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A single word used to describe Newton's First Law is (blank)
Stay at rest
Stay still
Both at equal distances from the center of the surface.
The mass/inertia of the anvil
Pull it slowly
Not change its motion or lack of
Normal
Inertia
If two people stand on a hanging scale (hanging flat surface held up by two ropes on either end with scales attached to each rope), how should they stand so that the scales are balanced?
Stay at rest
Stay still
Both at equal distances from the center of the surface.
The mass/inertia of the anvil
Pull it slowly
Not change its motion or lack of
Normal
Inertia
An object that has more than one outside force acting on it, but the forces are balanced, then it will
Stay at rest
Stay still
Both at equal distances from the center of the surface.
The mass/inertia of the anvil
Pull it slowly
Not change its motion or lack of
Normal
Inertia
What protects a sheet of plastic from breaking when an anvil rests on top of it and hit with a large mallet?
Stay at rest
Stay still
Both at equal distances from the center of the surface.
The mass/inertia of the anvil
Pull it slowly
Not change its motion or lack of
Normal
Inertia
A block is on a table. What is the force that keeps it from falling through the table?
Stay at rest
Stay still
Both at equal distances from the center of the surface.
The mass/inertia of the anvil
Pull it slowly
Not change its motion or lack of
Normal
Inertia
A large weight is suspended by a string and a second string hangs from the mass below it. How should I pull the bottom string to break the top string?
Stay at rest
Stay still
Both at equal distances from the center of the surface.
The mass/inertia of the anvil
Pull it slowly
Not change its motion or lack of
Normal
Inertia
If an object is at rest and does not have an outside force acting on it then it will (blank)
Stay at rest
Stay still
Both at equal distances from the center of the surface.
The mass/inertia of the anvil
Pull it slowly
Not change its motion or lack of
Normal
Inertia
If a quarter is resting on an index card and then the card is pulled out from underneath it, the quarter will
Stay at rest
Stay still
Both at equal distances from the center of the surface.
The mass/inertia of the anvil
Pull it slowly
Not change its motion or lack of
Normal
Inertia
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