A small charged ball having mass m and charge q is suspended from a rigid support by means of an inextensible thread of length l. It is made to rotate on a horizontal circular path in a uniform
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A positively charged particle of mass m and charge q is projected on a rough horizontal x-y plane surface with z- axis in the vertically upward direction. Both electric and magnetic fields are acting in the region and given by
05
Sep
A positively charged particle of mass m and charge q is projected on a rough horizontal x-y plane surface with z- axis in the vertically upward direction. Both electric and magnetic fields are acting in the region and given by A small charged ball having mass m and charge q is suspended from a rigid [...]
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A small charged ball having mass m and charge q is suspended from a rigid support by means of an inextensible thread of length l. It is made to rotate on a horizontal circular path in a uniform ,
calculate the radius of circular path on which the ball moves. ,
time independent magnetic field of induction B which is directed upward. The time period of revolution of the ball is T0. If the thread is always stretched ,
There is a constant homogeneous electric field of 100Vm^−1 within the region x = 0 and x = 0.167m pointing in x-direction. There is a constant homogeneous magnetitic field B within the region x=0.167m and x = 0.334m pointing in the z-direction. A proton at rest at the origin is released in positive
05
Sep
There is a constant homogeneous electric field of 100Vm^−1 within the region x = 0 and x = 0.167m pointing in x-direction. There is a constant homogeneous magnetitic field B within the region x=0.167m and x = 0.334m pointing in the z-direction. A proton at rest at the origin is released in positive A small [...]
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A small charged ball having mass m and charge q is suspended from a rigid support by means of an inextensible thread of length l. It is made to rotate on a horizontal circular path in a uniform ,
calculate the radius of circular path on which the ball moves. ,
time independent magnetic field of induction B which is directed upward. The time period of revolution of the ball is T0. If the thread is always stretched ,
A small charged ball having mass m and charge q is suspended from a rigid support by means of an inextensible thread of length l. It is made to rotate on a horizontal circular path in a uniform, time independent magnetic field of induction B which is directed upward. The time period of revolution of the ball is T0. If the thread is always stretched, calculate the radius of circular path on which the ball moves.
05
Sep
A small charged ball having mass m and charge q is suspended from a rigid support by means of an inextensible thread of length l. It is made to rotate on a horizontal circular path in a uniform, time independent magnetic field of induction B which is directed upward. The time period of revolution of [...]
Tags:
A small charged ball having mass m and charge q is suspended from a rigid support by means of an inextensible thread of length l. It is made to rotate on a horizontal circular path in a uniform ,
calculate the radius of circular path on which the ball moves. ,
time independent magnetic field of induction B which is directed upward. The time period of revolution of the ball is T0. If the thread is always stretched ,