We appreciate your visit to Find the potential energy stored in a ball of mass 5 kg placed at a height of 3 m above the ground A 121 J. This page offers clear insights and highlights the essential aspects of the topic. Our goal is to provide a helpful and engaging learning experience. Explore the content and find the answers you need!
Answer :
Final answer:
The potential energy stored in a 5 kg ball placed 3 m above the ground, assuming a gravitational pull of 9.8 m/s², is calculated to be 147 Joules.
Explanation:
The potential energy stored in an object is calculated using the formula: Potential Energy = mass * gravity * height. In this case, the mass of the ball (m) is 5 kg, the height from the ground (h) is 3 m, and the acceleration due to gravity (g) is approximately 9.8 m/s².
Therefore, the potential energy (PE) is calculated as follows: PE = m * g * h = 5 kg * 9.8 m/s² * 3 m = 147 J.
So, the potential energy of the ball when it is placed 3 meters above the ground is 147 Joules (Option B).
Learn more about Potential Energy here:
https://brainly.com/question/24284560
#SPJ11
Thanks for taking the time to read Find the potential energy stored in a ball of mass 5 kg placed at a height of 3 m above the ground A 121 J. We hope the insights shared have been valuable and enhanced your understanding of the topic. Don�t hesitate to browse our website for more informative and engaging content!
- Why do Businesses Exist Why does Starbucks Exist What Service does Starbucks Provide Really what is their product.
- The pattern of numbers below is an arithmetic sequence tex 14 24 34 44 54 ldots tex Which statement describes the recursive function used to..
- Morgan felt the need to streamline Edison Electric What changes did Morgan make.
Rewritten by : Barada