45 Awire of length 20 cm vibrates in one direction in a constant magnetic field with a flux density of 0.1 T; see Figure P13.45. The position of the wire as a function of time is given by x(t) = 0.1 sin 10t m. Find the induced emf across the length of the wire as a function of time. Wire хххх хххх хххх хххх XX X Xelt) хххх хххх хххх хххх хххXх B= 0.1 T
45 Awire of length 20 cm vibrates in one direction in a constant magnetic field with a flux density of 0.1 T; see Figure P13.45. The position of the wire as a function of time is given by x(t) = 0.1 sin 10t m. Find the induced emf across the length of the wire as a function of time. Wire хххх хххх хххх хххх XX X Xelt) хххх хххх хххх хххх хххXх B= 0.1 T
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
Problem 1P: Visit your local library (at school or home) and describe the extent to which it provides literature...
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Question
![45 Awire of length 20 cm vibrates in one direction
in a constant magnetic field with a flux density of
0.1 T; see Figure P13.45. The position of the wire as a
function of time is given by x(t) = 0.1 sin 10t m. Find
the induced emf across the length of the wire as a
function of time.
Wire
хххх
хххх
хххх
хххх
XX X Xelt)
хххх
хххх
хххх
хххх
хххXх
B= 0.1 T](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F666ed0ca-16d1-42aa-ab9c-1d30b87fdb18%2Fa207a95e-966d-4e5a-bb55-e21c0f7f0781%2Fc6s4ew.png&w=3840&q=75)
Transcribed Image Text:45 Awire of length 20 cm vibrates in one direction
in a constant magnetic field with a flux density of
0.1 T; see Figure P13.45. The position of the wire as a
function of time is given by x(t) = 0.1 sin 10t m. Find
the induced emf across the length of the wire as a
function of time.
Wire
хххх
хххх
хххх
хххх
XX X Xelt)
хххх
хххх
хххх
хххх
хххXх
B= 0.1 T
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