A square loop of wire of side a contains a resistor R and a capacitor C. The loop sits in a time-varying magnetic filed B = -Bot, Bo > 0. a) Find the maximum amount of charge on the capacitor. b) Find the magnitude and the direction of the induced current in the loop once the capacitor reaches its maximun charge. R . B Figure 4: RC circuit in a magnetic field
A square loop of wire of side a contains a resistor R and a capacitor C. The loop sits in a time-varying magnetic filed B = -Bot, Bo > 0. a) Find the maximum amount of charge on the capacitor. b) Find the magnitude and the direction of the induced current in the loop once the capacitor reaches its maximun charge. R . B Figure 4: RC circuit in a magnetic field
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
Transcribed Image Text:A square loop of wire of side a contains a resistor R and a capacitor C. The loop sits in a
time-varying magnetic filed B = -Bot, Bo > 0.
a) Find the maximum amount of charge on the capacitor.
b) Find the magnitude and the direction of the induced current in the loop once the capacitor
reaches its maximun charge.
B
R
0
Figure 4: RC circuit in a magnetic field
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