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79 results for “dipping”

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zenodo48/100

The oxygen initial dip in the brain of anesthetized and awake mice

<p>Datasets containing the data used to generate the figures and results from <a href="https://doi.org/10.1073/pnas.2200205119"><em>The oxygen initial dip in the brain of anesthetized and awake mice</em>, Aydin et al. (PNAS, 2022)</a>, along with the corresponding MATLAB code on <a href="https://github.com/alike-aydin/InitialDip_AydinEtAl">GitHub</a>. Download the file, and unzip it in the same folder as the scripts from the GitHub repository.</p>

opencc-by-4.0Dec 2021View details →
zenodo44/100

DIPS-Plus: The Enhanced Database of Interacting Protein Structures for Interface Prediction

<p>This dataset contains replication data for the paper titled &quot;DIPS-Plus: The Enhanced Database of Interacting Protein Structures for Interface Prediction&quot;. The dataset consists of pickled Pandas DataFrame files, along with training, validation, and (for DB5-Plus) test&nbsp;filename lists for cross-validation, that can be used to develop and evaluate&nbsp;protein interface prediction models. This dataset also contains the externally generated residue-level PSAIA and HH-suite3 features for users&#39; convenience (e.g. raw MSAs and profile HMMs for each protein complex).&nbsp;Our GitHub repository linked in the &quot;Additional notes&quot; metadata section below provides more details on how we parsed through these files to create our cross-validation&nbsp;datasets. The GitHub repository&nbsp;for DIPS-Plus&nbsp;also includes scripts that can be used&nbsp;to impute missing feature values and convert the&nbsp;final &quot;raw&quot; complexes into DGL-compatible graph objects. Since our final DGL graph representation for each complex uses PyTorch tensors in its construction of&nbsp;residue&nbsp;embeddings, the final representation of each complex can easily be adapted to fit the users&#39; needs (e.g. feeding a complex&#39;s&nbsp;2D residue feature tensors into a convolutional neural network).</p>

opencc-by-4.0Jun 2021View details →
zenodo44/100

DIPS-Plus: The Enhanced Database of Interacting Protein Structures for Interface Prediction (Supplementary Data)

<p>This dataset contains supplementary replication data for the paper titled &quot;DIPS-Plus: The Enhanced Database of Interacting Protein Structures for Interface Prediction&quot;. In particular, it contains a new version of our `final_raw_dips.tar.gz` protein pair representations which now contain (1) residue-level&nbsp;annotations for intrinsic disorder regions (IDRs) as well as (2) a copy of each protein pair representation in the HDF5 file format for programming language-agnostic read capabilities. In addition, this record also contains (3) raw MSAs (in HDF5 file format)&nbsp;generated for each protein pair using Jackhmmer and AlphaFold&#39;s small version of the Big Fantastic Database (BFD). Lastly, this record contains (4) PDB metadata derived for each DIPS-Plus complex using Graphein&#39;s PDBManager&nbsp;API&nbsp;as well as (5) structure-based (i.e., FoldSeek-based) training and validation splits of the dataset&#39;s complexes in the form of respective text files containing the file paths of complexes assigned to each split.</p>

opencc-by-4.0Jun 2023View details →
zenodo40/100

DipPo - (Dip)oles and (Po)larizabilities

<p>DipPo - (Dip)oles and (Po)larizabilities<br> <br> DipPo contains scripts and data regarding effects of molecular and electronic geometries<br> on dipoles and polarizabilities.</p>

openapache2.0Feb 2022View details →
zenodo40/100

Text-fig. 2. Moderately dipping Oligocene layers of the Mány Member in the eastern part of the Strázsa Hill quarry, SW of Zsámbék. The claymarl and siltstone layers cover sandstone and conglomerate. The arrow indicates the position of fossiliferous layers. Photo: László Fodor. in The Late Oligocene Macroflora Of Zsámbék, Central Hungary

Text-fig. 2. Moderately dipping Oligocene layers of the Mány Member in the eastern part of the Strázsa Hill quarry, SW of Zsámbék. The claymarl and siltstone layers cover sandstone and conglomerate. The arrow indicates the position of fossiliferous layers. Photo: László Fodor.

