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⚡ WORK, ENERGY & POWER · WEP

Work-energy theorem • Kinetic & Potential energy • Conservation of mechanical energy • Power • NEET problems

IMPORTANT FORMULA PYQ FOCUS

📐 WORK (W)

Work done by constant force: W = F·s = F s cosθ (scalar product)

Special cases:
θ = 0° → W = Fs (maximum positive)
θ = 90° → W = 0 (no work)
θ = 180° → W = –Fs (negative work)

Work by variable force: W = ∫ F·dx (area under F-x graph)

Unit: Joule (J) = N·m = kg·m²/s²

📊 Work as area under F-x curve

🔋 ENERGY & WORK-ENERGY THEOREM

Kinetic Energy (KE): K = ½ mv²

Potential Energy (PE): U = mgh (gravitational), U = ½ kx² (spring)

Work-Energy Theorem: Wnet = ΔK = Kf – Ki

🔹 For conservative forces: ΔK + ΔU = 0 → total mechanical energy conserved.
NEET Insight: In presence of non‑conservative forces (friction), Wnc = ΔE = ΔK + ΔU.

🔄 CONSERVATION OF MECHANICAL ENERGY

When only conservative forces act: Etotal = KE + PE = constant

🎢 Example: Free fall

mgh + ½ mv² = constant. At height h, v = √(2g(H–h)).

🔧 Spring-mass system

½ mv² + ½ kx² = ½ kA² (amplitude A).

✏️ Energy conversion in pendulum

PE ⇄ KE

⚡ POWER (P)

Average power: Pavg = W/Δt

Instantaneous power: P = dW/dt = F·v (dot product)

Unit: Watt (W) = J/s. 1 hp = 746 W

🔹 Commercial unit: 1 kWh = 3.6 × 10⁶ J

Efficiency: η = (output power)/(input power) × 100%

💡 NEET TIPS & SHORTCUTS

  • Work done by gravity is independent of path: Wg = –ΔU = –mgΔh.
  • Work done by spring force: Wspring = –½ k(x₂² – x₁²).
  • For variable force, use integration or area under F-x.
  • In collisions, kinetic energy may not be conserved, but momentum always is.

⚠️ COMMON MISTAKES

  • Confusing work done by friction with change in kinetic energy (friction always does negative work).
  • Using conservation of energy when non‑conservative forces are present.
  • Not using the correct sign for work done by a force.
  • Assuming power = force × speed always – only valid when force and velocity are in same direction.

PYQ Insights (2020-2024): Work-energy theorem, spring problems, conservation of mechanical energy in pendulum and vertical circle, power calculation – 2-3 questions annually. Often combined with kinematics.

📌 QUICK REVISION CARD

Work (constant force): W = Fs cosθ

Kinetic energy: K = ½ mv²

Gravitational PE: U = mgh

Spring PE: U = ½ kx²

Power: P = Fv (if F∥v)

Work-energy theorem: Wnet = ΔK

Energy conservation is the most powerful tool in mechanics!
✦ ⚡ ✦ 🔋 ✦ 📐 ✦ 🌀 ✦
Work Energy and Power Revision Notes for NEET Physics PDF Download

⚡ WORK, ENERGY & POWER • NEET REVISION NOTES

📸 NOTES PREVIEW

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Preview of Work Energy & Power Notes

📥 DOWNLOAD WORK ENERGY & POWER NOTES PDF

Download Work Energy and Power Revision Notes for NEET Physics PDF for quick revision and strong conceptual clarity. This chapter is one of the most scoring topics in Mechanics and is frequently asked in NEET exams.

These Work Energy Power handwritten notes PDF free download include work-energy theorem, kinetic energy, potential energy, power, and all important formulas, tricks, and PYQ-based concepts.

🎯 WHY THIS CHAPTER IS IMPORTANT?
  • Highly scoring chapter in NEET
  • Work-Energy Theorem is frequently asked
  • Concepts used in Rotation & Gravitation
  • Helps solve complex numerical problems easily

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📊 WEIGHTAGE ANALYSIS

NEET
2–3 Questions
Work-energy theorem + energy
Board Exams
High Weightage
Theory + numericals
Work-Energy Theorem is the most important concept 🔥

✨ WHAT YOU WILL GET

Complete WEP Notes PDF
All formulas + concepts
PYQ important questions
Quick revision short notes

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