If the angular momentum of an electron is then the magnitude of the magnetic moment will be
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3. ej.2m
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Two straight long conductors AOB and COD are perpendicular to each other and carry currents and . The magnitude of the magnetic induction at a point P at a distance a from the point O in a direction perpendicular to the plane ACBD is:
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3. 4.
An electron, a proton, a deuteron and an alpha particle, each having the same speed are in a region of constant magnetic field perpendicular to the direction of the velocities of the particles. The radius of the circular orbits of these particles are respectively , , and . It follows that
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In the given figure, the electron enters into the magnetic field. It deflects in the direction:
1. | \(\text{+ ve}~ X ~\text{direction}\) |
2. | \(\text{- ve}~ X ~\text{direction}\) |
3. | \(\text{+ve }~Y~\text{direction}\) |
4. | \(\text{– ve}~Y~\text{direction}\) |
The magnetic field at the centre of a circular coil of radius r is times that due to a long straight wire at a distance r from it, for equal currents. Figure here shows three cases : in all cases the circular part has radius r and straight ones are infinitely long. For same current the B field at the centre P in cases 1, 2, 3 have the ratio
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A proton of mass and charge is projected with a speed of at an angle of to the X-axis. If a uniform magnetic field of 0.104 Tesla is applied along Y-axis, the path of the proton is:
1. A circle of radius = 0.2 m and time period
2. A circle of radius = 0.1 m and time period
3. A helix of radius = 0.1 m and time period
4. A helix of radius = 0.2 m and time period
The charge on a particle Y is double the charge on particle X. These two particles X and Y after being accelerated through the same potential difference enter a region of the uniform magnetic field and describe circular paths of radii and respectively. The ratio of the mass of X to that of Y is:
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A cell is connected between the points A and C of a circular conductor ABCD of centre O with angle AOC = . If and are the magnitudes of the magnetic fields at O due to the currents in ABC and ADC respectively, the ratio is:
1. 0.2
2. 6
3. 1
4. 5
The field normal to the plane of a coil of n turns and radius r which carries a current i is measured on the axis of the coil at a small distance h from the centre of the coil. This is smaller than the field at the centre by the fraction
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