The m = 8.40 kg block in the figure(Figure 1) is held in place by the massless rope passing over two massless, frictionless pulleys. Figure T₂ m < 1 of 1 > Part A Find the tensions T₁ to Ts and the magnitude of force F Enter your answers numerically separated by commas. IVE| ΑΣΦ T1, T2, T3, T4, T5, F= 82.32,41.16 Your submission doesn't have the correct number of answers. Answers should be separated with a comma. No credit lost. Try again. Submit Provide Feedback Previous Answers Request Answer PPearson ? N Next >

College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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**Educational Website Text Transcription**

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The figure below illustrates a mechanical system involving a block and pulleys.

**Description:**

- **Block Details:** The block has a mass of \( m = 8.40 \, \text{kg} \).
- **Rope and Pulleys:** The rope is massless and passes over two massless, frictionless pulleys.

**Objective:**

- **Part A:** Determine the tensions \( T_1 \) to \( T_5 \) and the magnitude of force \( \vec{F} \). Enter your answers numerically, separated by commas.

**Input Box:**

- Placeholder for the answer: \( T_1, T_2, T_3, T_4, T_5, F = \) 

**Feedback Message:**

- "Your submission doesn't have the correct number of answers. Answers should be separated with a comma. No credit lost. Try again."

**Figure Explanation:**

- The diagram shows a vertical section with a block labeled \( m \) at the bottom.
- A rope extends upward from the block, passing over a smaller pulley labeled \( T_1 \), then to a larger pulley with labels \( T_4 \) and \( T_5 \) on either side.
- The tension \( T_2 \) is acting vertically downwards from the smaller pulley, and tension \( T_3 \) is acting upwards in between the two pulleys. 
- A force \( \vec{F} \) is shown acting downward on the block.

**Actions:**

- To solve the problem, apply principles of dynamics and tension in ropes and pulleys.
- Use the input box to submit your numerical results.
- Click "Submit" after entering your answers.

**Navigation:**

- Use "Next" to proceed or "Previous Answers" to review past attempts.
- Click "Request Answer" for assistance or "Provide Feedback" if you need clarification.
Transcribed Image Text:**Educational Website Text Transcription** --- The figure below illustrates a mechanical system involving a block and pulleys. **Description:** - **Block Details:** The block has a mass of \( m = 8.40 \, \text{kg} \). - **Rope and Pulleys:** The rope is massless and passes over two massless, frictionless pulleys. **Objective:** - **Part A:** Determine the tensions \( T_1 \) to \( T_5 \) and the magnitude of force \( \vec{F} \). Enter your answers numerically, separated by commas. **Input Box:** - Placeholder for the answer: \( T_1, T_2, T_3, T_4, T_5, F = \) **Feedback Message:** - "Your submission doesn't have the correct number of answers. Answers should be separated with a comma. No credit lost. Try again." **Figure Explanation:** - The diagram shows a vertical section with a block labeled \( m \) at the bottom. - A rope extends upward from the block, passing over a smaller pulley labeled \( T_1 \), then to a larger pulley with labels \( T_4 \) and \( T_5 \) on either side. - The tension \( T_2 \) is acting vertically downwards from the smaller pulley, and tension \( T_3 \) is acting upwards in between the two pulleys. - A force \( \vec{F} \) is shown acting downward on the block. **Actions:** - To solve the problem, apply principles of dynamics and tension in ropes and pulleys. - Use the input box to submit your numerical results. - Click "Submit" after entering your answers. **Navigation:** - Use "Next" to proceed or "Previous Answers" to review past attempts. - Click "Request Answer" for assistance or "Provide Feedback" if you need clarification.
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