1. A tennis ball has a mass of 0.5 kg and is moving with a velocity of 25 m/s. Calculate the kinetic energy of the tennis ball.

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Name Nícholzs uAter
PS Physics
Work, and Energy
Answer the following problems using the GUESS method.
1.
A tennis ball has a mass of 0.5 kg and is moving with a velocity of 25 m/s. Calculate the kinetic
energy of the tennis ball.
2.
Miguel Cabrera exerts a force of 100 N for 2m to throw a ball from first base to home plate
which is 30m away. How much work was done on the ball?
Your favorite reading book has a mass of 345 grams. What is its' potential energy as it sits on a
book shelf 2.5 meters high?
3.
4.
The kinetic energy of a runner is 912 Joules. If the runner has a mass of 95kg, what is the
velocity of the runner?
5. John slides his calculator across the table to Joe during a test (tsk tsk) The table is 1.75 m long,
and John used a total of 10 J of energy to move the calculator. Determine the force John used.
6. The potential energy of a skier on top of a 100 m mountain is 83,000 J. What is the mass of the
skier?
Transcribed Image Text:Name Nícholzs uAter PS Physics Work, and Energy Answer the following problems using the GUESS method. 1. A tennis ball has a mass of 0.5 kg and is moving with a velocity of 25 m/s. Calculate the kinetic energy of the tennis ball. 2. Miguel Cabrera exerts a force of 100 N for 2m to throw a ball from first base to home plate which is 30m away. How much work was done on the ball? Your favorite reading book has a mass of 345 grams. What is its' potential energy as it sits on a book shelf 2.5 meters high? 3. 4. The kinetic energy of a runner is 912 Joules. If the runner has a mass of 95kg, what is the velocity of the runner? 5. John slides his calculator across the table to Joe during a test (tsk tsk) The table is 1.75 m long, and John used a total of 10 J of energy to move the calculator. Determine the force John used. 6. The potential energy of a skier on top of a 100 m mountain is 83,000 J. What is the mass of the skier?
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