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Norman Genri Edgarovich

Publications in Math-Net.Ru

  1. Протонный перенос в воде

    Pis'ma v Zh. Èksper. Teoret. Fiz., 122:2 (2025),  93–99
  2. Molecular dynamics study of the structural and diffusion properties of dehydrated layered double aluminum and lithium hydroxide

    Pis'ma v Zh. Èksper. Teoret. Fiz., 118:8 (2023),  609–614
  3. Collective motions of atoms in crystals

    Mat. Model., 35:6 (2023),  37–50
  4. Plasma phase transition

    UFN, 191:11 (2021),  1153–1186
  5. Collective motion of atoms in a superheated crystal and a supercooled melt of a simple metal

    Pis'ma v Zh. Èksper. Teoret. Fiz., 111:4 (2020),  251–256
  6. Semimetal states of crystalline molecular hydrogen at high pressures

    Pis'ma v Zh. Èksper. Teoret. Fiz., 111:3 (2020),  175–180
  7. Simulation of the glass transition of a thin aluminum melt layer at ultrafast cooling under isobaric conditions

    Pis'ma v Zh. Èksper. Teoret. Fiz., 110:5 (2019),  343–347
  8. Singularity at the point of transition from equilibrium to metastable states of a metallic melt

    Pis'ma v Zh. Èksper. Teoret. Fiz., 109:10 (2019),  689–693
  9. Molecular modeling of the thermal accommodation of argon atoms in clusters of iron atoms

    TVT, 57:4 (2019),  534–542
  10. What for and which exaflops supercomputers are necessary in natural sciences

    Program Systems: Theory and Applications, 6:4 (2015),  243–311
  11. Predictive modeling and simulation of properties and multi-scale processes in materials science. Tasks for Exaflops-era supercomputers

    Program Systems: Theory and Applications, 5:1 (2014),  191–244
  12. Challenges to the supercomputer development in Russia: a HPC user perspective

    Program Systems: Theory and Applications, 5:1 (2014),  111–152
  13. Pressure Fluctuations in the Nonideal Nondegenerate Plasma

    TVT, 52:4 (2014),  494–503
  14. Stochastic theory of the classical molecular dynamics method

    Mat. Model., 24:6 (2012),  3–44
  15. Homogeneous nucleation of dislocations

    Fizika Tverdogo Tela, 53:8 (2011),  1536–1541
  16. Laser ablation of gold: Experiment and atomistic simulation

    Pis'ma v Zh. Èksper. Teoret. Fiz., 93:11 (2011),  719–725
  17. Atomistic simulation of the interaction of an electrolyte with graphite nanostructures in perspective supercapacitors

    TVT, 48:6 (2010),  877–885
  18. A kinetic model of fracture of simple liquids

    TVT, 48:4 (2010),  536–543
  19. Application of supercomputers for the molecular dynamics simulation of processes in condensed matter

    Num. Meth. Prog., 11:1 (2010),  111–116
  20. Volumetric relaxation in simple liquid: Molecular dynamics simulation

    TVT, 46:6 (2008),  836–843
  21. Pair fluctuations in nonideal plasma and their restriction at the ionization threshold

    TVT, 46:2 (2008),  170–184
  22. The modeling of high-rate tension of crystalline iron by the method of molecular dynamics

    TVT, 45:2 (2007),  193–202
  23. The phase diagram and spinodal decomposition of metastable states of Lennard-Jones system

    TVT, 45:1 (2007),  43–55
  24. Rydberg matter as a metastable state of strongly nonideal plasma

    Pis'ma v Zh. Èksper. Teoret. Fiz., 73:1 (2001),  13–16
  25. Molecular modelling of the chemical interaction of atoms and molecules with a surfaces

    Usp. Khim., 64:7 (1995),  643–671
  26. The Krylov–Kolmogorov enthropy of a disordered Lennard–Jones systems

    Mat. Model., 2:5 (1990),  3–7
  27. Cleaning flue gases by irradiation and plasmochemical methods

