🌟 Introduction
Physics is one of the most challenging yet rewarding subjects for ICSE Class 10 students. The ICSE Physics exam demands strongEducation & Learning, conceptual clarity, precise numerical accuracy, and quick formula recall. At Dhingra Classes Nashik, we have compiled the complete list of Physics formulae that every ICSE Class 10 student must master for board exam success.
ICSE Class 10 Physics carries 80 marks for theory and 20 marks for practical/internal assessment, making it crucial to have formulae at your fingertips. The syllabus covers Force, Work, Power & Energy, Light, Sound, Electricity & Magnetism, Heat, and Modern Physics. Units like Light and Electricity & Magnetism carry the highest weightage, often 20–25 marks each.
Understanding Physics formulae is not just about memorization—it is about knowing when and how to apply them in numericals and derivations. This comprehensive guide covers 100+ Physics formulae organized chapter-wise, making it easy for ICSE Class 10 students to revise before exams.
📚 Why Learning Physics Formulae Is Important for ICSE Students
Before diving into the complete list, let us understand why mastering Physics formulae is crucial for ICSE Class 10 students.
🎯 Benefits of Learning Physics Formulae
✅ Numerical Accuracy: Formulae ensure correct calculations in numerical problems
📝 Step Marking: Correct formula usage earns marks even if final answer is wrong
🧠 Conceptual Clarity: Formulae help understand relationships between physical quantities
🏆 Time Management: Quick formula recall saves precious exam time
📊 Derivation Support: Formulae form the basis for theoretical derivations
🔄 Quick Revision: Formula sheets serve as last-minute revision tools
📖 Complete List of Physics Formulae for ICSE Class 10
⚙️ Chapter 1: Force
| Formula | Description |
|---|---|
| F = ma | Newton’s Second Law of Motion |
| p = mv | Momentum = mass × velocity |
| Impulse = F × t = Δp | Change in momentum |
| F_c = mv²/r | Centripetal force |
| Moment of force = Force × Perpendicular distance | Torque formula |
| Sum of clockwise moments = Sum of anticlockwise moments | Principle of moments |
| W = mg | Weight = mass × acceleration due to gravity |
💪 Chapter 2: Work, Energy and Power
| Formula | Description |
|---|---|
| W = F × S | Work = Force × Displacement |
| W = FS cos θ | Work when angle between force and displacement is θ |
| W = mgh | Work done by gravity / Gravitational potential energy |
| KE = ½ mv² | Kinetic Energy |
| PE = mgh | Gravitational Potential Energy |
| P = W/t | Power = Work / Time |
| P = F × v | Power = Force × Average speed |
| Work-Energy Theorem: W = ½mv² − ½mu² | Work done = Change in kinetic energy |
| K = p²/2m | Kinetic Energy in terms of momentum |
| E = mc² | Mass-energy relation |
| Total Energy = KE + PE | Mechanical energy conservation |
| 1 Joule = 10⁷ erg | Unit conversion |
| 1 kWh = 3.6 × 10⁶ J | Commercial unit of energy |
| 1 HP = 746 W | Horsepower conversion |
| 1 eV = 1.6 × 10⁻¹⁹ J | Electron volt conversion |
🏗️ Chapter 3: Machines
| Formula | Description |
|---|---|
| MA = Load/Effort | Mechanical Advantage |
| VR = Velocity of effort / Velocity of load | Velocity Ratio |
| VR = dE/dL | Distance ratio |
| Efficiency = (MA/VR) × 100% | Efficiency of machine |
| VR (lever) = Effort arm / Load arm | Lever velocity ratio |
| VR (pulley) = Number of pulleys | Pulley velocity ratio |
| Work input = Work done by effort | Input work |
| Work output = Load × Distance moved by load | Output work |
| η = MA/VR | Efficiency (decimal form) |
💡 Chapter 4: Light — Refraction and Lenses
| Formula | Description |
|---|---|
| μ = sin i / sin r | Snell’s Law (Refractive index) |
| μ = c/v | Refractive index = Speed of light in vacuum / Speed in medium |
| μ = Real depth / Apparent depth | Refractive index using depth |
| 1/v − 1/u = 1/f | Lens formula (New Cartesian convention) |
| m = v/u | Magnification (lenses) |
| m = h₂/h₁ | Magnification from image/object height |
| P = 1/f (in metres) | Power of lens (Dioptres) |
| μ = 1/sin C | Critical angle formula |
| n₂₁ = n₂/n₁ | Relative refractive index |
Important Sign Conventions:
Convex lens: f is positive, Power is positive
Concave lens: f is negative, Power is negative
🔊 Chapter 5: Sound
| Formula | Description |
|---|---|
| v = fλ | Speed = Frequency × Wavelength |
| d = vt/2 | Echo distance formula |
| Audible range: 20 Hz to 20,000 Hz | Human hearing range |
| f = 1/T | Frequency = 1/Time period |
⚡ Chapter 6: Electricity
