Two conducting rails of negligible resistance terminate in a resistor of resistance R = 2.40 Ω The rails are placed in a magnetic field B = 15.0 mT perpendicular to the plane of the rails. The magnetic field is uniform and time independent. The distance between the rails is w = 10.0 cm as shown in the figure. A conducting rod of negligible resistance slides frictionless on top of the two rails at a velocity v = 1.20 m/s + (3.4 m/s2) t, where t is the time, in seconds. The induced current in the circuit at t = 1.00 s is
Two conducting rails of negligible resistance terminate in a resistor of resistance R = 2.40 Ω The rails are placed in a magnetic field B = 15.0 mT perpendicular to the plane of the rails. The magnetic field is uniform and time independent. The distance between the rails is w = 10.0 cm as shown in the figure. A conducting rod of negligible resistance slides frictionless on top of the two rails at a velocity v = 1.20 m/s + (3.4 m/s2) t, where t is the time, in seconds. The induced current in the circuit at t = 1.00 s is
College Physics
1st Edition
ISBN:9781938168000
Author:Paul Peter Urone, Roger Hinrichs
Publisher:Paul Peter Urone, Roger Hinrichs
Chapter1: Introduction: The Nature Of Science And Physics
Section: Chapter Questions
Problem 30PE: A generation is about one-third of a lifetime. Approximately how many generations have passed since...
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