Subject

Physics

Class

ICSE Class 12

Pre Boards

Practice to excel and get familiar with the paper pattern and the type of questions. Check you answers with answer keys provided.

Sample Papers

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 Multiple Choice QuestionsLong Answer Type

21.

a) Two point charges Q1 = 400 μC and Q2 = 100 straight mu space straight C are kept fixed, 60 cm apart in vacuum.Find intensity of the electric field at midpoint of the line joining Q1 and Q2.
b) i) State Gauss' law.

ii) In an electric dipole, at which point is the electrical potential zero?


22.

a) Obtain an expression for equivalent capacitance when three capacitors C1, C2 and C3 are connected in series.

b) A metallic wire has a resistance of 3.0 ohm and 0o Cand 4.8 ohm at 150o C. Find the temperature coefficient of resistance of its material?


23. a) In the circuit shown in figure E1 and E2 are two cells having emfs 2 V and 3 V respectively, and negligible internal resistances. Applying Kirchoff's laws of electrical networks, find the values of currents I1 and I2.
 
b) State how a moving coil galvanometer can be converted into an ammeter.

24.

a) Draw a labelled circuit diagram of a potentiometer to measure internal resistance of a cell. Write the working formula.

b) i) Define Curie temperature.
ii) If magnetic susceptibility of a certain magnetic material is 0.0001, find its relative permeability.


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 Multiple Choice QuestionsShort Answer Type

25.

i) Two infinitely long current carrying conductors X and Y are kept parallel to each other, 24 cm apart in vacuum. They carry currents of 5 A and 7 A respectively, in the same direction, as shown in the figure below. Find the position os a neutral point, i.e., a point where resultant magnetic flux density is zero.



ii) If current through the conductor Y is reversed in direction, will neutral point lie between x and Y, to the left of X or to the left of Y?


26.

i) Define Ampere in terms of force between two current carrying conductors.

ii) What is an ideal transformer.


 Multiple Choice QuestionsLong Answer Type

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27.

a) A coil having self-inductance of 0.7 H and resistance of 165 ohm is connected to an ac source of 275 V, 50 Hz. If straight pi space equals space 22 over 7.
Calculate:

i) reactance of the coil
ii) impedance of the coil
iii) current flowing through the coil

b) Draw a labelled graph showing variation of impedance of a series LCR circuit with frequency of the a.c. supply.


a) Given:

Self-inductance, L = 0.7 H
Resistance, R = 165 ohm
V = 275 V
f = 50 Hz

i) Reactance of the coil,

 straight X subscript straight L space equals space 2 πfL space
space space space space space space equals space 2 space straight x space 22 over 7 straight x 50 cross times 0.7
space space space space space space equals space 220 space ohm

ii) Impedance of the coil,

straight Z space equals space square root of straight R squared plus left parenthesis ωL right parenthesis squared end root

space space space equals space square root of left parenthesis 165 right parenthesis squared plus left parenthesis 220 right parenthesis squared end root

space space space equals space 275 space ohm

iii) Current flowing through the coil,

straight i space equals space straight V over straight Z equals 275 over 275 equals 1 space straight A

b) 



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28.

a) Derive Snell's law of refraction using Huygen's wave theory.

b) Monochromatic light of wavelength 650 nm falls normally on a slit of width 1.3 x 10-4 and the resulting Fraunhofer diffraction is obtained on a screen. Find the angular width of the central maxima.


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29.

a) In Young's Double Slit experiment, show that:

straight beta space equals space λD over straight d, where the terms have their usual meaning.
b) A ray of ordinary light is travelling in air. It is incident on air-glass pair at a polarising angle of 56o. Find the angle of refraction in glass.


30. a) Find the angle of incidence at which a ray of monochromatic light should be incident on the first surface AB of a regular glass prism ABC so that the emergent ray grazes the adjacent surface AC. (Refractive index of glass = 1.56)

b) State how focal length of glass lens (refractive index 1.5) changes when it is completely immersed in:
i) Water (Refractive Index 1.33)
ii) A liquid (Refractive index 1.65)

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