The figure shows a rod of length L = 8.84 cm that is forced to move at constant speed v = 4.19 m/s along horizontal rails. The rod, rails, and connecting strip at the right form a conducting loop. The rod has resistance 0.489 2; the rest of the loop has negligible resistance. A current / = 145 A through the long straight wire at distance a = 14.9 mm from the loop sets up a (nonuniform) magnetic field throughout loop. Find the (a) magnitude of the emf and (b) current induced in the loop. (c) At what rate is thermal energy generated in the rod? (d) What is the magnitude of the force that must be applied to the rod to make it move at constant speed? (e) At what rate does this force do work on the rod? L. (a) Numbel T235.27 Units (b) Numbel TÓ.48 Units TmA (c) NumbelTO.11 Units TuW (d) Numbel T0.0000000269 Units (e) Number 0.00007 Units
The figure shows a rod of length L = 8.84 cm that is forced to move at constant speed v = 4.19 m/s along horizontal rails. The rod, rails, and connecting strip at the right form a conducting loop. The rod has resistance 0.489 2; the rest of the loop has negligible resistance. A current / = 145 A through the long straight wire at distance a = 14.9 mm from the loop sets up a (nonuniform) magnetic field throughout loop. Find the (a) magnitude of the emf and (b) current induced in the loop. (c) At what rate is thermal energy generated in the rod? (d) What is the magnitude of the force that must be applied to the rod to make it move at constant speed? (e) At what rate does this force do work on the rod? L. (a) Numbel T235.27 Units (b) Numbel TÓ.48 Units TmA (c) NumbelTO.11 Units TuW (d) Numbel T0.0000000269 Units (e) Number 0.00007 Units
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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Question
Please answer just (E)
Thank you
![*Chapter 30, Problem 033 GO
Your answer is partially correct. Try again.
The figure shows a rod of length L = 8.84 cm that is forced to move at constant speed v = 4.19
m/s along horizontal rails. The rod, rails, and connecting strip at the right form a conducting
loop. The rod has resistance 0.489 2; the rest of the loop has negligible resistance. A current / =
145 A through the long straight wire at distance a = 14.9 mm from the loop sets up a
(nonuniform) magnetic field throughout loop. Find the (a) magnitude of the emf and (b) current
induced in the loop. (c) At what rate is thermal energy generated in the rod? (d) What is the
magnitude of the force that must be applied to the rod to make it move at constant speed? (e)
At what rate does this force do work on the rod?
(a) Numbel
T235.27
Units
(b) Numbel
TO.48
Units
TmA
(c) Numbel
10.11
Units
(d) Numbet0.0000000269
UnitsN
(e) Number
[0.00007
Units
THW
xx](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fffec9791-3e70-4062-ab52-19ffbcf6a19b%2Fd3f19c70-dd42-4545-9a62-5e76bff8470f%2F93v0ceh_processed.jpeg&w=3840&q=75)
Transcribed Image Text:*Chapter 30, Problem 033 GO
Your answer is partially correct. Try again.
The figure shows a rod of length L = 8.84 cm that is forced to move at constant speed v = 4.19
m/s along horizontal rails. The rod, rails, and connecting strip at the right form a conducting
loop. The rod has resistance 0.489 2; the rest of the loop has negligible resistance. A current / =
145 A through the long straight wire at distance a = 14.9 mm from the loop sets up a
(nonuniform) magnetic field throughout loop. Find the (a) magnitude of the emf and (b) current
induced in the loop. (c) At what rate is thermal energy generated in the rod? (d) What is the
magnitude of the force that must be applied to the rod to make it move at constant speed? (e)
At what rate does this force do work on the rod?
(a) Numbel
T235.27
Units
(b) Numbel
TO.48
Units
TmA
(c) Numbel
10.11
Units
(d) Numbet0.0000000269
UnitsN
(e) Number
[0.00007
Units
THW
xx
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