Publikace

Ve výpisu publikací najdete všechny důležité publikační výsledky výzkumu a vývoje našich vědeckých pracovníků od roku 1961.

  1. Off-diagonal disorder by projection operator formalism
    Solid State Commun. 17 (1975) 643
  2. J. Schneider, V. Drchal
    Ferromagnetism for the Hubbard model in the analogy approximation
    phys. status solidi b 68 (1975) 207
  3. V. Capek, J. Mašek
    Non-uniqueness of the heat current operator and the hopping thermoelectric and Nernst Ettingshausen effects in amorphous semiconductors
    Czech. J. Phys. 25 (1975) 526
  4. J. Kudrnovský, J. Petru
    The two band models in the theory of disordered substitutional alloys
    phys. status solidi b 70 (1975) 759
  5. Projection of the UHF ground state wave function of the high-conductivity 1:1 TCNQ salts
    Czech. J. Phys. 25 (1975) 168
  6. J. Málek, R. A. Evarestov, A. N. Ermoskin, B. Hejda, K. Polak
    Role of Population analysis in LCAO-MO theory of transition-metal clusters
    Czech. J. Phys. 25 (1975) 1201
  7. P.Schneider, P. Pokorný
    Comparaison de l'effet de sorption des substances anti-'emissives du siliciure de zirconium, et zirconium et d'alliage 84 per. Zr + 16 per. Al.
    Vide, Le: Les Couches Minces 177/178 (1975) 149-152.
  8. physica status solidi (a) 21 (1974) 329-338.
  9. K. Závěta, V. Roskovec
    WITH ACADEMICIAN BOROVIK-ROMANOV, A.S. ON EXPERIMENTAL AND THEORETICAL PHYSICS
    Československý časopis pro fyziku A 26 (1974) 256-258.
  10. V. Nekvasil, V. ROSKOVEC, F. ZOUNOVA, P. NOVOTNY
    ANISOTROPY OF MAGNETIC-MOMENT OF NEODYMIUM IN GARNETS
    Czech. J. Phys. B 24 (1974) 810 - 821
  11. On the electronic spectrum of the TCNQ chains with 1/4-filled bands
    Czech. J. Phys. 24 (1974) 85
  12. Charge-transfer singlet exciton in 1:1 high conductivity TCNQ ion-radical salts
    Czech. J. Phys. 24 (1974) 293
  13. K. Král, Z. Khas
    On the trimer approximation to the theory of Cs2TCNQ3 electronic structure
    Czech. J. Phys. 24 (1974) 914
  14. P.Schneider, P. Pokorný
    Gettering Capacity of Zirconium Silicide Antiemission Substance as compared with Zirconium and the Zr (84%) + Al (16%) Alloy.
    Tesla Electronics, , 4 , (1974), 116