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Magnetism and M...

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  • Question 1
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    A point charge is moving in a circle with constant speed. Consider the magnetic field produced by the charge at a fixed point P (not centre of the circle) on the axis of the circle.

  • Question 2
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    Four infinitely long `L' shaped wires, each carrying a current i have been arranged as shown in the figure. Obtain the magnetic field intensity at the point `O' equidistant from all the four corners.

  • Question 3
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    Two parallel, long wires carry currents i1 and i2 with i1 > i2. When the current are in the same direction, the magnetic field at a point midway between the wire is 10 mT. If the direction of i2 is reversed, the field becomes 30mT. The ratio i1/i2 is

  • Question 4
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    Two mutually perpendicular insulated long conducting wires carrying equal currents I, intersect at origin. Then the resultant magnetic induction at point P (2m, 3m) will be -

  • Question 5
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    Two parallel straight long conducting wires, which are placed at a distance r from each other, are carrying equal currents i in opposite directions. The value of magnetic induction at a point situated at a point situated x from one wire in between the wires will be

  • Question 6
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    Two very long straight parallel wires, parallel to y-axis, carry currents 4I and I, along +y direction and _ y direction respectively. The wires are passes through the x-axis at the points (d, 0, 0) and (-d, 0, 0) respectively. The graph of magnetic field z-component as one moves along the x-axis from x = _ d to x = +d, is best given by

  • Question 7
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    If the ratio of magnetic fields at two point in a definite direction due to a long current carrying wire is 3/4, then the ratio of the distances of these points from the wire will be :

  • Question 8
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    The points A and B are situated perpendicular to the axis of 2 cm long bar magnet at large distances x and 3 x from the centre on opposite sides. The ratio of magnetic fields at A and B will be approximately equal to

  • Question 9
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    Magnetic lines of force are

  • Question 10
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    Magnetic monopoles cannot exist

  • Question 11
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    A battery is connected between two points A and B the circumference of a uniform conducting ring of radius r and resistance R. One o the arcs AB of the ring subtends an angle q at the centre. The value of the magnetic induction at the centre due to the current in the ring is

  • Question 12
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    Two circular coils of wire each having a radius of 4 cm and 10 turns have a common axis and are 6 cm apart. If a current of 1 A passess through each coil in the opposite direction find the magnetic induction. At a point on the axis, midway between them.

  • Question 13
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    A direct current is passing through a wire. It is bent to form a coil of one turn. Now it is further bent to form a coil of two turns but at smaller radius. The ratio of the magnetic induction at the centre of this coil and at the centre of the coil of two turn is

  • Question 14
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     If a copper rod carries a direct current, the magnetic field associated with the current will be [CPMT 1984]

  • Question 15
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    Two wire loops PQRSP formed by joining two semicircular wires of radii R1 and R2 carries a current I as shown in (fig.) The magnitude of the magnetic induction at the centre C is ........

  • Question 16
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    In a coaxial, straight cable, the central conductor and the outer conductor carry equal currents in opposite directions. The magnetic field is zero.

  • Question 17
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    The magnetic field B inside a long solenoid, carrying a current of 10 A, is 3.14 × 10-2 T. Find the number of turns per unit length of the solenoid.

  • Question 18
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    A rod AB moves with a uniform velocity v in a uniform magnetic field as shown in figure.

  • Question 19
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    A charged particle is accelerated through a potential difference of 12 kV and acquires a speed of 1.0 × 106 m/s. It is then injected perpendicularly into a magnetic field of strength 0.2 T. Find the radius of the circle described by it.

  • Question 20
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    A neutron, a proton, an electron and an a-particle enters a uniform magnetic field with equal velocities. The field is directed along the inward normal to the plane of the paper. Which of these tracks followed are by a - particle.

  • Question 21
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    A proton of mass 1.67 × 10-27 kg and charge 1.6 × 10-19C is projected with a speed of 2 × 106 m/s at an angle of 60° to the x-axis. If a uniform magnetic field of 0.104 T is applied along the y-axis, the path of te proton is

  • Question 22
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    Three ions H+, He+ and O+2 having same kinetic energy pass through a region in which there is a uniform magnetic field perpendicular to their velocity, then

  • Question 23
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    A permeable substance is one

  • Question 24
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    Electrons moving with different speeds enter a uniform magnetic field in a direction perpendicular to the field. They will move along circular paths.

  • Question 25
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    In the previous question, time periods of rotation will be

  • Question 26
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    A particle having charge of 1 C, mass 1 kg and speed 1 m/s enters a uniform magnetic field, having magnetic induction of 1 T, at an angle q = 30° between velocity vector and magnetic induction. The pitch of its helical path is (in meters)

  • Question 27
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    The direction of magnetic force on the electron as shown in the diagram is along

                

  • Question 28
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     A particle moves in a region having a uniform magnetic field and a parallel, uniform electric field. at some instant, the velocity of the particle is perpendicular to the field direction. The path of the particle will be

  • Question 29
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    An electron is moving along positive x-axis. A uniform electric field exists towards negative y-axis. What should be the direction of magnetic field of suitable magnitude so that net force of electron is zero.

  • Question 30
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    A charged particle is released from rest in a region of uniform electric and magnetic fields, which are parallel to each other. The locus of the particle will be

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