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1.2 Vocabulary IPES DI

Total questions: 10

Worksheet time: 5mins

Name
Class
Date
1.
Define Normal Force
a)
The force pulling an object to earth's surface.
b)
the force of a surface pushing back up on a object.
c)
the force exerted on an object by something else
d)
The force of resistance against an object
2.
Define Gravity Force
a)
The force pulling an object to earth's surface.
b)
the force of a surface pushing back up on a object.
c)
the force exerted on an object by something else
d)
The force of resistance against an object
3.
Define Frictional Force
a)
The force pulling an object to earth's surface.
b)
the force of a surface pushing back up on a object.
c)
the force exerted on an object by something else
d)
The force of resistance against an object
4.
Define Applied Force
a)
The force pulling an object to earth's surface.
b)
the force of a surface pushing back up on a object.
c)
the force exerted on an object by something else
d)
The force of resistance against an object
5.
Acceleration
a)
strength or energy as an attribute of physical action or movement.
b)
change in speed over time
c)
A measure of the amount of matter contained in a physical body
6.
Force
a)
strength or energy as an attribute of physical action or movement.
b)
change in speed over time
c)
A measure of the amount of matter contained in a physical body
7.
Mass
a)
strength or energy as an attribute of physical action or movement.
b)
change in speed over time
c)
A measure of the amount of matter contained in a physical body
8.
Newtons 1st Law
a)
F=MA
b)
A body in motion will stay in motion, a body at rest will stay at rest. (Law of Inertia)
c)
For Every action there is an equal and opposite reaction.
9.
Newtons 2nd Law
a)
F=MA
b)
A body in motion will stay in motion, a body at rest will stay at rest. (Law of Inertia)
c)
For Every action there is an equal and opposite reaction.
10.
Newtons 3rd Law
a)
F=MA
b)
A body in motion will stay in motion, a body at rest will stay at rest. (Law of Inertia)
c)
For Every action there is an equal and opposite reaction.