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A circular arc of wire subtends an angle π2 at the centre. If it carries a current I and its radius of curvature is R, then the magnetic field at the centre of the arc is

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Important Questions on Magnetic Effect of Current

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The magnetic field of a given length of wire carrying a current for a single turn circular coil at centre is B, then its value for two turns for the same wire when same current passing through it is 
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If in a circular coil A of radius R, current I is flowing and in another coil B of radius 2R, a current 2I is flowing; then the ratio of the magnetic fields BA and BB produced by them will be
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A long wire carries a steady current. It is bent into a circle of one turn and the magnetic field at the centre of the coil is B. It is then bent into a circular loop of n turns. The magnetic field at the centre of the coil will be
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The magnetic field due to a current carrying circular loop of radius 3 cm at a point on the axis at a distance of 4 cm from the centre is 54 μT. What will be its value at the centre of the loop
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A long solenoid has 200 turns per cm and carries a current i. The magnetic field at its centre is 6.28×102 Weber/m2. Another long solenoid has 100 turns per cm and it carries a current i/3. The value of the magnetic field at its centre is
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The magnetic induction at centre O due to the arrangement shown in figure.

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A current of 30 amp is flowing in a conductor as shown in the figure. The magnetic induction at point O will be

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Two circular coils 1 and 2 are made from the same wire but the radius of the 1st coil is twice that of the 2nd coil. What is the ratio of potential difference applied across them, so that the magnetic field at their centres is the same?