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Physics Formula Sheets
CSIR NET · GATE · IIT JAM · JEST · TIFR

Exam-oriented, PYQ-mapped Physics formula sheets curated by Pravegaa faculty for CSIR NET, GATE, IIT JAM, JEST, and TIFR. 11 topics covered. Inline formula previews on this page. Full PDF pack free via WhatsApp.

11Topics Covered
5Exam Formats
88Key Formulas
FreePDF ZIP
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Get the Complete Formula Sheet ZIP — Free

All 11 topics · 5 exam formats · CSIR NET, GATE, IIT JAM, JEST, TIFR · Physical constants sheet included

Exam-wise

Formula Sheets Designed for Each Exam’s Demands

Each exam tests formulas differently. Our sheets are curated separately — not a one-size-fits-all dump.

CSIR NET

High-frequency PYQ formulas for Part B rapid recall and Part C derivation starters. Each formula annotated with which type of CSIR NET question uses it.

GATE Physics

Numerical-ready formulas with SI unit reminders and dimensional analysis hints. Every formula tagged for MCQ/MSQ/NAT question type.

🎓

IIT JAM Physics

Compact formula set — Sections A (quick recall) and C (NAT calculation setup). Constants included inline.

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JEST & TIFR

Advanced Quantum Mechanics and Mathematical Physics — deeper formulas for symbolic sections and research-depth questions.

All 11 Topics

Physics Formula Sheet — Topic-wise Previews

Inline formula previews for all 11 topics. Click Get Full Formula Sheet on any card to receive the complete PDF for that topic via WhatsApp.

01

Quantum Mechanics

The highest-weight section across all physics competitive exams.

CSIR NETGATEIIT JAMJESTTIFR

Key Formulas (Preview)

Schrödinger Equationiℏ ∂Ψ/∂t = ĤΨ
Uncertainty PrincipleΔx·Δp ≥ ℏ/2
Energy Eigenvalue (PIB)Eₙ = n²π²ℏ²/2mL²
Commutator [x, p][x̂, p̂] = iℏ
Angular MomentumL² = ℏ²l(l+1), Lz = mℏ
Harmonic OscillatorEₙ = (n+½)ℏω
1st Order TIPTE¹ₙ = ⟨n|H’|n⟩
Born Approximationf(θ) = -(m/2πℏ²)∫V(r)e^(iΔk·r)d³r

🎓 High-yield PYQ topics: Perturbation theory, selection rules, harmonic oscillator, scattering cross-sections

02

Mathematical Physics

Foundation of all other topics — master this first.

CSIR NETGATEIIT JAMJESTTIFR

Key Formulas (Preview)

Gradient∇f = (∂f/∂x)x̂ + (∂f/∂y)ŷ + (∂f/∂z)ẑ
Divergence Theorem∮F·dS = ∫(∇·F)dV
Stokes’ Theorem∮F·dl = ∫(∇×F)·dS
Residue Theorem∮f(z)dz = 2πi ∑ Res[f, zₙ]
Fourier Transformf̃(k) = ∫f(x)e^(-ikx)dx
Dirac Delta∫δ(x-a)f(x)dx = f(a)
Eigenvalue EqnAv = λv; det(A-λI) = 0
Rodrigues (Legendre)Pₙ(x) = (1/2ⁿn!) dⁿ/dxⁿ(x²-1)ⁿ

🎓 High-yield PYQ topics: Residue theorem integrals, eigenvalue problems, Fourier analysis, Green’s functions

03

Classical Mechanics

Lagrangian and Hamiltonian mechanics — the cornerstone of advanced physics.

CSIR NETGATEIIT JAMJESTTIFR

Key Formulas (Preview)

Euler-Lagrange Eqnd/dt(∂L/∂q̇) – ∂L/∂q = 0
HamiltonianH = ∑pᵢq̇ᵢ – L
Hamilton’s Equationsq̇ = ∂H/∂p; ṗ = -∂H/∂q
Poisson Bracket{f,g} = ∑(∂f/∂q ∂g/∂p – ∂f/∂p ∂g/∂q)
Kepler 3rd LawT² = (4π²/GM)a³
Noether’s TheoremSymmetry → Conservation law
Relativistic EnergyE² = (pc)² + (mc²)²
Lorentz Factorγ = 1/√(1-v²/c²)

🎓 High-yield PYQ topics: Lagrangian of constrained systems, canonical transformations, Kepler orbits, relativistic kinematics

04

Electromagnetic Theory

Maxwell’s equations — the four laws that govern all classical electromagnetism.

