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According to Newton's third law when you push an object the direction of the forces is...
The dryer will accelerate more.
60 newtons
meters over seconds squared (m/s²)
opposite.
Forces happen in pairs.
stay the same until a force acts on the object.
kilograms (kg)
First law
A new washer and dryer have arrived. The dryer has half the mass. You push both with the same force. Which one will have more acceleration?
The dryer will accelerate more.
60 newtons
meters over seconds squared (m/s²)
opposite.
Forces happen in pairs.
stay the same until a force acts on the object.
kilograms (kg)
First law
Newton's third law of motion explains that
The dryer will accelerate more.
60 newtons
meters over seconds squared (m/s²)
opposite.
Forces happen in pairs.
stay the same until a force acts on the object.
kilograms (kg)
First law
If you push on desk with 60 newtons of force, how much force will the desk push on you?
The dryer will accelerate more.
60 newtons
meters over seconds squared (m/s²)
opposite.
Forces happen in pairs.
stay the same until a force acts on the object.
kilograms (kg)
First law
What is the unit for acceleration?
The dryer will accelerate more.
60 newtons
meters over seconds squared (m/s²)
opposite.
Forces happen in pairs.
stay the same until a force acts on the object.
kilograms (kg)
First law
According to Newton's first law the speed of an object will
The dryer will accelerate more.
60 newtons
meters over seconds squared (m/s²)
opposite.
Forces happen in pairs.
stay the same until a force acts on the object.
kilograms (kg)
First law
Which of Newton's laws explains that an object at rest stays at rest unless an unbalanced force acts on it?
The dryer will accelerate more.
60 newtons
meters over seconds squared (m/s²)
opposite.
Forces happen in pairs.
stay the same until a force acts on the object.
kilograms (kg)
First law
What is the unit for mass?
The dryer will accelerate more.
60 newtons
meters over seconds squared (m/s²)
opposite.
Forces happen in pairs.
stay the same until a force acts on the object.
kilograms (kg)
First law
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