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February 8th, 2017, 03:51 PM
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Join Date: Mar 2012
Re: Www Central University Common Entrance Test

As you are looking for syllabus of Central University Common Entrance Test for UG Course, so here I am providing syllabus:

Central University Common Entrance Test (UG Admission) Syllabus
Section I (PHYSICS)
Measurement: Dimensional analysis and error estimation, dimensional compatibility and
significant figures.
Motion in one dimension: Average velocity, instantaneous velocity, one-dimensional motion
with constant accelerations, freely falling bodies.
Laws of Motion: Force and inertia, Newton's laws of motion, and their significance.
Motion in two dimensions: Projectile motion, uniform circular motion, tangential and radial
acceleration in curve-linear motion, relative motion and relative acceleration.
Work, Power and Energy: Work done by a constant and variable forces, kinetic and potential
energy, power, Conservative and non conservative forces, conservation of energy, gravitational
energy, work energy theorem, potential energy stored in a spring.
Linear Momentum & collisions: Linear momentum & impulse, conservation of linear
momentum for two particle system, collisions, collision in one dimension, collision in two
dimension, rocket propulsion.
Rotation of a rigid body about a fixed axis: Angular velocity and angular acceleration,
rotational kinematics, rotational motion with constant angular acceleration relationship between
angular and linear quantities, rotational energy, moment of inertia for a ring, rod, spherical shell,
sphere and plane lamina, torque and angular acceleration, work and energy in rotational motion,
rolling motion of a solid sphere and cylinder.
Gravitation: Gravitational field, Kepler's laws and motion of planets, planetary and satellite
motion, geostationary satellite.
Oscillatory motion: Harmonic motion, oscillatory motion of mass attached to a spring, kinetic &
potential energy, Time Period of a simple pendulum, comparing simple and harmonic motion
with uniform circular motion, forced oscillations, damped oscillations and resonance.
Mechanics of solids and fluids: States of matter young's modulus, bulk modulus, shear modulus
of rigidity, variations of pressure with depth, Buoyant forces and Archimedes principle, Pascal's
law, Bernoulli's theorem and its application, surface energy, surface tension, angle of contact,
capillary rise, coefficient of viscosity, viscous force, terminal velocity, Stoke's law, stream line
motion, Reynold's numbers
Heat and thermodynamics: First law of thermodynamics, specific heat of an ideal gas at
constant volume and constant pressure, relation between them, thermodynamics process
(reversible, irreversible, isothermal, adiabatic), second law of thermodynamics, concept of
entropy and concept of absolute scale, efficiency of a Carnot engine, thermal conductivity,
Newton's law of cooling, black body radiation, Wien's displacement law, Stefan's law.
Wave: Wave motion, phase, amplitude and velocity of wave, newton's formula for longitudinal
waves, propagation of sound waves in air, effect of temperature and pressure on velocity of
sound, Laplace's correction, Principle of superposition, formation of standing waves, standing
waves in strings and pipes, beats, Doppler's effect.
Electrostatics: Coulomb's law, electric field and potential due to point charge, dipole and its field
along the axis and perpendicular to axis, electric flux, Gauss's theorem and its applications to find
the field due to infinite sheet of charge, and inside the hallow conducting sphere, capacitance,
parallel plate capacitor with air and dielectric medium between the Plates, series and parallel
combination of capacitors, energy of a capacitor, displacement currents.
Current Electricity: Concept of free and bound electrons, drift velocity and mobility, electric
current, Ohm's law, resistivity, conductivity, temperature dependency of resistance, resistance in
series and parallel combination, Kirchoff’s law and their application to network of resistances,
principle of potentiometer, effect of temperature on resistance and its application.
Magnetic Effect of Current: Magnetic field due to current, Biot-Savart's law, magnetic field due
to solenoid, motion of charge in a magnetic field, force on a current carrying conductors and
torque on current loop in a magnetic field, magnetic flux, forces between two parallel current
carrying conductors, moving coil galvanometer and its conversion into ammeter and voltmeter.
Magnetism in Matter: The magnetization of substance due to orbital and spin motions of
electrons, magnetic moment of atoms, diamagnetism, paramagnetism, ferromagnetism, earth's
magnetic field and its components and their measurement.


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