do we overfit?

<p>A cross-validation method is supplied to judge between various strategies in multipole <a href="http://reference.iucr.org/dictionary/Refinement">refinement</a> procedures. Its application enables straightforward detection of whether the <a href="http://reference.iucr.org/dictionary/Refinement">refinement</a> of additional parameters leads to an improvement in the model or an overfitting of the given data. For all tested data sets it was possible to prove that the multipole parameters of atoms in comparable chemical environments should be constrained to be identical. In an automated approach, this method additionally delivers parameter distributions of <em>k</em> different refinements. These distributions can be used for further error diagnostics, <em>e.g.</em> to detect erroneously defined parameters or incorrectly determined reflections. Visualization tools show the variation in the parameters. These different refinements also provide rough estimates for the standard deviation of topological parameters.</p> <p>published in IUCrJ (2017). 4, 420&ndash;430</p> <p>Raw diffraction data, integration, scaling, corrections and final refinements of structures <strong>1</strong> an <strong>2</strong> are provided.</p> <p>&nbsp;</p>

opencc-by-4.0Sep 2019View details →
zenodo40/100

Helsinki Parking and Charging Spot data from bIoTope EU project

<p>Parking place and EV charging data model / data set created in bIoTope EU project (https://biotope-project.eu) for Helsinki Smart Equipment, Parking and Charging use case, as shown e.g. in the video at&nbsp;https://youtu.be/6DKz1URGamE</p> <p>The data is described using the Open Data Format (O-DF) standard (https://publications.opengroup.org/c14a), even though many features from the version 2.0 of that standard (to be published end 2019) have been used.&nbsp;</p>

opencc-by-4.0Nov 2019View details →
zenodo40/100

Data for "Orthogonal phase transfer of oppositely charged FeII4L6 cages"

<p>The data deposited herein supports the manuscript entitled "Orthogonal phase transfer of oppositely charged FeII4L6 cages". Data includes raw UV-Vis, and raw and processed NMR. Data is saved under experiment codes which are explained in the "Data Summary" file.</p>

opencc-by-4.0Aug 2024View details →

ScienceDex guides

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Allen Brain Atlas

Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.

allen-brain-atlas
neuroscienceopenDocumentation, web resources, and API references are available online.
Last verified 2026-04-30Open record

Annotated Behaviour and Observability Dataset (ABODe)

ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.

abode-home-cage
behavioral-neuroscienceopenThe DataShare record exposes download links for annotations, documentation, license text, and the zipped per-snippet data directory.
Last verified 2026-04-30Open record

DANDI Archive for NWB datasets

DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.

dandi-nwb
electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
Last verified 2026-04-30Open record

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.

ibl
behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

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.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record