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Himachal Pradesh PSC · Higher Education

HPPSC Assistant Professor Physics 2026

Assistant Professor (College Cadre) in Physics under the Higher Education Department, Himachal Pradesh. Job Trainee pay of Rs. 35,000/- per month (fixed).

Last date to apply
15 Aug 2026
Exam date
Not announced

About HPPSC Assistant Professor Physics 2026

HPPSC Assistant Professor Physics 2026 is part of the Himachal Pradesh Public Service Commission college cadre recruitment of 369 Assistant Professors across 22 subjects, of which 25 posts are in Physics.

The post is under the Higher Education Department of Himachal Pradesh and carries a fixed Job Trainee pay of Rs. 35,000 per month during the trainee period.

Eligibility is a Master's degree in Physics with 55% marks (50% for SC/ST/OBC/PwBD) along with UGC/CSIR NET or SLET/SET; PhD holders are exempted from NET/SET where the prescribed conditions are met. Age is 18 to 45 years as on 01 January 2026.

Applications are submitted online through the HPPSC OTR / ORA portal with a uniform fee of Rs. 600, and the last date is 15 August 2026.

Eligibility

Qualification
Master's degree in Physics with 55% (50% for SC/ST/OBC/PwBD)
NET / SET / PhD
NET (UGC/CSIR) or SLET/SET; PhD holders exempted if conditions are met
Age limit
18 to 45 years as on 01-01-2026 (5 years relaxation for SC/ST/OBC/WFF/PwBD of HP where reserved)
Additional
Apply online through the HPPSC OTR / ORA portal. Application fee Rs. 600 for all categories.
Vacancies
25 posts in Physics (out of 369 college cadre posts across 22 subjects)

Exam pattern

StageCompositionMarks / Duration
Paper I — Screening TestMCQ: HP GK 30, National & International Affairs 30, Hindi 20, English 20100 Marks · 1 Hour · Qualifying only · -0.25 negative marking
Paper II — Subject Aptitude Test (Physics)Descriptive subject paper, same day as Paper I120 Marks · 3 Hours · Min. 45% (Gen) / 40% (Reserved)
Document VerificationCategory-wise zone ratio 1:5 (1:5+3 for up to 10 posts)
Personality TestInterview at HPPSC office, Shimla30 Marks · Min. 40% (Gen) / 30% (Reserved)
Final MeritSAT (120) + Personality Test (30)150 Marks

How to prepare

  • Paper I is a 1-hour, 100-mark screening test and is qualifying only — Himachal Pradesh GK carries 30 marks, so history, geography, culture and polity of HP need dedicated study.
  • The remaining Paper I marks come from national and international current affairs of the last two years (30), Hindi grammar (20) and English grammar (20). Negative marking is 0.25 per wrong answer.
  • Paper II, the Subject Aptitude Test, is a 3-hour descriptive physics paper of 120 marks and is the paper that decides merit — minimum 45% for General and 40% for reserved categories.
  • The physics syllabus is split into Part A (Core) and Part B (Advanced) and closely follows the CSIR NET pattern, so CSIR NET preparation transfers almost completely.
  • Since the SAT is descriptive, practice writing full derivations and structured answers rather than only solving MCQs.
  • Final merit is SAT (120) + Personality Test (30) = 150 marks.

Subjects in the HPPSC Assistant Professor Physics 2026 syllabus

101 of the 106 compared physics topics appear in this syllabus.

Mathematical PhysicsClassical MechanicsElectromagnetismQuantum MechanicsThermodynamicsStatistical MechanicsOpticsElectronicsExperimental techniquesAtomic and Molecular PhysicsNuclear and Particle PhysicsCondensed Matter Physics
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HPPSC Assistant Professor Physics 2026 previous year questions (PYQ)

Practise HPPSC Assistant Professor physics previous year questions along with CSIR NET PYQs — the Part A and Part B topics of the HPPSC syllabus mirror the CSIR NET physical sciences syllabus.

