Work, Power & Conservation of Energy: Master Notes
Chapter Overview
Work and Energy provide scalar tools to solve intricate dynamics problems where direct integration of Newton's laws is intractable. In IIT-JEE (Advanced), the primary focus areas are conservative force gradient analysis (
1. Work-Energy Theorem & Power
1.1 The Master Work-Energy Theorem
- Work by a Variable Force in 3D:
- Instantaneous Power:
2. Conservative Forces & Potential Energy Surfaces
A force is conservative if and only if the work done around any closed loop is zero:
2.1 Potential Energy Curves & Stability Analysis
Potential well U(x) displaying stable, unstable, and neutral equilibrium points alongside turning points E = K + U.
3. Vertical Circular Motion: Complete Critical Values
Consider a mass
Complete Mastery Rules:
- Critical speed at bottom for complete circle:
- Tension at bottom and top:
- If
: - The string slacks (
) in the upper hemisphere before reaching the top at angle from vertical ( ). - After slacking, the particle executes standard projectile motion under gravity alone!
- The string slacks (
- Light Rigid Rod vs Flexible String:
- For a rigid rod, velocity can reach zero at the top without collapsing:
- For a rigid rod, velocity can reach zero at the top without collapsing:
4. Authentic Previous Years Questions (PYQs)
PYQ 1: JEE Advanced 2023 (Paper 1) — Potential Energy Well & Small Oscillations
Question:
A particle of mass
where
- Find the equilibrium position
. - Determine the binding energy
of the particle. - Find the angular frequency
for small oscillations about the stable equilibrium.
Step-by-Step Solution:
1. Equilibrium Position:
2. Minimum Potential Energy:
3. Oscillation Frequency:
At
:
PYQ 2: JEE Advanced 2018 — Variable Mass & Work Done by Chain
Question:
A uniform flexible chain of length
Step-by-Step Solution:
The total normal force
- Weight of the chain already at rest on the table:
- Impulsive force from the continuous impact of the chain arriving at speed
: - Total Force on Table:
(The force on the table is exactly 3 times the resting weight of the fallen portion!)
5. High-Yield Formula Sheet
| Concept | Formula | Notes |
|---|---|---|
| Potential Energy Gradient | Conservative fields only | |
| Oscillation about Minimum | Stable equilibrium point | |
| Spring Potential Energy | ||
| Looping the Loop (String) | Tension at top | |
| Looping the Loop (Rod) | Velocity at top |