A proton, with a charge Q = 1.60 × 10-19 Coulombs has an initial velocity as shown below with a magnitude of v = 2.50 × 105 m/s. Take the proton mass to be M = 1.67 x 10-27 kg. The proton moves in a plane perpendicular to a 3.00 Tesla uniform magnetic field a. Calculate the radius, in meters, of the circular path followed by the proton. With respect to the magnetic field lines, are the orbits in the clockwise or counterclockwise sense? b. Calculate in seconds the amount of time needed for the proton to complete a circu- lar orbit. c. Calculate the frequency in Hertz of the circular orbits.

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Chapter29: Magnetic Fields
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Problem 29.2OQ: Rank the magnitudes of' the forces exerted on the following particles from largest to smallest. In...
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A proton, with a charge Q = 1.60 × 10-19 Coulombs has an initial velocity as shown below
with a magnitude of v = 2.50 × 105 m/s. Take the proton mass to be M = 1.67 x 10-27 kg.
The proton moves in a plane perpendicular to a 3.00 Tesla uniform magnetic field
a. Calculate the radius, in meters, of the circular path followed by the proton. With respect
to the magnetic field lines, are the orbits in the clockwise or counterclockwise sense?
b. Calculate in seconds the amount of time needed for the proton to complete a circu-
lar orbit.
c. Calculate the frequency in Hertz of the circular orbits.
Transcribed Image Text:A proton, with a charge Q = 1.60 × 10-19 Coulombs has an initial velocity as shown below with a magnitude of v = 2.50 × 105 m/s. Take the proton mass to be M = 1.67 x 10-27 kg. The proton moves in a plane perpendicular to a 3.00 Tesla uniform magnetic field a. Calculate the radius, in meters, of the circular path followed by the proton. With respect to the magnetic field lines, are the orbits in the clockwise or counterclockwise sense? b. Calculate in seconds the amount of time needed for the proton to complete a circu- lar orbit. c. Calculate the frequency in Hertz of the circular orbits.
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