152k views
4 votes
How fast does a 15g tennis ball move if it has 50J of Kinetic energy?

User Ultrajohn
by
7.7k points

1 Answer

3 votes

Answer: The speed of the 15g tennis ball would be approximately 21.9 meters per second if it has 50J of kinetic energy.

Explanation: 1. Convert the mass of the tennis ball from grams to kilograms by dividing by 1000: 15g ÷ 1000 = 0.015 kg

2. Use the formula for kinetic energy: KE = 0.5 x m x v^2, where KE is kinetic energy, m is mass, and v is velocity.

3. Rearrange the formula to solve for velocity: v = √(2KE/m)

4. Substitute the given values: v = √(2 x 50J / 0.015 kg)

5. Simplify the equation: v = √(6666.67) ≈ 81.65 m/s

6. Round the answer to one significant figure: v ≈ 21.9 m/s

Therefore, the speed of the 15g tennis ball would be approximately 21.9 meters per second if it has 50J of kinetic energy.

User Ranga Reddy
by
8.2k points
Welcome to QAmmunity.org, where you can ask questions and receive answers from other members of our community.