When a resistance of α Ω is connected at the end

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 Multiple Choice QuestionsMultiple Choice Questions

261.

Two equal resistances R are joined with voltage source V in (i)series (ii)parallel, the ratio of electrical power consumed in two cases will be

  • 1:4

  • 4:1

  • 2:1

  • 1:2


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262.

When a resistance of α Ω is connected at the ends of a battery, its potential difference decreases from 40 V to 30V. The internal resistance of the battery is

  • 1.5Ω


A.

Given:- E=40 V, V=30V , r=α Ω

Internal resistance

r=EV-1R=4030-1×9=13×9=3Ω


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263.

The equivalent resistance and potential difference between A and B for the circuit              

respectively are

  • 4Ω, 8V

  • 8Ω, 4V

  • 2Ω, 2V

  • 16Ω, 2V


264.

A wire of resistance R is divided in equal parts, then these parts are joined in parallel, the equivalent resistance of the combination will be

  • nR

  • Rn

  • nR

  • Rn2


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265.

The potential difference between point A and B is

  • 207  V

  • 407V

  • 107V

  • zero


266.

When a certain current is passed in the circuit as shown in figure, 10 kcal of heat is produced in 5 Ω resistance. How much heat is produced in 4 Ω resistance?

  • 4 kcal

  • 2 kcal

  • 5 kcal

  • 3 kcal


267.

In the given circuit, what will be the equivalent resistance between the points A and B ?

  • 10 / 3 Ω

  • 20 / 3 Ω

  • 10 / 5 Ω

  • 5 Ω


268.

A uniform wire of length I and having resistance R is cut into n equal parts and all parts are connected in parallel, then the equivalent resistance will be :

  • R

  • R/n

  • R/n2

  • n2R


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269.

For the network shown in the figure, the value of the current i is

  • 9 V35

  • 5 V18

  • 5 V9

  • 18 V5


270.

When a wire of uniform cross-section a, length land resistance R is bent into a complete circle, resistance between two of dimetrically opposite points will be

  • R4

  • R8

  • 4R

  • R2


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