PhysicsByAaryan has 5000+ topic-wise solved questions and PYQs for Assistant Professor, CSIR-NET, GATE, JEST, TIFR, JAM, UPSC Geophysics and BARC Physics.

Official syllabus

HPPSC Assistant Professor (College Cadre) - Physics Subject Aptitude Test (Advt. No. 61/2024)

Official syllabus for the post of Assistant Professor (College Cadre), Subject - Physics, Himachal Pradesh Public Service Commission.

PART 'A' - CORE

I. Mathematical Methods of Physics

Dimensional analysis. Vector algebra and vector calculus. Linear algebra, matrices, Cayley-Hamilton Theorem. Eigenvalues and eigenvectors. Linear ordinary differential equations of first & second order. Special functions (Hermite, Bessel, Laguerre and Legendre functions). Fourier series, Fourier and Laplace transforms. Elements of complex analysis, analytic functions; Taylor & Laurent series; poles, residues and evaluation of integrals. Elementary probability theory, random variables, binomial, Poisson and normal distributions. Central limit theorem.

II. Classical Mechanics

Newton's laws. Dynamical systems, Phase space dynamics, stability analysis. Central force motions. Two body Collisions - scattering in laboratory and Centre of mass frames. Rigid body dynamics - moment of inertia tensor. Non-inertial frames and pseudoforces. Variational principle. Generalized coordinates. Lagrangian and Hamiltonian formalism and equations of motion. Conservation laws and cyclic coordinates. Periodic motion: small oscillations, normal modes. Special theory of relativity - Lorentz transformations, relativistic kinematics and mass-energy equivalence.

III. Electromagnetic Theory

Electrostatics: Gauss's law and its applications, Laplace and Poisson equations, boundary value problems. Magnetostatics: Biot-Savart law, Ampere's theorem. Electromagnetic induction. Maxwell's equations in free space and linear isotropic media; boundary conditions on the fields at interfaces. Scalar and vector potentials, gauge invariance. Electromagnetic waves in free space. Dielectrics and conductors. Reflection and refraction, polarization, Fresnel's law, interference, coherence, and diffraction. Dynamics of charged particles in static and uniform electromagnetic fields.

IV. Quantum Mechanics

Wave-particle duality. Schrodinger equation (time-dependent and time-independent). Eigenvalue problems (particle in a box, harmonic oscillator, etc.). Tunneling through a barrier. Wave-function in coordinate and momentum representations. Commutators and Heisenberg uncertainty principle. Dirac notation for state vectors. Motion in a central potential: orbital angular momentum, angular momentum algebra, spin, addition of angular momenta; Hydrogen atom. Stern-Gerlach experiment. Time-independent perturbation theory and applications. Variational method. Time dependent perturbation theory and Fermi's golden rule, selection rules. Identical particles, Pauli exclusion principle, spin-statistics connection.

V. Thermodynamic and Statistical Physics

Laws of thermodynamics and their consequences. Thermodynamic potentials, Maxwell relations, chemical potential, phase equilibria. Phase space, micro- and macro-states. Micro-canonical, canonical and grand-canonical ensembles and partition functions. Free energy and its connection with thermodynamic quantities. Classical and quantum statistics. Ideal Bose and Fermi gases. Principle of detailed balance. Blackbody radiation and Planck's distribution law.

VI. Electronics and Experimental Methods

Semiconductor devices (diodes, junctions, transistors, field effect devices, homo- and hetero-junction devices), device structure, device characteristics, frequency dependence and applications. Opto-electronic devices (solar cells, photo-detectors, LEDs). Operational amplifiers and their applications. Digital techniques and applications (registers, counters, comparators and similar circuits). A/D and D/A converters. Microprocessor and microcontroller basics.

Data interpretation and analysis. Precision and accuracy. Error analysis, propagation of errors. Least squares fitting.

PART 'B' - ADVANCED

I. Mathematical Methods of Physics

Green's function. Partial differential equations (Laplace, wave and heat equations in two and three dimensions). Elements of computational techniques: root of functions, interpolation, extrapolation, integration by trapezoid and Simpson's rule, Solution of first order differential equation using Runge-Kutta method. Finite difference methods. Tensors. Introductory group theory: SU(2), O(3).

II. Classical Mechanics

Dynamical systems, Phase space dynamics, stability analysis. Poisson brackets and canonical transformations. Symmetry, invariance and Noether's theorem. Hamilton-Jacobi theory.

III. Electromagnetic Theory

Dispersion relations in plasma. Lorentz invariance of Maxwell's equation. Transmission lines and wave guides. Radiation - from moving charges and dipoles and retarded potentials.

IV. Quantum Mechanics

Spin-orbit coupling, fine structure. WKB approximation. Elementary theory of scattering: phase shifts, partial waves. Born approximation. Relativistic quantum mechanics: Klein-Gordon and Dirac equations. Semi-classical theory of radiation.

V. Thermodynamic and Statistical Physics

First- and second-order phase transitions. Diamagnetism, paramagnetism, and ferromagnetism. Ising model. Bose-Einstein condensation. Diffusion equation. Random walk and Brownian motion. Introduction to nonequilibrium processes.

VI. Electronics and Experimental Methods

Linear and nonlinear curve fitting, chi-square test. Transducers (temperature, pressure/vacuum, magnetic fields, vibration, optical, and particle detectors). Measurement and control. Signal conditioning and recovery. Impedance matching, amplification (Op-amp based, instrumentation amp, feedback), filtering and noise reduction, shielding and grounding. Fourier transforms, lock-in detector, box-car integrator, modulation techniques. High frequency devices (including generators and detectors).

VII. Atomic & Molecular Physics

Quantum states of an electron in an atom. Electron spin. Spectrum of helium and alkali atom. Relativistic corrections for energy levels of hydrogen atom, hyperfine structure and isotopic shift, width of spectrum lines, LS & JJ couplings. Zeeman, Paschen-Bach & Stark effects. Electron spin resonance. Nuclear magnetic resonance, chemical shift. Frank-Condon principle. Born-Oppenheimer approximation. Electronic, rotational, vibrational and Raman spectra of diatomic molecules, selection rules. Lasers: spontaneous and stimulated emission, Einstein A & B coefficients. Optical pumping, population inversion, rate equation. Modes of resonators and coherence length.

VIII. Condensed Matter Physics

Bravais lattices. Reciprocal lattice. Diffraction and the structure factor. Bonding of solids. Elastic properties, phonons, lattice specific heat. Free electron theory and electronic specific heat. Response and relaxation phenomena. Drude model of electrical and thermal conductivity. Hall effect and thermoelectric power. Electron motion in a periodic potential, band theory of solids: metals, insulators and semiconductors. Superconductivity: type-I and type-II superconductors. Josephson junctions. Superfluidity. Defects and dislocations. Ordered phases of matter: translational and orientational order, kinds of liquid crystalline order. Quasi crystals.

IX. Nuclear and Particle Physics

Basic nuclear properties: size, shape and charge distribution, spin and parity. Binding energy, semi-empirical mass formula, liquid drop model. Nature of the nuclear force, form of nucleon-nucleon potential, charge-independence and charge-symmetry of nuclear forces. Deuteron problem. Evidence of shell structure, single-particle shell model, its validity and limitations. Rotational spectra. Elementary ideas of alpha, beta and gamma decays and their selection rules. Fission and fusion. Nuclear reactions, reaction mechanism, compound nuclei and direct reactions.

Classification of fundamental forces. Elementary particles and their quantum numbers (charge, spin, parity, isospin, strangeness, etc.). Gellmann-Nishijima formula. Quark model, baryons and mesons. C, P, and T invariance. Application of symmetry arguments to particle reactions. Parity non-conservation in weak interaction. Relativistic kinematics.

