We present a new derivation of the expressions for momentum and energy of a relativistic particle. In contrast to the procedures commonly adopted in textbooks, the one suggested here requires only knowledge of the composition law for velocities along one spatial dimension, and does not make use of the concept of relativistic mass, or of the formalism of 4-vectors. The basic ideas are very general and can be applied also to kinematics different from the Newtonian and Einstein ones, in order to construct the corresponding dynamics
We investigate relativistic equations for the momentum, kinetic energy, wavelength and frequency of ...
Mechanical Energy is a form of energy associated with the motion and position of an object with mass...
Summary. -The author establishes wave equations for particles having arbitrary given intrinsic angul...
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...
We generalize a recent derivation of the relativistic expressions for momentum and kinetic energy fr...
We generalise a recent derivation of the relativistic expressions for momentum and kinetic energy fr...
A straightforward derivation of relativistic expressions for the mechanical momentum, kinetic and to...
By assuming that a particle acts as a system moving back and forth while moving on average in one di...
In the Einstein’s theory of special relativity, the relativistic mechanics is concerned with the mot...
In the Einstein’s theory of special relativity, the relativistic mechanics is concerned with the mot...
In the Einstein’s theory of special relativity, the relativistic mechanics is concerned with the mot...
In the Einstein’s theory of special relativity, the relativistic mechanics is concerned with the mot...
In Einstein's theory of special relativity, the relativistic momentum is concerned with the motion o...
We investigate relativistic equations for the momentum, kinetic energy, wavelength and frequency of ...
Mechanical Energy is a form of energy associated with the motion and position of an object with mass...
Summary. -The author establishes wave equations for particles having arbitrary given intrinsic angul...
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...
We generalize a recent derivation of the relativistic expressions for momentum and kinetic energy fr...
We generalise a recent derivation of the relativistic expressions for momentum and kinetic energy fr...
A straightforward derivation of relativistic expressions for the mechanical momentum, kinetic and to...
By assuming that a particle acts as a system moving back and forth while moving on average in one di...
In the Einstein’s theory of special relativity, the relativistic mechanics is concerned with the mot...
In the Einstein’s theory of special relativity, the relativistic mechanics is concerned with the mot...
In the Einstein’s theory of special relativity, the relativistic mechanics is concerned with the mot...
In the Einstein’s theory of special relativity, the relativistic mechanics is concerned with the mot...
In Einstein's theory of special relativity, the relativistic momentum is concerned with the motion o...
We investigate relativistic equations for the momentum, kinetic energy, wavelength and frequency of ...
Mechanical Energy is a form of energy associated with the motion and position of an object with mass...
Summary. -The author establishes wave equations for particles having arbitrary given intrinsic angul...