EASA / CAR Part-66 · Module 2 · 2.2 Mechanics · Cat A

Moments & Equilibrium

Objective: calculate a moment as force × distance from the pivot, and predict when a loaded beam balances — the principle behind spanners, control surfaces and aircraft weight and balance.

Balance beam about its pivotdrag to rotate

The two moments compared

Left moment
0N·m
Right moment
0N·m
Out of balance by
0N·m
State
0
Moment = force × perpendicular distance  ·  balanced when Σ clockwise = Σ anticlockwise

Balanced

The two moments are equal, so the beam is in equilibrium.

A moment is the turning effect of a force: the force multiplied by its perpendicular distance from the pivot, measured in newton-metres. Distance counts every bit as much as force, which is why a long spanner shifts a nut a short one will not, and why a small weight far out balances a large weight close in.

A body is in equilibrium when two conditions hold together: the forces balance, and the moments balance. For this beam that means the clockwise moment equals the anticlockwise moment. The beam does not care how the numbers are made up — 200 N at 0.5 m and 50 N at 2.0 m both give 100 N·m, and either will balance the other.

This is the arithmetic behind aircraft weight and balance. Every item of load has a moment about the datum, and the centre of gravity is the total moment divided by the total weight. Loading the same mass further aft gives a larger moment and moves the CG aft, which is why a loadsheet records both the weight and the arm of every item, never just the weight.