Work, Energy and Power
ЁЯУР Formula & Cheat Sheet (English)
Quick Revision Notes: Work, Energy and Power
Class: 11 Physics (MP Board)
### 1. Work (рдХрд╛рд░реНрдп)
-
Definition: Work is done when a force acting on a body produces a displacement in the body. It is a scalar quantity.
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Formula:
W = F * s * cos(╬╕)Where:F= Force (рдмрд▓)s= Displacement (рд╡рд┐рд╕реНрдерд╛рдкрди)╬╕= Angle between Force and Displacement vectors.
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Special Cases:
- If
╬╕ = 0┬░(Force and displacement in the same direction):W = F * s(Maximum Work) - If
╬╕ = 90┬░(Force perpendicular to displacement):W = 0(Zero Work, e.g., carrying a load horizontally). - If
╬╕ = 180┬░(Force opposite to displacement):W = -F * s(Minimum/Negative Work, e.g., frictional force).
- If
-
Units & Dimensions:
- SI Unit: Joule (J) or Newton-metre (N┬╖m)
- CGS Unit: erg
- Relation:
1 Joule = 10^7 erg - Dimensional Formula:
[M^1 L^2 T^-2]
### 2. Energy (рдКрд░реНрдЬрд╛)
- Definition: The capacity of a body to do work is called energy. It is a scalar quantity.
- SI Unit: Joule (J)
- Dimensional Formula:
[M^1 L^2 T^-2]
A. Kinetic Energy (рдЧрддрд┐рдЬ рдКрд░реНрдЬрд╛)
- Definition: Energy possessed by a body by virtue of its motion.
- Formula:
K = (1/2) * m * v^2Wherem= mass,v= velocity. - Relation between Momentum (p) and Kinetic Energy (K):
p = sqrt(2 * m * K)orK = p^2 / (2 * m)
B. Potential Energy (рд╕реНрдерд┐рддрд┐ рдКрд░реНрдЬрд╛)
- Definition: Energy possessed by a body by virtue of its position or configuration.
- Gravitational Potential Energy:
U = m * g * hWherem= mass,g= acceleration due to gravity,h= height. - Spring Potential Energy:
U = (1/2) * k * x^2Wherek= spring constant (рдмрд▓ рдирд┐рдпрддрд╛рдВрдХ),x= extension/compression.
### 3. Work-Energy Theorem (рдХрд╛рд░реНрдп-рдКрд░реНрдЬрд╛ рдкреНрд░рдореЗрдп)
- Statement: The work done by a net force on a object equals the change in its kinetic energy.
- Formula:
W = ╬ФK = K_f - K_iW = (1/2) * m * v^2 - (1/2) * m * u^2(Wherevis final velocity anduis initial velocity)
### 4. Conservation of Mechanical Energy (рдпрд╛рдВрддреНрд░рд┐рдХ рдКрд░реНрдЬрд╛ рд╕рдВрд░рдХреНрд╖рдг рдХрд╛ рдирд┐рдпрдо)
- Statement: The total mechanical energy (Kinetic Energy + Potential Energy) of a system remains constant if the internal forces are conservative.
- Formula:
E = K + U = constantK_i + U_i = K_f + U_f
### 5. Power (рд╢рдХреНрддрд┐)
- Definition: The rate of doing work or the rate of transfer of energy is called power. It is a scalar quantity.
- Formulas:
- Average Power:
P_avg = W / t - Instantaneous Power:
P = F * v(wherevis velocity)
- Average Power:
- Units & Dimensions:
- SI Unit: Watt (W) or Joule/second (J/s)
- Practical Unit: Horsepower (hp) ->
1 hp = 746 Watts - Commercial Unit of Energy: Kilowatt-hour (kWh) ->
1 kWh = 3.6 * 10^6 Joules - Dimensional Formula:
[M^1 L^2 T^-3]
### 6. Collisions (рд╕рдВрдШрд░реНрд╖ / рдЯрдХреНрдХрд░)
Collisions are generally of two types in one dimension:
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Elastic Collision (рдкреНрд░рддреНрдпрд╛рд╕реНрде рдЯрдХреНрдХрд░):
- Both Momentum and Kinetic Energy are conserved.
p_initial = p_finalandK_initial = K_final- Coefficient of restitution,
e = 1.
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Inelastic Collision (рдЕрдкреНрд░рддреНрдпрд╛рд╕реНрде рдЯрдХреНрдХрд░):
- Only Momentum is conserved. Kinetic energy is not conserved (lost as heat, sound, etc.).
p_initial = p_finalandK_initial тЙа K_final- Coefficient of restitution,
e = 0(for perfectly inelastic collision where bodies stick together).