K326 / K327 / 2027
Turning effects of forces overview

Topic 1 of 3

Moments and perpendicular distance

The moment of a force describes its turning effect about a pivot. A force can have a turning effect even if other forces prevent the object from rotating.

A door turns about its hinges. A spanner turns about the centre of a nut. The pivot is the point or axis about which we consider the turning. For a given force, pushing farther from the pivot can produce a larger moment.

Use force in newtons and distance in metres. A force is different from a mass; review forces and weight or unit conversions if needed.

Moment of a force = force x perpendicular distance
Moment = F x d
F is the force in N. d is the perpendicular distance in m from the pivot to the force's line of action. The moment is measured in newton metres, N m.

A moment is also called a torque. State its turning sense: clockwise or anticlockwise in the view being used. N m means force multiplied by distance; N/m is not the unit of moment.

The same push at different distances

Imagine a 12 N push perpendicular to a door. At 0.75 m from the hinge, its moment is 12 x 0.75 = 9.0 N m. At 0.25 m, the same perpendicular push gives 12 x 0.25 = 3.0 N m.

The farther push has three times the turning effect because its perpendicular distance is three times as large. This explains why a door handle is usually placed far from the hinge and why a longer spanner can make a nut easier to turn.

The line of action determines the distance

The line of action is the straight line along which the force acts. Imagine extending the force arrow straight in both directions. Measure the shortest distance from the pivot to that line: it must meet the line at a right angle.

Measure to the force's line of action

A 12 N force on a tilted handlePivot O is at the lower left. The handle ends at A, 0.40 metres right and 0.30 metres above O, making the handle length 0.50 metres. A 12 N force acts vertically downwards at A. The horizontal perpendicular from O to the force's vertical line of action is 0.40 metres. The moment is 4.8 newton metres clockwise. A blue curved arrow indicates the turning sense, not a force. Only the applied force is shown.OA12 N0.50 m0.40 mVertical line of action

Moment = 12 x 0.40 = 4.8 N m clockwise.

Dashed lines are construction guides. The blue curve shows turning sense, not an extra force.

A force through the pivot has zero moment

The same handle with a force along its lengthThe same tilted handle is acted on at A by a 12 N force directed along the handle towards O. The dashed line of action passes through pivot O. The perpendicular distance is zero, so this force has zero moment about O. The applied force still exists. Only this force is shown.OA12 NLine of action passes through O

Perpendicular distance = 0. Moment about O = 0 N m.

A 12 N force acts vertically downwards at A. Its vertical line of action is 0.40 m horizontally from O. The 0.50 m handle length is not perpendicular to that line.

Worked example

A tilted handle

Point A is 0.40 m to the right and 0.30 m above pivot O. The handle OA is 0.50 m long. A 12 N force acts vertically downwards at A.

  1. Identify the line of action: it is vertical through A.
  2. Select the perpendicular distance: the horizontal distance from O to that line is 0.40 m.
  3. Calculate: moment = 12 x 0.40 = 4.8 N m.
  4. Give the turning sense: a downward force to the right of O turns the handle clockwise in this view.

Using 12 x 0.50 would give 6.0 N m, but the handle's length is not the required perpendicular distance. The curved turning arrow indicates a sense of rotation; it is not another force.

A force can have zero moment

If the force at A is directed along the handle towards O, its line of action passes through the pivot. The perpendicular distance is zero, so its moment about O is zero. The force still exists; it simply has no turning effect about that point.

Worked example

Find a force from a required moment

A perpendicular lever arm is 0.20 m. What force gives a moment of 4.8 N m?

F = moment / d = 4.8 N m / 0.20 m = 24 N

The metre units cancel, leaving newtons. If the force is given and the lever arm is unknown, rearrange to d = moment / F.

Choose the distance before multiplying. It is not automatically the length of the handle or the distance to the point where the force is applied. Locate the line of action and its perpendicular from the pivot.

Optional check Viewed from the front, a 10 N force acts vertically downwards at a point to the right of a pivot. The handle is 0.50 m long, but the perpendicular distance from the pivot to the force's line of action is 0.30 m. What is the moment?
Viewed from the front, a 10 N force acts vertically downwards at a point to the right of a pivot. The handle is 0.50 m long, but the perpendicular distance from the pivot to the force's line of action is 0.30 m. What is the moment?