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144 results for “ISO”
Cosmogenic tritium data modeled by MIROC5-iso
<p>This data set contains model values from 3 simulations produced with the isotope-enabled atmosphere GCM MIROC5-iso, in which tritium has been implemented. The simulations are for the period 1979-2018 and were performed with different natural tritium production rates. A complete description can be found in Cauquoin, A., Fourré, É., Landais, A., Okazaki, A., and Yoshimura, K.: Modeling natural tritium in precipitation and its dependence on decadal variations of solar activity using the atmospheric general circulation model MIROC5-iso, <em>J. Geophys. Res. Atmos.</em>, <strong>129</strong>, e2023JD039745, <a href="https://doi.org/10.1029/2023JD039745" target="_blank" rel="noopener">https://doi.org/10.1029/2023JD039745</a>, 2024.</p> <p>The 3 different simulations are:</p> <ul> <li>MB2009_3H_cte: with constant long-term average tritium production rate values over time from Masarik and Beer, 2009 (<a href="https://doi.org/10.1029/2008JD010557">https://doi.org/10.1029/2008JD010557</a>);</li> <li>CRAC_3H_cte: with constant long-term average production rate values over time from CRAC:3H model (<a href="https://doi.org/10.1029/2020JD033147">https://doi.org/10.1029/2020JD033147</a>);</li> <li>CRAC_3H_solar: with monthly mean tritium production rate variations from CRAC:3H model due to modulation of GCR by heliomagnetic and geomagnetic fields over time.</li> </ul> <p>The model data can be downloaded as netcdf files:</p> <ul> <li>*.197901-201812.monmean.TU_precip.nc: monthly mean tritium in precipitation over the period 1979-2018;</li> <li>*.200801-201812.timmean.TU_precip.nc: mean tritium in precipitation over the period 2008-2018;</li> <li>*.200801-201812.ymonmean.TU_precip.nc: multi-year monthly mean tritium in precipitation over the period 2008-2018;</li> <li>*.200801-201812.timmean.TU_q.nc: mean tritium in water vapor from 1000 to 10 hPa over the period 2008-2018;</li> <li>MIROC5-iso.197901-201812.monmean.precip.nc: monthly precipitation rate (mm/month) over the period 1979-2018 (same for the three simulations);</li> <li>MIROC5-iso.200801-201812.ymonmean.precip.nc: multi-year monthly precipitation rate (mm/month) over the period 2008-2018 (same for the three simulations);</li> <li>MIROC5-iso.200801-201812.timmean.precip.nc: mean precipitation rate (mm/month) over the period 2008-2018 (same for the three simulations);</li> <li>MIROC5-iso.200801-201812.timmean.q.nc: mean specific humidity (kg/kg) from 1000 to 10 hPa over the period 2008-2018;</li> <li>CRAC_3H_solar.197901-201812.monmean.fldmean.cosmo_HTO_prod.nc: average cosmogenic HTO production monthly variations over the period 1979-2018 according to CRAC_3H_solar simulation.</li> </ul>
Modeled tritium in precipitation from Fukushima Daiichi Nuclear Power Plant accident simulations with MIROC5-iso
<p>This data set contains modeled tritium in precipitation values from different simulations of Fukushima Daiichi Nuclear Power Plant (FDNPP) accident produced with MIROC5-iso. The simulations are for the period 2011-20121 and were with different anthropogenic tritium source functions. A complete description can be found in Cauquoin, A., Gusyev, M., Bong, H., Okazaki, A., and Yoshimura, K.: Modeling tritium release to the atmosphere during the Fukushima Daiichi Nuclear Power Plant accident and application to estimating post-accident water system transit times, <em>Environ. Sci. Pollut. Res.</em>, <a href="https://doi.org/10.1007/s11356-025-35919-1" target="_blank" rel="noopener">https://doi.org/10.1007/s11356-025-35919-1</a>, 2025. </p> <p>The simulations are named fukushima_accident_{jra55, era5}_total_gas_{div100, div200, div500, div1000}, with {jra55, era5} describing a nudging to JRA-55 or ERA5 reanalyses, and with {div100, div200, div500, div1000} describing the anthropogenic tritium input function used in DatasetS1_table_tritium_release_atm_fukushima_input.csv.