smooth
Figure shows a conducting rod of length l = 10 cm, resistance R and mass m = 100 mg moving vertically downward due to gravity. Other parts are kept fixed. Magnetic filed is B = 1 T. MN and PQ are vertical, smooth, the capacitor is C = 10 mF. The rod is released from rest. Find the maximum current (in mA) in the circuit.
21
Oct
Figure shows a conducting rod of length l = 10 cm, resistance R and mass m = 100 mg moving vertically downward due to gravity. Other parts are kept fixed. Magnetic filed is B = 1 T. MN and PQ are vertical, smooth, the capacitor is C = 10 mF. The rod is released from [...]
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Figure shows a conducting rod of length l = 10 cm ,
resistance R and mass m = 100 mg moving vertically downward due to gravity. Other parts are kept fixed. Magnetic filed is B = 1 T. MN and PQ are vertical ,
smooth ,
the capacitor is C = 10 mF. The rod is released from rest. Find the maximum current (in mA) in the circuit. ,
A conducting rod length l is moved at constant velocity v 0 on two parallel, conducting, smooth, fixed rails, which are placed in a uniform constant magnetic field B perpendicular to the plane of the rails as shown in figure. A resistance R is connected between the two ends of the rail. Then which of the following is/are correct?
21
Oct
A conducting rod length l is moved at constant velocity v 0 on two parallel, conducting, smooth, fixed rails, which are placed in a uniform constant magnetic field B perpendicular to the plane of the rails as shown in figure. A resistance R is connected between the two ends of the rail. Then which [...]
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A conducting rod length l is moved at constant velocity v 0 on two parallel ,
A semicircle conducting ring of radius R is placed in the xy plane ,
as shown in figure. A uniform magnetic field is set up along the x-axis . No emf ,
conducting ,
fixed rails ,
smooth ,
will be induced in the ring if ,