Light is an electromagnetic wave. Its speed in vacuum is given by the expression
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(a) |
(b) |
(c) |
(d) |
Light is an electromagnetic wave. Its speed in vacuum is given by the expression
|
(a) |
(b) |
(c) |
(d) |
(d) ![]()
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If a proton is projected in a direction perpendicular to a uniform magnetic field with velocity v and an electron is projected along the lines of force, what will happen to proton and electron
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(a) The electron will travel along a circle with constant speed and the proton will move along a straight line |
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(b) Proton will move in a circle with constant speed and there will be no effect on the motion of electron |
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(c) There will not be any effect on the motion of electron and proton |
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(d) The electron and proton both will follow the path of a parabola |
$\text{y}=\text{a}_1\sin\omega\text{t}$
$\text{y}=\text{a}_2\sin(\omega\text{t}+\in)$
$\text{y}=\text{a}_1\sin2\omega\text{t}$
$\text{y}=\text{a}_2\sin2(\omega\text{t}+\in)$
Interference fringes may be observed due to superposition of:
A piece of wire of resistance 4 ohms is bent through 180° at its mid point and the two halves are twisted together, then the resistance is
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(a) 8 ohms |
(b) 1 ohm |
(c) 2 ohms |
(d) 5 ohms |