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As an object is lowered into a deep hole in the surface of the earth, which of the following must be assumed in regard to its potential energy? 1) increase 2) decrease 3) remain constant 4) cannot tell from the information given 5) increases up to the maximum and then remains constant

Ask by Davies Frank. in the United States
Feb 25,2025

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The potential energy decreases as the object is lowered into the hole.

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To analyze the potential energy of an object being lowered into a deep hole in the surface of the Earth, we need to consider the gravitational potential energy formula, which is given by: \[ PE = mgh \] where: - \( PE \) is the potential energy, - \( m \) is the mass of the object, - \( g \) is the acceleration due to gravity (approximately \( 9.81 \, \text{m/s}^2 \) near the Earth's surface), - \( h \) is the height above a reference point (in this case, the bottom of the hole). As the object is lowered into the hole, the height \( h \) decreases. Since potential energy is directly proportional to height, as \( h \) decreases, the potential energy \( PE \) also decreases. Thus, the correct assumption regarding the potential energy of the object as it is lowered into the hole is: 2) decrease

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When an object is lowered into a deep hole in the surface of the Earth, its potential energy will decrease. This is because potential energy is directly related to the height of the object above a reference point, typically the surface of the Earth. As the object moves downward, its height decreases and consequently, so does its potential energy. As for the real-world application, think about how this principle is crucial in fields like engineering and mining. For instance, when digging deep holes for foundations or extracting minerals, understanding the changes in potential energy helps engineers optimize procedures and prevent structural issues. So, make sure to keep an eye on that potential energy drop as you lower things into those deep holes!

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