</p> <p>The modeled values of tritium in Hiso river water, Minamisoma spring and artesian groundwater, calculated using MIROC5-iso tritium in monthly precipitation in Fukushima, scaled Tokyo GNIP data, and tritium measurements in preciptation at Fukushima as input of the TracerLPM model, are included too. </p> <p>The model data can be downloaded as netcdf, csv or xlsx files:</p> <ul> <li>*_daymean.prcpTU.nc: daily mean tritium in precipitation over the period 2011-2021, expressed in TU;</li> <li>*_monmean.prcpTU.nc: monthly mean tritium in precipitation over the period 2011-2021, expressed in TU;</li> <li>*_daymean.prcp.nc: daily precipitation over the period 2011-2021, expressed in mm/day;</li> <li>*_monmean.prcp.nc: monthly precipitation over the period 2011-2021, expressed in mm/month;</li> <li>*_prcp_daymean.remapnn.csv: daily precitation at nearest grid cells of Tsukuba, Kashiwa, Hongo, Yokosuka, Konan, and Misasa over the period 2011-2012, expressed in mm/day;</li> <li>*_prcp_monmean.remapnn.csv: montly mean precitation at nearest grid cells of Chiba, Niigata, and Fukushima over the period 2011-2021, expressed in mm/month;</li> <li>*_prcpTU_daymean.remapnn.csv: tritium in daily precitation at nearest grid cells of Tsukuba, Kashiwa, Hongo, Yokosuka, Konan, and Misasa over the period 2011-2012, expressed in TU;</li> <li>*_prcpTU_monmean.remapnn.csv: tritium in montly precitation at nearest grid cells of Chiba, Niigata, and Fukushima over the period 2011-2021, expressed in TU;</li> <li>DatasetS1_table_tritium_release_atm_fukushima_input.csv: Table of anthropogenic tritium daily release, based on reconstructed iodine-131 total gas emissions from <a href="https://doi.org/10.5194/acp-15-1029-2015" target="_blank" rel="noopener">Katata et al. (2015)</a>, used as inputs for MIROC5-iso.</li> <li>TracerLPM_fukushima_with_peak_jra55.xlsx: Tritium input function Cin(t) and tritium concentration in Hiso river water, Minamisoma spring and artesian groundwater modeled by TracerLPM. Simulation div100 nudged to JRA-55 was used for constructing Cin(t).</li> <li>TracerLPM_fukushima_without_peak_jra55.xlsx: Tritium input function Cin(t) and tritium concentration in Hiso river water, Minamisoma spring and artesian groundwater modeled by TracerLPM. Simulation ctrl nudged to JRA-55 (without FDNPP peak) was used for constructing Cin(t).</li> <li>TracerLPM_fukushima_with_peak_era5.xlsx: Tritium input function Cin(t) and tritium concentration in Hiso river water, Minamisoma spring and artesian groundwater modeled by TracerLPM. Simulation div100 nudged to ERA5 was used for constructing Cin(t).</li> </ul>
Terrestrial Ecosystem Research Network (TERN) Metadata Profile of ISO 19115-3:2016 and ISO 19157-2:2016
<p>This is the first release of Terrestrial Ecosystem Research Network (TERN) Metadata Profile of ISO 19115-3:2016 and ISO 19157-2:2016. The profile will be used by TERN data editorial system (SHaRED v4).</p>
ISO TR 21965 Information and documentation -- Records management in enterprise architecture - Archi tool project file
<p>This file is a project file, in XML format, of the freeware too Archi (version 4.2.0) modeling the ArchiMate diagrams present in the ISO/DTR 21965:2019.</p> <p>Archi tool is freely available from https://www.archimatetool.com</p> <p>The purpose of the ISO/TR 21965:2019 is to provide a common reference for Records managers (or information managers in general) and Enterprise architects about requirements for records processes and systems. The goal is to establish the Records manager as a key stakeholder in Enterprise Architecture, by expressing the related Records Management Viewpoint.</p> <p>This viewpoint makes use of the concepts of “concerns” and “system of concerns” as defined in ISO/IEC/IEEE 42010:2011, and of the concepts of “stakeholders”, “viewpoint, “view” and “model” as also defined coherently in that standard and in the main Enterprise Architecture references of TOGAF and ArchiMate. With reference to ArchiMate, the main scope of this viewpoint is the Motivational aspect and the layers Strategy and Business, with minor considerations for the layers of Application and Implementation. The Open Group Architecture Framework (TOGAF) is used to inform how this Records Management Viewpoint relates to the Architecture Development Method (ADM).</p> <p>The edition of the file is work of the author, but the intelectual content of the file is the resulting of the work of the ISO working group responsible by the production of the Technical Report: ISO/TC 46/SC 11/WG 14 - Records requirements in Enterprise Architecture</p> <p> </p>
Raw Data for the Article "Cyclopentadienone triisocyanide iron complexes: general synthesis and crystal structures of tris(2,6-dimethylphenyl isocyanide)(η4-tetraphenylcyclopentadienone)iron and tris(naphthalen-2-yl isocyanide)(η4-tetraphenylcyclopentadienone)iron acetone hemisolvate"
<p>This data set contains the raw data (NMR, HRMS, Elemental analysis) for the article "Cyclo­penta­dienone triisocyanide iron complexes: general synthesis and crystal structures of tris­­(2,6-di­methyl­phenyl isocyanide)(η<sup>4</sup>-tetra­phenyl­cyclo­penta­dienone)iron and tris­­(naphthalen-2-yl iso­cyanide)(η<sup>4</sup>-tetra­phenyl­cyclo­penta­dienone)iron acetone hemisolvate" published in <em>Acta Crystallographica Section E: Crystallographic Communications</em>, DOI:</p> <p><a href="https://doi.org/10.1107/S205698902300498X">https://doi.org/10.1107/S205698902300498X</a></p>
Buried Interface Engineering Enables Efficient and 1,960-hour Isos-L-2i Stable Inverted Perovskite Solar Cells
<p>High-performance perovskite solar cells (PSCs) typically require interfacial passivation, yet this is challenging for the buried interface, owing to the dissolution of passivation agents during the deposition of perovskites. Here, we overcome this limitation with in-situ buried interface passivation – achieved via directly adding a cyanoacrylic acid-based molecular additive, namely BT-T, into the perovskite precursor solution. Classical and ab-initio molecular dynamics simulations reveal that BT-T spontaneously may self-assemble at the buried interface during the formation of the perovskite layer on a nickel oxide hole transporting layer. The preferential buried interface passivation results in facilitated hole transfer and suppressed charge recombination. In addition, residual BT-T molecules in the perovskite layer enhance its stability and homogeneity. We report a power-conversion efficiency (PCE) of 23.48% for 1.0 cm2 inverted-structure PSCs. The encapsulated PSC retains 95.4% of its initial PCE following 1,960-hour maximum power point tracking under continuous light illumination at 65°C (i.e., ISOS-L-2I protocol). Our demonstration of operating-stable PSCs under accelerated ageing conditions represents a step closer to the commercialization of this emerging technology.</p>
FMR1 Iso-Seq intermediate files: FLNC and nFL reads
<p>Over 40% of males and ~16% of female carriers of <em>FMR1</em> premutation allele (55-200 CGG repeats) are at risk for developing Fragile X-associated Tremor/Ataxia Syndrome (FXTAS), an adult onset neurodegenerative disorder. On the other hand, about 20% of female carriers will develop Fragile X-associated Primary Ovarian Insufficiency (FXPOI), in addition to a number of adult-onset clinical problems (<em>FMR1</em> associated disorders). Marked elevation in <em>FMR1</em> mRNA levels have been observed with premutation alleles resulting in RNA toxicity. This molecular mechanism has been proposed as the leading molecular mechanism to explain the phenotypes observed in premutation carriers.</p> <p>The <em>FMR1</em> gene, as many housekeeping genes, undergoes alternative splicing. Using Single Molecule, Real-Time (SMRT) sequencing and qRT-PCR we have recently reported that the relative abundance of all <em>FMR1</em> mRNA isoforms is significantly increased in the premutation group compared to controls. In this study, we have further investigated the transcriptional <em>FMR1</em> isoforms distribution pattern in different tissues including muscle, brain, heart and testes from 3 individuals with premutation allele and FXTAS and compared them to the isoform profiles of age-matched controls. Here we report on the identification of novel isoforms, some of which are observed only in premutation carriers and might play a role in the pathogenesis of FXTAS.