Moving Coil Galvanometer & Its Applications
PHXII04:MOVING CHARGES AND MAGNETISM

363002 Assertion :
The coil is wound over the metallic frame in moving coil galvanometer.
Reason :
The metallic frame help in making steady deflection without any oscillation.

1 Both Assertion and Reason are correct and Reason is the correct explanation of the Assertion.
2 Both Assertion and Reason are correct but Reason is not the correct explanation of the Assertion.
3 Assertion is correct but Reason is incorrect.
4 Assertion is incorrect but reason is correct.
PHXII04:MOVING CHARGES AND MAGNETISM

363003 The purpose of soft iron cylinder between the pole pieces of the horse-shoe magnet in a moving coil galvanometer is

1 To increase the magnetic induction in the polar gap
2 To evenly distribute the magnetic lines of force
3 To provide a radial magnetic field
4 To reduce the magnetic flux leakage in the polar gap
PHXII04:MOVING CHARGES AND MAGNETISM

363004 moving coil galvanometer \(A\) has 200 turns and resistance \(100{\kern 1pt} \Omega \). Another meter \(B\) has 100 turns and resistance \(40{\kern 1pt} \Omega \). All the other quantities are same in both the cases. The current sensistivity of

1 A is 2 times of \(B\)
2 \(B\) is double as that of \(A\)
3 \(B\) is 5 times of \(A\)
4 \(A\) is 5 times of \(B\)
PHXII04:MOVING CHARGES AND MAGNETISM

363005 The sensitivity of a Galvanometer of resistance \({171 \Omega}\) becomes 20 times when we used shunt of \({x \Omega}\). Find \({x}\).

1 \({171 \Omega}\)
2 \({9 \Omega}\)
3 \({10 \Omega}\)
4 \({15 \Omega}\)
PHXII04:MOVING CHARGES AND MAGNETISM

363002 Assertion :
The coil is wound over the metallic frame in moving coil galvanometer.
Reason :
The metallic frame help in making steady deflection without any oscillation.

1 Both Assertion and Reason are correct and Reason is the correct explanation of the Assertion.
2 Both Assertion and Reason are correct but Reason is not the correct explanation of the Assertion.
3 Assertion is correct but Reason is incorrect.
4 Assertion is incorrect but reason is correct.
PHXII04:MOVING CHARGES AND MAGNETISM

363003 The purpose of soft iron cylinder between the pole pieces of the horse-shoe magnet in a moving coil galvanometer is

1 To increase the magnetic induction in the polar gap
2 To evenly distribute the magnetic lines of force
3 To provide a radial magnetic field
4 To reduce the magnetic flux leakage in the polar gap
PHXII04:MOVING CHARGES AND MAGNETISM

363004 moving coil galvanometer \(A\) has 200 turns and resistance \(100{\kern 1pt} \Omega \). Another meter \(B\) has 100 turns and resistance \(40{\kern 1pt} \Omega \). All the other quantities are same in both the cases. The current sensistivity of

1 A is 2 times of \(B\)
2 \(B\) is double as that of \(A\)
3 \(B\) is 5 times of \(A\)
4 \(A\) is 5 times of \(B\)
PHXII04:MOVING CHARGES AND MAGNETISM

363005 The sensitivity of a Galvanometer of resistance \({171 \Omega}\) becomes 20 times when we used shunt of \({x \Omega}\). Find \({x}\).

1 \({171 \Omega}\)
2 \({9 \Omega}\)
3 \({10 \Omega}\)
4 \({15 \Omega}\)
PHXII04:MOVING CHARGES AND MAGNETISM

363002 Assertion :
The coil is wound over the metallic frame in moving coil galvanometer.
Reason :
The metallic frame help in making steady deflection without any oscillation.

1 Both Assertion and Reason are correct and Reason is the correct explanation of the Assertion.
2 Both Assertion and Reason are correct but Reason is not the correct explanation of the Assertion.
3 Assertion is correct but Reason is incorrect.
4 Assertion is incorrect but reason is correct.
PHXII04:MOVING CHARGES AND MAGNETISM

363003 The purpose of soft iron cylinder between the pole pieces of the horse-shoe magnet in a moving coil galvanometer is

1 To increase the magnetic induction in the polar gap
2 To evenly distribute the magnetic lines of force
3 To provide a radial magnetic field
4 To reduce the magnetic flux leakage in the polar gap
PHXII04:MOVING CHARGES AND MAGNETISM

363004 moving coil galvanometer \(A\) has 200 turns and resistance \(100{\kern 1pt} \Omega \). Another meter \(B\) has 100 turns and resistance \(40{\kern 1pt} \Omega \). All the other quantities are same in both the cases. The current sensistivity of

1 A is 2 times of \(B\)
2 \(B\) is double as that of \(A\)
3 \(B\) is 5 times of \(A\)
4 \(A\) is 5 times of \(B\)
PHXII04:MOVING CHARGES AND MAGNETISM

363005 The sensitivity of a Galvanometer of resistance \({171 \Omega}\) becomes 20 times when we used shunt of \({x \Omega}\). Find \({x}\).

1 \({171 \Omega}\)
2 \({9 \Omega}\)
3 \({10 \Omega}\)
4 \({15 \Omega}\)
NEET Test Series from KOTA - 10 Papers In MS WORD WhatsApp Here
PHXII04:MOVING CHARGES AND MAGNETISM

363002 Assertion :
The coil is wound over the metallic frame in moving coil galvanometer.
Reason :
The metallic frame help in making steady deflection without any oscillation.

1 Both Assertion and Reason are correct and Reason is the correct explanation of the Assertion.
2 Both Assertion and Reason are correct but Reason is not the correct explanation of the Assertion.
3 Assertion is correct but Reason is incorrect.
4 Assertion is incorrect but reason is correct.
PHXII04:MOVING CHARGES AND MAGNETISM

363003 The purpose of soft iron cylinder between the pole pieces of the horse-shoe magnet in a moving coil galvanometer is

1 To increase the magnetic induction in the polar gap
2 To evenly distribute the magnetic lines of force
3 To provide a radial magnetic field
4 To reduce the magnetic flux leakage in the polar gap
PHXII04:MOVING CHARGES AND MAGNETISM

363004 moving coil galvanometer \(A\) has 200 turns and resistance \(100{\kern 1pt} \Omega \). Another meter \(B\) has 100 turns and resistance \(40{\kern 1pt} \Omega \). All the other quantities are same in both the cases. The current sensistivity of

1 A is 2 times of \(B\)
2 \(B\) is double as that of \(A\)
3 \(B\) is 5 times of \(A\)
4 \(A\) is 5 times of \(B\)
PHXII04:MOVING CHARGES AND MAGNETISM

363005 The sensitivity of a Galvanometer of resistance \({171 \Omega}\) becomes 20 times when we used shunt of \({x \Omega}\). Find \({x}\).

1 \({171 \Omega}\)
2 \({9 \Omega}\)
3 \({10 \Omega}\)
4 \({15 \Omega}\)