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228 results for “uniformity”

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zenodo32/100

A Uniform Retrieval Analysis of Ultra-cool Dwarfs. IV. A Statistical Census from 50 Late-T Dwarfs

<p>Posterior distributions for all model runs of A Uniform Retrieval Analysis of Ultra-cool Dwarfs. IV. A Statistical Census from 50 Late-T Dwarfs</p> <p>To view, simply download the file and extract the zipfile.</p> <p>Directory structure is as follows:</p> <p><strong>BEST_FIT_SPECTRA</strong>: Figures for best-fit model spectra for all 50 objects.</p> <p><strong>CLOUD_OPTICAL_DEPTH: </strong>Derived tau_cloud optical depth posteriors from the cloud model.</p> <p><strong>CORNER_PLOTS</strong>: Corner plots for all 50 objects.</p> <p><strong>TEMPERATURE_PROFILES</strong>: Retrieved temperature profiles for all 50 objects. Overlaid are relevant condensation curves (legend found in the text of the publication).</p>

opencc-by-4.0May 2022View details →
zenodo32/100

Distribution. SW Brazil, known only from two sites, the type locality in Rondonia and Juruena (Mato Grosso State)Descriptive notes Head-body ¢.230 mm, tail ¢.80 mm. No specific data are available for body weight. Rondon's Tuco-tuco is medium-sized. Dorsal hairs are pale at bases and sepia at tips. Head and venterare slightly rufous, and tail is uniform brown. Skull is robust and depressed. Inter-maxillaries are also robust, with lateral protruding expansion; maxillaries are narrow; and mandible is strong and wide. Supraorbital process protrudes, and traverse occipital-temporal crest is straight. Bullae are inflated. in Ctenomyidae

Distribution. SW Brazil, known only from two sites, the type locality in Rondonia and Juruena (Mato Grosso State)Descriptive notes Head-body ¢.230 mm, tail ¢.80 mm. No specific data are available for body weight. Rondon's Tuco-tuco is medium-sized. Dorsal hairs are pale at bases and sepia at tips. Head and venterare slightly rufous, and tail is uniform brown. Skull is robust and depressed. Inter-maxillaries are also robust, with lateral protruding expansion; maxillaries are narrow; and mandible is strong and wide. Supraorbital process protrudes, and traverse occipital-temporal crest is straight. Bullae are inflated.

opennotspecifiedJul 2016View details →
zenodo32/100

Lophuromys medicaudatus, L. woosnami, and L. luteogaster are in subgenus Kivumys and woosnami species group. Monotypic. Distribution. Endemic to the Albertine Rift, occurring around Lake Kivu in E DR Congo and Rwanda and SW Uganda (Bwindi). Descriptive notes. Head—body 92-112 mm, tail 73-95 mm, ear 15-19 mm, hindfoot 18-23 mm; weight 29-43 g. Similar to other species in subgenus Kivumys, the Western Rift Brush-furred Rat has unspeckled pelage, and tail ¢.85% of head-body length. Dorsum is uniform dark brown-olive, and venter is orange. Females have three pairs of mammae. Habitat. Mountain swamps and mountain forests at elevations of 1850-2500 m. Food and Feeding. The Western Rift Brush-furred Rat is omnivorous; diets contain 30-100% arthropods, mollusks, seeds, and fruits. Breeding. Female Western Rift Brush-furred Rats can have 1-2 embryos. Pregnant females were observed in February, April, and July. Activity patterns. The Western Rift Brush-furred Rat is terrestrial. Movements, Home range and Social organization. No information. Status and Conservation. Classified as Vulnerable on The IUCN Red List. The Western Rift Brush-furred Rat has never been found in modified secondary environment and is quite rare. Bibliography. Dieterlen (1976b, 1987 2013g), Kasangaki et al. (2003), Verheyen et al. (1996). in Muridae

