Newton's Second Law - Proportionality & Relationships
In this interactive exercise, students will explore the fascinating world of Newton's Second Law by conducting hands-on experiments to investigate how force, mass, and acceleration are interconnected; they will graph their findings to visually illustrate the proportional relationships, deepening their understanding of fundamental physics concepts.
Questions
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MultiChoice
If force on an object is doubled while mass is kept constant, acceleration will:
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MultiChoice
If the mass of an object is doubled while force remains constant, acceleration will:
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MultiChoice
If both mass and net force are doubled at the same time, acceleration:
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MultiChoice
A force F accelerates mass m at 4 m/s'. What acceleration results if force is tripled?
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MultiChoice
Mass m accelerates at 10 m/s' under force F. If mass becomes 2m, new acceleration is:
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MultiChoice
A box accelerates at 6 m/s'. If net force is cut in half, new acceleration is:
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MultiChoice
An object accelerates at 2 m/s'. If mass is quadrupled (4m) with force unchanged, new acceleration is:
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MultiChoice
If net force is quadrupled and mass is doubled, what happens to acceleration?
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MultiChoice
An object has acceleration of 8 m/s'. If force is halved and mass is halved, new acceleration is:
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MultiChoice
How much force is needed to give double the mass the same acceleration?
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MultiChoice
If acceleration is 12 m/s' and mass is tripled while force stays constant, new acceleration is:
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MultiChoice
To keep acceleration constant when mass increases by 5 times, how must net force change?