PACS numbers

11.10.Ef Lagrangian and Hamiltonian approach
  1. L.V. Prokhorov, S.V. Shabanov “Phase space of mechanical systems with a gauge groupSov. Phys. Usp. 34 (2) 108–140 (1991)
    11.15.−q, 11.10.Ef, 12.20.−m, 03.65.Sq, 03.65.Ge (all)
  2. I.S. Aranson, K.A. Gorshkov et alNonlinear dynamics of the localized states of multidimensional fieldsSov. Phys. Usp. 33 (4) 300–302 (1990)
    11.10.Lm, 11.10.Kk, 11.10.Ef (all)
  3. L.V. Prokhorov “Quantization of the electromagnetic fieldSov. Phys. Usp. 31 151–162 (1988)
    12.20.Ds, 11.10.Ef (all)
  4. M.K. Volkov, V.N. Pervushin “Quantum field theory with a chiral Lagrangian and low-energy meson physicsSov. Phys. Usp. 19 894–908 (1976)
    11.10.Ef, 11.20.Fm, 11.30.Rd (all)
  5. V.I. Ogievetskii, L. Mezincescu “Boson-fermion symmetries and superfieldsSov. Phys. Usp. 18 960–982 (1975)
    11.30.−j, 11.10.Ef (all)
  6. L.D. Faddeev, V.N. Popov “Covariant quantization of the gravitational fieldSov. Phys. Usp. 16 777–788 (1974)
    04.60.Gw, 11.15.Bt, 11.10.Ef, 14.80.−j, 04.60.Ds (all)
  7. D.I. Blokhintsev, B.M. Barbashov “Use of Functional Integrals in Quantum Mechanics and Field TheorySov. Phys. Usp. 15 193–204 (1972)
    03.65.Db, 11.10.Ef, 03.65.Ca, 11.10.Cd, 02.30.Rz (all)
  8. M.K. Volkov, G.V. Efimov “Second international conference on nonlocal quantum field theorySov. Phys. Usp. 14 223–227 (1971)
    01.10.Fv, 11.10.Lm, 11.10.Gh, 11.10.Ef, 11.55.−m (all)
  9. V.B. Adamskii “Local invariance and the theory of compensating fieldsSov. Phys. Usp. 4 607–616 (1962)
    11.10.Ef, 11.30.Cp, 14.40.Aq, 12.15.−y (all)
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