The general statistical method of the microcanonical ensemble is used to calculate the statistical weights of a system which contains both positive and negative mass particles. It is shown that the probability of creation of an infinite number of particles in a system is equal to unity, whereas the probability of creation of a finite number of particles is zero. This reveals a further difficulty which appears when negative masses are introduced. © 1969 The Faraday Press, Inc
Departing from the abstract aversion of the concept of negative mass (energy), we propose a pair cre...
This letter explains that density of positive mass and negative mass is almost uniformly throughout ...
The origin of mass in the standard model of particle physics is discussed and some difficulties poin...
The general statistical method of the microcanonical ensemble is used to calculate the statistical w...
We study the main properties that particles of negative and imaginary proprer mass might possess and...
A new mechanics of physical objects with negative mass is proposed. Their properties are explained b...
We give a formulation of the single-particle occupation probabilities for a system of identical part...
Abstract Particle production in proton collision experiments provides fundamental information on the...
We investigate the interaction between a positive mass and a negative effective mass through a three...
Abstract. Negative mass arise naturally from dynamic groups, as shown in 1970 by the french mathemat...
In statistical mechanics, microcanonical factorial counting applied to systems in an ensemble is app...
The microcanonical distribution for a classical gas involves a fixed number of particles N and a fix...
Particle number fluctuations are studied in the microcanonical ensemble. For the Boltzmann statistic...
Overcoming the force of gravity is an important part of space travel and a significant obstacle prev...
The gravitational interaction has mass of only one sign as the source that is conventionally taken t...
Departing from the abstract aversion of the concept of negative mass (energy), we propose a pair cre...
This letter explains that density of positive mass and negative mass is almost uniformly throughout ...
The origin of mass in the standard model of particle physics is discussed and some difficulties poin...
The general statistical method of the microcanonical ensemble is used to calculate the statistical w...
We study the main properties that particles of negative and imaginary proprer mass might possess and...
A new mechanics of physical objects with negative mass is proposed. Their properties are explained b...
We give a formulation of the single-particle occupation probabilities for a system of identical part...
Abstract Particle production in proton collision experiments provides fundamental information on the...
We investigate the interaction between a positive mass and a negative effective mass through a three...
Abstract. Negative mass arise naturally from dynamic groups, as shown in 1970 by the french mathemat...
In statistical mechanics, microcanonical factorial counting applied to systems in an ensemble is app...
The microcanonical distribution for a classical gas involves a fixed number of particles N and a fix...
Particle number fluctuations are studied in the microcanonical ensemble. For the Boltzmann statistic...
Overcoming the force of gravity is an important part of space travel and a significant obstacle prev...
The gravitational interaction has mass of only one sign as the source that is conventionally taken t...
Departing from the abstract aversion of the concept of negative mass (energy), we propose a pair cre...
This letter explains that density of positive mass and negative mass is almost uniformly throughout ...
The origin of mass in the standard model of particle physics is discussed and some difficulties poin...