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WorksheetsEnergy Stores, Transfers, Units
Total questions: 20
Worksheet time: 21mins
Energy can be stored in different ways. A moving object has energy in its __________ energy store.
Thermal
Chemical
Kinetic
Gravitational potential
Elastic potential
Energy can be stored in different ways. The temperature of an object depends on the amount of energy it has in its __________ energy store.
Thermal
Chemical
Kinetic
Gravitational potential
Elastic potential
Energy can be stored in different ways. The bond between two particles has energy in its __________ energy store.
Thermal
Chemical
Kinetic
Gravitational potential
Elastic potential
Energy can be stored in different ways. A compressed or stretched object that can return to its original shape has energy in its __________ energy store.
Thermal
Chemical
Kinetic
Gravitational potential
Elastic potential
Energy can be stored in different ways. An object raised above the ground has energy in its __________ energy store.
Thermal
Chemical
Kinetic
Gravitational potential
Elastic potential
Cells and batteries have most of their energy in their __________ energy store.
Thermal
Chemical
Kinetic
Gravitational potential
Elastic potential
A student picks up a book off the floor and puts it on a high shelf. Which energy store has been filled /increased in this process?
Thermal
Chemical
Kinetic
Gravitational potential
Elastic potential
There are different ways that energy can be transferred from one energy store to another. Energy is transferred __________ when there is a difference in temperature between two objects.
By electrical current
By heating
Mechanically (by forces)
By radiation/waves (light, sound, etc.)
Energy is transferred __________ when a force moves an object through a distance.
By electrical current
By heating
Mechanically (by forces)
By radiation/waves (light, sound, etc.)
Energy is transferred __________ when a wave (e.g. visible light or infrared) transfers energy from an object to its surroundings.
By electrical current
By heating
Mechanically (by forces)
By radiation/waves (light, sound, etc.)
Which of the following equations is correct? [Work done = W, Force = F, distance = s]
F = W x s
W = s/F
W = F/s
F = W/s
Which of the following is the standard unit for distance?
second (s)
newton (N)
metre (m)
joule (J)
kilogram (kg)
Which of the following is the standard unit for mass?
second (s)
newton (N)
metre (m)
joule (J)
kilogram (kg)
Which of the following is the standard unit for force?
second (s)
newton (N)
metre (m)
joule (J)
kilogram (kg)
Which of the following is the standard unit for work done?
second (s)
newton (N)
metre (m)
joule (J)
kilogram (kg)
Which of the following is the standard unit for time?
second (s)
newton (N)
metre (m)
joule (J)
kilogram (kg)
Which of the following is the standard unit for energy?
second (s)
newton (N)
metre (m)
joule (J)
kilogram (kg)
Which of the following is the standard unit for height?
second (s)
newton (N)
metre (m)
joule (J)
kilogram (kg)
Which of the following is the standard unit for weight?
second (s)
newton (N)
metre (m)
joule (J)
kilogram (kg)
Which of the following is the standard unit for length?
second (s)
newton (N)
metre (m)
joule (J)
kilogram (kg)