HPPSC Paper-I (Screening Test) - Common Syllabus for all Group A to C posts

Detailed syllabus of Paper-1 for recruitment to all Class-I to III (now Group A to C) posts / services to be filled up in accordance with Rule 6(B)(ii)(a) and 6(E)(i) of the Himachal Pradesh Public Service Commission (Procedure and Transaction of Business) Rules, 2023, applicable for all vacancies advertised w.e.f. 01-11-2024.

1. General Knowledge of Himachal Pradesh

History of Himachal Pradesh

Ancient, Medieval and Modern Administrative and Political History of Himachal Pradesh.

The role of erstwhile Hill States of Himachal Pradesh in the Indian Freedom Struggle Movement.

Princely regime in Himachal Pradesh, Praja Mandal Movement, Kunihar Movement, Theog Movement, Dodra Kawar Revolt, Nalagarh Movement.

Encounter of Hill States of Himachal Pradesh with Muslim, Sikh, Gurkha Rulers and Britishers.

Birth of Himachal Pradesh and its struggle for Vishal Himachal and full Statehood.

Geography of Himachal Pradesh

Geographical location and Topography of Himachal Pradesh, Area, Population, Physiographic Divisions, Mountain Ranges, Passes, Rivers, Hydropower Projects, Lakes, Hot Springs, Glaciers, Valleys, Soil, Climate, Flora, Fauna, Fisheries and Minerals of Himachal Pradesh, National Parks, Neighbouring states/countries, Important places and institutions.

Culture of Himachal Pradesh

Customs and Manners, Birth, Marriage, Kingship, Art, Architecture & Handicraft, Fairs and Festivals, Folk songs, Folk Dance & Drama, Language, Dialects and Literature of Himachal Pradesh.

Heritage - Temples, Palaces, Monuments, Forts.

Castes & Tribes of Himachal Pradesh, their socio-cultural & economic aspects.

Polity of Himachal Pradesh

Reorganization and Politics of Statehood.

Development of political parties, major political parties and their support and performance in assembly and parliamentary elections in Himachal Pradesh.

Famous Personalities of Himachal Pradesh.

Structure, Organization & functioning of statutory, regulatory and various quasi-judicial bodies in Himachal Pradesh.

Rajya Sabha, Lok Sabha, Vidhan Sabha.

2. General Knowledge of National & International Affairs

Current events of national and international importance up to the date of examination and two years previous to that date.

3. Knowledge of Hindi Language

Knowledge of Hindi Grammar: भाषा, भाषा के रूप, लिपि, वर्ण, व्यंजन, पर्यायवाची शब्द, विलोमार्थी शब्द, उपसर्ग, संज्ञा, सर्वनाम, विशेषण, क्रिया और मुहावरे।

4. Knowledge of English Grammar

Tenses, Preposition, Direct and Indirect Speech, Conjunctions, Interjections, Article and Determiners, Change of Voice.

Frequently asked questions

How many physics vacancies are there in HPPSC Assistant Professor 2026?

25 Assistant Professor posts in Physics out of 369 college cadre posts advertised across 22 subjects.

Is NET or SET required for HPPSC Assistant Professor Physics 2026?

Yes. UGC/CSIR NET or SLET/SET is required along with a Master's degree with 55% marks. PhD holders are exempted where the prescribed conditions are met.

What is the last date to apply for HPPSC Assistant Professor Physics 2026?

15 August 2026, 11:59 PM. The application fee is Rs. 600 for all categories.

What is the HPPSC Assistant Professor exam pattern?

Paper I is a 1-hour, 100-mark qualifying screening test. Paper II is a 3-hour, 120-mark descriptive Subject Aptitude Test in Physics. Final merit is SAT (120) plus Personality Test (30).

What is the salary of HPPSC Assistant Professor (College Cadre)?

Rs. 35,000 per month as a fixed Job Trainee emolument, as notified for all 22 college cadre subjects.

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