</p> <p>Our findings suggest that the characterization of expression levels of the different <em>FMR1</em> isoforms is fundamental for understanding the regulation of the <em>FMR1</em> gene as well as for elucidating the mechanism(s) by which “toxic gain of function” of the <em>FMR1</em> mRNA may play a role in FXTAS and/or in the other <em>FMR1</em>-associated conditions. In addition to the elevated levels of <em>FMR1</em> isoforms, the altered abundance/ratio of the corresponding FMRP isomers may affect the overall function of FMRP in premutations.</p>
FMR1 Iso-Seq: per sample intermediate files
<p><em>FMR1</em> premutation carriers (55-200 CGG repeats) are at risk for developing Fragile X-associated Tremor/Ataxia Syndrome (FXTAS), an adult onset neurodegenerative disorder. In addition, 20 % of female carriers will develop Fragile X-associated Primary Ovarian Insufficiency (FXPOI), in addition to a number of clinical problems affecting premutation carriers throughout their life span. Marked elevation in <em>FMR1</em> mRNA levels have been observed with premutation alleles resulting in RNA toxicity, the leading molecular mechanism proposed for the <em>FMR1</em> associated disorders observed in premutation carriers.</p> <p>The <em>FMR1</em> gene, undergoes alternative splicing and we have recently reported that the relative abundance of all <em>FMR1</em> mRNA isoforms is significantly increased in premutation carriers.</p> <p>In this study, we further investigated the transcriptional <em>FMR1</em> isoforms distribution pattern in different tissues and identified a total of 49 isoforms, some of which observed only in premutation carriers and which might play a role in the pathogenesis of FXTAS.</p> <p>Further, we investigated the distribution pattern and expression levels of the <em>FMR1</em> isoforms in asymptomatic premutation carriers and in those with FXTAS and found no significant difference between the two groups.</p> <p>Our findings suggest that the characterization of the expression levels of the different <em>FMR1</em> isoforms is fundamental for understanding the regulation of the <em>FMR1</em> gene as imbalance in their expression could lead to an altered functional diversity with neurotoxic consequences. Their characterization will also help to elucidating the mechanism(s) by which “toxic gain of function” of the <em>FMR1</em> mRNA may play a role in FXTAS and/or in the other <em>FMR1</em>-associated conditions.</p>
FMR1 Iso-Seq: final files
<p>seng, E., Tang, H.-T., AlOlaby, R. R., Hickey, L. & Tassone, F. Altered expression of the FMR1 splicing variants landscape in premutation carriers. <em>BBA - Gene Regulatory Mechanisms</em> <strong>1860,</strong> 1117–1126 (2017).</p> <p><em>FMR1</em> premutation carriers (55-200 CGG repeats) are at risk for developing Fragile X-associated Tremor/Ataxia Syndrome (FXTAS), an adult onset neurodegenerative disorder. In addition, 20 % of female carriers will develop Fragile X-associated Primary Ovarian Insufficiency (FXPOI), in addition to a number of clinical problems affecting premutation carriers throughout their life span. Marked elevation in <em>FMR1</em> mRNA levels have been observed with premutation alleles resulting in RNA toxicity, the leading molecular mechanism proposed for the <em>FMR1</em> associated disorders observed in premutation carriers.</p> <p>The <em>FMR1</em> gene, undergoes alternative splicing and we have recently reported that the relative abundance of all <em>FMR1</em> mRNA isoforms is significantly increased in premutation carriers.