answersLogoWhite

0


Best Answer

PE = w*h = 600*25 = 15000 joules or 1.5 kJ

User Avatar

Wiki User

βˆ™ 12y ago
This answer is:
User Avatar

Add your answer:

Earn +20 pts
Q: What is the gravitational potential energy of a person with a weight of 600 N that is standing on a ledge that is 25 m up on the air?
Write your answer...
Submit
Still have questions?
magnify glass
imp
Related questions

Does a person standing still on a hill have potential energy and how?

Yes, a person standing still on a hill does have potential energy. The person has gravitational potential energy due to their elevated position on the hill. This potential energy can be converted into kinetic energy if the person moves downhill.


What are some examples of Gravitational Potinal Energy?

Examples of gravitational potential energy include a book sitting on a shelf, a ball at the top of a hill, and a person standing on a diving board.


What is an example of gravitational energy transforming to mechanical energy?

An example of gravitational energy transforming to mechanical energy is when a person releases a pendulum from a certain height. As the pendulum swings back and forth, it converts gravitational potential energy into kinetic energy and then back to potential energy with each swing, demonstrating the transformation between the two forms of energy.


What energy is used when a person is falling from a building?

Gravitational potential energy is converted into kinetic energy as a person falls from a building. As the person falls, the potential energy decreases while the kinetic energy increases due to the acceleration of gravity.


What is the Energy transformation when climbing up a rope ladder?

When climbing up a rope ladder, the potential energy of the person increases as they gain height. This increase in potential energy comes from the conversion of the person's muscle energy into gravitational potential energy.


What is the gravitational potential energy of a 60 kg person standing on the roof of a 10-story building (each story is 3 m high.)?

The gravitational potential energy of the person can be calculated as mgh, where m is the mass of the person (60 kg), g is the acceleration due to gravity (9.81 m/s^2), and h is the height of the building (10 stories * 3 m/story = 30 m). Plugging in the values, the gravitational potential energy is 60 kg * 9.81 m/s^2 * 30 m = 17,586 J.


What is the gravitational potential energy of a 61.2 kg person standing on the roof of a 10-storey building each story is 2.5 m high?

The gravitational potential energy of the person can be calculated using the formula: GPE = mgh, where m is the mass (61.2 kg), g is the acceleration due to gravity (9.81 m/s^2), and h is the height (25 m, which is 10 stories * 2.5 m). Plug the values into the formula: GPE = 61.2 kg * 9.81 m/s^2 * 25 m. Calculate the GPE to find the potential energy of the person standing on the roof of the building.


What are Examples of storing gravitational potential energy?

Examples of storing gravitational potential energy include: Water in a raised dam A boulder at the top of a cliff A book on a high shelf A person at the top of a staircase.


What is the gravitational potential energy of a 60 kg person standing on the roof of a 10 story building and each story is 3 m high with the person on the 5th floor?

The gravitational potential energy of the person can be calculated using the formula: GPE = mgh. With a mass of 60 kg, a height of the 5th floor (3 m*4 = 12m), and acceleration due to gravity (g) of 9.8 m/s^2, the potential energy would be GPE = 60 kg * 9.8 m/s^2 * 12 m.


What form of potential energy does a person blowing a vuvuzela have?

chemical potential energy


When a person climbs stairs what form of energy is being converted into gravitational potential energy?

When a person climbs stairs, the chemical energy stored in their muscles is being converted into gravitational potential energy as they move against the force of gravity.


When would a person going down a hill have the most potential energy?

A person going down a hill will have the most potential energy at the top of the hill, where the gravitational potential energy is highest due to the greater height. As the person descends the hill, potential energy is converted into kinetic energy.