Lophuromys medicaudatus, L. woosnami, and L. luteogaster are in subgenus Kivumys and woosnami species group. Monotypic. Distribution. Endemic to the Albertine Rift, occurring around Lake Kivu in E DR Congo and Rwanda and SW Uganda (Bwindi). Descriptive notes. Head—body 92-112 mm, tail 73-95 mm, ear 15-19 mm, hindfoot 18-23 mm; weight 29-43 g. Similar to other species in subgenus Kivumys, the Western Rift Brush-furred Rat has unspeckled pelage, and tail ¢.85% of head-body length. Dorsum is uniform dark brown-olive, and venter is orange. Females have three pairs of mammae. Habitat. Mountain swamps and mountain forests at elevations of 1850-2500 m. Food and Feeding. The Western Rift Brush-furred Rat is omnivorous; diets contain 30-100% arthropods, mollusks, seeds, and fruits. Breeding. Female Western Rift Brush-furred Rats can have 1-2 embryos. Pregnant females were observed in February, April, and July. Activity patterns. The Western Rift Brush-furred Rat is terrestrial. Movements, Home range and Social organization. No information. Status and Conservation. Classified as Vulnerable on The IUCN Red List. The Western Rift Brush-furred Rat has never been found in modified secondary environment and is quite rare. Bibliography. Dieterlen (1976b, 1987 2013g), Kasangaki et al. (2003), Verheyen et al. (1996).

opennotspecifiedNov 2017View details →
zenodo32/100

Uniform button

Uniform button with a double-headed eagle Source: Objaverse 1.0 / Sketchfab

opencc-bySep 2021View details →
zenodo32/100

Uniform button

Uniform button with a double-headed eagle Source: Objaverse 1.0 / Sketchfab

opencc-bySep 2021View details →
zenodo32/100

Simulated performance data: MILC, LAMMPS, and uniform random traffic patterns on 72-ndoe dragonfly network

<p>Data generated from an old, private fork of the CODES simulation toolkit: https://github.com/codes-org/codes</p> <p>Data dictionary: https://github.com/kevinabrown/codes/wiki/Dragonfly-Dally-DEBUG-Metrics</p>

opencc-by-4.0Apr 2024View details →
zenodo32/100

Videos of the evolution of the projected band structures of Hexagonal phosphorus monolayer on Au(111) surface during uniform adsorption

<p>Attached to this DOI are videos of the evolution of the band structure and the band structure projections during the uniform adsorption of the HexP-monolayer on the Au(111) surface.</p> <p>The HexP-monolayer starts at 5 angstr&ouml;m above its relaxed position and ends at its final relaxed position on the Au(111) surface.</p> <p>In total, 19 interpolation structures have been created (both ends included).</p> <p>On the left is the unit-cell of the simulated structure, with phosphorus atoms in orange and gold atoms in yellow.</p> <p>Band structure calculations and projections have been done using the Quantum ESPRESSO framework.</p>

opencc-by-4.0Apr 2024View details →
zenodo32/100

code for: The cerebellum computes frequency dynamics for motions with numerical precision and cross-individual uniformity

<p>MATLAB codes for data analyses performed in "The cerebellum computes frequency dynamics for motions with numerical precision and cross-individual uniformity".</p>

opencc-by-4.0Jul 2024View details →
zenodo32/100

Approximate solutions for ideal dam-break sediment-laden flows on uniform slopes: Data deposit

<p>This data deposit contains all the datasets needed to draw Figures 3-18 in the paper &quot;Approximate solutions for ideal dam-break sediment-laden flows on uniform slopes&quot;, which is now under consideration for publication in Water Resources Research. &nbsp;</p>

opencc-by-4.0Feb 2018View details →
zenodo32/100

Simulated paired-end reads for sample 1 (uniform)

<p>Simulated paired-end reads for sample 1 (uniform coverage version) of Swimming Downstream</p>

opencc-by-4.0Jun 2018View details →
zenodo32/100

Simulated paired-end reads for "Swimming downstream" workflow - uniform coverage (10-12)

