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the coefficient of restitution for the perfectly plastic body is zero(0).

the coefficient of restitution for the perfectly elastic body is one(1).

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1mo ago

The coefficient of restitution for a perfectly plastic body is zero. This means that the body will not bounce off or rebound after impact, but will instead stick together with the other body.

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Q: What is the value of coefficient of restitution for the perfectly plastic body?
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Related questions

What is the value of coefficient of restitution for the perfectly elastic body?

It is 1. A value of 0 is perfectly inelastic, but examples of objects where it is 1 are hard to come by. (eg. 2 electrons colliding.)


What is coefficient of restitution?

The coefficient of restitution is a measure of how much kinetic energy is retained after a collision between two objects. It is a value between 0 and 1, where 1 represents a perfectly elastic collision (no energy loss) and 0 represents a perfectly inelastic collision (all energy is lost).


Why the value of coefficient of restitution of a perfectly plastic impact is 0?

Physicists distinguish between elastic and inelastic (and partially elastic) collisions. If you mean "elastic", the coefficient of restitution is 1. If you mean "inelastic", the coefficient of restitution is 0.Why? Because that's how "elastic" and "inelastic" collisions are DEFINED. If all the kinetic energy is maintained, the coefficient (relative speed after collision, divided by relative speed before the collision) is 1 - i.e., no movement is lost. If it is zero, all the movement energy (relative speed) is lost.


What is the value of coefficient of restitution for inelastic collision?

The coefficient of restitution for an inelastic collision is typically between 0 and 1, where 0 represents a perfectly inelastic collision (objects stick together after colliding) and 1 represents a perfectly elastic collision (objects bounce off each other without any loss of kinetic energy). In an inelastic collision, the kinetic energy is not conserved and part of it is transformed into other forms of energy, such as heat or sound.


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