Unraveling microscopic origins of complex behavior of carbon and sodium with neural-network potentials

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Author
Date
2011Type
- Doctoral Thesis
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https://doi.org/10.3929/ethz-a-007158022Publication status
publishedExternal links
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ETHSubject
HOCHDRUCKCHEMIE; HOCHTEMPERATURCHEMIE; KOHLENSTOFF (CHEMISCHE ELEMENTE); NATRIUM (CHEMISCHE ELEMENTE); MOLEKULARE DYNAMIK (MOLEKÜLPHYSIK); POTENTIAL, POTENTIALFUNKTIONEN (THEORETISCHE PHYSIK); NEURONALE NETZWERKE + KONNEKTIONISMUS (KÜNSTLICHE INTELLIGENZ); PHASENGLEICHGEWICHTE (PHYSIKALISCHE CHEMIE); GRAPHIT + DIAMANTEN + DIAMANT-ÄHNLICHER KOHLENSTOFF (ANORGANISCHE CHEMIE); HIGH-PRESSURE CHEMISTRY; HIGH TEMPERATURE CHEMISTRY; CARBON (CHEMICAL ELEMENTS); SODIUM (CHEMICAL ELEMENTS); MOLECULAR DYNAMICS (MOLECULAR PHYSICS); POTENTIAL, POTENTIAL FUNCTIONS (THEORETICAL PHYSICS); NEURAL NETWORKS + CONNECTIONISM (ARTIFICIAL INTELLIGENCE); PHASE EQUILIBRIUM (PHYSICAL CHEMISTRY); GRAPHITE + DIAMONDS + DIAMOND-LIKE CARBON (INORGANIC CHEMISTRY)Organisational unit
02020 - Dep. Chemie und Angewandte Biowiss. / Dep. of Chemistry and Applied Biosc.03575 - Parrinello, Michele (ehemalig) / Parrinello, Michele (former)
Notes
Diss., Eidgenössische Technische Hochschule ETH Zürich, Nr. 19877, 2011.More
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