Class Work 12 kg 1. "A 12 kg load hangs from one end of a rope that passes over a small frictionless pulley. A 15 kg counterweight is suspended from the other end of the rope. The system is released from rest 15 kg a. Draw a free-body diagram for each object showing all applied forces in relative scale. Next to each diagram show the direction of the acceleration of that object. b. Find the acceleration each mass. c. What is the tension force in the rope? d. What distance does the 12 kg load move in the first 3 s? e. What is the velocity of 15 kg mass at the end of 5 s? Right 2m² sind 4² G

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ISBN:9781305952300
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Chapter1: Units, Trigonometry. And Vectors
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**Class Work: Physics Problem Solving with Pulleys**

**Problem Statement:**
A 12 kg load hangs from one end of a rope that passes over a small frictionless pulley. A 15 kg counterweight is suspended from the other end of the rope. The system is released from rest.

**Tasks:**

1. Draw a free-body diagram for each object showing all applied forces in relative scale. Next to each diagram, show the direction of the acceleration of that object.

2. Questions:
   - a. Find the acceleration of each mass.
   - b. What is the tension force in the rope?
   - c. What distance does the 12 kg load move in the first 3 seconds?
   - d. What is the velocity of the 15 kg mass at the end of 5 seconds?

**Diagram Overview:**
The diagram displays the 12 kg and 15 kg masses connected by a rope over a pulley. There are arrows indicating directions for potential forces and movements.

---

This page could be used in an educational setting to help students understand basic mechanics with objects and pulleys. It engages students by asking them to apply Newton's laws and common kinematics equations to solve real-world physics problems.
Transcribed Image Text:**Class Work: Physics Problem Solving with Pulleys** **Problem Statement:** A 12 kg load hangs from one end of a rope that passes over a small frictionless pulley. A 15 kg counterweight is suspended from the other end of the rope. The system is released from rest. **Tasks:** 1. Draw a free-body diagram for each object showing all applied forces in relative scale. Next to each diagram, show the direction of the acceleration of that object. 2. Questions: - a. Find the acceleration of each mass. - b. What is the tension force in the rope? - c. What distance does the 12 kg load move in the first 3 seconds? - d. What is the velocity of the 15 kg mass at the end of 5 seconds? **Diagram Overview:** The diagram displays the 12 kg and 15 kg masses connected by a rope over a pulley. There are arrows indicating directions for potential forces and movements. --- This page could be used in an educational setting to help students understand basic mechanics with objects and pulleys. It engages students by asking them to apply Newton's laws and common kinematics equations to solve real-world physics problems.
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