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Sep 28, 2023 -
A generalized scheme for characterizing orientational correlations in condensed phases of high symmetry molecules: SF6 and C60
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MD5: 5e435bc6f15f156879b4f3edc5d16fbe
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Sep 28, 2023 -
A generalized scheme for characterizing orientational correlations in condensed phases of high symmetry molecules: SF6 and C60
Unknown - 3.3 KB -
MD5: 8c1061777ba888742ddd431a529ebff8
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Sep 28, 2023 -
A generalized scheme for characterizing orientational correlations in condensed phases of high symmetry molecules: SF6 and C60
Unknown - 128.2 MB -
MD5: 9ddd7557354150fb3f4a5db08206f500
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Sep 28, 2023 -
A generalized scheme for characterizing orientational correlations in condensed phases of high symmetry molecules: SF6 and C60
Plain Text - 63 B -
MD5: 38982b0489dc6fa9ce8f871b86bf9e1a
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Sep 28, 2023 -
A generalized scheme for characterizing orientational correlations in condensed phases of high symmetry molecules: SF6 and C60
Tabular Data - 309 B - 10 Variables, 4 Observations - UNF:6:6YcqNnOvuaKFoQxhY2gCQg==
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Sep 28, 2023 -
A generalized scheme for characterizing orientational correlations in condensed phases of high symmetry molecules: SF6 and C60
MS Excel Spreadsheet - 5.3 KB -
MD5: 18ab6fe3e3a98904920f75dad91affa4
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Sep 28, 2023 -
A generalized scheme for characterizing orientational correlations in condensed phases of high symmetry molecules: SF6 and C60
Comma Separated Values - 436 B -
MD5: 43e0068e55a3ff89cef876028f3cb1f1
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Sep 28, 2023 -
A generalized scheme for characterizing orientational correlations in condensed phases of high symmetry molecules: SF6 and C60
MS Excel Spreadsheet - 5.3 KB -
MD5: 9f19939a338a9dc6243d565318039fdd
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Sep 28, 2023 -
A generalized scheme for characterizing orientational correlations in condensed phases of high symmetry molecules: SF6 and C60
C++ Source - 6.8 KB -
MD5: dc4537cf080b2543f0869d157f8e4757
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Jun 28, 2023
Lengyel, Attila; Bazsó, Gábor; Chumakov, Alexandr I.; Nagy, Dénes L.; Hegedűs, Gergő; Bessas, Dimitrios; Horváth, Zsolt E.; Nemes, Norbert M.; Gracheva, Maria A.; Szilágyi, Edit; Sajti, Szilárd; Merkel, Dániel G., 2022, "Synergy effect of temperature, electric and magnetic field on the depth structure of the FeRh/BaTiO3 composite multiferroic", https://hdl.handle.net/21.15109/CONCORDA/LUA07J, ARP, V2
FeRh based composite multiferroic materials have attracted great scientific interest due to their wide variety of possible applications in future nano device technology. In the recent work, a comprehensive study on the depth dependence of the metamagnetic phase transition in FeRh... |