(a) What is the work of friction along the curved surface (in J)? (b) What is the coefficient of kinetic friction along the horizontal surface? Enter a number.

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Chapter1: Units, Trigonometry. And Vectors
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### Problem Description

A small block of mass 170 g starts at rest at point A. It slides to point B where its speed is \( v_B = 6.2 \, \text{m/s} \), then continues sliding along the horizontal surface for a distance of 14 m before coming to rest at point C.

A diagram is shown with a curved path from point A to point B, and a straight horizontal path from point B to point C. The height of the curve at point A is 4.0 m.

### Questions

(a) **What is the work of friction along the curved surface (in J)?**

- [ ] Enter your answer in Joules.

(b) **What is the coefficient of kinetic friction along the horizontal surface?**

- [ ] Enter a number for \(\mu_k\).

The diagram visually represents a curved path from point A, which is elevated at 4.0 m, to point B. After point B, the path is horizontal and extends 14 m to point C. The speed of the block at point B is given as 6.2 m/s.
Transcribed Image Text:### Problem Description A small block of mass 170 g starts at rest at point A. It slides to point B where its speed is \( v_B = 6.2 \, \text{m/s} \), then continues sliding along the horizontal surface for a distance of 14 m before coming to rest at point C. A diagram is shown with a curved path from point A to point B, and a straight horizontal path from point B to point C. The height of the curve at point A is 4.0 m. ### Questions (a) **What is the work of friction along the curved surface (in J)?** - [ ] Enter your answer in Joules. (b) **What is the coefficient of kinetic friction along the horizontal surface?** - [ ] Enter a number for \(\mu_k\). The diagram visually represents a curved path from point A, which is elevated at 4.0 m, to point B. After point B, the path is horizontal and extends 14 m to point C. The speed of the block at point B is given as 6.2 m/s.
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