</p> <p>In this study, we further investigated the transcriptional <em>FMR1</em> isoforms distribution pattern in different tissues and identified a total of 49 isoforms, some of which observed only in premutation carriers and which might play a role in the pathogenesis of FXTAS.</p> <p>Further, we investigated the distribution pattern and expression levels of the <em>FMR1</em> isoforms in asymptomatic premutation carriers and in those with FXTAS and found no significant difference between the two groups.</p> <p>Our findings suggest that the characterization of the expression levels of the different <em>FMR1</em> isoforms is fundamental for understanding the regulation of the <em>FMR1</em> gene as imbalance in their expression could lead to an altered functional diversity with neurotoxic consequences. Their characterization will also help to elucidating the mechanism(s) by which “toxic gain of function” of the <em>FMR1</em> mRNA may play a role in FXTAS and/or in the other <em>FMR1</em>-associated conditions.</p>
University of Leicester TROPOMI Stable Water Vapour Isotopologue (H2O-ISO) Prototype Product (Vesrion 1.0.0)
<p>This repository holds the prototype level 2 TROPOMI stable isotopologue product for June 2019 used in the study:</p> <p>Thurnherr, I., Sodemann, H., Trent, T., Werner, M., and Boesch, H., 2024. Evaluating TROPOMI δD column retrievals with in situ airborne measurements using expanded collocation criteria, Earth Space Science, in review</p> <p>For further details, please refer to the project website (https://s5pinnovationh2o-iso.le.ac.uk/), which contains the Algorithm Theoretical Baseline Document (ATBD) and Product User Guide (PUG). The final prototype product (version 1.0.2) is freely available from T. Trent (University of Leicester) upon request.</p>
F1 Maize Iso-Seq - Final & Intermediate files
<p>===============================================================================</p> <p>Variant Phasing and Haplotypic Expression from Single-molecule Sequencing in Maize</p> <p>===============================================================================</p> <p>Maize is a diploid species with very high genetic diversity. Haplotype phasing of genetic variants in maize is important for interpretation of the genome, population genetic and functional genomic analysis of allelic activity. However, due to splicing variability and sequencing length limitation, phasing at isoform level are always very challenge. Here, we developed a tool called ‘Iso-Phase’ to phase the isoforms in hybrids and present the first isoforms phasing study in maize using inbred lines B73 and Ki11, as well as their reciprocal crosses from full-length single-molecule sequencing. Our results show that maize parental lines and hybrid lines display different splicing activity, and 6,847 genes can be phased through Iso-Phase in two reciprocal hybrids using embryo, endosperm and root tissues. We identified parental origin isoforms in maize hybrids, different novel isoforms between maize parent and hybrid lines, provides measures of haplotypic expression that increase power and accuracy in studies of allelic expression. It is the first study of phased full-length isoforms in maize, as well as in plants, which provides insights about maize and plant heterosis at allele-specific full-length transcriptional level. The approach used in this study also provide important information for many other phasing studies in different species. </p>
Environmental data and fractional abundance of iso and branched GDGT data used to train the BIGMaC algorithm
<p>Location, environmental data -depth (m), elevation, distance to land (km), Mean Annual Air Temperature (C), and pH-, as well as fractional abundance of isoprenoid and branched GDGTs for unpublished samples used for the training of the Branched and Isoprenoid GDGT Machine learning Classification (BIGMaC) algorithm (Martínes-Sosa, et al., in prep).</p>
Data from: Fine-scale reconstruction of pelagic fish migration by iso-logging of eye lens
Open the record for dataset details and reuse information.
