Classical Mechanics
70 terms · page 1 of 3
Acceleration
Classical Mechanics
m/s²
The vector rate of change of velocity with respect to time.
a = dv/dt = d²r/dt²
Amplitude
Classical Mechanics
m
The maximum magnitude of displacement from the equilibrium position in an oscillating or wave system.
A = x_max
Angular Acceleration
Classical Mechanics
rad/s²
The rate of change of angular velocity with respect to time.
α = dω/dt = τ / I
Angular Displacement
Classical Mechanics
rad (radians)
The angle through which a point or line rotates about a specified axis in a specified direction.
θ = s / r
Angular Momentum
Classical Mechanics
kg·m²/s (J·s)
The rotational analog of linear momentum, defined as the product of moment of inertia and angular velocity.
L = I ω = r × p
Angular Velocity
Classical Mechanics
rad/s
The vector rate of change of angular displacement with respect to time.
ω = dθ/dt
Apparent Weight
Classical Mechanics
N
The effective weight of a body, equal to the normal contact force supporting it in an accelerating frame.
W_app = m (g + a)
Archimedes' Principle
Classical Mechanics
N
The principle stating that any object fully or partially submerged in a fluid experiences an upward buoyant force equal to the weight of displaced fluid.
Fb = m_fluid g = ρ_fluid V_displaced g
Bernoulli's Principle
Classical Mechanics
Pa
The principle in fluid dynamics stating that an increase in fluid speed occurs simultaneously with a decrease in static pressure or potential energy.
P + ½ ρ v² + ρ g h = constant
Buoyancy
Classical Mechanics
N
The net upward fluid force exerted on an object immersed in a fluid due to pressure difference between top and bottom.
Fb = ρ_fluid V_submerged g
Centripetal Acceleration
Classical Mechanics
m/s²
The inward acceleration of an object moving in a circular path, directed toward the center of curvature.
ac = v² / r = ω² r
Centripetal Force
Classical Mechanics
N
The net inward force directed toward the center of curvature that keeps an object moving along a curved or circular path.
Fc = m v² / r = m ω² r
Circular Motion
Classical Mechanics
m/s, rad/s
The movement of an object along the circumference of a circular path or orbit.
v = ω r, ac = v² / r
Coefficient of Restitution
Classical Mechanics
Dimensionless (0 to 1)
A fractional measure of elasticity in a collision, defined as ratio of relative separation speed to relative approach speed.
e = (v2_f - v1_f) / (v1_i - v2_i)
Completely Inelastic Collision
Classical Mechanics
kg·m/s, m/s
A collision in which colliding bodies stick together after impact, moving as a single combined mass with maximum kinetic energy loss.
m1 v1 + m2 v2 = (m1 + m2) Vf
Conservation of Linear Momentum
Classical Mechanics
kg·m/s
The law stating that total linear momentum of an isolated system remains constant if no net external force acts on it.
∑ p_initial = ∑ p_final
Conservative Force
Classical Mechanics
N
A force for which total work done in moving an object between two points is independent of the path taken.
∮ F · dr = 0, F = -∇ PE
Continuity Equation
Classical Mechanics
m³/s
The equation expressing conservation of mass for fluid flow through a pipe or conduit.
A1 v1 = A2 v2 = constant (Volumetric Flow Rate Q)
Couple
Classical Mechanics
N·m
A system of two equal, parallel forces acting in opposite directions whose lines of action do not coincide, producing pure torque without net linear force.
τ = F d
Drag Force
Classical Mechanics
N
The fluid resistance force opposing the motion of an object moving through a liquid or gas.
Fd = ½ ρ v² Cd A
Dynamic Equilibrium
Classical Mechanics
N, N·m
The state of a physical system moving at constant linear velocity and constant angular velocity with zero net force and zero net torque.
∑ F = 0 (v = const ≠ 0), ∑ τ = 0 (ω = const)
Efficiency
Classical Mechanics
%
The ratio of useful work output to total energy input for a machine or system.
η = (W_output / E_input) × 100%
Elastic Collision
Classical Mechanics
kg·m/s, J
A collision between bodies in which both total linear momentum and total kinetic energy are conserved.
∑ p_i = ∑ p_f, ∑ KE_i = ∑ KE_f
Elasticity
Classical Mechanics
Pa (N/m²)
The mechanical property of a material to deform under applied stress and return to its original shape when stress is removed.
Stress / Strain = Elastic Modulus (E)