A horizontal spring is attached to a wall at one end and a mass of 5.3 kg on the other end. The spring is pulled 0.88 m from equilibrium and released from rest to oscillate frictionlessly with a period of 6.6 s. What is the magnitude of the maximum velocity reached by the mass? 0.84 m/s 36 m/s 0.97 m/s 5.8 m/s

University Physics Volume 1
18th Edition
ISBN:9781938168277
Author:William Moebs, Samuel J. Ling, Jeff Sanny
Publisher:William Moebs, Samuel J. Ling, Jeff Sanny
Chapter15: Oscillations
Section: Chapter Questions
Problem 60AP: A mass is placed on a frictionless, horizontal table. A spring (k=100N/m) , which can be stretched...
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**Problem Statement:**  

A horizontal spring is attached to a wall at one end and a mass of 5.3 kg on the other end. The spring is pulled 0.88 m from equilibrium and released from rest to oscillate frictionlessly with a period of 6.6 s. What is the magnitude of the maximum velocity reached by the mass?

**Possible Answers:**
- ○ 0.84 m/s
- ○ 36 m/s
- ○ 0.97 m/s
- ○ 5.8 m/s
Transcribed Image Text:**Problem Statement:** A horizontal spring is attached to a wall at one end and a mass of 5.3 kg on the other end. The spring is pulled 0.88 m from equilibrium and released from rest to oscillate frictionlessly with a period of 6.6 s. What is the magnitude of the maximum velocity reached by the mass? **Possible Answers:** - ○ 0.84 m/s - ○ 36 m/s - ○ 0.97 m/s - ○ 5.8 m/s
Expert Solution
Step 1

Given data:

mass of the object attached to spring, m = 5.3 kg
extension of spring, x = 0.88 m 
Time period, T = 6.6 s

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