Zobrazeno 1 - 10
of 562
pro vyhledávání: '"M, Apfelbaum"'
Autor:
E. M. Apfelbaum
Publikováno v:
High Temperature. 60:S20-S25
Autor:
E. M. Apfelbaum, V. S. Vorob’ev
Publikováno v:
High Temperature. 60:S339-S346
Autor:
E. M. Apfelbaum
Publikováno v:
Plasma Physics Reports. 48:1087-1093
Autor:
E. M. Apfelbaum
Publikováno v:
High Temperature. 60:574-577
Autor:
E. M. Apfelbaum, V. S. Vorob’ev
Publikováno v:
Russian Journal of Physical Chemistry A. 96:1396-1403
Autor:
E. M. Apfelbaum
Publikováno v:
The Journal of Physical Chemistry B. 126:2912-2920
We have considered the line along which the values of the isothermal compressibility of a system are the same as they would be for an ideal gas. It was called the κ
Autor:
E. M. Apfelbaum
Publikováno v:
Physics of Plasmas. 30:042709
A model for calculation of thermophysical properties (pressure, internal energy, electrical and thermal conductivities, and thermal power) of low-temperature indium plasma is developed at the temperatures 8–100 kK and densities less than 9 g/cm3. I
Autor:
E. M. Apfelbaum
Publikováno v:
Contributions to Plasma Physics. 61
Autor:
V. S. Vorob’ev, E. M. Apfelbaum
Publikováno v:
The journal of physical chemistry. B. 124(24)
We study the behavior of the line of the unit compressibility factor (Zeno-line) in crystalline states. We used the Lennard-Jones system, experimental P–V–T data for a number of substances, and the...
Autor:
E. M. Apfelbaum
Publikováno v:
High Temperature. 56:609-612
It is shown that deviations from the Wiedemann‒Franz law in partially ionized metal plasma are caused by the electron scattering from atoms. Tantalum plasma, for which the thermal conductivity and Lorentz number at the isochore 3 g/cm3 are calculat