    TVT, 28:5 (1990),  995–1008
  28. Mathematical modelling of physico-chemical processes in a high-pressure plasma-chemical reactor excited by a relativistic electron beam

    Mat. Model., 1:2 (1989),  13–36
  29. Equations of state and ionizational equilibrium of non-Debye plasma

    TVT, 25:2 (1987),  209–217
  30. Effects of density on the electron spectrum of a nondegenerate plasma

    TVT, 22:6 (1984),  1041–1047
  31. Irreversibility in the classical statistical mechanics

    Dokl. Akad. Nauk SSSR, 263:2 (1982),  337–340
  32. Об электропроводности неидеальной плазмы в широком диапазоне температур

    TVT, 17:4 (1979),  863–865
  33. Непрерывные спектры излучения (поглощения) неидеальной плазмы

    TVT, 17:3 (1979),  453–460
  34. Pseudopotential in the statistical thermodynamics

    Dokl. Akad. Nauk SSSR, 242:3 (1978),  591–594
  35. Метод молекулярной динамики в теории электронных коэффициентов переноса неидеальной плазмы

    TVT, 15:4 (1977),  689–694
  36. Фазовый переход в плазме $\mathrm{LiH}$

    TVT, 15:2 (1977),  417–418
  37. К теории оптических свойств неидеальной плазмы

    TVT, 15:1 (1977),  193–196
  38. Динамическая модель неидеальной плазмы

    TVT, 15:1 (1977),  191–193
  39. Thermodynamic perturbation theory for systems with short-range parts of the interparticle interaction potential

    TVT, 14:3 (1976),  469–479
  40. Equations of state and ionization equilibrium of a nonideal plasma

    TVT, 13:5 (1975),  913–919
  41. Pseudopotential model of a nonideal plasma

    TVT, 13:4 (1975),  712–721
  42. Псевдопотенциальная модель неидеальной многократно ионизованной плазмы и ее исследование методом Монте-Карло

    TVT, 12:5 (1974),  931–939
  43. Парные корреляционные функции в псевдопотенциальной модели неидеальной плазмы

    TVT, 12:2 (1974),  267–272
  44. Термодинамика и корреляционные функции слабонеидеальных недебаевских кулоновских систем

    TVT, 11:5 (1973),  922–931
  45. Электропроводность недебаевской плазмы

    TVT, 11:2 (1973),  238–244
  46. The Monte-Carlo method in Feynman's formulation of quantum statistics

    Zh. Vychisl. Mat. Mat. Fiz., 13:2 (1973),  408–420
  47. К статистической теории неидеальной плазмы

    TVT, 10:6 (1972),  1160–1170
  48. К термодинамике сильнонеидеальной ионной плазмы

    TVT, 10:4 (1972),  693–702
  49. Thermodynamics of a strongly nonideal plasma

    TVT, 8:2 (1970),  413–438
  50. Optical properties of burning gases. Mixtures of $\mathrm{CO}_2$ + $\mathrm{N}_2$

    TVT, 8:1 (1970),  1–11
  51. О возможности существования переохлажденной плотной плазмы

    TVT, 7:5 (1969),  822–831
  52. Исследование фазовых переходов с помощью метода Монте-Карло

    TVT, 7:2 (1969),  233–240
  53. Несостоятельность классического описания невырожденной плотной плазмы

    TVT, 6:3 (1968),  410–415
  54. Continuous spectra of atomic gases and plasma

    UFN, 91:2 (1967),  193–246
  55. Определение сечений фотоионизации по силам осцилляторов спектральных линий

    TVT, 4:4 (1966),  473–479
  56. Снижение потенциала отрыва электрона от отрицательного иона в плазме

    TVT, 2:4 (1964),  517–524

  57. In memory of Andrei Nikonovich Starostin

    UFN, 190:7 (2020),  781–782
  58. In memory of Lev Solomonovich Polak

    UFN, 172:8 (2002),  967–968


© Steklov Math. Inst. of RAS, 2026