ISO-17 (QCArchive View Formatted)
<p>Data curated by the QCArchive team, originally sourced from quantum-machine.org.</p> <p>Molecular dynamics trajectories of 129 isomers of C<sub>7</sub>H<sub>10</sub>O<sub>2</sub>, each containing 5,000 snapshots at a resolution of 1 fs. All molecules are neutral singlets. Calculations are performed at the PBE-TS level of theory. </p> <p>For more information, see http://qcarchive.molssi.org/apps/ml_datasets/.</p>
Mean transit times simulations with the EcH2O-iso model
<p>Input, forcing and and output files, as well as running and plotting scripts used in the numerical experiments with the EcH<sub>2</sub>O-iso critical zone model described in Kuppel et al. manuscript "<strong>Catchment storage control on the transit times of ecohydrological fluxes</strong>" submitted for publication to Geophysical Research Letters.</p> <p>------------------------------------------------------------------------------<br> <strong>Ensemble simulations</strong></p> <p>NetCDF maps and time series used in the analysis can be found in the <em>Output_w30Yspin</em> directory. Time series covers the whole simulations (02/2013 - 08/2016 + 30-yr spinup) while maps are output<br> The ensemble simulations are launch by executing the jobRuns shellscript. It calls the Multitool_* python scripts , which uses (see also options in the header of Multitool_Main.py):<br> - a global definition file located in the root directory, here <em>defRuns_w30Yspin.py</em><br> - a EcH2O-iso executable; here the <em>ech2o_iso </em>file has been compiled for a linux environment. The source code of EcH<sub>2</sub>O-iso is available <a href="https://bitbucket.org/sylka/ech2o_iso/">here</a> (branch master_2.0 used in this study), and the associated documentation <a href="https://ech2o-iso.readthedocs.io/en/latest/">here</a>.<br> - <em>Input_Configs</em> contains template configurations files for EcH2O-iso: one for general simulations (<em>config_w30Yspin.ini</em>), one for options regarding the "tracking" (i.e. water isotopes and ages) mode (<em>configTrck_w30Yspin.ini</em>)<br> - <em>Input_Forcings</em> contains the meteorological forcing files needed for simulations<br> - <em>Input_Params</em> contains the ensemble parameter file used for the simulations<br> - <em>Input_Maps_100m</em> contains the maps defining the simulated domain at the 100-m resolution used in the study, as well as the vegetation-specifics files, some of which are modified using the values contained in the ensemble parameter file.</p> <p>--------------------------------------------------------------------------<br> <strong>Plots</strong></p> <p>The R plotting scripts found in the <em>Plotting_scripts </em>directory generate the basic plots used in the submitted manuscript (see examples in <em>Plots </em>directory), with some post-editing using a vector graphics editor.</p>
Desulfated iso-Glucomoringin and Glucolepigramin. NMR Data.
