Restricted Access.For a classical-mechanical system of any fixed number of particles it is observed that space-translation invariance and conservation of angular momentum imply conservation of momentum. For three particles it is shown, as previously for two, that Poincaré invariance implies that the total kinematic momentum cannot be a constant of motion unless the accelerations are zero. The equations involved make it appear most likely that this is true for any number of particles
Newton’s third law states that any action is countered by a reaction of equal magnitude but opposite...
We investigate how the quantum mechanicalposition operator can be defined for elementary systems so ...
In Part I of this work, numerical methods were derived for the solution of the equations of motion o...
Perez Laraudogoitia (1996) presented an isolated system of infinitely many particles with infinite t...
A rigorous definition of mass in special relativity, proposed in a recent paper, is recalled and emp...
A rigorous definition of mass in special relativity, proposed in a recent paper, is recalled and emp...
A rigorous definition of mass in special relativity, proposed in a recent paper, is recalled and emp...
Summary. -The author establishes wave equations for particles having arbitrary given intrinsic angul...
From the relativity principle and the conservation of energy in particle collisions we deduce the fo...
From the relativity principle and the conservation of energy in particle collisions we deduce the fo...
From the relativity principle and the conservation of energy in particle collisions we deduce the fo...
AbstractA new proof of the recent theorem of Jordan and Shukre is given showing that if momentum is ...
Introductory treatments of relativistic dynamics rely on the invariance of momentum conservation (i....
We have previously shown [1] that if the position operator is defined as in ref. [2], the movement o...
Introductory treatments of relativistic dynamics rely on the invariance of momentum conservation (i....
Newton’s third law states that any action is countered by a reaction of equal magnitude but opposite...
We investigate how the quantum mechanicalposition operator can be defined for elementary systems so ...
In Part I of this work, numerical methods were derived for the solution of the equations of motion o...
Perez Laraudogoitia (1996) presented an isolated system of infinitely many particles with infinite t...
A rigorous definition of mass in special relativity, proposed in a recent paper, is recalled and emp...
A rigorous definition of mass in special relativity, proposed in a recent paper, is recalled and emp...
A rigorous definition of mass in special relativity, proposed in a recent paper, is recalled and emp...
Summary. -The author establishes wave equations for particles having arbitrary given intrinsic angul...
From the relativity principle and the conservation of energy in particle collisions we deduce the fo...
From the relativity principle and the conservation of energy in particle collisions we deduce the fo...
From the relativity principle and the conservation of energy in particle collisions we deduce the fo...
AbstractA new proof of the recent theorem of Jordan and Shukre is given showing that if momentum is ...
Introductory treatments of relativistic dynamics rely on the invariance of momentum conservation (i....
We have previously shown [1] that if the position operator is defined as in ref. [2], the movement o...
Introductory treatments of relativistic dynamics rely on the invariance of momentum conservation (i....
Newton’s third law states that any action is countered by a reaction of equal magnitude but opposite...
We investigate how the quantum mechanicalposition operator can be defined for elementary systems so ...
In Part I of this work, numerical methods were derived for the solution of the equations of motion o...