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Work & Energy

Power and Efficiency Simulators

Theory & Scientific Principles

Work & Energy Theorem: Work done by a force over displacement is $W = \vec{F}\cdot\vec{d} = F d \cos\theta$. Net work done equals kinetic energy change: $W_{\text{net}} = \Delta KE = \frac{1}{2}mv_f^2 - \frac{1}{2}mv_i^2$.

Gravitational Potential Energy: $PE = mgh$ in uniform gravitational fields.

Mechanical Power & Efficiency: Power is rate of energy transfer: $P = \frac{dW}{dt} = \vec{F}\cdot\vec{v}$. Thermodynamic efficiency is $\eta = \frac{P_{\text{out}}}{P_{\text{in}}} \times 100\%$.

Operating Instructions: Use the sidebar tab switcher to explore Energy conservation, Work vector projections, Power dissipation, and System efficiency.

Parameters

Live Data

Height0 m
Velocity0 m/s
Potential E.0 J
Kinetic E.0 J
Total Energy0 J