Work is the product of force and distance moved in the direction of the force. The SI unit of work is the joule (J).
Illustration of work done
Work done formula
The work done is calculated using the formula:
W=F×d
Where:
- W = work done (joules)
- F = force applied (newtons)
- d = distance moved in the direction of the force (metres)
Gravitational potential energy
The formula for gravitational potential energy is:
Ep=m×g×h
Where:
- Ep = gravitational potential energy (joules)
- m = mass (kilograms)
- g = gravitational field strength (9.8 m/s²)
- h = height (metres)
Compressing spring
Kinetic energy
The formula for kinetic energy is:
Ek=21×m×v2
Where:
- Ek = kinetic energy (joules)
- m = mass (kilograms)
- v = speed (metres per second)
Battery connected to a charging unit
Example 1
Question: how much work is done to first lift a 7 kg object a distance of 2 m and then hold it at that height for 10 seconds?
Solution:
Lifting the object:
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Mass of the object: 7 kg
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Gravitational force (g): 10 N/kg
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Force applied:
F=mass×gravitational force=7kg×10N/kg=70N
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Distance lifted (d): 2 m
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Work done:
W=Force×Distance=70N×2m=140J
Holding the object:
While holding the object, the distance moved is zero.
W=Force×Distance=70N×0m=0J
So work done while lifting = 140 J, work done while holding = 0 J.
Example 2
Question: a force of 80 N pulls a box along a smooth and level ground through a distance of 5 m. Calculate the work done by the force.
Solution:
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Force applied (F): 80 N
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Distance moved (d): 5 m
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Work done:
W=Force×Distance=80N×5m=400J
Work done = 400 J.