Energy question, displacement of a spring

In summary, a 4000 elevator equipped with a safety system and experiencing a constant frictional force of 1000 lb falls from rest 12 ft above a relaxed spring with a spring constant k of 10,000 lb/ft. The velocity just before it hits the spring is 24 ft/s and the elevator compresses the spring by 3 feet before coming to a stop. The quadratic equation was used to solve for y and it was found that the work done by the spring is -1/2ky^2, not -ky^2, resulting in the correct answer. It is also noted that using the conservation of energy principle can be helpful when dealing with conservative and nonconservative forces.
  • #1
holezch
251
0

Homework Statement



A 4000 elevator breaks off and falls from rest 12 ft above the surface of a relaxed spring. The elevator has a safety system so that the elevator will always experience a frictional force with a constant magnitude of 1000 lb. The spring constant k is equal to 10 000 lb/ft

a) find velocity just before it hits the spring
b) how much does the elevator compress the spring before it stops?


Homework Equations


The Attempt at a Solution



I solved part a and for 24 ft/s. For part b, I tried using this equation:

sum of conservative forces work + work of friction = change in K

work of gravity + work of spring + work of friction = change in K

then it would be

-ky^2 + (4000 - 1000)y + 1/2mv^2 = 0

because change in K = 0 - K-initial..
plugging in the rest, it should be solvable. But it didn't work out. The reasoning seems fine? what happened? thanks
 
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  • #2
Looks OK, did you solve the quadratic equation correctly for y? Or maybe there's no more friction when the elevator hits the spring? Did you convert the elevator weight to its mass unit??
 
Last edited:
  • #3
thanks a lot, I thought it looked okay as well.. I solved it for y just using the quad. equation.. and I did convert the weight to mass. I'm not sure about the friction thing, I'd imagine that it would still be there, since it's like an elevator shaft and the elevator would still be touching the walls.. If you could, could you please try it and tell me what you get? :S it should be 3 feet but I'm not getting that :S
 
  • #4
holezch said:
thanks a lot, I thought it looked okay as well.. I solved it for y just using the quad. equation.. and I did convert the weight to mass. I'm not sure about the friction thing, I'd imagine that it would still be there, since it's like an elevator shaft and the elevator would still be touching the walls.. If you could, could you please try it and tell me what you get? :S it should be 3 feet but I'm not getting that :S

We both overlooked the fact that the work done by the spring is -1/2ky^2, not -ky^2. Making that correction, y=3 feet.

Note: It is sometimes easier to use the conservation of energy principle rather than the work energy theorem when conservative and nonconservative forces are involved (W_nc = delta PE + delta KE), in that it helps from getting mixed up with the plus and minus signs, and uses the PE of the spring rather than the work done by the spring. PE of a spring is 1/2ky^2, and the work done by the spring is -1/2 ky^2. I am not sure if you just had a typo, or if you assumed that the work done by a spring is -(ky)(y), which it is not, because the spring force is not constant.
 

What is the definition of energy?

Energy is the ability to do work or cause change in an object.

What is the equation for the displacement of a spring?

The equation for the displacement of a spring is x = F/k, where x is the displacement in meters, F is the force applied in Newtons, and k is the spring constant in Newtons per meter.

How does the displacement of a spring affect its potential energy?

The displacement of a spring is directly proportional to its potential energy. As the spring is stretched or compressed, its potential energy increases.

What factors affect the displacement of a spring?

The displacement of a spring is affected by the force applied, the spring constant, and the mass of the object attached to the spring.

What are some real-life applications of the displacement of a spring?

The displacement of a spring is used in various devices such as shock absorbers, car suspension systems, and pogo sticks. It is also used in scientific experiments to measure the elastic properties of materials.

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