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A metal wire of circular cross - section has a resistance R1 . The wire is now stretched without breaking so that its length is doubled and the density is assumed to remain the same. If the resistance of the wire now becomes R2 then R2 :R1 is

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Important Questions on Current Electricity

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A conducting wire has length L1 and diameter d1. After stretching the same wire length becomes L2 and diameter d2 . The ratio of resistance before and after stretching is
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The resistance of a wire is R ohm. If it is melted and stretched to n times its original length, its new resistance will be
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The electrical conductivity of a metal is
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The resistance of a wire is R ohm. If it is melted and stretched to n times its original length, its new resistance will be
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A copper wire is stretched to make it 0.5% longer. The percentage change in its electrical resistance if its volume remains unchanged is:
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A uniform wire of length l and radius r has a resistance of 100 Ω . It is recast into a wire of radius r2. The resistance of new wire will be-
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A wire made of aluminium having resistivity ρ=2.8×10-8 Ω-m with a circular cross-section and has a radius of 2×10-3 m. A current of 5 A flows through the wire. If the voltage difference between the ends is 1 V,  the length of the wire in m is 
MEDIUM

In a conductor, if the number of conduction electrons per unit volume is 8.5×1028  m-3 and mean free time is 25fs (femtosecond), its approximate resistivity is: me=9.1×10-31kg

 

MEDIUM
A resistance is shown in the figure. Its value and tolerance are given respectively by:
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MEDIUM

A carbon resistance has the following colour code. What is the value of the resistance?
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A wire of resistance 12 ohms per meter is bent to form a complete circle of radius 10 cm.  The resistance between its two diametrically opposite points, A and B as shown in the figure is

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The Wheatstone bridge shown in the figure below, gets balanced when the carbon resistor used as R1 has the colour code (orange, red, brown). The resistors R2 and R4 are 80 Ω and 40 Ω, respectively. Assuming that the colour code for the carbon resistors gives their accurate values, the colour code for the carbon resistor, used as R3, would be

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MEDIUM
A 200 Ω resistor has certain colour code. If one replaced the red colour by green in the code, the new resistance will be:
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Consider a cylindrical conductor of length L and area of cross-section A. The specific conductivity varies as σx=σ0Lx where x is the distance along the axis of the cylinder from one of its ends. The resistance of the system along the cylindrical axis is
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Space between two concentric conducting spheres of radii a and b (b>a) is filled with a medium of resistivity  ρ . The resistance between the two spheres will be:
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Consider four conducing materials copper, tungsten, mercury and aluminum with resistivity ρC, ρT, ρM and ρA respectively. Then :
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Masses of three wires of copper are in the ratio 1:3:5 and their lengths are in the ratio 5:3:1. The ratio of their electrical resistance are
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Two metal wires of identical dimensions are connected in series. If v1 and v2 are the conductivities of the metal wires respectively, the effective conductivity if the combination is:
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A 2 W carbon resistor is color coded with green, black, red and silver respectively. The maximum current which can be passed through this resistor is:
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A carbon resistor of 47±4.7  is to be marked with rings of different colours for its identification. The colour code sequence will be: