LPUNEST 2025 Physics Syllabus PDF: Download LPUNEST Physics Syllabus Topics Wise

Updated By Lam Vijaykanth on 10 Dec, 2024 11:09

The LPUNEST 2025 syllabus contains topics like states of matter, solutions, equilibrium, laws of motion, kinematics, complex numbers, matrices, plant physiology, human physiology, grammar, language skills, etc. Applicants can check the subject-wise syllabus here.

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LPUNEST 2025 Physics Syllabus

LPUNEST 2025 Physics Syllabus has been released by the Lovely Professional University (LPU). The syllabus of LPUNEST 2025 Physics consists of Thermodynamics, Current Electricity, Magnetic Effect of Current and Magnetism, Oscillation & Waves, Kinematics, Rotational Motion, Laws of Motion, Work, Energy, & Power, Physics and Measurement, Etc. Students planning to appear for the LPUNEST 2025 exam must know all the topics that are included in the LPUNEST Physics Syllabus 2025 to excel in the examination. Aspirants must know that 25 questions will be asked from the Physics Syllabus in theLPUNEST 2025 Exam and thus Physics becomes one of the important subjects to qualify for the entrance exam. Read the following sections to learn the detailed LPUNEST 2025 Physics Syllabus. 

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Detailed LPUNEST Physics Syllabus 2025

The detailed LPUNEST 2025 Physics Syllabus has been provided in the following table.  

Unit

Topics

Unit 1: Physics and Measurement

Physics, Technology and Society, Si Units, Fundamental and Derived Units. Least Count, Accuracy and Precision of Measuring Instruments, Errors in Measurement, Dimensions of Physical Quantities, Dimensional Analysis and Its Applications.
Unit 2: Laws of Motion 
  • Static and Kinetic friction, laws of friction, rolling friction. Dynamics of uniform circular motion: Centripetal force and its applications
  • Force and Inertia, Newton’s First Law of motion; Momentum, Newton’s Second Law of motion; Impulse; Newton’s Third Law of motion. Law of conservation of linear momentum and its applications; equilibrium of concurrent forces.
Unit 3:  Work, Energy, And Power
  • Work done by a constant force and a variable force; kinetic and potential energies, work energy theorem, power. Potential energy of aspring, conservation of mechanical energy, conservative and non-conservative forces; Elastic & inelastic collisions in one and two dimensions.
Unit 4: Rotational Motion
  • Centre of mass of a two-particle system, Centre of mass of a rigid body; Basic concepts of rotational motion; moment of a force, torque, angular momentum, conservation of angular momentum and its applications.
  • Moment of inertia, radius of gyration. Values of moments of inertia for simple geometrical objects, parallel and perpendicular axes theorems and their applications. Rigid body rotation, equations of rotational motion.
Unit-5 Physics and Measurement
  • Physics, technology and society, SI units, Fundamental and derived units. Least count, accuracy and precision of measuring instruments, Errors in measurement, Dimensions of Physical quantities, dimensional analysis and its applications.
Unit 6: Kinematics
  • Scalars and Vectors, Vector addition and Subtraction, Zero Vector, Scalar and Vector products, Unit Vector, Resolution of a Vector. Relative Velocity, Motion in a plane, Projectile Motion, Uniform Circular Motion.
  • Frame of reference. Motion in a straight line: Position-time graph, speed and velocity. Uniform and non-uniform motion, average speed and instantaneous velocity, uniformly accelerated motion, velocity-time, position-time graphs, relations for uniformly accelerated motion.
Unit 7: Gravitation
  • The universal law of gravitation. Acceleration due to gravity and its variation with altitude and depth. Kepler’s laws of planetary motion. Gravitational potential energy; gravitational potential. Escape velocity. Orbital velocity of a satellite. Geo-stationary satellites.
Unit 8: Oscillations and Waves
  • Periodic motion - period, frequency, displacement as a function of time. Periodic functions. Simple harmonic motion (S.H.M.) and its equation; phase; Oscillations of a spring - restoring force and force constant; energy in S.H.M.: kinetic and potential energies; Simple pendulum - derivation of expression for its time period; Free, forced and damped oscillations.
  • Resonance; Wave motion; Longitudinal and transverse waves,speed of a wave; Displacement relation for a progressive wave; Principle of superposition of waves, reflection of waves. Standing waves in strings and organ pipes, fundamental mode and harmonics, Beats, Doppler effect in sound.
Unit 9: Properties of Solids and Liquids-I
  • Elastic behaviour, Stress- strain relationship, Hooke’s Law, Young’s modulus, Bulk modulus, modulus of rigidity. Pressure due to a fluid column; Pascal’s law and its applications. Viscosity, Stokes’ law, terminal velocity, streamline and turbulent flow, Reynolds number. Bernoulli’s principle and its applications.
  • Surface energy and surface tension, angle of contact, application of surface tension - drops, bubbles and capillary rise. Heat, temperature, thermal expansion; specific heat capacity, calorimetry; change of state, latent heat. Heat transfer conduction, convection and radiation, Newton’s law of cooling.
Unit 10:Thermodynamics
  • Thermal equilibrium, zeroth law of thermodynamics, concept of temperature. Heat, work and internal energy. First law of thermodynamics. Second law of thermodynamics: reversible and irreversible processes. Carnot engine and its efficiency.
Unit 11: Kinetic Theory of Gases
  • Equation of state of a perfect gas, work done on compressing a gas. Kinetic theory of gases - assumptions, concept of pressure. Kinetic energy and temperature: rms speed of gas molecules; Degrees of freedom, Law of equipartition of energy, applications to specific heat capacities of gases; Mean free path, Avogadro’s number.
Unit 12: Electrostatics-I
  • Electric charges: Conservation of charge, Coulomb’s law-forces between two point charges, forces between multiple charges; superposition principle and continuous charge distribution. Electric field: Electric field due to a point charge, Electric field lines, Electric dipole, Electric field due to a dipole, Torque on a dipole in a uniform electric field. Electric flux, Gauss’s law and its applications to find field due to infinitely long uniformly charged straight wire, uniformly charged infinite plane sheet and uniformly charged thin spherical shell.
Unit 13:Electrostatics-II
  • Electric potential and its calculation for a point charge, electric dipole and system of charges; Equipotential surfaces, Electrical potential energy of a system of two point charges in an electrostatic field. Conductors and insulators, Dielectrics and electric polarization, capacitor, combination of capacitors in series and in parallel, capacitance of a parallel plate capacitor with and without dielectric medium between the plates, Energy stored in a capacitor.
Unit 14:Current Electricity
  • Electric current, Drift velocity, Ohm’s law, Electrical resistance, Resistances of different materials, V-I characteristics of Ohmic and non-ohmic conductors, Electrical energy and power, Electrical resistivity, Colour code for resistors; Series and parallel combinations of resistors; Temperature dependence of resistance.
  • Electric Cell and its internal resistance, potential difference and emf of a cell, combination of cells in series and in parallel. Kirchhoff’s laws and their applications. Wheatstone bridge, Metre bridge. Potentiometer - principle and its applications.
Unit 15: Magnetic Effects of Current and Magnetism
  • Biot - Savart law and its application to current carrying circular loop. Ampere’s law and its applications to infinitely long current carrying straight wire and solenoid. Force on a moving charge in uniform magnetic and electric fields. Cyclotron. Force on a current-carrying conductor in a uniform magnetic field. Force between two parallel current-carrying conductors- definition of ampere, torque experienced by a current loop in uniform magnetic field; Bar magnet as an equivalent solenoid, magnetic field lines; Earth’s magnetic field and magnetic elements. Para-, dia- and ferro- magnetic substances. Magnetic susceptibility and permeability, Hysteresis, Electromagnets and permanent magnets.
  • Moving coil galvanometer, its current sensitivity and conversion to ammeter and voltmeter. Current loop as a magnetic dipole and its magnetic dipole moment.
Unit 16: Atoms and Nuclei
  • Alpha-particle scattering experiment; Rutherford’s model of atom; Bohr model, energy levels, hydrogen spectrum. Composition and size of nucleus, atomic masses, isotopes, isobars; isotones.
  • Radioactivity-alpha, beta and gamma particles/rays and their properties; radioactive decay law. Mass-energy relation, mass defect; binding energy per nucleon and its variation with mass number, nuclear fission and fusion.
Unit 17: Dual Nature of Matter and Radiation
  • Dual nature of radiation. Photoelectric effect, Hertz and Lenard’s observations; Einstein’s photoelectric equation; particle nature of light. Matter waves-wave nature of particle, de Broglie relation. Davisson-Germer experiment.
Unit 18: Optics-I
  • Reflection and refraction of light at plane and spherical surfaces, mirror formula, Total internal reflection and its applications, Deviation and Dispersion of light by a prism, Lens Formula, Magnification, Power of a Lens, Combination of thin lenses in contact.
Unit 19: Optics-II
  • Microscope and Astronomical Telescope (reflecting and refracting) and their magnifying powers, wavefront and Huygens’ principle, Laws of reflection and refraction using Huygen’s principle.Interference, Young’s double slit experiment and expression for fringe width.Diffraction due to a single slit, width of central maximum. Resolving power of microscopes and astronomical telescopes, Polarisation, plane polarized light; Brewster’s law, uses of plane polarized light and Polaroids.
Unit 20: Electromagnetic Induction and Alternating Currents
  • Electromagnetic induction: Faraday’s law. Induced emf and current: Lenz’s Law, Eddy currents. Self and mutual inductance. Alternating currents, peak and RMS value of alternating current/ voltage: reactance and impedance: LCR series circuit, resonance: power in AC circuits, wattles current. AC generator and transformer.
Unit 21: Electronic Devices-I
  • Semiconductors; semiconductor diode: I-V characteristics in forward and reverse bias; diode as a rectifier; I-V characteristics of LED, photodiode, solar cell and Zener diode; Zener diode as a voltage regulator. Junction transistor, transistor action, characteristics of a transistor; transistor as an amplifier (common emitter configuration) and oscillator.
Unit 22: Electronic Devices-II
  • Logic gates (OR, AND, NOT, NAND and NOR). Transistor as a switch. Communication systems: Propagation of electromagnetic waves in the atmosphere; Sky and space wave propagation.
Unit 23: Electromagnetic Waves
  • Reactance waves and their characteristics. Transverse nature of electromagnetic waves. Electromagnetic spectrum (radio waves, microwaves, infrared, visible, ultraviolet, X- rays, gamma rays). Applications of e.m. waves.
Unit 24: Communication Systems
  • Need for modulation, Amplitude and Frequency Modulation, Bandwidth of signals, Bandwidth of Transmission medium, Basic Elements of a Communication System.
Unit 25: Experimental Skills
  • Familiarity with the basic approach and observations of the experiments and activities:
  • Vernier calipers -its use to measure the internal and external diameter and depth of a vessel.
  • Screw gauge-its use to determine the thickness/ diameter of thin sheet/wire.
  • Simple Pendulum-dissipation of energy by plotting a graph between the square of amplitude and time.
  • Meter Scale - the mass of a given object by the principle of moments.
  • Young’s modulus of elasticity of the material of a metallic wire.
  • Surface tension of water by capillary rise and effect of detergents,
  • Co-efficient of Viscosity of a given viscous liquid by measuring the terminal velocity of a given spherical body,
  • Speed of sound in air at room temperature using a resonance tube,
  • Specific heat capacity of a given (i) solid and (ii) liquid by method of mixtures.
  • The resistivity of the material of a given wire using a meter bridge.
  • The resistance of a given wire using Ohm’s law.
  • Resistance and figure of merit of a galvanometer by half deflection method.
  • The focal length of; (i) Convex mirror (ii) Concave mirror, and (ii) Convex lens, using the parallax method.
  • The plot of the angle of deviation vs angle of incidence for a triangular prism.
  • The refractive index of a glass slab using a travelling microscope.
  • Characteristic curves of a p-n junction diode in forward and reverse bias.
  • Characteristic curves of a Zener diode and finding reverse breakdown voltage.
  • Identification of Diode. LED, Resistor. A capacitor from a mixed collection of such items.

