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In the network shown,
The correct answer is:
Related Questions to study
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In the circuit shown,
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Five identical resistances are connected in a network as shown. The resistance measured between A and B is 1. Each resistance is
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The effective resistance of the network between points A and B
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An elliptical cavity is carved within a perfect conductor. A positive charge q is placed at the centre of the cavity. The points A and B are on the cavity surface as shown in the figure. Then
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A uniform rod of length l and mass m is charged with a charge q is hanging from one of its ends as shown in figure. At a horizontal electric field E is switched on in the horizontal direction perpendicular to the rod. Find the minimum value of E so that the rod rotates upto horizontal level.
A uniform rod of length l and mass m is charged with a charge q is hanging from one of its ends as shown in figure. At a horizontal electric field E is switched on in the horizontal direction perpendicular to the rod. Find the minimum value of E so that the rod rotates upto horizontal level.
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The resultant magnetic moment for the following arrangement (non coplanar vectors)
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Two thin different dielectrics are inserted between a parallel plate capacitor. Then electric field separation graph is
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Charge q is distributed uniformly on an arc of radius R subtending an angle at its centre. Another charge –q is placed at the centre of the arc. The electric dipole moment of the system is
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The variation of electric field between the two charges and along the line joining the charges is plotted against distance from q1 (taking rightward direction of electric field as positive) as shown in the figure. Then the correct statement is
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A, B, C, D corners of a square are occupied by and charges respectively. The side of square is 2a. The field at the mid point of side CD is zero. What is the value of ?
A, B, C, D corners of a square are occupied by and charges respectively. The side of square is 2a. The field at the mid point of side CD is zero. What is the value of ?
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In the circuit shown, a potential difference of 60 V is applied across AB. The potential difference between the points M and N is
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