A proton with kinetic energy Ep moves in a vacuum on a circle with radius R = 1m in a homogeneous, constant magnetic field with induction B. What will be the radius of the circle for an alpha particle whose kinetic energy Ea is the same as the kinetic energy of the proton Ea = Ep
A proton with kinetic energy Ep moves in a vacuum on a circle with radius R = 1m in a homogeneous, constant magnetic field with induction B. What will be the radius of the circle for an alpha particle whose kinetic energy Ea is the same as the kinetic energy of the proton Ea = Ep
Chapter11: Magnetic Forces And Fields
Section: Chapter Questions
Problem 72AP: A particle moving downward at a speed of 6.0106 m/s enters a uniform magnetic field that is...
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A proton with kinetic energy Ep moves in a vacuum on a circle with radius R = 1m in a homogeneous, constant magnetic field with induction B. What will be the radius of the circle for an alpha particle whose kinetic energy Ea is the same as the kinetic energy of the proton Ea = Ep?
NOTE: ignore the relativistic corrections and assume that the mass of the alpha particle is four times the mass of the proton, and the electric charge of the alpha particle is twice as large as the electric charge of the proton
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