Understanding Oscillation with Friction: Problem 130 Solution Clarifications

In summary, the conversation discusses a problem and its solution involving kinetic energy and oscillations. There is confusion about the time it takes for the spring to reach equilibrium position and the work energy statement. The poster suggests that clearer pictures be uploaded and advises the reader to read the guidelines for users and helpers before posting.
  • #1
Carbon123
55
1

Homework Statement


So In the following picture is the problem and its solution (Problem 130)

Homework Equations



KE =1/2 m v2 x:=w^2x

The Attempt at a Solution


I am confused of the fact that the time from the spring touching t2 is T/4-t where T is the period oscillations while t is the time to reach equillibrium position.Is it not supposed to be the sum ? Another one is the final work energy statement , why would there be x32 is it not supposed to be x2 ?
Thanks in advance.
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  • #2
I cannot read your pictures, so at least I will not be able to assist you. Perhaps you might consider re-posting clearer ones?
 
  • #3
The picture is a screenshot from a pdf file.Do you have any suggestion on how I can upload a clear one ? (The screenshot is crystal clear)
 
  • #4
I suggest that you first read (or reread) the guidelines for users and helpers.
https://www.physicsforums.com/threads/guidelines-for-students-and-helpers.686781/
Then, instead of posting the contents of 3 pdf files, try to summarize and type in the part(s) of the problem that is (are) relevant to your question. Put yourself in the place of the reader and make sure all the relevant information is conveyed and nothing more.
 

Related to Understanding Oscillation with Friction: Problem 130 Solution Clarifications

1. What is oscillation with friction?

Oscillation with friction is a type of periodic motion where an object moves back and forth due to the influence of an opposing force, such as friction. This results in a gradual decrease in the amplitude of the oscillation over time.

2. How is friction involved in oscillation?

Friction is involved in oscillation as it acts as a damping force, slowing down the motion of the oscillating object. This is due to the contact between two surfaces, which creates resistance and converts kinetic energy into heat.

3. What factors affect the amount of friction in oscillation?

The amount of friction in oscillation can be affected by factors such as the material and surface properties of the objects in contact, the speed and frequency of the oscillation, and the presence of any lubricants or external forces.

4. How does friction affect the period of oscillation?

Friction can impact the period of oscillation by reducing the amplitude of the motion, which in turn affects the time it takes for the object to complete one full cycle of oscillation. This means that as friction increases, the period of oscillation also increases.

5. Can oscillation with friction be useful or advantageous?

Yes, oscillation with friction can be useful in various applications such as shock absorbers, which use friction to dampen vibrations and reduce the impact of sudden movements. It can also be advantageous in controlling the speed and stability of certain mechanical systems.

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