<p>Simulated paired-end reads for &quot;Swimming downstream&quot; workflow</p>

opencc-by-4.0Feb 2019View details →
zenodo32/100

Simulated paired-end reads for "Swimming downstream" workflow - uniform coverage (7-9)

<p>Simulated paired-end reads for &quot;Swimming downstream&quot; workflow</p>

opencc-by-4.0Feb 2019View details →
zenodo32/100

Multi-UAV Uniform Sweep Coverage in Unknown Environments: A Mergeable Nervous System (MNS)-Based Random Exploration

<p><strong>Abstract:</strong><br>This paper investigates the problem of multi-UAV uniform sweep coverage, where a homogeneous swarm of UAVs must collectively and evenly visit every portion of an unknown environment for a sampling task without having access to their own location and orientation. Random walk-based exploration strategies are practical for such a coverage scenario as they do not rely on localization and are easily implementable in robot swarms. We demonstrate that the Mergeable Nervous System (MNS) framework, which enables a robot swarm to self-organize into a hierarchical ad-hoc communication network using local communication, is a promising control approach for random exploration in unknown environments by UAV swarms. To this end, we propose an MNS-based random walk approach where UAVs self-organize into a line formation using the MNS framework and then follow a random walk strategy to cover the environment while maintaining the formation. Through simulations, we test the efficiency of our approach against several decentralized random walk-based strategies as benchmarks. Our results show that the MNS-based random walk outperforms the benchmarks in terms of the time required to achieve full coverage and the coverage uniformity at that time, assessed across both the entire environment and within local regions.</p>

opencc-by-4.0Sep 2024View details →
zenodo32/100

On the Piezomagnetism of Magnetoactive Elastomeric Cylinders in Uniform Magnetic Fields: Height Modulation in the Vicinity of an Operating Point by Time-Harmonic Fields

<p>This is the data set for all the figures in the paper with the title: "On the Piezomagnetism of Magnetoactive Elastomeric Cylinders in Uniform Magnetic Fields: Height Modulation in the Vicinity of an Operating Point by Time-Harmonic Fields" published in the Polymers journal (<a title="doi" href="https://doi.org/10.3390/polym16192706">doi:10.3390/polym16192706</a>).</p>

opencc-by-4.0Sep 2024View details →
zenodo32/100

Research data supporting: "Extended sampling of macromolecular conformations from uniformly distributed points on multidimensional normal mode hyperspheres"

<p>This repository contains protein structures generated by the approach "distributed points Molecular Dynamics using Normal Modes" (dpMDNM). dpMDNM is an enhanced-sampling approach that allows large protein conformational sampling based on normal mode (NM) vector combinations.</p> <p>Input parameter and equilibrated files for Lysozyme and CYP3A4 are provided, including their respective ensemble of structures after conformational exploration combining from 2 to 8 NMs.</p> <p>For more information, please visit the <a href="https://github.com/antonielgomes/dpMDNM">dpMDNM GitHub repository</a>.</p>

opencc-by-4.0Oct 2024View details →
zenodo32/100

FIGURE 2 in Nodularia (Cyanobacteria, Nostocaceae): a phylogenetically uniform genus with variable phenotypes

FIGURE 2. Micrographs of selected strains from the individual subclusters in the phylogenetic tree (Fig. 1). A. Nodularia sp. Saline 2, subcluster I. B. Nodularia sp. strain Saline 2, subcluster I. C. Nodularia sphaerocarpa HBU25, subcluster I. D. Nodularia moravica CCALA 797 with two types of trichome morphology, subcluster II. E. Nodularia armorica L7, subcluster II. F. Nodularia sphaerocarpa HBU22, subcluster III. G. Nodularia harveyana BOB1, subcluster III. H. Nodularia harveyana SAG 44.85, subcluster IV I. Nodularia cf. harveyana HBU26, outside the subclusters. Akinetes are indicated by an asterisk, and heterocytes are indicated by an arrow Scale bar = 10 μm.

