a) Calculate the magnitude and direction of the current induced in the loop. Use a diagram to show the direction of the current. jo00000000000 В - 10T length = 4m b) Determine the direction of the magnetic force on the induced current in: - The top horizontal wire of the loop - The bottom horizontal wire of the loop - The right vertical wire of the loop c) Determine the magnitude of the magnetic force exerted on the induced current in the right vertical wire of the loop. Can you show your work? width = 2m
a) Calculate the magnitude and direction of the current induced in the loop. Use a diagram to show the direction of the current. jo00000000000 В - 10T length = 4m b) Determine the direction of the magnetic force on the induced current in: - The top horizontal wire of the loop - The bottom horizontal wire of the loop - The right vertical wire of the loop c) Determine the magnitude of the magnetic force exerted on the induced current in the right vertical wire of the loop. Can you show your work? width = 2m
College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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
Transcribed Image Text:Practice Problem 1
There is a region of uniform magnetic field that points out of the page with magnitude B = 10 Tesla. A
conducting rectangular loop is pushed into this region, at a constant velocity of v = 1.2m/s to the right.
The look is made up of a material with resistance per unit of 0.10 ohm/m.
a) Calculate the magnitude and direction of the current induced in the loop. Use a diagram to show
the direction of the current.
length = 4m
B = 10T
o0oc - 000
b) Determine the direction of the magnetic force on the induced current in:
The top horizontal wire of the loop
The bottom horizontal wire of the loop
The right vertical wire of the loop
c) Determine the magnitude of the magnetic force exerted on the induced current in the right
vertical wire of the loop. Can you show your work?
width
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