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

362989 Current sensitivity of a moving coil galvanometer is \(5div/mA\) and its voltage sensitivity (angular deflection per unit voltage applied) is \(20div/V\). The resistance of the galvanometer is

1 \(250 \Omega\)
2 \(500 \Omega\)
3 \(25 \Omega\)
4 \(40 \Omega\)
PHXII04:MOVING CHARGES AND MAGNETISM

362990 A wire of length ' \(L\) ' is made in the form of a coil in a moving coil galvanometer. To have maximum sensitiveness the shape of the coil is

1 Circular
2 Elliptical
3 Rectangular
4 Square
PHXII04:MOVING CHARGES AND MAGNETISM

362991 A current of \(10^{-5}\) A produces a deflection of \(10^{\circ}\) in a moving coil galvanometer. A current of \(10^{-6} \mathrm{amp}\) in the same galvanometer produces a deflection of

1 \((1 / 100)^{\circ}\)
2 \(10^{\circ}\)
3 \(0.1^{\circ}\)
4 \(1^{\circ}\)
PHXII04:MOVING CHARGES AND MAGNETISM

362992 The coil of the moving coil galvanometer is wound over an aluminium frame

1 Because aluminium is a good conductor
2 Because aluminium is very light
3 Because aluminium is comparatively cheaper
4 To provide electro-magnetic damping
NEET Test Series from KOTA - 10 Papers In MS WORD WhatsApp Here
PHXII04:MOVING CHARGES AND MAGNETISM

362989 Current sensitivity of a moving coil galvanometer is \(5div/mA\) and its voltage sensitivity (angular deflection per unit voltage applied) is \(20div/V\). The resistance of the galvanometer is

1 \(250 \Omega\)
2 \(500 \Omega\)
3 \(25 \Omega\)
4 \(40 \Omega\)
PHXII04:MOVING CHARGES AND MAGNETISM

362990 A wire of length ' \(L\) ' is made in the form of a coil in a moving coil galvanometer. To have maximum sensitiveness the shape of the coil is

1 Circular
2 Elliptical
3 Rectangular
4 Square
PHXII04:MOVING CHARGES AND MAGNETISM

362991 A current of \(10^{-5}\) A produces a deflection of \(10^{\circ}\) in a moving coil galvanometer. A current of \(10^{-6} \mathrm{amp}\) in the same galvanometer produces a deflection of

1 \((1 / 100)^{\circ}\)
2 \(10^{\circ}\)
3 \(0.1^{\circ}\)
4 \(1^{\circ}\)
PHXII04:MOVING CHARGES AND MAGNETISM

362992 The coil of the moving coil galvanometer is wound over an aluminium frame

1 Because aluminium is a good conductor
2 Because aluminium is very light
3 Because aluminium is comparatively cheaper
4 To provide electro-magnetic damping
PHXII04:MOVING CHARGES AND MAGNETISM

362989 Current sensitivity of a moving coil galvanometer is \(5div/mA\) and its voltage sensitivity (angular deflection per unit voltage applied) is \(20div/V\). The resistance of the galvanometer is

1 \(250 \Omega\)
2 \(500 \Omega\)
3 \(25 \Omega\)
4 \(40 \Omega\)
PHXII04:MOVING CHARGES AND MAGNETISM

362990 A wire of length ' \(L\) ' is made in the form of a coil in a moving coil galvanometer. To have maximum sensitiveness the shape of the coil is

1 Circular
2 Elliptical
3 Rectangular
4 Square
PHXII04:MOVING CHARGES AND MAGNETISM

362991 A current of \(10^{-5}\) A produces a deflection of \(10^{\circ}\) in a moving coil galvanometer. A current of \(10^{-6} \mathrm{amp}\) in the same galvanometer produces a deflection of

1 \((1 / 100)^{\circ}\)
2 \(10^{\circ}\)
3 \(0.1^{\circ}\)
4 \(1^{\circ}\)
PHXII04:MOVING CHARGES AND MAGNETISM

362992 The coil of the moving coil galvanometer is wound over an aluminium frame

1 Because aluminium is a good conductor
2 Because aluminium is very light
3 Because aluminium is comparatively cheaper
4 To provide electro-magnetic damping
PHXII04:MOVING CHARGES AND MAGNETISM

362989 Current sensitivity of a moving coil galvanometer is \(5div/mA\) and its voltage sensitivity (angular deflection per unit voltage applied) is \(20div/V\). The resistance of the galvanometer is

1 \(250 \Omega\)
2 \(500 \Omega\)
3 \(25 \Omega\)
4 \(40 \Omega\)
PHXII04:MOVING CHARGES AND MAGNETISM

362990 A wire of length ' \(L\) ' is made in the form of a coil in a moving coil galvanometer. To have maximum sensitiveness the shape of the coil is

1 Circular
2 Elliptical
3 Rectangular
4 Square
PHXII04:MOVING CHARGES AND MAGNETISM

362991 A current of \(10^{-5}\) A produces a deflection of \(10^{\circ}\) in a moving coil galvanometer. A current of \(10^{-6} \mathrm{amp}\) in the same galvanometer produces a deflection of

1 \((1 / 100)^{\circ}\)
2 \(10^{\circ}\)
3 \(0.1^{\circ}\)
4 \(1^{\circ}\)
PHXII04:MOVING CHARGES AND MAGNETISM

362992 The coil of the moving coil galvanometer is wound over an aluminium frame

1 Because aluminium is a good conductor
2 Because aluminium is very light
3 Because aluminium is comparatively cheaper
4 To provide electro-magnetic damping
NEET Test Series from KOTA - 10 Papers In MS WORD WhatsApp Here