opennotspecifiedJun 2014View details →
zenodo32/100

FIGURE 1 in Nodularia (Cyanobacteria, Nostocaceae): a phylogenetically uniform genus with variable phenotypes

FIGURE 1. Bayesian inference (BI) phylogenetic tree inferred from a 79 × 1917 nucleotide alignment (partial 16S rDNA+rbcLX) representing the current GenBank data on heterocytous cyanobacteria and focusing on the genus Nodularia. Branch supports (percent posterior probablity of BI branches, 1000 pseudoreplications for maximum likelihood [ML] and maximum parsimony [MP]) ≥ 50% are provided in the following form: BI/ML/MP. Nodes with 100% support from all methods are marked with an asterisk. In the tree, strains of the genus Nodularia formed a monophyletic cluster, within which four subclusters (I–IV) could be distinguished (as described in the text).

opennotspecifiedJun 2014View details →
zenodo32/100

Research data supporting: K. Tashiro, K. Katayama, K. Tamaki, L. Pesce, N. Shimizu, H. Takagi, R. Haruki, R. Heenan, M. J. Hollamby, G. M. Pavan, S. Yagai, "Non-uniform Photoinduced Unfolding of Supramolecular Polymers Leading to Topological Block Nanofibers"

<p>Raw research data supporting the article&nbsp;K. Tashiro, K. Katayama, K. Tamaki, L. Pesce, N. Shimizu, H. Takagi, R. Haruki, R. Heenan, M. J. Hollamby, G. M. Pavan, S. Yagai, &quot;Non-uniform Photoinduced Unfolding of Supramolecular Polymers Leading to Topological Block Nanofibers&quot;.</p>

opencc-by-4.0Jul 2021View details →
dryad32/100

Green spectrofluorimetric assay of dantrolene sodium via reduction method: application to content uniformity testing

<p>The green analysis has turned out to be of a great value in all areas, including pharmaceutical analysis. Thus, it is extremely important to consider the environmental influence of each step in developing any analysis technique.  The present work illustrates a validated, simple and green spectrofluorimetric method for the analysis of dantrolene sodium. The developed process is characterized by being of high sensitivity as well as being relatively inexpensive. The suggested technique based on the formation of a highly fluorescent product of dantrolene sodium via its reduction by the aid of Zn/HCl system. The resulting fluorophore showed a powerful fluorescence at λ<sub>em</sub> 344 nm after excitation at λ<sub>ex</sub> 279 nm. Calibration graph revealed a great linear regression (r = 0.9998) within concentration ranging from 0.05 to 2.0 µg mL<sup>−1</sup>. The suggested method had a very low detection and quantification limit of 0.007 ng mL<sup>−1</sup> and 0.019 ng mL<sup>−1</sup>, respectively. The applied technique was effectively used in the determination of dantrolene sodium in its pharmaceutical preparations. The results were compared with those from using the official USP method and they were in a good agreement. Moreover, content uniformity testing of dantrolene sodium in capsules was performed adopting the investigated technique with satisfying results. The greenness of the suggested technique was confirmed by the three standard assessment tools. Therefore, the developed technique can be used in the routine quality control analysis of dantrolene sodium with minimum harmful impact on nature or individuals.</p>

opencc-zeroAug 2021View details →
zenodo32/100

FIGURE. Types of capsule indumentum: A) absent (E. serpens subsp. serpens), B) scattered, with patent hairs (E. chamaesyce), C) located on keels, with patent hairs (E. prostrata), D) uniform, with adpressed hairs (E. maculata). in Synopsis of Euphorbia section Anisophyllum (Euphorbiaceae) in Italy, with an insight on variation of distribution over time in Tuscany

FIGURE. Types of capsule indumentum: A) absent (E. serpens subsp. serpens), B) scattered, with patent hairs (E. chamaesyce), C) located on keels, with patent hairs (E. prostrata), D) uniform, with adpressed hairs (E. maculata).

opennotspecifiedFeb 2021View details →

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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
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Last verified 2026-04-29Open record

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