A capacitor C= 25.0 µF is connected to two long parallel conducting rails L = 0.333 m apart. A conducting rod makes contact with the rails and is moving to the right at a speed v = 0.175 m/s. A magnetic field persists in the space B = 0.197 T pointing into the page. в a. Which plate of the capacitor (top or bottom) has positive charge accumulating on it? X' k Tx b. Find the magnitude of the charge on the capacitor plates.

University Physics Volume 2
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Chapter11: Magnetic Forces And Fields
Section: Chapter Questions
Problem 66AP: At a particular instant an electron is traveling west to east with a kinetic energy of 10 keV....
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A capacitor C = 25.0 µF is connected to two long parallel conducting rails L = 0.333 m apart.
A conducting rod makes contact with the rails and is moving to the right at a speed v= 0.175
m/s. A magnetic field persists in the space B = 0.197 T pointing into the page.
B
a. Which plate of the capacitor (top or bottom)
has positive charge accumulating on it?
X.
b. Find the magnitude of the charge on the capacitor plates.
Transcribed Image Text:A capacitor C = 25.0 µF is connected to two long parallel conducting rails L = 0.333 m apart. A conducting rod makes contact with the rails and is moving to the right at a speed v= 0.175 m/s. A magnetic field persists in the space B = 0.197 T pointing into the page. B a. Which plate of the capacitor (top or bottom) has positive charge accumulating on it? X. b. Find the magnitude of the charge on the capacitor plates.
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