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This would be the momentum of a 200 g rock moving at a velocity of 4 mi/h.
800 g x mi/h
velocity
The conservation of momentum law
-10 mi/h/s
the object is slowing down
none of these have momentum
a crawling ant
distance and time
Which of the following has the largest momentum:
800 g x mi/h
velocity
The conservation of momentum law
-10 mi/h/s
the object is slowing down
none of these have momentum
a crawling ant
distance and time
Which object has the highest momentum?
800 g x mi/h
velocity
The conservation of momentum law
-10 mi/h/s
the object is slowing down
none of these have momentum
a crawling ant
distance and time
A speed graph would have these two things on its axis:
800 g x mi/h
velocity
The conservation of momentum law
-10 mi/h/s
the object is slowing down
none of these have momentum
a crawling ant
distance and time
This law states that the momentum before and after a collision must be the same:
800 g x mi/h
velocity
The conservation of momentum law
-10 mi/h/s
the object is slowing down
none of these have momentum
a crawling ant
distance and time
A car braking goes from 60 mi/h to 30 mi/h in 3 seconds would have an acceleration of?
800 g x mi/h
velocity
The conservation of momentum law
-10 mi/h/s
the object is slowing down
none of these have momentum
a crawling ant
distance and time
To calculate momentum you must take the mass times:
800 g x mi/h
velocity
The conservation of momentum law
-10 mi/h/s
the object is slowing down
none of these have momentum
a crawling ant
distance and time
On an acceleration graph, an straight line angled down means:
800 g x mi/h
velocity
The conservation of momentum law
-10 mi/h/s
the object is slowing down
none of these have momentum
a crawling ant
distance and time
Check it!