If two objects with different masses are pushing each other, which exerts the greater force? The object with the smaller mass exerts the greater force on the larger object because it requires more force to make the larger object move. It is impossible to tell which object exerts the greater force unless we know which object accelerates. The object with the greater mass exerts the greater force on the smaller object because the larger object has more inertia. They both exert the same amount of force on each other regardless of their mass, but in opposite directions.

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If two objects with different masses are pushing each other,
which exerts the greater force?
The object with the smaller mass exerts the greater
force on the larger object because it requires more
force to make the larger object move.
It is impossible to tell which object exerts the greater
force unless we know which object accelerates.
The object with the greater mass exerts the greater
force on the smaller object because the larger object
has more inertia.
They both exert the same amount of force on each
other regardless of their mass, but in opposite
directions.
Transcribed Image Text:Listen> If two objects with different masses are pushing each other, which exerts the greater force? The object with the smaller mass exerts the greater force on the larger object because it requires more force to make the larger object move. It is impossible to tell which object exerts the greater force unless we know which object accelerates. The object with the greater mass exerts the greater force on the smaller object because the larger object has more inertia. They both exert the same amount of force on each other regardless of their mass, but in opposite directions.
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Newton's Third Law of motion states that when an object applied force on another body, there is an equal and opposite reactionary force experienced by the object on part of the body

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