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AuthorsNameSourceYearVolumeNumberPages
101Kaji Y.,
Miwa Y.,
Nakajima R.,
Tsuji H.,
Tsukada T.
Status of JAERI material performance database (JMPD) and analysis of irradiation assisted stress corrosion cracking (IASCC) data
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J.Nucl.Sci.and Techn.20003711949-958
102Adkins C.,
Bankhead M.,
Besmann T.,
Corcoran E.,
Costa D.,
Dumas J.C.,
Dupin N.,
Geiger E.,
Gosse S.,
Gueneau C.,
Hania R.,
Kennedy J.R.,
Kjellqvist L.,
Kurata M.,
Lee B.O.,
Ogata T.,
Piro M.H
TAF-ID: An international thermodynamic database for nuclear fuels applications
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CALPHAD2021V.72P.102212/1-21
103Downs R.T.,
Hall-Wallace M.
The American Mineralogist Crystal Structure Database
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Amer.Mineral.2003881247-250
104Watson D.G.The Cambridge Structural Database (CSD): Current Activities and Future Plans
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J.Res.NIST19961013227-229
105Allen F.H.,
Groom C.R.
The Cambridge Structural Database in Retrospect and Prospect
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Angew.Chem.Int.Ed.2014533662-671
106Allen F.H.The Cambridge Structural Database: a quarter of a million crystal structures and rising
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Acta Crystallogr.2002583380-388
107Chen X.,
Li X.,
Su H.,
Xie G.,
Yang C.
The development of a materials database in China
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Data Science J.20076467-473
108Allen F.H.,
Davies J.E.,
Galloy J.J.,
Johnson O.,
Kennard O.,
Macrae C.F.,
Mitchell E.M.,
Mitchell G.F.,
Smith M.,
Watson D.G.
The development of versions 3 and 4 of the Cambridge structural database system
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J.Chem.Inf. and Comput.Sci.1991312187-204
109Bergerhoff G.,
Brown I.D.,
Hundt R.,
Sievers R.
The Inorganic Crystal Structure Data Base
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J.Chem.Inf. and Comput.Sci.19832366-69
110Hellenbrandt M.The inorganic crystal structure database (ICSD) – present and future
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Crystallogr.Rev.200410117-22
111Deplanque R.,
Lister P.,
Maass R.,
Nebel A.,
Olbrich G.,
Tolle U.
The Integrated Gmelin Information System New developments in information processing
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Anal.Chim.Acta1992265305-312
112Allmann R.,
Hinek R.
The introduction of structure types into the Inorganic Crystal Structure Database ICSD
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Acta Crystallogr.200763412-417
113Iwata S.,
Onodera N.,
Villars P.
The Linus Pauling file (LPF) and its application to materials design
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J.Alloys and Compounds19982791-7
114Cholia S.,
Dagdelen J.,
Dwaraknath S.,
Horton M.,
Huck P.,
Jain A.,
Montoya J.,
Ong S.P.,
Persson K.A.,
Winston D.,
Zimmermann N.E.R.
The Materials Project: Accelerating Materials Design Through Theory-Driven Data and Tools
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In: Andreoni W., Yip S. (eds) Handbook of Materials Modeling. Springer, Cham2018P.1-34
115Effenberg G.The MSIT® workplace, access to materials chemistry data and knowledge
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6th International Scholl-Conference "Phase Diagrams in Materials Science".14-20 October, 2001. Technical Program & Abstracts. Kyiv. National Academy of Sciences of Ukraine20011
116Osthols E.E.,
Wanner H.H.
The NEA thermochemical data base project. OECD Nuclear Energy Agency
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The NEA thermochemical data base project. OECD Nuclear Energy Agency200021 p.
117Boboshin I.N.,
Varlamov V.V.
The new ENSDF search system NESSY: IBM/PC nuclear spectroscopy database
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Nucl.Instrum. and Methods in Physics Res.A1996369113-119
118Hermann K.,
Van Hove M. A.,
Watson P.R.
The NIST Surface Structure Database –SSD version 4
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Acta Crystallogr.2002583338-342
119Aykol M.,
Doak J.W.,
Kirklin S.,
Meredig B.,
Ruhl S.,
Saal J.E.,
Thompson A.,
Wolverton C.
The Open Quantum Materials Database (OQMD): assessing the accuracy of DFT formation energies
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npj Comp.Mater.2015V.1Article number: 15010P.1-15
120Blokhin E.,
Villars P.
The PAULING FILE Project and Materials Platform for Data Science: From Big Data Toward Materials Genome
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Handbook of Materials Modeling, Springer Int. Publ. AG2018p.1-26

Records found: 173. 1-20, 21-40, 41-60, 61-80, 81-100, 101-120, 121-140, 141-160, 161-173


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