Q1. The magnetic flux density B is constant. The shorting bar moves to the right with a velocity vy, and the closed circuit is completed through two rails and a high-resistance voltmeter. The distance between the two rails is d. Use Faraday's Law to show that V12= - Bvd. Ple he
Q1. The magnetic flux density B is constant. The shorting bar moves to the right with a velocity vy, and the closed circuit is completed through two rails and a high-resistance voltmeter. The distance between the two rails is d. Use Faraday's Law to show that V12= - Bvd. Ple he
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![Q1. The magnetic flux density B is constant. The shorting bar moves to the right with a
velocity vy, and the closed circuit is completed through two rails and a high-resistance
voltmeter. The distance between the two rails is d. Use Faraday's Law to show that V12=
- Bvd.
Pie](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fa2828890-e758-4d3f-889f-4bdd3ee1fb27%2F303eb82e-2f75-4324-9fd9-f6cf746ae44e%2F5tjcnq_processed.png&w=3840&q=75)
Transcribed Image Text:Q1. The magnetic flux density B is constant. The shorting bar moves to the right with a
velocity vy, and the closed circuit is completed through two rails and a high-resistance
voltmeter. The distance between the two rails is d. Use Faraday's Law to show that V12=
- Bvd.
Pie
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