Current Electricity
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A 5V battery with internal resistance 2Ω and a 2V battery with internal resistance 1Ω are connected to a 10Ω resistor as shown in the figure. The current in the 10 Ω resistor is 
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0.27 A P2 to P1
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0.03 A P1 to P2
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0.03 A P2 to P1
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0.27 A P1 to P2
C.
0.03 A P2 to P1

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A long straight wire of radius ‘a’ carries a steady current i. The current is uniformly distributed across its cross section. The ratio of the magnetic field at a/2 and 2 a is
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1/4
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4
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1
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1/2
C.
1
A material ‘B’ has twice the specific resistance of ‘A’. A circular wire made of ‘B’ has twice the diameter of a wire made of ‘A’. Then for the two wires to have the same resistance, the ratio
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2
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1
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1/4
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1/2
A.
2
A material ‘B’ has twice the specific resistance of ‘A’. A circular wire made of ‘B’ has twice the diameter of a wire made of ‘A’. Then for the two wires to have the same resistance, the ratio AA /AB of their respective lengths must be
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2
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1
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1/4
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3
A.
2
A rectangular loop has a sliding connector PQ of length
C.
A moving conductor is equivalent to a battery of emf
= vBI
Equivalent circuit I = I1 + I2
Applying Kirchhoff's law
I1R + IR -vBl = 0 .... (i)
I2R + IR -vBl = 0 .... (ii)
Adding Eqs. (i) and (ii), we get
2IR + IR = 2vBI
I = 2VBI/3R
I1 = I2 = VBI/3R
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Mock Test Series
Mock Test Series



