It is the energy that affects motion of particles, which are atoms and molecules.
The expectation value of energy for a particle in a box is the average energy that the particle is expected to have when measured. It is calculated by taking the integral of the probability distribution of the particle's energy over all possible energy values.
when a particle moves it rubs against other particle's causing thermal energy
The energy possessed by a particle due to its motion is called kinetic energy. It depends on the mass of the particle and its velocity.
potential energy
The kinetic energy of the particle increases as the speed increases, following the equation ( KE = \frac{1}{2} mv^2 ) where ( KE ) is the kinetic energy, ( m ) is the mass of the particle, and ( v ) is the speed of the particle. The energy of the particle is converted to kinetic energy as its speed increases.
The Lagrangian for a particle moving on a sphere is the kinetic energy minus the potential energy of the particle. It takes into account the particle's position and velocity on the sphere.
The kinetic energy of a particle is the energy that a particle possesses due to its motion. It is calculated as one-half the mass of the particle multiplied by the square of its velocity. Mathematically, it can be represented as KE = 0.5 * m * v^2, where KE is the kinetic energy, m is the mass of the particle, and v is its velocity.
Conduction
Conduction
Yes, every single subatomic particle contains energy, E=mc2. This has been demonstrated by the generation of particle/anti-particle pairs in particle accelerators.
When energy is removed from a particle, its kinetic energy decreases, which can slow down or change its motion. The particle may lose energy through collisions with other particles, radiation, or other forms of energy transfer.
Kinetic energy per particle is the energy an individual particle possesses due to its motion. It is calculated using the equation KE = 0.5 * m * v^2, where m is the mass of the particle and v is its velocity.