9. A 2.05-kg block is pushed against a wall with a force of magnitude P such that the block slides vertically down the wall at a constant speed. The force P is directed perpendicular to the wall and the coefficient of kinetic friction between the wood and the wall is p, = 0.265. 8 N k %3D (a) What is the direction of the friction force on the block by the wall? 1. Downward 2. Upward 3. Out of the wall 4. Into the wall ΣΕ T or (b) Determine the magnitude P of the pushing force. 75

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Chapter1: Units, Trigonometry. And Vectors
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**Problem 9:**

A 2.05-kg block is pushed against a wall with a force of magnitude \( P \) such that the block slides vertically down the wall at a constant speed. The force \( P \) is directed perpendicular to the wall, and the coefficient of kinetic friction between the wood and the wall is \( \mu_k = 0.265 \).

---

(a) **What is the direction of the friction force on the block by the wall?**

1. Downward
2. Upward
3. Out of the wall
4. Into the wall

---

(b) **Determine the magnitude \( P \) of the pushing force.**

---

**Diagrams and Equations:**

- **Diagram Description:** The diagram on the top right shows a vertical wall with a block against it. An arrow labeled \( F \) is perpendicular to the wall, indicating the force \( P \). There are also representation arrows indicating direction, with \( T \) representing tension, \( N \) representing normal force, and \( W \) representing weight.

- **Equations:** Two equations are partially visible, seemingly relating to the conditions for equilibrium or motion, possibly involving force components or acceleration.
Transcribed Image Text:**Problem 9:** A 2.05-kg block is pushed against a wall with a force of magnitude \( P \) such that the block slides vertically down the wall at a constant speed. The force \( P \) is directed perpendicular to the wall, and the coefficient of kinetic friction between the wood and the wall is \( \mu_k = 0.265 \). --- (a) **What is the direction of the friction force on the block by the wall?** 1. Downward 2. Upward 3. Out of the wall 4. Into the wall --- (b) **Determine the magnitude \( P \) of the pushing force.** --- **Diagrams and Equations:** - **Diagram Description:** The diagram on the top right shows a vertical wall with a block against it. An arrow labeled \( F \) is perpendicular to the wall, indicating the force \( P \). There are also representation arrows indicating direction, with \( T \) representing tension, \( N \) representing normal force, and \( W \) representing weight. - **Equations:** Two equations are partially visible, seemingly relating to the conditions for equilibrium or motion, possibly involving force components or acceleration.
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