Timeline of classical mechanics
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Classical mechanics
F
=
d
p
d
t
{\displaystyle {\textbf {F}}={\frac {d\mathbf {p} }{dt}}}
Second law of motion
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Fundamentals
Acceleration
Angular momentum
Couple
D'Alembert's principle
Energy
kinetic
potential
Force
Frame of reference
Inertial frame of reference
Impulse
Inertia
/
Moment of inertia
Mass
Mechanical power
Mechanical work
Moment
Momentum
Space
Speed
Time
Torque
Velocity
Virtual work
Formulations
Newton's laws of motion
Analytical mechanics
Lagrangian mechanics
Hamiltonian mechanics
Routhian mechanics
Hamilton–Jacobi equation
Appell's equation of motion
Koopman–von Neumann mechanics
Core topics
Damping
Displacement
Equations of motion
Euler's laws of motion
Fictitious force
Friction
Harmonic oscillator
Inertial
/
Non-inertial reference frame
Motion
(
linear
)
Newton's law of universal gravitation
Newton's laws of motion
Relative velocity
Rigid body
dynamics
Euler's equations
Simple harmonic motion
Vibration
Rotation
Circular motion
Rotating reference frame
Centripetal force
Centrifugal force
reactive
Coriolis force
Pendulum
Tangential speed
Rotational frequency
Angular acceleration
/
displacement
/
frequency
/
velocity
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Euler
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Poisson
Hamilton
Jacobi
Cauchy
Routh
Liouville
Appell
Gibbs
Koopman
von Neumann
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The following is a
timeline of
classical mechanics
: