Blw 3w 4w Blv Figure 30.14 (Conceptual Exam- ple 30.5) (a) A conducting rectan- gular loop of width wand length { moving with a velocity v through a uniform magnetic field extending a distance 3w. (b) Magnetic flux through the area enclosed by the loop as a function of loop position. (c) Induced emf as a function of loop position. (d) Applied force required for constant velocity as a function of loop position. - Blv R w 3w 4w
Blw 3w 4w Blv Figure 30.14 (Conceptual Exam- ple 30.5) (a) A conducting rectan- gular loop of width wand length { moving with a velocity v through a uniform magnetic field extending a distance 3w. (b) Magnetic flux through the area enclosed by the loop as a function of loop position. (c) Induced emf as a function of loop position. (d) Applied force required for constant velocity as a function of loop position. - Blv R w 3w 4w
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
A rectangular metallic loop of dimensions ℓ and ω and resistance R moves with constant speed υ to the right as shown. The loop passes through a uniform magnetic field B→ directed into the page and extending a distance 3ω along the x axis. Define x as the position of the right side of the loop along the x axis. (A) Plot the magnetic flux through the area enclosed by the loop as a function of x. (B) Plot the induced motional emf in the loop as a function of x.(C) Plot the external applied force necessary to counter the magnetic force and keep υ constant as a function of x.

Transcribed Image Text:Blw
3w 4w
Blv
Figure 30.14 (Conceptual Exam-
ple 30.5) (a) A conducting rectan-
gular loop of width wand length {
moving with a velocity v through a
uniform magnetic field extending
a distance 3w. (b) Magnetic flux
through the area enclosed by the
loop as a function of loop position.
(c) Induced emf as a function of
loop position. (d) Applied force
required for constant velocity as a
function of loop position.
- Blv
R
w
3w 4w
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