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Find the potential energy associated with a 67-kg hiker atop New Hampshire's Mount Washington, 1900 m above sea level. Take the zero of potential energy at sea level.

Answer :

Final answer:

The potential energy of the 67 kg hiker atop Mount Washington is calculated by using the formula for gravitational potential energy: Potential Energy = mass * gravity * height. Substituting the given values, we would calculate the potential energy in Joules.

Explanation:

The calculation of potential energy in this context is used in the field of physics. It involves using the formula for calculating the gravitational potential energy, which is Potential Energy = mass * gravity * height. In this case, the mass (m) of the hiker is 67 kg, gravity (g) is approximately 9.8 m/s² (standard on Earth), and the height (h) in question is 1900 m.

Therefore, the calculation would be as follows:

Potential Energy = 67 kg * 9.8 m/s² * 1900 m

By calculating the above, you will find the potential energy associated with the 67-kg hiker atop of Mount Washington. This value will be in joules (J), as this is the unit for energy.

Learn more about Gravitational Potential Energy here:

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