Home
Class 12
PHYSICS
A battery of emf E and internal resistan...

A battery of emf E and internal resistance r is connected across a resistance R. Resistance R can be adjusted to any value greater then or equla to zero. A graph is plotted between the current passing through the resistance (I) and potential (V) across it. Select the correct alternatives.

A

Internal resistance of the battery is `5 Omega`

B

Emf of the battery is 10V

C

Maximum current that can be taken from the battery is 2A.

D

V - I graph can never be a straight lines as shown in fig.

Text Solution

Verified by Experts

The correct Answer is:
A, B, C

Potential difference acoss resistance is equal to the potential
difference across the terminals of the battery. So V = E - lr.
This is an equation of a straight line. Comparing this with the given graph, we can see that E = 10V and 1`r = 5 Omega.` Also
`I_(max) = (E )/(r ) = (10)/(5) =2A`
When external resistance R =0.
Promotional Banner

Topper's Solved these Questions

  • ELECTRIC CURRENT AND CIRCUIT

    CENGAGE PHYSICS|Exercise Comprehension|35 Videos
  • ELECTRIC CURRENT AND CIRCUIT

    CENGAGE PHYSICS|Exercise Interger|8 Videos
  • ELECTRIC CURRENT AND CIRCUIT

    CENGAGE PHYSICS|Exercise Single Correct|72 Videos
  • ELECTRIC CURRENT & CIRCUITS

    CENGAGE PHYSICS|Exercise Kirchhoff s law and simple circuits|15 Videos
  • ELECTRIC FLUX AND GAUSS LAW

    CENGAGE PHYSICS|Exercise MCQ s|38 Videos

Similar Questions

Explore conceptually related problems

A battery of emf E and internal resistance r is connected across a resistance R. Resistance R can be adjusted to any value greater than or equal to zero. A graph is plotted between the current passing through the resistance (I) and potential difference across the termainals of the battery (V). Maximum power developed across the resistance R is

A battery of emf 2V and internal resistance 0.5(Omega) is connected across a resistance in 1 second?

A cell of emf E and internal resistance r is connected across an external resistance R . Plot a graph showing the variation o P.D . Across R , verses R .

A battery of e.m.f. 10 V and internal resistance 0.5 ohm is connected across a variable resistance R . The value of R for which the power delivered in it is maximum is given by

A battery is of emt E and internal resistance r . The value of external resistance R so that the power across eternal resistance is maximum :