In the figure, a rectangular loop of wire with length a = 2.9 cm, width b = 0.71 cm, and resistance R = 0.44 m2 is placed near an infinitely long wire carrying current i = 5.5 A. The loop is then moved away from the wire at a constant speed v = 3.5 mm/s. When the center of the loop is at distance r = 1.7 cm, what are (a) the magnitude of the magnetic flux through the loop and (b) the current in amperes induced in the loop? (a) Number i Units nWb (b) Number i ! Units ΜΑ

Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter23: Faraday’s Law And Inductance
Section: Chapter Questions
Problem 28P: A magnetic field directed into the page changes with time according to B = 0.030 0t2 + 1.40, where B...
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In the figure, a rectangular loop of wire with length a = 2.9 cm, width b = 0.71 cm, and resistance R
= 0.44 m2 is placed near an infinitely long wire carrying current i = 5.5 A. The loop is then moved
away from the wire at a constant speed v = 3.5 mm/s. When the center of the loop is at distance r =
1.7 cm, what are (a) the magnitude of the magnetic flux through the loop and (b) the current in
amperes induced in the loop?
(a) Number
i
Units
nWb
(b) Number i
!
Units
ΜΑ
Transcribed Image Text:In the figure, a rectangular loop of wire with length a = 2.9 cm, width b = 0.71 cm, and resistance R = 0.44 m2 is placed near an infinitely long wire carrying current i = 5.5 A. The loop is then moved away from the wire at a constant speed v = 3.5 mm/s. When the center of the loop is at distance r = 1.7 cm, what are (a) the magnitude of the magnetic flux through the loop and (b) the current in amperes induced in the loop? (a) Number i Units nWb (b) Number i ! Units ΜΑ
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