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

Linked collectors and determiners for: Coleção Zoológica da Universidade Federal de Mato Grosso do Sul - Diptera (ZUFMS-DIP).

Natural history specimen data linked to collectors and determiners held within, "Coleção Zoológica da Universidade Federal de Mato Grosso do Sul - Diptera (ZUFMS-DIP)". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/5bc1642a-0b2a-45b6-a170-6772d03a2de5">https://bionomia.net/dataset/5bc1642a-0b2a-45b6-a170-6772d03a2de5</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/5bc1642a-0b2a-45b6-a170-6772d03a2de5">https://gbif.org/dataset/5bc1642a-0b2a-45b6-a170-6772d03a2de5</a>. Formatted as a Frictionless Data package.

opencc-zeroJan 2024View details →
zenodo40/100

Factors contributing to deep slab dip angles in reconstructions of past mantle flow

<p>This repository contains data files for the manuscript &#39;Factors contributing to deep slab dip angles in reconstructions of past mantle flow&#39; submitted to Earth-Science Reviews by J. Weber and N. Flament</p> <p>The provided data are vote maps of global tomographic models and global temperature anomalies for case C10.</p> <p>The directory &#39;pswave_votemap&#39; contains vote maps of 33 global P- and S-wave tomographic models at 32 selected depths between 0 km and 1040 km (depths were selected to match that available for global mantle flow models). The name convention is &#39;pswave_votemap_$depth.nc&#39; and the file format is NetCDF CF Convention 1.7.</p> <p>The directory &#39;pwave_votemap&#39; contains vote maps of 15 global P-wave tomographic models at 32 selected depths between 0 km and 1040 km (depths were selected to match that available for global mantle flow models). The name convention is &#39;pwave_votemap_$depth.nc&#39; and the file format is NetCDF CF Convention 1.7.</p> <p>The directory &#39;swave_votemap&#39; contains vote maps of 18 global S-wave tomographic models at 11 selected depths between 396 km and 1040 km (depths were selected to match that available for global mantle flow models). The name convention is &#39;swave_votemap_$depth.nc&#39; and the file format is NetCDF CF Convention 1.7.</p> <p>The directory &#39;C10&#39; contains the present-day temperature anomalies predicted for case C10 at 32 depths between 396 km and 1040 km. The name convention is &#39;C10_dimensional_temperature_anomaly_$depth.nc&#39; or &#39;C10_non_dimensional_temperature_anomaly_$depth.nc&#39; and the file format is NetCDF CF Convention 1.7. Dimensional temperature anomalies were obtained by multiplying non-dimensional temperature anomalies by 3100.</p> <p>These files were created using version 6 of the Generic Mapping Tools (GMT6; Wessel et al., 2019).</p> <p>Please contact nflament@uow.edu.au if you have questions about these files, or require further materials.</p>

opencc-by-4.0Aug 2023View details →
dryad36/100

Facile preparation of high conductive silver electrodes by dip-coating followed by quick sintering

<p>With polyol-synthesized silver nanoparticles (AgNPs) as raw materials, the silver electrodes with high conductivity were fabricated via dip-coating method followed by sintering process, and the effects of dip-coating and sintering process on the conductivity and surface roughness of silver electrodes were investigated in detail. The silver film with a thickness of 1.97 μm and a roughness of about 2 nm can be prepared after dip-coated at a pulling rate of 500 μm·s<sup>-1</sup> for 40 coating times. The non-conductive dip-coated silver films are transformed into conductive silver electrodes after conventional sintering in muffle oven, infrared sintering and microwave sintering, respectively. Compared with high sintering temperature and long sintering time of conventional sintering and infrared sintering, microwave sintering can achieve the quick sintering of silver films to fabricate high conductive silver electrodes. The silver electrodes with a sheet resistance of 0.75 Ω·sq<sup>-1</sup> and a surface roughness of less than 1 nm can be obtained after microwave-sintered at 500 W for 50 s. The adjustable dip-coating method followed by quick microware sintering is an appropriate approach to prepare high conductive AgNPs based electrodes for organic light-emitting diode (OLED) or other devices.</p>

