Problem 4: The diagram shows a crate with mass m = 26.9 kg being pushed up an incline that makes an angle = 19.2° with the horizontal. The pushing force is horizontal, with magnitude P, and the coefficient of kinetic friction between the crate and the incline is μ = 0.35. Consider the work done on the crate as it moves a distance d = 5.93 m at constant speed. P

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Chapter1: Units, Trigonometry. And Vectors
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**Problem 4:**

The diagram shows a crate with mass \( m = 26.9 \, \text{kg} \) being pushed up an incline that makes an angle \( \phi = 19.2^\circ \) with the horizontal. The pushing force is horizontal, with magnitude \( P \), and the coefficient of kinetic friction between the crate and the incline is \( \mu = 0.35 \). Consider the work done on the crate as it moves a distance \( d = 5.93 \, \text{m} \) at constant speed.

**Diagram Explanation:**

The diagram presents a crate on an inclined plane. An arrow labeled \( P \) represents the horizontal pushing force. The angle of inclination \( \phi \) is shown between the incline and the horizontal ground. 

**Questions:**

**Part (a):** What is the work, in joules, done by the pushing force?

Given calculations:
\[ W_P = 1173.89 \, \text{J} \]
\[ W_P = 1174 \, \text{J} \]

**Part (b):** What is the work, in joules, done by friction?
\[ W_f = \_\_\_\_ \, \text{J} \]
Transcribed Image Text:**Problem 4:** The diagram shows a crate with mass \( m = 26.9 \, \text{kg} \) being pushed up an incline that makes an angle \( \phi = 19.2^\circ \) with the horizontal. The pushing force is horizontal, with magnitude \( P \), and the coefficient of kinetic friction between the crate and the incline is \( \mu = 0.35 \). Consider the work done on the crate as it moves a distance \( d = 5.93 \, \text{m} \) at constant speed. **Diagram Explanation:** The diagram presents a crate on an inclined plane. An arrow labeled \( P \) represents the horizontal pushing force. The angle of inclination \( \phi \) is shown between the incline and the horizontal ground. **Questions:** **Part (a):** What is the work, in joules, done by the pushing force? Given calculations: \[ W_P = 1173.89 \, \text{J} \] \[ W_P = 1174 \, \text{J} \] **Part (b):** What is the work, in joules, done by friction? \[ W_f = \_\_\_\_ \, \text{J} \]
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