The double pulley consists of two wheels which are attached to one another and turn at the same rate. The pulley has a mass of 20 kg and a radius of gyration of ko 110 mm. The block at A has a mass of 50 kg. The block is originally at rest. (Figure 1) Figure 200 mm- 75 mm- 2 kN 1 of 1 Part A Determine the speed of the block in 4 s after a constant force of 2 kN is applied to the rope wrapped around the inner hub of the pulley. Express your answer to three significant figures and include the appropriate units. VB = Submit μà Value Provide Feedback Request Answer Units ? Next >

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
Section: Chapter Questions
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**Double Pulley System**

**Description:**
The double pulley consists of two wheels which are attached to one another and turn at the same rate. The pulley has a mass of 20 kg and a radius of gyration of \( k_o = 110 \, \text{mm} \). The block at \( A \) has a mass of 50 kg. The block is originally at rest.

**Figure 1:**
- The diagram depicts a pulley system with two wheels and a block labeled \( A \).
- The pulley system is mounted, with a rope wrapped around the inner hub.
- The radius of the inner wheel is 75 mm, and the radius of the outer wheel is 200 mm.
- A constant force of 2 kN is applied to the rope, directed to the right.

**Problem:**

**Part A**

**Objective:**
Determine the speed of the block in 4 seconds after a constant force of 2 kN is applied to the rope wrapped around the inner hub of the pulley.

**Instructions:**
- Express your answer to three significant figures and include appropriate units.

**Answer Input:**

\( v_B = \) [Value] [Units]

**Submission:**
Click "Submit" to provide your answer. You may request assistance if needed.

**Feedback Option:**
Provide feedback about the problem.

**Navigation:**
Click "Next" to proceed to the next question.
Transcribed Image Text:**Double Pulley System** **Description:** The double pulley consists of two wheels which are attached to one another and turn at the same rate. The pulley has a mass of 20 kg and a radius of gyration of \( k_o = 110 \, \text{mm} \). The block at \( A \) has a mass of 50 kg. The block is originally at rest. **Figure 1:** - The diagram depicts a pulley system with two wheels and a block labeled \( A \). - The pulley system is mounted, with a rope wrapped around the inner hub. - The radius of the inner wheel is 75 mm, and the radius of the outer wheel is 200 mm. - A constant force of 2 kN is applied to the rope, directed to the right. **Problem:** **Part A** **Objective:** Determine the speed of the block in 4 seconds after a constant force of 2 kN is applied to the rope wrapped around the inner hub of the pulley. **Instructions:** - Express your answer to three significant figures and include appropriate units. **Answer Input:** \( v_B = \) [Value] [Units] **Submission:** Click "Submit" to provide your answer. You may request assistance if needed. **Feedback Option:** Provide feedback about the problem. **Navigation:** Click "Next" to proceed to the next question.
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