4. A circular coil of radius 4.50 cm contains 140 loops and its plane is positioned perpendicular to a uniform 0.50-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 0.14 s for the whole coil to reach the field-free region. How much power is dissipated in the coil if its resistance is 150 $? W XXXXXXXXX XXXXXXXX XXXXXXXX xxx xxxxx XXXXX Xxx XXXXXXXXX

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
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**Problem 4:** A circular coil of radius 4.50 cm contains 140 loops, and its plane is positioned perpendicular to a uniform 0.50-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 0.14 s for the whole coil to reach the field-free region. How much power is dissipated in the coil if its resistance is 150 Ω?

**Diagram Explanation:** 
The image shows a circular coil within a rectangular area filled with blue crosses, indicating a magnetic field directed into the page. The coil is positioned such that it is perpendicular to this magnetic field.

**Note:** Please input your answer in watts (W) in the provided box.
Transcribed Image Text:**Problem 4:** A circular coil of radius 4.50 cm contains 140 loops, and its plane is positioned perpendicular to a uniform 0.50-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 0.14 s for the whole coil to reach the field-free region. How much power is dissipated in the coil if its resistance is 150 Ω? **Diagram Explanation:** The image shows a circular coil within a rectangular area filled with blue crosses, indicating a magnetic field directed into the page. The coil is positioned such that it is perpendicular to this magnetic field. **Note:** Please input your answer in watts (W) in the provided box.
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