02. Moving Coil Galvanometer and Magnetic Device
Magnetism and Matter

154221 In moving coil galvanometer, strong horse shoe magnet of concave shaped pole pieces is used to

1 increase space for rotation of coil
2 produce magnetic field which is parallel to plane of coil at any position
3 reduce weight of galvanometer
4 make magnetic induction weak at the centre
Magnetism and Matter

154227 Galvanometer can be converted into ammeter by

1 Low resistance called shunt resistance in parallel to the galvanometer
2 Very large resistance in parallel to the galvanometer
3 Series connection with a very small resistance
4 series connection with a very high resistance
Magnetism and Matter

154231 Van de Graaff generator produces

1 low voltage and high current
2 low voltage and low current
3 high voltage and high current
4 high voltage and low current
Magnetism and Matter

154235 Vibration magnetometer works on the principle of

1 torque acting on the bar magnet
2 force acting on the bar magnet
3 Both the force and the torque acting on the bar magnet
4 None of the above
Magnetism and Matter

154253 Sensitivity of a moving coil galvanometer can be increased by

1 decreasing the number of turns of coil
2 increasing the number of turns of coil
3 decreasing the area of a coil
4 by using a weak magnet
Magnetism and Matter

154221 In moving coil galvanometer, strong horse shoe magnet of concave shaped pole pieces is used to

1 increase space for rotation of coil
2 produce magnetic field which is parallel to plane of coil at any position
3 reduce weight of galvanometer
4 make magnetic induction weak at the centre
Magnetism and Matter

154227 Galvanometer can be converted into ammeter by

1 Low resistance called shunt resistance in parallel to the galvanometer
2 Very large resistance in parallel to the galvanometer
3 Series connection with a very small resistance
4 series connection with a very high resistance
Magnetism and Matter

154231 Van de Graaff generator produces

1 low voltage and high current
2 low voltage and low current
3 high voltage and high current
4 high voltage and low current
Magnetism and Matter

154235 Vibration magnetometer works on the principle of

1 torque acting on the bar magnet
2 force acting on the bar magnet
3 Both the force and the torque acting on the bar magnet
4 None of the above
Magnetism and Matter

154253 Sensitivity of a moving coil galvanometer can be increased by

1 decreasing the number of turns of coil
2 increasing the number of turns of coil
3 decreasing the area of a coil
4 by using a weak magnet
Magnetism and Matter

154221 In moving coil galvanometer, strong horse shoe magnet of concave shaped pole pieces is used to

1 increase space for rotation of coil
2 produce magnetic field which is parallel to plane of coil at any position
3 reduce weight of galvanometer
4 make magnetic induction weak at the centre
Magnetism and Matter

154227 Galvanometer can be converted into ammeter by

1 Low resistance called shunt resistance in parallel to the galvanometer
2 Very large resistance in parallel to the galvanometer
3 Series connection with a very small resistance
4 series connection with a very high resistance
Magnetism and Matter

154231 Van de Graaff generator produces

1 low voltage and high current
2 low voltage and low current
3 high voltage and high current
4 high voltage and low current
Magnetism and Matter

154235 Vibration magnetometer works on the principle of

1 torque acting on the bar magnet
2 force acting on the bar magnet
3 Both the force and the torque acting on the bar magnet
4 None of the above
Magnetism and Matter

154253 Sensitivity of a moving coil galvanometer can be increased by

1 decreasing the number of turns of coil
2 increasing the number of turns of coil
3 decreasing the area of a coil
4 by using a weak magnet
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Magnetism and Matter

154221 In moving coil galvanometer, strong horse shoe magnet of concave shaped pole pieces is used to

1 increase space for rotation of coil
2 produce magnetic field which is parallel to plane of coil at any position
3 reduce weight of galvanometer
4 make magnetic induction weak at the centre
Magnetism and Matter

154227 Galvanometer can be converted into ammeter by

1 Low resistance called shunt resistance in parallel to the galvanometer
2 Very large resistance in parallel to the galvanometer
3 Series connection with a very small resistance
4 series connection with a very high resistance
Magnetism and Matter

154231 Van de Graaff generator produces

1 low voltage and high current
2 low voltage and low current
3 high voltage and high current
4 high voltage and low current
Magnetism and Matter

154235 Vibration magnetometer works on the principle of

1 torque acting on the bar magnet
2 force acting on the bar magnet
3 Both the force and the torque acting on the bar magnet
4 None of the above
Magnetism and Matter

154253 Sensitivity of a moving coil galvanometer can be increased by

1 decreasing the number of turns of coil
2 increasing the number of turns of coil
3 decreasing the area of a coil
4 by using a weak magnet
Magnetism and Matter

154221 In moving coil galvanometer, strong horse shoe magnet of concave shaped pole pieces is used to

1 increase space for rotation of coil
2 produce magnetic field which is parallel to plane of coil at any position
3 reduce weight of galvanometer
4 make magnetic induction weak at the centre
Magnetism and Matter

154227 Galvanometer can be converted into ammeter by

1 Low resistance called shunt resistance in parallel to the galvanometer
2 Very large resistance in parallel to the galvanometer
3 Series connection with a very small resistance
4 series connection with a very high resistance
Magnetism and Matter

154231 Van de Graaff generator produces

1 low voltage and high current
2 low voltage and low current
3 high voltage and high current
4 high voltage and low current
Magnetism and Matter

154235 Vibration magnetometer works on the principle of

1 torque acting on the bar magnet
2 force acting on the bar magnet
3 Both the force and the torque acting on the bar magnet
4 None of the above
Magnetism and Matter

154253 Sensitivity of a moving coil galvanometer can be increased by

1 decreasing the number of turns of coil
2 increasing the number of turns of coil
3 decreasing the area of a coil
4 by using a weak magnet