Physics For Engineers Lab2D
Experiment 7: Simple Harmonic Motion - Theory & Concepts
A theory-first treatment of simple harmonic motion, pendulum dynamics, spring oscillations, energy, damping, resonance, graph interpretation, simulations, and laboratory application.
Open the complete lessonInteractive engineering simulation
Simple Harmonic Motion & Damping
Study the oscillatory behavior of a mass-spring system. Introduce damping to see how the system transitions from standard oscillation to critical and overdamping.
Damping Ratio (ζ) & State
0.00Undamped
Governing Formulas
Motion Equation
Natural Angular Freq
Natural Freq0.50 Hz
Period (T)1.99 s
Position (x)0.50 m
Velocity (v)0.00 m/s
Model scope and verification
Use the displayed units and idealizations, then verify the governing balance or compatibility equation before interpreting the result.
Related simulations
Experiment 7: Simple Harmonic Motion - Theory & Concepts - PendulumExperiment 10: Ohm's Law and Resistance - Theory & Concepts - Circuit Ohms LawExperiment 11: Resistors in Series and Parallel - Theory & Concepts - Circuit Ohms LawExperiment 12: Cells in Series and Parallel - Theory & Concepts - Circuit Ohms Law