Auf Feynmans Spuren (2006)
- Autor:
- Autor USP: CAPELLE, KLAUS WERNER - IFSC
- Unidade: IFSC
- Subjects: FÍSICA; ENSINO (PESQUISA)
- Language: Alemão
- Imprenta:
- Source:
- Título: Physik Journal
- ISSN: 1617-9439
- Volume/Número/Paginação/Ano: v.5, n.5, p. 22-24, Mai, 2006
-
ABNT
CAPELLE, Klaus. Auf Feynmans Spuren. Physik Journal, v. 5, n. 5, p. 22-24, 2006Tradução . . Disponível em: https://www.pro-physik.de/sites/default/files/pdf/articles/2018-11/prophy23602article_ISSART23602DE.pdf. Acesso em: 17 jan. 2026. -
APA
Capelle, K. (2006). Auf Feynmans Spuren. Physik Journal, 5( 5), 22-24. Recuperado de https://www.pro-physik.de/sites/default/files/pdf/articles/2018-11/prophy23602article_ISSART23602DE.pdf -
NLM
Capelle K. Auf Feynmans Spuren [Internet]. Physik Journal. 2006 ;5( 5): 22-24.[citado 2026 jan. 17 ] Available from: https://www.pro-physik.de/sites/default/files/pdf/articles/2018-11/prophy23602article_ISSART23602DE.pdf -
Vancouver
Capelle K. Auf Feynmans Spuren [Internet]. Physik Journal. 2006 ;5( 5): 22-24.[citado 2026 jan. 17 ] Available from: https://www.pro-physik.de/sites/default/files/pdf/articles/2018-11/prophy23602article_ISSART23602DE.pdf - A bird's-eye view of density-functional theory
- Exchange and correlation energies of the three-dimensional interacting electron gas in a magnetic field
- Competition between local potentials and attractive particle-particle interactions in superlattices
- Generator coordinates: a new road towards dynamics and excitations in DFT
- Friedel oscillations in one-dimensional metals: analytical study and evidence of sel-interaction error in DFT for the Hubbard model
- Energia do estado fundamental no modelo de Heisenberg para cadeias de spin com ligações alternadas e com defeitos locais
- Study of Friedel oscillations in models of one-dimensional metals
- Empirical analysis of the Lieb-Oxford lower bound on the exchange-correlation energy
- Bethe-Ansatz DFT applied to fermionic gases in optical traps
- Quantitative determination of the Hubbard model phase diagram from optical lattice experiments by two-parameter scaling
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