CSIR NETGATEIIT JAMJESTTIFR

Key Formulas (Preview)

Gauss’s Law∇·E = ρ/ε₀
No Magnetic Monopoles∇·B = 0
Faraday’s Law∇×E = -∂B/∂t
Ampere-Maxwell Law∇×B = μ₀J + μ₀ε₀(∂E/∂t)
Poynting VectorS = (1/μ₀)(E×B)
EM Wave Speedc = 1/√(μ₀ε₀)
Larmor RadiationP = q²a²/(6πε₀c³)
Boundary ConditionsE₁ₚ = E₂ₚ; B₁⁴ = B₂⁴

🎓 High-yield PYQ topics: Boundary conditions, gauge transformations, reflection/transmission coefficients, Poynting theorem

05

Thermodynamics & Statistical Mechanics

Partition functions, quantum statistics, and thermodynamic potentials.

CSIR NETGATEIIT JAMJESTTIFR

Key Formulas (Preview)

Partition FunctionZ = ∑ᵢ exp(-βEᵢ)
Free EnergyF = -k₫T ln Z
Maxwell Relations(∂T/∂V)ₛ = -(∂P/∂S)ᵥ
MB Distributionf(v) = 4πn(m/2πk₫T)^(3/2) v² e^(-mv²/2k₫T)
FD Distribution⟨n⟩ = 1/(e^(β(ε-μ)+1)
BE Distribution⟨n⟩ = 1/(e^(β(ε-μ)-1)
Entropy (Boltzmann)S = k₫ ln Ω
Carnot Efficiencyη = 1 – Tₘ/Tₕ

🎓 High-yield PYQ topics: Partition function calculations, heat capacity of solids, Fermi energy, BEC transition temperature

06

Waves & Optics

SHM, interference, diffraction, and polarisation — reliable scoring topics.

CSIR NETIIT JAMGATE

Key Formulas (Preview)

Wave Equation∂²y/∂t² = v²(∂²y/∂x²)
SHM Frequencyω = √(k/m)
Damped Oscillatorx = Ae^(-γt) cos(ω’t+φ)
Young’s Fringesβ = λD/d
Single Slit Minimaa sinθ = mλ (m≠0)
Brewster’s Angletanθ₫ = n₂/n₁
Group Velocityvᵪ = dω/dk
Phase Velocityvᵩ = ω/k

🎓 High-yield PYQ topics: Fringe width calculations, path difference conditions, polarisation angle, group vs phase velocity

07

Special Theory of Relativity

Lorentz transformations, relativistic dynamics — high-yield NAT material.

CSIR NETGATEIIT JAMJEST

Key Formulas (Preview)

Time DilationΔt = γΔt₀
Length ContractionL = L₀/γ
Mass-EnergyE = mc²; E² = p²c² + m²c⁴
Relativistic Momentump = γmv
4-velocityuμ = γ(c, v)
Lorentz Transform (x)x’ = γ(x – vt)
Lorentz Transform (t)t’ = γ(t – vx/c²)
Doppler (relativistic)f’ = f√((1-β)/(1+β))

🎓 High-yield PYQ topics: Velocity addition, 4-vector calculations, threshold energy in particle reactions

08

Atomic & Molecular Physics

Atomic spectra, coupling schemes, Zeeman/Stark effects, and laser physics.

CSIR NETGATEJESTTIFR

Key Formulas (Preview)

Bohr Radiusa₀ = 4πε₀ℏ²/me² = 0.529 Å
Hydrogen EnergyEₙ = -13.6/n² eV
Rydberg Formula1/λ = R∞(1/n₁² – 1/n₂²)
Selection Rules (E1)Δl = ±1; Δm = 0,±1; Δj = 0,±1
Zeeman SplittingΔE = mℓμ₫B
LS CouplingJ = L+S, …, |L-S|
Lasing ConditionN₂ > N₁ (population inversion)
Rotational EnergyEᵵ = BJ(J+1); B = ℏ²/2I

🎓 High-yield PYQ topics: Selection rules, Zeeman splitting, LS vs jj coupling, laser rate equations, Franck-Condon

09

Condensed Matter Physics

Crystal structure, band theory, superconductivity — heavy in GATE Physics.

