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Not that much actually.

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13y ago
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Q: How much force did the puck exert on the hockey stick at 0.200kg in a 6ms in 2 seconds?
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A player uses a hockey stick to increase the speed of a 0.200 kg hockey puck by 6 ms in 2 seconds how much force did the puck exert on the hockey stick?

what a stupid question!!


When you exert a force on an object it exert the?

opposite and equal force against you.


Felix expends 100 W of power to climb 10 meters in 20 seconds How much force does he exert?

his force is clearly 200N


How much force did the puck exert 0n the hockey stick?

that depends on the force exerted by the stick on the puck. they are directly related, in other words F(puck to stick)=F(stick to puck)


Do you exert more force when you are closer to the fulcrum?

do you exert more force when you are further from the fulcrum


If everything exerts a force why do you not get pulled by it?

The objects with bigger masses exert more pulling force. However, even though all the matter around us exert a force, their masses are too small for them to exert a 'feelable' force. But yes, they do exert a force, but its negligible.


What is The force that you exert on a lever called?

The force that you exert on a lever can be called the effort force. The lever has three parts. They are: the fulcrum, the load, and the effort force. This can also be classified as the input force. The force that you exert to perform a task is known as the input force.


If you exert 200 N of force to move a box 8 meters across the living room in 2 seconds what is your power?

800 W


D'Andre expends 120 W of power in moving a couch 15 meters in 5 seconds How much force does he exert?

40 N


What is the effort force you exert?

input force


What force do the sun and the moon exert on the earth?

They exert Gravitational Force on each other. It is a force which is directly proportional to Mass of the object


Suppose that you fall on a sidewalk while rollerblading Do you exert a force on the sidewalk Does the sidewalk exert a force on you Which of these forces may injure you?

Both, you exert a force onto the sidewalk, and the sidewalk "pushes back" with an equal, but opposite force.