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प्रश्न
Two moving coil meters, M1 and M2 have the following particulars:
R1 = 10 Ω, N1 = 30,
A1 = 3.6 × 10–3 m2, B1 = 0.25 T
R2 = 14 Ω, N2 = 42,
A2 = 1.8 × 10–3 m2, B2 = 0.50 T
(The spring constants are identical for the two meters.)
Determine the ratio of
- current sensitivity and
- voltage sensitivity of M2 and M1.
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उत्तर
For moving coil meter M1:
Resistance, R1 = 10 Ω
Number of turns, N1 = 30
Area of cross-section, A1 = 3.6 × 10–3 m2
Magnetic field strength, B1 = 0.25 T
Spring constant K1 = K
For moving coil meter M2:
Resistance, R2 = 14 Ω
Number of turns, N2 = 42
Area of cross-section, A2 = 1.8 × 10–3 m2
Magnetic field strength, B2 = 0.50 T
Spring constant, K2 = K
(a) Current sensitivity of M1 is given as:
`I_(s_1) = (N_1B_1A_1)/K_1`
And, the current sensitivity of M2 is given as:
`I_(s_2) = (N_2B_2A_2)/K_2`
∴ Ratio `I_(s_2)/I_(s_1) = (N_2B_2A_2K_1)/(N_1B_1A_1K_2)`
= `(42 xx 0.5 xx 1.8 xx 10^-3 xx K)/(30 xx 0.25 xx 3.6 xx 10^-3 xx K)`
= `(37.8 xx 10^-3)/(27 xx 10^-3)`
= 1.4
Hence, the ratio of the current sensitivity of M2 to M1 is 1.4.
(b) Voltage sensitivity for M2 is given as:
`V_(s_2) = (N_2B_2A_2)/(K_2R_2)`
And, voltage sensitivity for M1 is given as:
`V_(s_1) = (N_1B_1A_1)/(K_1R_1)`
∴ Ratio `V_(s_2)/V_(s_1) = (N_2B_2A_2K_1R_1)/(N_1B_1A_1K_2R_2)`
= `(42 xx 0.5 xx 1.8 xx 10^-3 xx K xx 10)/(30 xx 0.25 xx 3.6 xx 10^-3 xx K xx 14)`
= `(378 xx 10^-3)/(378 xx 10^-3)`
= 1
Hence, the ratio of the voltage sensitivity of M2 to M1 is 1.
संबंधित प्रश्न
Show that the current flowing through a moving coil galvanometer is directly proportional to the angle of deflection of coil.
Write the underlying principle of a moving coil galvanometer.
- A circular coil of 30 turns and radius 8.0 cm carrying a current of 6.0 A is suspended vertically in a uniform horizontal magnetic field of magnitude 1.0 T. The field lines make an angle of 60° with the normal of the coil. Calculate the magnitude of the counter torque that must be applied to prevent the coil from turning.
- Would your answer change, if the circular coil in (a) were replaced by a planar coil of some irregular shape that encloses the same area? (All other particulars are also unaltered.)
A galvanometer has a resistance of 16Ω. It shows full scale deflection, when a current of 20 mA is passed through it. The only shunt resistance available is 0.06 which is not appropriate to convert a galvanometer into an ammeter. How much resistance should be connected in series with the coil of galvanometer, so that the range of ammeter is 8 A?
How will you convert a moving coil galvanometer into a voltmeter?
Define the current sensitivity of a galvanometer ?
Figure shows two circuits each having a galvanometer and a battery of 3V.
When the galvanometers in each arrangement do not show any deflection, obtain the ratio R1/R2.

Explain, giving reasons, the basic difference in converting a galvanometer into (i) a voltmeter and (ii) an ammeter?
Draw a labelled diagram of a moving coil galvanometer and explain its working. What is the function of radial magnetic field inside the coil?
State the principle of the working of a moving coil galvanometer, giving its labeled diagram ?
Why are the pole pieces of a horseshoe magnet in a moving coil galvanometer made cylinder in shape?
State how a moving coil galvanometer can be converted into an ammeter.
Define the term ‘current sensitivity’ of a moving coil galvanometer.
The coil of a moving coil galvanometer is wound over a metal frame in order to ______.
A galvanometer of resistance 100 Ω gives a full-scale deflection for a current of 10−5 A. To convert it into an ammeter capable of measuring up to 1 A we should connect a resistance of ______.
The coil of galvanometer consists of 100 turns and effective area of 1 square cm. The restoring couple is 10-8 N-m/rad. The magnetic field between the pole pieces is 5T. The current sensitivity of this galvanometer will be ______.