opencc-zeroJan 2020View details →
zenodo36/100

ISNAS-DIP: Image-Specific Neural Architecture Search for Deep Image Prior

<p>Dataset for our CVPR paper: &quot;ISNAS-DIP: Image-Specific Neural Architecture Search for Deep Image Prior&quot;.</p> <p>&nbsp;</p> <p>The arxiv paper can be found:&nbsp;https://arxiv.org/abs/2111.15362&nbsp;</p>

opencc-by-4.0Jun 2022View details →
zenodo36/100

An attached table for "The Correlation between Dip Width and Peak Flux in Cir X-1"

<p>This is an attached table for "The Correlation between Dip Width and Peak Flux in Cir X-1".<br>The table introduces derived phases from Bayesian blocks technique and peak fluxes in Cir X-1.</p> <p>orbit: the orbits of Cir X-1 in Nicolson(2007)'s ephemeris<br>dip_in,dip_in_err,dip_out,dip_out_err: the dip-in/out phases and errors<br>dip_width,dip_width_err: the dip width and its error in every orbit<br>peak_flux,peak_flux_err: the peak flux and its error in every orbit, which are in units of Crab</p>

opencc-by-4.0Aug 2024View details →
zenodo36/100

Raw research data supporting "Assembly of fillable microrobotic systems by microfluidic loading with dip sealing"

<p>Raw research data supporting Sun, R., Song, X., et al., &quot;Assembly of fillable microrobotic systems by microfluidic loading with dip sealing.&quot; Advanced Materials. DOI: 10.1002/adma.202207791.</p>

opencc-by-4.0Dec 2022View details →
ClinicalTrials.gov36/100

Dipeptidyl Peptidase-4 Inhibition in Psoriasis Patients With Diabetes (DIP): A Randomized Clinical Trial.

ClinicalTrials.gov study NCT01991197. IPD Sharing: Not stated. Countries: 1. Publications: 23.

restrictedIPD-UNDECIDEDFeb 2026View details →
dryad36/100

Facile preparation of high conductive silver electrodes by dip-coating followed by quick sintering

Open the record for dataset details and reuse information.

publicJan 2020View details →
zenodo32/100

Data set for all Bifurcation diagrams of 'Two-dimensional patterns in dip coating - first steps on the continuation path'

<p>Data set for all bifurcation diagrams of&nbsp;&nbsp;&#39;Two-dimensional patterns in dip coating - first steps on the continuation path&#39; by Phong-Minh Timmy Ly, Kevin David Joachim Mitas, Uwe Thiele, Svetlana V. Gurevich published as Physica D 409, 132485 (2020).&nbsp;</p> <p>DOI: <a href="http://doi.org/10.1016/j.physd.2020.132485">10.1016/j.physd.2020.132485</a></p> <p>Specifically: Figures 1, 2, 5, 6 and 7</p>

opencc-by-4.0Mar 2020View details →
dryad32/100

Data from: Shelf life and quality of tomato (Lycopersicon esculentum Mill.) fruits as affected by neem leaf extract dipping and beeswax coating

<p>The data was generated to investigate the effect of Beeswax (BW) coating and Neem leaf extract (NLE) dipping on the shelf life and quality of tomatoes (<em>Lycopersicon esculentum</em> Mill.) over a storage period of 36 days. A factorial combination of four levels of Neem plant extract (control, 15%, 20% and 25%) and four levels of beeswax coating (control, 3%, 6% and 9%) storage treatments with three replications were applied on fully matured green tomatoes in the study. The treatments were arranged in a randomized complete block design. The average storage room air temperature and relative humidity varied from 15.2 ºC to 20.4 ºC and 55.53% to 69.46% RH during 36 days of storage period at Haramaya University from February to April 2020. Data were recorded on 4, 8, 12, 16, 20, 24, 28, 32, and 36 days after storage. Data on physiological loss in weight, chemical compositions (total soluble solids, pH, titratable acidity, and ascorbic acid), decay (%), percentage marketability, and shelf life were assessed at an interval of four days during 36 days of storage period under ambient conditions.</p>

