Current-Carrying Wire 6 What is the magnitude of the magnetic force acting on the wire segment if the external magnetic field has a magnitude of B = 4.53 T? Enter the numerical value in Sl units. Type your answer.. 7 What is the direction of the magnetic force acting on the current-carrying wire? A straight wire within the x-y plane carries a current of I = 3.00 A directed at an angle of 0 = 55.0° above the -y direction. A 5.00-meter segment of this wire is located within an external magnetic field B directed in the-y direction. Into the page (-z) Out of the page (+z) O 000 0O
Current-Carrying Wire 6 What is the magnitude of the magnetic force acting on the wire segment if the external magnetic field has a magnitude of B = 4.53 T? Enter the numerical value in Sl units. Type your answer.. 7 What is the direction of the magnetic force acting on the current-carrying wire? A straight wire within the x-y plane carries a current of I = 3.00 A directed at an angle of 0 = 55.0° above the -y direction. A 5.00-meter segment of this wire is located within an external magnetic field B directed in the-y direction. Into the page (-z) Out of the page (+z) O 000 0O
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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ANSWER ALL QUESTIONS BELOW FOR A THUMBS UP
![**Current-Carrying Wire**
Diagram Description:
- The diagram shows a straight wire inclined at an angle θ with respect to the vertical.
- The wire carries a current \( I \) in the direction shown by the arrow.
- The angle θ is given as 55.0°.
- The magnetic field \( \mathbf{B} \) is directed downward (in the negative y-direction).
Text Description:
A straight wire within the x-y plane carries a current of \( I = 3.00 \, \text{A} \) directed at an angle of \( \theta = 55.0^\circ \) above the negative y-direction. A 5.00-meter segment of this wire is located within an external magnetic field \( \mathbf{B} \) directed in the negative y-direction.
**Questions:**
6. What is the magnitude of the magnetic force acting on the wire segment if the external magnetic field has a magnitude of \( B = 4.53 \, \text{T} \)? Enter the numerical value in SI units.
- [Text box for answer input]
7. What is the direction of the magnetic force acting on the current-carrying wire?
- Multiple-choice options:
- ↙
- ↘
- ↖
- ↗
- Into the page (-z)
- Out of the page (+z)](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fc446a267-4418-4ec2-a18c-7b0f495e22eb%2F543cebef-f039-4a60-a480-c8ba17ce0a4a%2F4a5gy3t_processed.jpeg&w=3840&q=75)
Transcribed Image Text:**Current-Carrying Wire**
Diagram Description:
- The diagram shows a straight wire inclined at an angle θ with respect to the vertical.
- The wire carries a current \( I \) in the direction shown by the arrow.
- The angle θ is given as 55.0°.
- The magnetic field \( \mathbf{B} \) is directed downward (in the negative y-direction).
Text Description:
A straight wire within the x-y plane carries a current of \( I = 3.00 \, \text{A} \) directed at an angle of \( \theta = 55.0^\circ \) above the negative y-direction. A 5.00-meter segment of this wire is located within an external magnetic field \( \mathbf{B} \) directed in the negative y-direction.
**Questions:**
6. What is the magnitude of the magnetic force acting on the wire segment if the external magnetic field has a magnitude of \( B = 4.53 \, \text{T} \)? Enter the numerical value in SI units.
- [Text box for answer input]
7. What is the direction of the magnetic force acting on the current-carrying wire?
- Multiple-choice options:
- ↙
- ↘
- ↖
- ↗
- Into the page (-z)
- Out of the page (+z)
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