I Review | Constants You may want to review (Pages 321 - 323). What is the magnitude of the angular momentum of the 2.10 kg , 5.70-cm-diameter rotating disk in the figure (Figure 1)? Express your answer in kilogram meters squared per second. Figure 1 of 1 > kg · m² /s Submit Request Answer Part B What is its direction? 600 rpm O x direction -x direction y direction
I Review | Constants You may want to review (Pages 321 - 323). What is the magnitude of the angular momentum of the 2.10 kg , 5.70-cm-diameter rotating disk in the figure (Figure 1)? Express your answer in kilogram meters squared per second. Figure 1 of 1 > kg · m² /s Submit Request Answer Part B What is its direction? 600 rpm O x direction -x direction y direction
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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Transcribed Image Text:**Figure Explanation:**
The image shows a circular object with an arrow indicating rotation at 600 rpm (revolutions per minute). The circle represents an axis system, with three perpendicular axes labeled x, y, and z.
- **x-axis:** Horizontal line extending from the circle.
- **y-axis:** Horizontal line extending perpendicular to the x-axis.
- **z-axis:** Vertical line extending upwards.
The arrow is positioned on the rim of the circle, suggesting a direction of rotation, but the exact plane of rotation is not specified in the text.
**Part B Question:**
The question asks: "What is its direction?"
Options provided:
- ○ x direction
- ○ -x direction
- ○ y direction
- ○ -y direction
- ○ z direction
- ○ -z direction
Buttons available:
- Submit
- Request Answer
To answer this question, you need to determine the axis along which the rotation occurs, typically based on the right-hand rule. However, the specific plane of rotation is not described in the text provided.
![**Educational Content on Angular Momentum**
**Question:**
What is the magnitude of the angular momentum of a 2.10 kg, 5.70-cm-diameter rotating disk in the figure (Figure 1)?
**Instructions:**
Express your answer in kilogram meters squared per second.
**Answer Entry Box:**
[Input Box]
*Unit: kg · m²/s*
**Buttons:**
- Submit
- Request Answer
**Part B:**
*What is its direction?*
**Options:**
- x direction
- -x direction
- y direction
- -y direction
- z direction
- -z direction
**Review Links:**
- Review
- Constants
- Pages 321 - 323
**Figure 1 Description:**
The figure shows a rotating disk with a marked angular velocity of 600 rpm. The disk's diameter is 5.70 cm, and it rotates in the xy-plane. The axes x, y, and z are marked, with z being perpendicular to the plane of rotation.
This diagram is intended to help visualize the problem and determine the direction of the angular momentum vector based on the right-hand rule.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fa8fbab86-0ccb-4a47-9a90-4171489497c4%2Faca14519-5f28-4aed-a774-624db8105879%2Fsjc27a_processed.jpeg&w=3840&q=75)
Transcribed Image Text:**Educational Content on Angular Momentum**
**Question:**
What is the magnitude of the angular momentum of a 2.10 kg, 5.70-cm-diameter rotating disk in the figure (Figure 1)?
**Instructions:**
Express your answer in kilogram meters squared per second.
**Answer Entry Box:**
[Input Box]
*Unit: kg · m²/s*
**Buttons:**
- Submit
- Request Answer
**Part B:**
*What is its direction?*
**Options:**
- x direction
- -x direction
- y direction
- -y direction
- z direction
- -z direction
**Review Links:**
- Review
- Constants
- Pages 321 - 323
**Figure 1 Description:**
The figure shows a rotating disk with a marked angular velocity of 600 rpm. The disk's diameter is 5.70 cm, and it rotates in the xy-plane. The axes x, y, and z are marked, with z being perpendicular to the plane of rotation.
This diagram is intended to help visualize the problem and determine the direction of the angular momentum vector based on the right-hand rule.
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