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  1. In nuclear and materials physics, stopping power is the retarding force acting on charged particles, typically alpha and beta particles, due to interaction with matter, resulting in loss of particle kinetic energy. Stopping power is also interpreted as the rate at which a material absorbs the kinetic energy of a charged particle.

  2. Stopping power. By use of classical mechanics, Bohr developed an equation of stopping power, - dE / dx, given as the product of a kinematic factor and a stopping number. The kinematic factor includes such terms as the electronic charge and mass, the number of atoms per cubic centimetre of the medium, and the velocity of the incident charged ...

  3. Se considera al poder de parada la capacidad que tiene un proyectil con determinada masa y velocidad de derribar a un blanco, causando shock hidrostático. El término fue una creencia popular y apoyado por expertos balísticos hasta finales del siglo XX. Con la evolución de las pruebas balísticas el término quedó desfasado y la mayoría de ...

  4. Stopping power is the ability of a weapon – typically a ranged weapon such as a firearm – to cause a target (human or animal) to be incapacitated or immobilized. Stopping power contrasts with lethality in that it pertains only to a weapon's ability to make the target cease action, regardless of whether or not death ultimately occurs.

  5. 29 de jul. de 2018 · Stopping power, o poder de parada, o poder de frenado, representa el poder que un calibre de arma de fuego posee para poner fuera de combate a un oponente alcanzado. Con un solo disparo con determinado calibre, y preferentemente sin necesidad de matarlo.

  6. A. Stopping Power. Stopping Power is defined by The International Commission on Radiation Units and Measurements or ICRU (Taylor et al., 1970) as the average energy dissipated by ionizing radiation in a medium per unit path length of travel of the radiation in the medium.

  7. Poder de frenado (stopping power). Cálculo de Bohr. Fórmula Bethe-Bloch. Laura C. Damonte 2017. Cálculo de. Bohr. El caso. clásico. Las colisiones inelásticas ocurren con una cierta probabilidad y son de naturaleza estadística.