LPUNEST Physics Syllabus 2025: Important Topics

The important topics included in the LPUNEST 2025 physics syllabus are listed here. 

  • Mechanics 
  • Thermodynamics
  • Optics 
  • Waves and oscillations
  • Electromagnetism 

Preparation Tips for LPUNEST 2025 Physics Syllabus

Here are some preparation tips that can be used by LPUNEST aspirants to prepare for the physics syllabus. Have a look at them:

  1. Divide the Chapters according to the Weightage: The LPUNEST aspirants must know the chapters with high and chapters with low weightage. students can take up the chapters with high weightage from the physics syllabus first and then touch on the chapters with low weightage. 
  2. Make Notes for Revision: As you keep picking up chapters one by one and end their preparation make sure to make notes along with studying the chapter. This will assist you in reviewing these notes and key concepts during revision.
  3. Stick to a Schedule: The students can make a schedule or timetable allocating equal time to each subject and follow that schedule. Take one by one subject and then cover the syllabus. 
  4. Begin Ahead of the Time: To begin with, the timely preparations for your LPUNEST exam is important. Candidates should begin their preparations ahead of time to make sure that they have allocated enough time to prepare for all the subjects individually. 
  5. Write Down Numericals & Formulas: Numerical & formula-based questions might be time-consuming and take more time for the students to solve. Students should have fair practice with these questions for which they need to memorize the numerical well. They should write down the numericals and practice them to have the practice of solving these numerical-based questions easily in the exam. 
  6. Take up the Complex Chapters First: Some of the challenging topics like rotational motion, laws of motion, kinematics, and gravitation are complex chapters. These chapters should be studied first, followed by the rest.

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FAQs about LPUNEST Syllabus

Is the LPUNEST Physics tough?

LPUNEST aspirants will not find Physics tough if they start preparing for the exam on time. Timely preparation helps avoid last-minute hassles and stress.

 

 

Is the Atoms and Nuclei chapter included in the LPUNEST 2025 Physics Syllabus?

Yes, the chapter Atoms and Nuclei is included in the LPUNEST 2025 Physics Syllabus. 

 

How many units are included in the LPUNEST 2025 Physics Syllabus?

According to the latest  LPUNEST 2025 Physics Syllabus, there are a total of 25 units. Aspirants must master all the topics covered in the syllabus with right strategy to score well in the examination. 

 

Is the LPUNEST 2025 Physics Syllabus lengthy?

As the LPUNEST 2025 Physics Syllabus covers various concepts of the subject hence it will be a bit lengthy. With the right strategy and determination, you will find it easier to complete the syllabus. 

 

 

 

 

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