5. A square coil of side 7.50 cm contains 135 loops and its plane is positioned perpendicular to a uniform 0.62-T magnetic field, as shown. It is quickly and uniformly pulled from the field to a region where the B-field drops abruptly to zero. It takes 0.12 s for the whole coil to reach the field-free 140 S2? How much power is dissipated in the coil if its resistance is W 0 ssf60 ssf60 ssf60 ssf60 s XX X X X X X X X X XX XXX f60 ssf60 ss X ++,sf60 ssf60 s ххих XXXXXX XX X X X X X X X X X X хххх sfo++ XX s60 ssf60 ssf60 ssfooi ssf60 ssf60 ssf60 ssf60 ssf60 spion. f60 ssf60 ssf60 ssf60 ssf60 ssf60; · ssf60 ssf60 ssf60

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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**Problem 5:**

A square coil with a side length of 7.50 cm contains 135 loops and is oriented such that its plane is perpendicular to a uniform magnetic field of 0.62 T, as depicted in the image. The coil is quickly and uniformly removed from this field into an area where the magnetic field (B-field) abruptly drops to zero. The time taken for the entire coil to exit the magnetic field is 0.12 seconds. Determine the power dissipated in the coil when its resistance is 140 ohms.

**Explanation of the Diagram:**

The diagram shows:

- A square coil illustrated with an orange loop.
- Cross symbols (×) represent the uniform magnetic field pointing into the plane of the page.
- The coil is entirely within this magnetic field initially.

**Answer Box:**

There is a blank box provided for entering the solution, expressed in watts (W).
Transcribed Image Text:**Problem 5:** A square coil with a side length of 7.50 cm contains 135 loops and is oriented such that its plane is perpendicular to a uniform magnetic field of 0.62 T, as depicted in the image. The coil is quickly and uniformly removed from this field into an area where the magnetic field (B-field) abruptly drops to zero. The time taken for the entire coil to exit the magnetic field is 0.12 seconds. Determine the power dissipated in the coil when its resistance is 140 ohms. **Explanation of the Diagram:** The diagram shows: - A square coil illustrated with an orange loop. - Cross symbols (×) represent the uniform magnetic field pointing into the plane of the page. - The coil is entirely within this magnetic field initially. **Answer Box:** There is a blank box provided for entering the solution, expressed in watts (W).
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