In an ammeter 0.2% of main current passes through the galvanometer. If resistance of galvanometer is G, the resistance of ammeter will be:
1.
2.
3.
4.
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A beam of electrons passes un-deflected through mutually perpendicular electric and magnetic fields. If the electric field is switched off, and the same magnetic field is maintained, the electrons move:
1. in an elliptical orbit
2. in a circular orbit
3. along a parabolic path
4. along a straight line
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When a charged particle moving with velocity is subjected to a magnetic field of induction , the force on it is non-zero. This implies that:
1. angle between and is necessarily 90o.
2. angle and between can have any value other than 90o.
3. angle between and have any value other than zero and 180o.
4. angle between and is either zero or 180o.
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A circuit contains an ammeter, a battery of 30 V, and a resistance 40.8 all connected in series. If the ammeter has the coil of resistance 480 and a shunt of 20 , then reading in the ammeter will be:
1. 0.5 A
2. 0.02 A
3. 2 A
4. 1 A
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and ions are projected on the photographic plate with the same velocity in a mass spectrograph. Which one will strike the farthest?
1. 2.
3. 4.
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A beam of cathode rays is subjected to crossed Electric (E) and magnetic fields(B). The fields are adjusted such that the beam is not deflected. The specific charge of the cathode rays is given by:
1. 2.
3. 4.
(where V is the potential difference between cathode and anode)
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A neutron of mass \(m\) enters a uniform magnetic field \(B\) with the velocity \(v\) perpendicular to it. The radius of the circular path made by a neutron is :
1. \(\frac{{mv}}{{B}}\)
2. \(\frac{{mv}}{{B}^2}\)
3. \(Infinity\)
4. \(Zero\)
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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.
2.
3.
4.
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A square loop ABCD carrying a current i, is placed near and coplanar with a long straight conductor XY carrying a current I, the net force on the loop will be:
1. 2.
3. 4.
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