CSIR NETIIT JAMGATEJEST

Key Formulas (Preview)

Bragg’s Law2d sinθ = nλ
Fermi Energy (T=0)E᳧ = (ℏ²/2m)(3π²n)^(2/3)
Density of Statesg(E) = (1/2π²)(2m/ℏ²)^(3/2) E^(1/2)
Debye Heat CapacityCᵥ = 12π⁴Nk₫(T/θᴩ)³ (low T)
London Equation∇²B = B/λₗ² (λₗ = London depth)
Energy Gap (BCS)2Δ ≈ 3.52 k₫Tᶜ
Hall CoefficientRₖ = -1/ne
Effective Mass1/m* = (1/ℏ²)(d²E/dk²)

🎓 High-yield PYQ topics: Bragg’s law, Fermi energy, BCS energy gap, Hall coefficient, effective mass

10

Nuclear & Particle Physics

Nuclear models, decay processes, Q-values — high-yield NAT material.

CSIR NETGATEJESTTIFR

Key Formulas (Preview)

Nuclear RadiusR = R₀A^(1/3); R₀ ≈ 1.2 fm
Binding Energy/AB/A = (1/A)[Z·m᳼+Nmₙ-M]c²
SEMF (simplified)B = aᵥA – aᴸA^(2/3) – aᶜZ²A^(-1/3) – aₐ(A-2Z)²A⁻¹
Decay LawN(t) = N₀e^(-λt)
Half-lifet½ = ln2/λ
Q-valueQ = (Mᵢ – Mᵣ)c²
ActivityA = λN = A₀e^(-λt)
Rutherford Scatteringdσ/dΩ = (Z₁Z₂e²/4E)²·csc⁴(θ/2)

🎓 High-yield PYQ topics: Q-value calculations, half-life problems, SEMF coefficients, Rutherford scattering

11

Electronics

Op-amps, BJT, digital logic — tested more deeply in GATE than CSIR NET.

CSIR NETGATE

Key Formulas (Preview)

Inverting Op-ampV₀₴₴ = -(Rᵟ/Rᵢ)Vᵢₙ
Non-inverting GainA = 1 + Rᵟ/R₁
BJT (CE) GainAᵥ = -βRᶜ/rᵃ
Diode (Shockley)I = Iᴸ(e^(V/nVᵀ)-1)
RC Time Constantτ = RC
Barkhausen Criterion|Aβ| = 1 and ∠Aβ = 0°
DeMorgan 1st¯(A+B) = ¯A·¯B
DeMorgan 2nd¯(A·B) = ¯A+¯B

🎓 High-yield PYQ topics: Op-amp gain calculations, BJT biasing, Boolean algebra simplification, ADC/DAC resolution

Quick Reference

Essential Physical Constants

These constants appear across all physics competitive exams. Memorise the values — they are not given in the question paper.

Planck’s constanth = 6.626×10⁻³⁴ J·s
Reduced Planckℏ = 1.055×10⁻³⁴ J·s
Speed of lightc = 3×10⁸ m/s
Boltzmann constantk₫ = 1.381×10⁻²³ J/K
Electron chargee = 1.602×10⁻¹⁹ C
Electron massmᵃ = 9.109×10⁻³¹ kg
Proton massmᵠ = 1.673×10⁻²⁷ kg
Bohr radiusa₀ = 0.529 Å
Avogadro numberNᵃ = 6.022×10²³ mol⁻¹
Rydberg constantR∞ = 1.097×10⁷ m⁻¹
Bohr magnetonμ₫ = 9.274×10⁻²⁴ J/T
Fine structureα = e²/4πε₀ℏc ≈ 1/137
Stefan-Boltzmannσ = 5.67×10⁻⁸ W/m²K⁴
Proton energy equiv.mᵠc² = 938.3 MeV
Electron energy equiv.mᵃc² = 0.511 MeV
1 eV= 1.602×10⁻¹⁹ J
💡 Exam tip: All these constants are included in the downloadable ZIP. WhatsApp 8076563184 to get the full constants + formula sheet PDF pack free.

