A rectangle measuring 30.0 cm by 40.0 cm is located inside a region of a spatially uniform magnetic field of 1.20T, with the field perpendicular to the plane of the coil (the figure (Figure 1)). The coil is pulled out at a steady rate of 2.00 m/s traveling perpendicular to the field lines. The region of the field ends abruptly as shown. c

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 6OQ
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Question
Find the emf induced in this coil when it is all inside the field.
a steady rate of
n of the field ends
E =
V
Submit
Request Answer
Part B
Find the emf induced in this coil when it is partly inside the field.
1 of 1
=
Submit
Reguest Answer
Part C
m/s
Find the emf induced in this coil when it is all outside the field
Transcribed Image Text:Find the emf induced in this coil when it is all inside the field. a steady rate of n of the field ends E = V Submit Request Answer Part B Find the emf induced in this coil when it is partly inside the field. 1 of 1 = Submit Reguest Answer Part C m/s Find the emf induced in this coil when it is all outside the field
Exercise 29.26
A rectangle measuring 30.0 cm by 40.0 cm is located inside
a region of a spatially uniform magnetic field of 1.20 T, with
the field perpendicular to the plane of the coil (the figure
(Figure 1)). The coil is pulled out at a steady rate of 2.00
cm/s traveling perpendicular to the field lines. The region of
the field ends abruptly as shown.
Figure
1 of 1
30.0 cm
2.00 cm/s
40.0 cm
Transcribed Image Text:Exercise 29.26 A rectangle measuring 30.0 cm by 40.0 cm is located inside a region of a spatially uniform magnetic field of 1.20 T, with the field perpendicular to the plane of the coil (the figure (Figure 1)). The coil is pulled out at a steady rate of 2.00 cm/s traveling perpendicular to the field lines. The region of the field ends abruptly as shown. Figure 1 of 1 30.0 cm 2.00 cm/s 40.0 cm
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