<p>NMR data file for compounds "Desulfated iso-Glucomoringin" and" Desulfated glucolepigramine", Bruker format.</p> <p>The Compound-d2_DS-isoGMG folder in the Compound-d2_DS-isoGMG.zip file contains 8 folders:</p> <p>2: <sup>1</sup>H (NS=8)<br> 3: COSY (<sup>1</sup>H-<sup>1</sup>H)<br> 4: TOCSY (<sup>1</sup>H-<sup>1</sup>H)<br> 5: ROESY (<sup>1</sup>H-<sup>1</sup>H)<br> 6: <sup>13</sup>C<br> 7: HSQC (<sup>13</sup>C-<sup>1</sup>H)<br> 8: HMBC (<sup>13</sup>C-<sup>1</sup>H)<br> 103: <sup>1</sup>H (NS=128)</p> <p>The Compound-d4_DS-3-OH-Bz-GL folder in the Compound-d4_DS-3-OH-Bz-GL.zip file contains 6 folders:</p> <p>1: <sup>1</sup>H<br> 2: <sup>13</sup>C<br> 3: COSY (<sup>1</sup>H-<sup>1</sup>H)<br> 4: HSQC (<sup>13</sup>C-<sup>1</sup>H)<br> 5: HMBC (<sup>13</sup>C-<sup>1</sup>H)<br> 6: ROESY (<sup>1</sup>H-<sup>1</sup>H)</p> <p>The Supplementary Information file is also included, as well as the .mol files of Compound-d2_DS-isoGMG and Compound-d4_DS-3-OH-Bz-GL</p>
Iso-Seq ToFU2 experimental RC0 dataset 1 cell
<p>1 Sequel cell of RC0 (Lexogen SIRV + ERCC UHRR) Iso-Seq data for testing ToFU2.</p> <p> </p>
Meaningful and physically consistent efficiency definition for positive displacement pumps - continuation of the critical review of ISO 4391 and ISO 4409
<p>ISO 4391:1984 gives the common efficiency definition for positive displacement machines. ISO 4409:2019 uses this efficiency definition to specify the procedure for efficiency measurements. If the machine conditions do not correspond with an incompressible flow due to operation at high pressure levels, the compressibility of the fluid and the dead volume of a pump must be taken into account. On this point, ISO 4391:1984 is physically inconsistent.</p> <p>Achten et. al. address this issue in their paper at FPMC 2019 presenting a critical review of ISO 4409:2007. They introduce new definitions of the overall efficiency as well as the mechanical-hydraulic efficiency. At the same time, they question the validity of the volumetric efficiency definition. Li and Barkei continue on this issue in their paper at FPMC 2020 and give a new efficiency definition based on the introduction of a new quantity Φ which describes the volume specific enthalpy of the conveyed fluid.</p> <p>The motivation of this paper is to contribute to the ongoing and fruitful discussion. Our approach starts with the most general efficiency definition, namely the isentropic efficiency. Subsequently, we make assumptions concerning the fluid properties with respect to the compressibility of the conveyed fluid. On the basis of the ideal cycle of a positive displacement pump and the p-v diagram, we derive physically consistent and more meaningful representations of the overall, the mechanical-hydraulic and the volumetric efficiency that address the inconsistency of ISO 4391:1984. Furthermore, we compare our findings with the existing results of Achten et. al. and Li and Barkei.</p>
The SIAEW Corpus of Spanish Iso-Accented English Words
<p>The SIAEW Corpus (Spanish Iso-Accented English Words) is a collection of monosyllabic English words in which one segment (the 'target') is replaced with its Spanish-accented counterpart, at one of 5 gradations of accentedness. Steps are equally-spaced in accentedness as judged by native listeners. The procedure used to generate the Corpus is described in detail in Pérez Ramón, García Lecumberri and Cooke (submitted to Interspeech 2022); for a preprint contact rperez.ram@gmail.com. </p> <p>Please refer to the document SIAEW.pdf for a longer description of the SIAEW Corpus contents.</p>
Upscaling tracer-aided ecohydrological EcH2O-iso model in larger catchments: model setup and model simulations in the Selke catchment, central Germany
<p>This data repository is associated with the scientific article "Upscaling Tracer-aided Ecohydrological Modeling to Larger Catchments: Implications for Process Representation and Heterogeneity in Landscape Organization" by Yang et al. (submitted to Water Resources Research).</p> <p>This dataset includes the model setup information of the EcH2O-iso model in the Selke catchment, central Germany (./model_setup_Selke), and all model simulations and data analyses that are necessary to rebuilt the work (./model_sim_data).</p> <p>Please also refer to https://github.com/XYang-EcoHydroWQ/EcH2O-iso_largescale for corresponding model source code of the EcH2O-iso model, including modifications for larger-scale modeling.</p>
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.
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.
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.
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.