Study Strategy

How to Use Formula Sheets Effectively

Formula sheets are revision tools, not primary study material. Used correctly, they are powerful. Used incorrectly, they create false confidence.

1

Theory First

Study the concept before using the formula sheet. Formulas without understanding are useless in CSIR NET Part C.

2

Write, Don’t Read

Rewrite every formula by hand at least 3 times. Kinesthetic memory is far stronger than visual memory for mathematical notation.

3

PYQ Mapping

After each formula, identify the PYQ question it appeared in. This connects the abstract formula to a real exam context.

4

Topic Sprints

Use the formula sheet for rapid 10-minute topic sprints during the final 2 weeks — not as primary study material.

5

Exam Morning

Keep only 1-2 pages of the highest-yield formulas for the morning of the exam. Too many pages create anxiety.

6

Pair with Tests

Use formula sheets alongside practice tests — not as a substitute. Tests show you which formulas you can actually apply.

Physics Formula Sheets for CSIR NET, IIT JAM, GATE, JEST & TIFR

Pravegaa Education provides PYQ-mapped, exam-focused physics formula sheets covering all 11 core topics required for competitive examination preparation. The formula sheets are curated separately for CSIR NET Physical Sciences, GATE Physics, IIT JAM Physics, JEST, and TIFR GS — each exam has a different emphasis and the formula sheets reflect that.

These are not textbook formula lists. Every formula in the Pravegaa sheets is tagged to the type of exam question it appears in — MCQ, Part C derivation, NAT calculation, or symbolic section. The sheets are designed by faculty who have taught CSIR NET and IIT JAM preparation for over 15 years and understand exactly which formulas are tested and how.

About Pravegaa Education

Pravegaa Education is a physics-only coaching institute at 28B/7, Jia Sarai, Near IIT Delhi, New Delhi founded by Atul Gaurav (JNU alumnus) and Dr. Alok Shukla (IIT Delhi alumnus). With 8,000+ selections and AIR 1 results. Book a free demo class or call 8920759559.

FAQ

Formula Sheets — Frequently Asked Questions

Yes. The complete Pravegaa Physics Formula Sheet pack is available free. WhatsApp 8076563184 with the message ‘Please share Pravegaa Formula Sheet ZIP’ to receive the complete pack covering all 11 topics across CSIR NET, GATE, IIT JAM, JEST, and TIFR formats. Individual topic formula previews are available on this page.
Yes — each exam demands a different emphasis. CSIR NET sheets focus on conceptual formula usage for Part C derivations. GATE sheets include unit reminders and are optimised for NAT calculations. IIT JAM sheets are compact and arranged for final-month speed revision. JEST/TIFR sheets include advanced QM and Mathematical Physics formulas.
Formula sheets are revision tools, not primary study material. Study each concept deeply first, then use the formula sheet for rapid recall during revision. Handwrite every formula at least 3 times. Map each formula to a specific PYQ question. Use sheets for 10-minute topic sprints in the final 2 weeks — not as a substitute for understanding.
For CSIR NET Part C: Quantum Mechanics (perturbation theory, scattering, angular momentum), Statistical Mechanics (partition functions, quantum statistics), and Electromagnetic Theory (boundary conditions, gauge transformations) have the highest density of formula-based questions. Mathematical Physics formulas (residue theorem, eigenvalues) appear across all sections.
Yes — key physical constants (Planck’s constant, Boltzmann constant, Bohr radius, electron mass, speed of light, etc.) are included in the formula sheets. A complete constants reference is also included on this page and in the downloadable ZIP pack.

Formula Sheets Are the Map. Pravegaa Teaches the Territory.

Formula sheets give you a revision framework. Pravegaa’s live programme gives you the conceptual depth, PYQ-driven classes, doubt sessions, and test series that make formulas actually usable in the exam.

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