What is the net force on the square coil ?

             

(1) 25×10-7N moving towards wire

(2) 25×10-7N moving away from wire

(3) 35×10-7N moving towards wire

(4) 35×10-7N moving away from wire

Subtopic:  Lorentz Force |
 71%
From NCERT
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Two long parallel copper wires carry currents of 5 A each in opposite directions. If the wires are separated by a distance of 0.5 m, then the force between the two wires will be:

1. \(10^{-5} \mathrm{~N} \), attractive
2. \(10^{-5} \mathrm{~N} \), repulsive
3. \(2 \times 10^{-5} N\), attractive 
4. \(2 \times 10^{-5} N\), repulsive


 

Subtopic:  Force between Current Carrying Wires |
 82%
From NCERT
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What is the relation between voltage sensitivity (σv) and current sensitivity (σi) of a moving coil galvanometer? (Resistance of Galvanometer = G)

1. σiG=σv                           

2. σvG=σi

3. Gσv=σi                           

4. Gσi=σv

Subtopic:  Moving Coil Galvanometer |
 72%
From NCERT
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Two galvanometers A and B require 3mA and 5mA respectively to produce the same deflection of 10 divisions. Then

(1) A is more sensitive than B

(2) B is more sensitive than A

(3) A and B are equally sensitive

(4) Sensitiveness of B is 5/3 times that of A

Subtopic:  Moving Coil Galvanometer |
 76%
From NCERT
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There long straight wires A, B and C are carrying current as shown figure. Then the resultant force on B is directed 

                          

(1) Towards A

(2) Towards C

(3) Perpendicular to the plane of paper and outward

(4) Perpendicular to the plane of paper and inward

Subtopic:  Force between Current Carrying Wires |
 80%
From NCERT
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Two long conductors, separated by a distance d carry current I1 and I2 in the same direction. They exert a force F on each other. Now the current in one of them is increased to two times and its direction is reversed. The distance is also increased to 3d. The new value of the force between them is-

1. -2F                           

2.  2F/3

3. -2F/3                           

4. -F/3

Subtopic:  Force between Current Carrying Wires |
 84%
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Current i is carried in a wire of length L. If the wire is turned into a circular coil, the maximum magnitude of torque in a given magnetic field B will be:

1. LiB22                     2. Li2B2

3. L2iB4π                     4. Li2B4π

Subtopic:  Current Carrying Loop: Force & Torque |
 76%
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An arrangement of three parallel straight wires placed perpendicular to the plane of paper carrying the same current I along the same direction as shown in the figure. Magnitude of force per unit length on the middle wire B is given by:

1. μoi22πd

2. 2μ0i2πd

3. 2μoi2πd

4. μoi22πd

Subtopic:  Magnetic Field due to various cases | Force between Current Carrying Wires |
 70%
From NCERT
NEET - 2017
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A long wire carrying a steady current is bent into a circular loop of one turn. The magnetic field at the center of loop is B. It is then bent into a circular coil of n turns. The magnetic field at the centre of this coil of n turns will be

(1) nB               

(2) n2B

(3) 2nB             

(4) 2n2B

Subtopic:  Magnetic Field due to various cases |
 86%
From NCERT
NEET - 2016
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A wire carrying current l has the shape as shown in the adjoining figure. Linear parts of the wire are very long and parallel to X-axis while the semicircular portion of radius R is lying in the Y-Z plane. Magnetic field at point O is :


1. B=μ04π×iRπi^+2k^

2. B=-μ04π×iRπi^-2k^

3. B=-μ04π×iRπi^+2k^

4. B=μ04π×iRπi^-2k^

Subtopic:  Magnetic Field due to various cases |
 67%
NEET - 2015
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