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Answer: The inductor shown in Fig. E30.11 has inductance

University Physics with Modern Physics (1) | 14th Edition | ISBN: 9780321973610 | Authors: Hugh D. Young Roger A. Freedman ISBN: 9780321973610 228

Solution for problem 30.12 Chapter 30

University Physics with Modern Physics (1) | 14th Edition

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University Physics with Modern Physics (1) | 14th Edition | ISBN: 9780321973610 | Authors: Hugh D. Young Roger A. Freedman

University Physics with Modern Physics (1) | 14th Edition

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Problem 30.12

The inductor shown in Fig. E30.11 has inductance 0.260 H and carries a current in the direction shown. The current is changing at a constant rate. (a) The potential between points a and b is Vab = 1.04 V, with point a at higher potential. Is the current increasing or decreasing? (b) If the current at t = 0 is 12.0 A, what is the current at t = 2.00 s?

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Chapter 30, Problem 30.12 is Solved
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Textbook: University Physics with Modern Physics (1)
Edition: 14
Author: Hugh D. Young Roger A. Freedman
ISBN: 9780321973610

Since the solution to 30.12 from 30 chapter was answered, more than 446 students have viewed the full step-by-step answer. This full solution covers the following key subjects: . This expansive textbook survival guide covers 44 chapters, and 4574 solutions. The full step-by-step solution to problem: 30.12 from chapter: 30 was answered by , our top Physics solution expert on 01/09/18, 07:46PM. This textbook survival guide was created for the textbook: University Physics with Modern Physics (1), edition: 14. The answer to “The inductor shown in Fig. E30.11 has inductance 0.260 H and carries a current in the direction shown. The current is changing at a constant rate. (a) The potential between points a and b is Vab = 1.04 V, with point a at higher potential. Is the current increasing or decreasing? (b) If the current at t = 0 is 12.0 A, what is the current at t = 2.00 s?” is broken down into a number of easy to follow steps, and 71 words. University Physics with Modern Physics (1) was written by and is associated to the ISBN: 9780321973610.

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Answer: The inductor shown in Fig. E30.11 has inductance