| Formula | Description |
|---|---|
| V = IR | Ohm’s Law |
| I = Q/t | Current = Charge / Time |
| R = ρL/A | Resistance = Resistivity × Length / Area |
| R = R₁ + R₂ + R₃ | Series resistance |
| 1/R = 1/R₁ + 1/R₂ + 1/R₃ | Parallel resistance |
| P = VI | Electrical Power |
| P = I²R | Power using current and resistance |
| P = V²/R | Power using voltage and resistance |
| E = P × t | Electrical energy consumed |
| W = VIt = I²Rt = V²t/R | Electrical work/energy |
| H = I²Rt | Joule’s Law of Heating |
| 1 kWh = 3.6 × 10⁶ J | 1 unit of electricity |
Series vs Parallel Circuits:
| Property | Series | Parallel |
|---|---|---|
| Current | Same through all | Divides |
| Voltage | Divides | Same across all |
| Resistance | R = R₁ + R₂ + R₃ | 1/R = 1/R₁ + 1/R₂ + 1/R₃ |
🧲 Chapter 7: Magnetism and Electromagnetism
| Formula/Rule | Description |
|---|---|
| F = BIl | Force on a current-carrying conductor |
| F = BIl sin θ | Force when angle between B and I is θ |
| e = −dφ/dt | Faraday’s Law of EMI |
| Right-hand Thumb Rule | Thumb = current, Curled fingers = magnetic field |
| Fleming’s Left-Hand Rule | Forefinger = Field, Middle = Current, Thumb = Force (Motor) |
| Fleming’s Right-Hand Rule | Forefinger = Field, Thumb = Motion, Middle = Induced Current (Generator) |
| Transformer: V₁/V₂ = N₁/N₂ | Voltage ratio = Turns ratio |
🔥 Chapter 8: Heat (Calorimetry)
| Formula | Description |
|---|---|
| Q = m × c × ΔT | Heat gained or lost = mass × specific heat × temperature change |
| C’ = Q/ΔT | Thermal (Heat) Capacity |
| C = Q/(mΔT) | Specific Heat Capacity |
| Q = mL | Latent heat formula (L = specific latent heat) |
| Heat lost = Heat gained | Principle of method of mixtures |
☢️ Chapter 9: Modern Physics
| Formula | Description |
|---|---|
| Z = Number of protons | Atomic Number |
| A = Number of protons + neutrons | Mass Number |
| α-decay: ᴬZX → ᴬ⁻⁴Z₋₂Y + ⁴₂He | Alpha decay equation |
| β-decay: ᴬZX → ᴬZ₊₁Y + ⁰₋₁e | Beta decay equation |
| γ-decay: Emission of gamma radiation | No change in Z or A |
📝 How to Use This Formula List for ICSE Exam Preparation
At Dhingra Classes Nashik, we recommend the following strategies to master Physics formulae for ICSE Class 10.
🎯 Study Tips
📖 Understand each formula before memorizing it
✏️ Write each formula 5–10 times for retention
📝 Solve numericals using each formula daily
🧠 Create formula flashcards for quick revision
🔄 Revise formulae weekly to avoid forgetting
📋 Make a formula sheet for last-minute revision
✅ Practice previous year ICSE questions using formulae
🎯 Focus on high-weightage units like Light and Electricity first
📊 Always write: Given → Formula → Substitution → Answer with units
📊 ICSE Class 10 Physics Weightage
| Unit | Expected Marks |
|---|---|
| Light | 20 – 25 Marks |
| Electricity & Magnetism | 20 – 21 Marks |
| Force, Work, Power & Energy | 16 – 19 Marks |
| Heat | 14 – 18 Marks |
| Sound | 11 – 18 Marks |
| Modern Physics | 07 – 11 Marks |
🏫 How Dhingra Classes Nashik Helps ICSE Class 10 Students Master Physics
At Dhingra Classes Nashik, we provide comprehensive coaching for Physics and all other subjects for ICSE Class 10 students. Our approach includes:
📚 Structured Lessons: Teaching concepts with clear explanations
📝 Formula Sheets: Providing comprehensive formula lists like this one
✏️ Daily Practice: Regular numericals and derivations
🎯 Doubt Clearing Sessions: Personalized attention to every student
📊 Weekly Tests: Ensuring continuous revision
🏆 Problem Solving Techniques: Teaching shortcut methods
📈 Progress Tracking: Regular updates to parents
📞 Contact Dhingra Classes Nashik
📧 Email: dhingraclassesnsk@gmail.com
🌐 Website: www.dhingraclassesnashik.com[citation:9]
📍 Address: Plot No 3, XQ3G+H3M Deacon Homes, 301C, opp. Metro Zone, near Guru Govind Sing, Samarth Nagar, Dnyaneshwar Nagar, Pathardi Phata, Nashik, Maharashtra 422009
🏁 Conclusion
Mastering Physics formulae is essential for ICSE Class 10 students to score high marks in board examinations. This comprehensive list of 100+ Physics formulae covers all major chapters including Force, Work Energy Power, Machines, Light, Sound, Electricity, Magnetism, Heat, and Modern Physics.
By regularly revising these formulae and practicing numericals, you can improve your speed and accuracy in exams. At Dhingra Classes Nashik, we are committed to helping ICSE Class 10 students excel in Physics and achieve academic success. Remember, Physics is not just about memorizing formulae—it is about understanding concepts and applying them correctly.