Question types

Current Electricity question types

157 questions across 7 question groups — pick any mix to generate a Physics paper with step-by-step answer keys.

157
Questions
7
Question groups
5
Question types
Sample Questions

Current Electricity questions

One sample from each question group in this chapter. Select any group above to see the full set with answer keys.

Electromotive forces of two cells are $\varepsilon_1$ and $\varepsilon_2$ and their internal resistances are $r_1$ and $r_2$ Both cells are joined in lateral combination. Write equivalent electromotive force of this combination.
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If 12 resistances each of $12 \Omega$ resistance are joined in a cubical network, then calculate the equivalent resistance at the corners opposite to diagonals of this network.
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A cell whose electromotive force is 2 volt and internal resistance 0.1 is joined with an external resistance of 3,9 . Find the terminal voltage of the cell.
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Q 163 Marks Question3 Marks
Obtain essential expression for balanced position of Wheatstone Bridge.###Explain the principle of Wheatstone Bridge. How can we find the resistance of any resistor using this principle?
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Q 173 Marks Question3 Marks
State Kirchhoff's laws and explain them by giving examples.###Explain that first law of Kirchhoff is equivalent to law of conservation of charge and the second law is a descriptive form of Ohm's law.###For a current carrying conductor, write Kirchhoff's laws of charge and energy conservation.
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Q 183 Marks Question3 Marks
What is an electric cell? Describe its construction. How many types of electric cells are there? By defining electromotive force of a cell, establish an expression for internal resistance of cell in any circuit and state factors on which internal resistance depends.
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Q 193 Marks Question3 Marks
(i) What is meant by electric power? Prove that $P=\frac{V^2}{R}$ or $P=I^2 R$. Define one-watt electric power.(ii) Define electric energy. Prove that $P = I ^2 R \Delta t$
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Q 203 Marks Question3 Marks
Establish an expression for mobility by giving definition of mobility. Establish relation between mobility of free electrons and electric current.
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In the given figure, a part ABC of electric circuit is shown. The magnitudes of potentials at points $A, B$ and $C$ are and respectively, then find the value of potential at point $O$.
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A thick wire of $15 \Omega$ is stretched to three times its original length. Assuming that the density of the wire remains unchanged, calculate the resistance of the new wire.
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The number of free electrons in a unit volume copper conductor estimated in Example 8.1 is 8.5 x 1028 per m3.How long does an electron take to drift from one end of a wire 3.0 m long to its other end? The area of cross-section of the wire is 2.0 x 10-6 m2and it is carrying a current of 3.0 A.
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