Mechanics
1.
Moment of inertia of uniform rod along center and end.
2.
Time period of simple pendulum.
3.
Derive expression for the height of capillary action.
4.
Derive Bernoulli theorem.
Heat and Thermodynamics
1.
Derive Mayer’s relation (Relation between Cp and Cv) (Cp-Cv = R).
2.
Describe thermodynamics process: isobaric process, isochoric
process, adiabatic process, isothermal process.
3.
Describe otto cycle, diesel cycle, Carnot cycle.
Electricity
and Magnetism
1.
Explain Kirchhoff’s law (1st and 2nd law both)
and Wheatstone bridge circuit. (VVVI)
2.
What is potentiometer? Explain its application for
i.
Finding internal resistance of cell
ii.
Comparing emf
3.
Convert galvanometer into ammeter and voltmeter. (VVVI)
4.
Explain Joules law of Heating.
5.
Explain verification of thermos emf with temperature.
6.
Derive torque on rectangular coil.
7.
Describe moving coil galvanometer.
8.
Describe hall effect.
9.
State biot-stavart law and derive the magnetic field in
i.
Circular coil
ii.
Long straight Conductor
iii.
A long solenoid
10.
State Ampere’s law, Range state conductor, St. Solenoid,
toroidal solenoid.
11.
Derive the force between two straight conductors carrying current.
12.
Explain diamagnetic ferromagnetic and paramagnetic materials.
13.
Derive the expression of emf induced in
i.
Rotating coil
ii.
Moving coil
14.
Explain ac generation.
15.
Derive the expression of energy stored in the inductor.
16.
Derive the impedance and phase angle in LCR Circuit, CR, L-R.
17.
Explain power in AC Circuit. (IMP)
Waves
And Optics
1.
Derive equation for stationary waves.
2.
Explain Newton’s Formula for velocity of Sound in gas and Describe
Laplace’s Correction. (VVVI)
3.
Describe the modes of vibration in open and closed pipes. (VVVI)
4.
Derive the velocity of transverse wave in stretched string.
5.
Verify the laws of vibration of fined string.
6.
Describe Doppler’s Effect. (VVVI)
7.
State Huygens’s Principle and explain reflection and refraction
on the basis of wave theory. (VVVI)
8.
Explain Young’s Double Slit experiment. (VVVI)
9.
Explain diffraction from single slit (Fraunhofer’s Diffraction)
10.
Describe Brewster’s law of polarization.
Modern Physics
1.
Millikan’s oil drop experiment.
2.
Motion of electrons in electrical field and magnetic field.
3.
Thomson’s experiment.
4.
Einstein’s photoelectric equation.
5.
Millikan’s Photoelectric experiment.
6.
P-N junction and its characteristics.
7.
Full wave rectifier.
8.
Radius and energy of electron in nth orbit.
9.
Explain the production of x-ray.
10.
Explain Braggs law.
11.
State laws of radioactive disintegration and derive half- life.