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Commit f5cd1853 authored by Maxence Larrieu's avatar Maxence Larrieu
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Execution du pipeline. Actualisation des dois et des graphes.

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client,count,name,year,url
cern.zenodo,724,Zenodo,2013,https://zenodo.org/
inist.sshade,469,Solid Spectroscopy Hosting Architecture of Databases and Expertise,2019,https://www.sshade.eu/
cern.zenodo,725,Zenodo,2013,https://zenodo.org/
inist.sshade,470,Solid Spectroscopy Hosting Architecture of Databases and Expertise,2019,https://www.sshade.eu/
inist.osug,238,Observatoire des Sciences de l'Univers de Grenoble,2014,http://doi.osug.fr
figshare.ars,232,figshare Academic Research System,2016,http://figshare.com/
dryad.dryad,156,DRYAD,2018,https://datadryad.org
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......@@ -6027,3 +6027,5 @@ The calculations were carried out using t4gpd (https://pypi.org/project/t4gpd/).
Conservation and Tourism scenarios) or by training the model on specific
areas of the past time series (only used for the Conservation scenario).",mds,True,findable,0,0,0,0,0,2024-03-08T13:28:51.000Z,2024-03-08T13:28:52.000Z,dryad.dryad,dryad,"LULC,modelling,Alps,scenarios,FOS: Earth and related environmental sciences,FOS: Earth and related environmental sciences","[{'subject': 'LULC'}, {'subject': 'modelling'}, {'subject': 'Alps'}, {'subject': 'scenarios'}, {'subject': 'FOS: Earth and related environmental sciences', 'subjectScheme': 'fos'}, {'subject': 'FOS: Earth and related environmental sciences', 'schemeUri': 'http://www.oecd.org/science/inno/38235147.pdf', 'subjectScheme': 'Fields of Science and Technology (FOS)'}]",['307008659 bytes'],
10.5281/zenodo.10801510,NeoGeographyToolkit/StereoPipeline: 2024-03-10-daily-build,Zenodo,2024,,Software,Creative Commons Attribution 4.0 International,Recent additions log: https://stereopipeline.readthedocs.io/en/latest/news.html,api,True,findable,0,0,0,1,0,2024-03-10T09:19:59.000Z,2024-03-10T09:19:59.000Z,cern.zenodo,cern,,,,
10.5281/zenodo.10803259,NeoGeographyToolkit/StereoPipeline: 2024-03-11-daily-build,Zenodo,2024,,Software,Creative Commons Attribution 4.0 International,Recent additions log: https://stereopipeline.readthedocs.io/en/latest/news.html,api,True,findable,0,0,0,1,0,2024-03-11T08:22:07.000Z,2024-03-11T08:22:07.000Z,cern.zenodo,cern,,,,
10.26302/sshade/experiment_jf_20201104_001,"Visible near infrared spectra of salt crusts in Andean Salars, Chile",SSHADE/Mirabelle (OSUG Data Center),2021,en,Dataset,"Any use of downloaded SSHADE data in a scientific or technical paper or a presentation is free but you should cite both SSHADE and the used data in the text ( 'first author' et al., year) with its full reference (with its DOI) in the main reference section of the paper (or in a special 'data citation' section) and, when available, the original paper(s) presenting the data.","Visible near infrared spectra of sulfates and chlorides salt crusts in Andean Salars, Chile",mds,True,findable,0,0,2,0,0,2024-03-11T18:37:50.000Z,2024-03-11T18:37:50.000Z,inist.sshade,mgeg,"field measurement,biconical reflection,macroscopic,Vis,Visible,NIR,Near-Infrared,reflectance factor,Halite,Albite,Anhydrite,Ankerite,Gypsum,Sylvite,Aragonite,Pinnoite,Quartz,Dolomite,Ulexite,Thenardite,Nobleite,Glauberite,Anorthite,Bassanite,Calcite,Quartz_alpha,Blodite,Natron,Mirabilite,mineral,natural terrestrial,halide,tektosilicate,sulfate,carbonate,borate","[{'subject': 'field measurement', 'subjectScheme': 'main'}, {'subject': 'biconical reflection', 'subjectScheme': 'main'}, {'subject': 'macroscopic', 'subjectScheme': 'main'}, {'subject': 'Vis', 'subjectScheme': 'variables'}, {'subject': 'Visible', 'subjectScheme': 'variables'}, {'subject': 'NIR', 'subjectScheme': 'variables'}, {'subject': 'Near-Infrared', 'subjectScheme': 'variables'}, {'subject': 'reflectance factor', 'subjectScheme': 'variables'}, {'subject': 'Halite', 'subjectScheme': 'name'}, {'subject': 'Albite', 'subjectScheme': 'name'}, {'subject': 'Anhydrite', 'subjectScheme': 'name'}, {'subject': 'Ankerite', 'subjectScheme': 'name'}, {'subject': 'Gypsum', 'subjectScheme': 'name'}, {'subject': 'Sylvite', 'subjectScheme': 'name'}, {'subject': 'Aragonite', 'subjectScheme': 'name'}, {'subject': 'Pinnoite', 'subjectScheme': 'name'}, {'subject': 'Quartz', 'subjectScheme': 'name'}, {'subject': 'Dolomite', 'subjectScheme': 'name'}, {'subject': 'Ulexite', 'subjectScheme': 'name'}, {'subject': 'Thenardite', 'subjectScheme': 'name'}, {'subject': 'Nobleite', 'subjectScheme': 'name'}, {'subject': 'Glauberite', 'subjectScheme': 'name'}, {'subject': 'Anorthite', 'subjectScheme': 'name'}, {'subject': 'Bassanite', 'subjectScheme': 'name'}, {'subject': 'Calcite', 'subjectScheme': 'name'}, {'subject': 'Quartz_alpha', 'subjectScheme': 'name'}, {'subject': 'Blodite', 'subjectScheme': 'name'}, {'subject': 'Natron', 'subjectScheme': 'name'}, {'subject': 'Mirabilite', 'subjectScheme': 'name'}, {'subject': 'mineral', 'subjectScheme': 'family'}, {'subject': 'natural terrestrial', 'subjectScheme': 'origin'}, {'subject': 'halide', 'subjectScheme': 'compound type'}, {'subject': 'tektosilicate', 'subjectScheme': 'compound type'}, {'subject': 'sulfate', 'subjectScheme': 'compound type'}, {'subject': 'carbonate', 'subjectScheme': 'compound type'}, {'subject': 'borate', 'subjectScheme': 'compound type'}]",['18 spectra'],['ASCII']
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