opencc-zeroApr 2022View details →
zenodo32/100

Large zero bias peaks and dips in a four-terminal thin InAs-Al nanowire device

<p>This file contains the raw data and processing codes of the paper &#39;Large zero bias peaks and dips in a four-terminal thin InAs-Al nanowire device&#39;.</p>

opencc-by-4.0Jul 2021View details →
zenodo32/100

Fig. 9 Diagnostic and putative RDF fragments. a DIP-V-16113 in Ornamental feathers in Cretaceous Burmese amber: resolving the enigma of rachis-dominated feather structure

Fig. 9 Diagnostic and putative RDF fragments. a DIP-V-16113 overview and close-up of the tip of the feather (inset); b DIP-V-17232 overview with prominent rachidial ridge and deep C-shaped rachis; c DIP-V-15130 overview; d DIP-V-15137 overview; e DIP-V-15141 overview; f DIP-V-15142 overview; g DIP-V-15159 overview; h DIP-V-16178 overview, arrowheads mark lateral margins of rachis at both ends. Scale bars = 2 mm in (a and h); 1 mm in (b); 5 mm in (c–g)

opennotspecifiedDec 2018View details →
zenodo32/100

Fig. 8 Diagnostic RDF fragments. a DIP-V-15125 in Ornamental feathers in Cretaceous Burmese amber: resolving the enigma of rachis-dominated feather structure

Fig. 8 Diagnostic RDF fragments. a DIP-V-15125 overview, arrowhead marks twist in rachis; b details of barbs and barbules in DIP-V-15125; c DIP- V-16115 overview; d DIP-V-17121 overview; e detail of DIP-V-17121 rachis and barbs, where they are cross-cut by polished surface of amber (left margin of d), arrow indicates rachidial ridge; f DIP-V-17138 overview; g DIP-V-17127 feather section; h DIP-V-16207 overview. Scale bars = 1 mm in (a); 0.5 mm in (b); 5 mm in (c, d and g); 0.2 mm in (e); 2 mm in (f and h)

opennotspecifiedDec 2018View details →
zenodo32/100

Fig. 7 Paired RDFs. a DIP-V-16105 in Ornamental feathers in Cretaceous Burmese amber: resolving the enigma of rachis-dominated feather structure

Fig. 7 Paired RDFs. a DIP-V-16105 overview; b DIP-V-17177 overview of paired, bent feathers, with arrows marking ventral deflection point; c DIP-V-17194 overview; d detail of DIP-V-17194 barbs; e MCAC-0322 overview; f detail of vane bases in MCAC-0322 (lower feather in e). Scale bars = 5 mm in (a–c and e); 2 mm in (d and f)

opennotspecifiedDec 2018View details →
zenodo32/100

Fig. 6 Paired RDFs. a DIP-V-16164 in Ornamental feathers in Cretaceous Burmese amber: resolving the enigma of rachis-dominated feather structure

Fig. 6 Paired RDFs. a DIP-V-16164 partial overview, with RDF rachises indicated by arrowheads; b oblique section through one rachis in DIP-V- 16164; c distorted rachis near base of DIP-V-16164; d DIP-V-16186 overview; e barbs of DIP-V-16186, arrowhead indicating hooklets; f DIP-V-17137 overview, arrow indicating taphonomic tear in vane, arrowhead indicating region with numerous plumulaceous feathers; g details of rachis, barbs, and barbules in DIP-V-17137 RDF (on right side of f), with bristle-like feather floating in amber between arrowheads. Scale bars = 5 mm in (a, d and f); 1 mm in (b and c); 0.2 mm in (e); 0.5 mm in (g)

opennotspecifiedDec 2018View details →

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dandi-nwb
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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.

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