Problem 1: A time-dependent but otherwise uniform magnetic field of magnitude Bo(t) is confined in a cylindrical region of radius 6.5 cm. Initially the magnetic field in the region is pointed out of the page and has a magnitude of 1.5 T, but it is decreasing at a rate of 28.5 G/s. Due to the changing magnetic field, an electric field will be induced in this space which causes the acceleration of charges in the region Part (a) What is the direction of the acceleration of a proton placed at the point P, 2.5 cm from the center? Counterclockwise V Correct! Part (b) What is the magnitude of this acceleration, in meters per square second?

University Physics Volume 2
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Chapter13: Electromagnetic Induction
Section: Chapter Questions
Problem 71AP: The magnetic field between the poles of a horseshoe electromagnet is uniform and has a cylindrical...
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Problem 1:
A time-dependent but otherwise uniform magnetic field of magnitude Bo(t) is confined
in a cylindrical region of radius 6.5 cm. Initially the magnetic field in the region is pointed out of the page
and has a magnitude of 1.5 T, but it is decreasing at a rate of 28.5 G/s. Due to the changing magnetic field,
an electric field will be induced in this space which causes the acceleration of charges in the region
Part (a) What is the direction of the acceleration of a proton placed at the point P, 2.5 cm
from the center?
Counterclockwise V Correct!
Part (b) What is the magnitude of this acceleration, in meters per square second?
Transcribed Image Text:Problem 1: A time-dependent but otherwise uniform magnetic field of magnitude Bo(t) is confined in a cylindrical region of radius 6.5 cm. Initially the magnetic field in the region is pointed out of the page and has a magnitude of 1.5 T, but it is decreasing at a rate of 28.5 G/s. Due to the changing magnetic field, an electric field will be induced in this space which causes the acceleration of charges in the region Part (a) What is the direction of the acceleration of a proton placed at the point P, 2.5 cm from the center? Counterclockwise V Correct! Part (b) What is the magnitude of this acceleration, in meters per square second?
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