An electron is moving at a speed of 1.40 x 10* m/s in a circular path of radius of 3.2 cm inside a solenoid. The magnetic field of the solenoid is perpendicular to the plane of the electron's path. The solenoid has 25 turns per centimeter. (a) Find the strength of the magnetic field inside the solenoid. (b) Find the current in the solenoid. potential difference across each resistor in the above circuit.

College Physics
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Author:Raymond A. Serway, Chris Vuille
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Chapter19: Magnetism
Section: Chapter Questions
Problem 63P: Ail electron is moving at a speed of 1.0 104 in/s in a circular path of radius 2.0 cm inside a...
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An electron is moving at a speed of 1.40 x 10ʻ m/s in a circular path of radius of 3.2 cm inside a
solenoid. The magnetic field of the solenoid is perpendicular to the plane of the electron's path.
The solenoid has 25 turns per centimeter. (a) Find the strength of the magnetic field inside the
solenoid. (b) Find the current in the solenoid. potential difference across each resistor in the
above circuit.
Transcribed Image Text:An electron is moving at a speed of 1.40 x 10ʻ m/s in a circular path of radius of 3.2 cm inside a solenoid. The magnetic field of the solenoid is perpendicular to the plane of the electron's path. The solenoid has 25 turns per centimeter. (a) Find the strength of the magnetic field inside the solenoid. (b) Find the current in the solenoid. potential difference across each resistor in the above circuit.
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