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Physics For Engineers2D

Equilibrium and Elasticity - Theory & Concepts - Torque Balance

A comprehensive overview of Equilibrium and Elasticity, covering static equilibrium, stress, strain, and material deformation.

Open the complete lesson
Interactive engineering simulation

Torque Balance & Rotational Equilibrium Simulator

Place different masses along a balanced beam. Observe CCW and CW torques, pivot reaction forces, and translational/rotational equilibrium states.

✓ Equilibrium (Στ = 0)
Left Block Parameters (CCW)
Mass 1 (m1)
20 kg
kg
550

Drag for exploration or enter an exact value. Press Enter to apply; Escape restores the current value.

Position 1 (r1)
-3.0 m
m
-4.0-0.5

Drag for exploration or enter an exact value. Press Enter to apply; Escape restores the current value.

Right Block Parameters (CW)
Mass 2 (m2)
30 kg
kg
550

Drag for exploration or enter an exact value. Press Enter to apply; Escape restores the current value.

Position 2 (r2)
2.0 m
m
0.54.0

Drag for exploration or enter an exact value. Press Enter to apply; Escape restores the current value.

Live Torque Summation Equation
Στ=τCCWτCW=588.6 Nm588.6 Nm=0.0 Nm\Sigma\tau = \tau_{CCW} - \tau_{CW} = 588.6 \text{ N}\cdot\text{m} - 588.6 \text{ N}\cdot\text{m} = 0.0 \text{ N}\cdot\text{m}

For **Rotational Equilibrium**, counter-clockwise (CCW) torque must exactly equal clockwise (CW) torque ($\Sigma \tau = 0$).

CCW Torque (τ1 = m1·g·r1)
588.60 N·m
CW Torque (τ2 = m2·g·r2)
588.60 N·m
Fulcrum Reaction Force (FR)
588.60 N
Net Residual Torque (Στ)
0.00 N·m
Model scope and verification

Use the displayed units and idealizations, then verify the governing balance or compatibility equation before interpreting the result.