The ae ate tance on he center then Suopose d 0 m Part A Whathe magntude of the toroue hat he must apoly to prevent hedton rotating N. Sub ncorect Try Again Bada Fanda igure soks 15 kg 10 kg

icon
Related questions
Question
**Educational Website Content**

**Title: Understanding Torque in Rotational Dynamics**

**Text:**

The axle in the figure is positioned at half the distance from the center to the rim. Assume a distance \( d = 70 \, \text{cm} \).

**Question:**

**Part A:**  
What is the magnitude of the torque that the axle must apply to prevent the disk from rotating?

\[ \tau = \, \]  
  
**Input Field:** N·m

**Button:** Submit  
**Links:** Previous Answers  |  Request Answer

**Feedback:**

**Status:** Incorrect; Try Again

**Link:** Provide Feedback

**Diagram Description:**

The diagram illustrates a circular disk with a mass of \( 5.0 \, \text{kg} \). It has an axle located inside, with \( d \) marked as the distance from the center. Two masses are attached to the edges of the disk:

- A \( 15 \, \text{kg} \) mass is on the left side hanging from the rim.
- A \( 10 \, \text{kg} \) mass is on the right side also hanging from the rim.

This setup demonstrates a scenario involving rotational dynamics and the calculation of torque necessary to keep the system in equilibrium.

**Publisher:** Pearson
Transcribed Image Text:**Educational Website Content** **Title: Understanding Torque in Rotational Dynamics** **Text:** The axle in the figure is positioned at half the distance from the center to the rim. Assume a distance \( d = 70 \, \text{cm} \). **Question:** **Part A:** What is the magnitude of the torque that the axle must apply to prevent the disk from rotating? \[ \tau = \, \] **Input Field:** N·m **Button:** Submit **Links:** Previous Answers | Request Answer **Feedback:** **Status:** Incorrect; Try Again **Link:** Provide Feedback **Diagram Description:** The diagram illustrates a circular disk with a mass of \( 5.0 \, \text{kg} \). It has an axle located inside, with \( d \) marked as the distance from the center. Two masses are attached to the edges of the disk: - A \( 15 \, \text{kg} \) mass is on the left side hanging from the rim. - A \( 10 \, \text{kg} \) mass is on the right side also hanging from the rim. This setup demonstrates a scenario involving rotational dynamics and the calculation of torque necessary to keep the system in equilibrium. **Publisher:** Pearson
Expert Solution
trending now

Trending now

This is a popular solution!

steps

Step by step

Solved in 2 steps with 2 images

Blurred answer