Simple harmonic motion, pendulums, springs, damping, resonance, and oscillation calculators.
Most used tools
Compute displacement, velocity, and acceleration in simple harmonic motion.
Find the oscillation period of a mass on a spring using T = 2π√(m/k).
Determine the period of a simple pendulum using T = 2π√(L/g).
Find the instantaneous displacement of an object undergoing SHM.
Find the peak velocity in SHM using v_max = Aω.
Find the energy stored in a spring using PE = ½kx².
15 tools available
Compute displacement, velocity, and acceleration in simple harmonic motion.
Find the oscillation period of a mass on a spring using T = 2π√(m/k).
Determine the period of a simple pendulum using T = 2π√(L/g).
Convert between angular frequency, frequency, and period.
Find frequency from the period of oscillation using f = 1/T.
Find the instantaneous displacement of an object undergoing SHM.
Determine the velocity of an oscillator at any point in SHM.
Find the acceleration of an oscillator at any point in SHM.
Find the peak velocity in SHM using v_max = Aω.
Determine the peak acceleration in SHM using a_max = Aω².
Find the energy stored in a spring using PE = ½kx².
Find the damped frequency and damping characteristics of a damped oscillator.
Find the resonance frequency where oscillation amplitude is maximized.
Determine the beat frequency from two interfering sound waves.
Find the normal mode frequencies of a two-body coupled oscillator system.
Our oscillations calculators provide accurate, instant results for physics calculations. Whether you need to compute forces, velocities, energies, or other physical quantities, these tools have you covered.