Potential Energy of a Spring

# Potential Energy of a Spring Video Lecture | Physics for Airmen Group X - Airforce X Y / Indian Navy SSR

## Physics for Airmen Group X

199 videos|422 docs|281 tests

## FAQs on Potential Energy of a Spring Video Lecture - Physics for Airmen Group X - Airforce X Y / Indian Navy SSR

 1. What is potential energy of a spring?
Ans. The potential energy of a spring refers to the energy stored in a compressed or stretched spring. It is a form of elastic potential energy and is determined by the displacement of the spring from its equilibrium position.
 2. How is the potential energy of a spring calculated?
Ans. The potential energy of a spring can be calculated using the formula: Potential Energy = (1/2) * k * x^2, where k is the spring constant and x is the displacement of the spring from its equilibrium position.
 3. What factors affect the potential energy of a spring?
Ans. The potential energy of a spring is influenced by two main factors: the spring constant (k) and the displacement (x) of the spring. A higher spring constant or a greater displacement will result in a higher potential energy.
 4. Can the potential energy of a spring be negative?
Ans. No, the potential energy of a spring is always positive. It represents the energy stored in the spring due to its displacement from equilibrium. A negative potential energy would imply that the spring is in a state of excess compression or extension beyond its natural length.
 5. How does the potential energy of a spring relate to its kinetic energy?
Ans. According to the principle of conservation of energy, the potential energy of a spring is converted into kinetic energy as the spring is released. As the spring returns to its equilibrium position, the potential energy decreases while the kinetic energy increases. At the equilibrium position, all the potential energy is converted into kinetic energy.

## Physics for Airmen Group X

199 videos|422 docs|281 tests

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