The virial theorem is considered for a system of randomly moving particles that are tightly bound to each other by the gravitational and electromagnetic fields, acceleration field and pressure field. The kinetic energy of the particles of this system is estimated by three methods, and the ratio of the kinetic energy to the absolute value of the energy of forces, binding the particles, is determined, which is approximately equal to 0.6. For simple systems in classical mechanics, this ratio equals 0.5. The difference between these ratios arises by the consideration of the pressure field and acceleration field inside the bodies, which make additional contribution to the acceleration of the particles. It is found that the total time derivative ...
The velocity distribution function for a two-dimensional vibro-fluidized bed of particles of radius ...
A continuum version of the virial theorem is derived for a radiating self-gravitating accretion disc...
We investigate the particle and kinetic energy densities for a system of $N$ fermions confined in a ...
The virial theorem is considered for a system of randomly moving particles that are tightly bound to...
In the relativistic uniform model for continuous medium the integral theorem of generalized virial i...
In the relativistic uniform model for continuous medium the integral theorem of generalized virial i...
The generalization of the virial theorem is discussed. The case where the potential energy is a sum ...
The generalization of the virial theorem is discussed. The case where the potential energy is a sum ...
The integral theorem of the vector field energy is derived in a covariant way, according to which un...
Application of the virial theorem to a Coulomb system of N particles neutralized by a continuous bac...
The usual virial theorem, relating kinetic and potential energy, is extended to a molecule by the us...
International audienceWe presently extend the virial theorem for both discrete and continuous system...
The total energy, binding energy, energy of fields, pressure energy and the potential energy of the ...
The Virial Theorem is receiving scarce attention in the teaching of classical mechanics, and interme...
The velocity distribution function for a two-dimensional vibro-fluidized bed of particles of radius ...
The velocity distribution function for a two-dimensional vibro-fluidized bed of particles of radius ...
A continuum version of the virial theorem is derived for a radiating self-gravitating accretion disc...
We investigate the particle and kinetic energy densities for a system of $N$ fermions confined in a ...
The virial theorem is considered for a system of randomly moving particles that are tightly bound to...
In the relativistic uniform model for continuous medium the integral theorem of generalized virial i...
In the relativistic uniform model for continuous medium the integral theorem of generalized virial i...
The generalization of the virial theorem is discussed. The case where the potential energy is a sum ...
The generalization of the virial theorem is discussed. The case where the potential energy is a sum ...
The integral theorem of the vector field energy is derived in a covariant way, according to which un...
Application of the virial theorem to a Coulomb system of N particles neutralized by a continuous bac...
The usual virial theorem, relating kinetic and potential energy, is extended to a molecule by the us...
International audienceWe presently extend the virial theorem for both discrete and continuous system...
The total energy, binding energy, energy of fields, pressure energy and the potential energy of the ...
The Virial Theorem is receiving scarce attention in the teaching of classical mechanics, and interme...
The velocity distribution function for a two-dimensional vibro-fluidized bed of particles of radius ...
The velocity distribution function for a two-dimensional vibro-fluidized bed of particles of radius ...
A continuum version of the virial theorem is derived for a radiating self-gravitating accretion disc...
We investigate the particle and kinetic energy densities for a system of $N$ fermions confined in a ...