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What are the factors that affects resistance?

Important Questions on Electricity and Circuits

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Two solid conductors are made up of same material, have same length and same resistance. One of them has a circular cross section of area A1 and the other one has a square cross section of area A2. The ratio A1A2 is
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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

 

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Model a torch battery of length l to be made up of a thin cylindrical bar of radius a and a concentric thin cylindrical shell of radius b filled in between with an electrolyte of resistivity ρ (see figure). If the battery is connected to a resistance of value R, the maximum Joule heating in R will take place for :

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A metal rod of length 10 cm and a rectangular cross-section of 1 cm×12 cm is connected to a battery across opposite faces. The resistance will be
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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 carbon resistor of 56±5.6  is to be marked with rings of different colours for its identification. The colour code sequence will be
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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
MEDIUM
An electric cable has just one copper wire of radius 8 mm and resistance 10 Ω. This single copper wire cable is replaced by 4 different well insulated copper wires each of radius 6 mm, then total resistance of the cable is
HARD
In an aluminum (Al) bar of square cross-section, a square hole is drilled and is filled with iron (Fe) as shown in the figure. The electrical resistivities of Al and Fe are 2.7×10-8Ω m and 1.0×10-7Ω m , respectively. The electrical resistance between the two faces P and Q of the composite bar is

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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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HARD
Resistivity of the material of a conductor having uniform area of cross-section varies along its length on x, according to the relation ρ=ρ0a+bx; if L is length and A is cross-section area of conductor, then resistance of the conductor given by ρ0,a,b are constants)
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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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A tapered bar of length L and end diameters D1 and D2 is made of a material of electrical resistivity ρ. The electrical resistance of the bar is
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The electric resistance of a certain wire of iron is R. If its length and radius are both doubled, then
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When operated at 240 V, a current of 10 A was seen flowing through a heating wire and it's temperature reaches to 1000 °C. If the temperature coefficient of the wire is 1×10-3 °C-1. Its resistance at a temperature of 0 °C is
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If the last band on the carbon resistor is absent, then the tolerance is

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On stretching a wire its length is increased by 0.2%, its resistance will
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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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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