MY NOTES ASK YOUR TEACHER (a) Objects with masses m, = 12.0 kg and m, - 9.0 kg are connected by a light string that passes over a frictionless pulley as in the figure below. If, when the system starts from rest, m, falls 1.00 m in 1.25 s, determine the coefficient of kinetic friction between m, and the table. (b) What If? What would the minimum value of the coefficient of static friction need to be for the system not to move when released from rest?

College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
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Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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**Problem Description:**

(a) Objects with masses \( m_1 = 12.0 \, \text{kg} \) and \( m_2 = 9.0 \, \text{kg} \) are connected by a light string that passes over a frictionless pulley, as shown in the figure. If, when the system starts from rest, \( m_2 \) falls 1.00 m in 1.25 s, determine the coefficient of kinetic friction between \( m_1 \) and the table.

**Diagram Explanation:**
- The diagram shows a block \( m_1 \) on a table connected by a string to a hanging block \( m_2 \). The string runs over a frictionless pulley at the edge of the table.

(b) **What If?** What would the minimum value of the coefficient of static friction need to be for the system not to move when released from rest?

- The diagram implicitly demonstrates a common physics setup for friction and motion problems involving connected masses and a pulley system.
Transcribed Image Text:**Problem Description:** (a) Objects with masses \( m_1 = 12.0 \, \text{kg} \) and \( m_2 = 9.0 \, \text{kg} \) are connected by a light string that passes over a frictionless pulley, as shown in the figure. If, when the system starts from rest, \( m_2 \) falls 1.00 m in 1.25 s, determine the coefficient of kinetic friction between \( m_1 \) and the table. **Diagram Explanation:** - The diagram shows a block \( m_1 \) on a table connected by a string to a hanging block \( m_2 \). The string runs over a frictionless pulley at the edge of the table. (b) **What If?** What would the minimum value of the coefficient of static friction need to be for the system not to move when released from rest? - The diagram implicitly demonstrates a common physics setup for friction and motion problems involving connected masses and a pulley system.
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