The drawing shows a parallel plate capacitor that is moving with a speed of 42.7 m/s through a 4.46-T magnetic field. The velocity v is perpendicular to the magnetic field. The electric field within the capacitor has a value of 174 N/C, and each plate has an area of 7.70 × 104 m². What is the magnitude of the magnetic force exerted on the positive plate of the capacitor? Number i Units

Principles of Physics: A Calculus-Based Text
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Author:Raymond A. Serway, John W. Jewett
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Chapter22: Magnetic Forces And Magnetic Fields
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The drawing shows a parallel plate capacitor that is moving with a speed of 42.7 m/s through a 4.46-T magnetic field. The velocity v is
perpendicular to the magnetic field. The electric field within the capacitor has a value of 174 N/C, and each plate has an area of
7.70 × 10+ m². What is the magnitude of the magnetic force exerted on the positive plate of the capacitor?
Number
Units
Transcribed Image Text:The drawing shows a parallel plate capacitor that is moving with a speed of 42.7 m/s through a 4.46-T magnetic field. The velocity v is perpendicular to the magnetic field. The electric field within the capacitor has a value of 174 N/C, and each plate has an area of 7.70 × 10+ m². What is the magnitude of the magnetic force exerted on the positive plate of the capacitor? Number Units
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