A long wire carrying I = 6.40 A of current makes two bends, as shown in the figure (Figure 1). The bent part of the wire passes through a uniform 0.250 T magnetic field directed as shown in the figure and confined to a limited region of space. Part A Find the magnitude of the force that the magnetic field exerts on the wire. F= 195] ΑΣΦ ? N
A long wire carrying I = 6.40 A of current makes two bends, as shown in the figure (Figure 1). The bent part of the wire passes through a uniform 0.250 T magnetic field directed as shown in the figure and confined to a limited region of space. Part A Find the magnitude of the force that the magnetic field exerts on the wire. F= 195] ΑΣΦ ? N
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Chapter1: Units, Trigonometry. And Vectors
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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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![**Description:**
The task involves a long wire carrying a current \( I = 6.40 \, \text{A} \) which makes two bends, as illustrated in Figure 1. The bent section of the wire passes through a uniform magnetic field of \( 0.250 \, \text{T} \), directed as shown in the figure and confined to a limited region of space.
**Part A:**
- **Objective:** Find the magnitude of the force that the magnetic field exerts on the wire.
- **Response Box:** \( F = \) ___ N
- **Feedback:** Incorrect; try again. 5 attempts remaining.
**Part B:**
- **Objective:** Find the direction of the force that the magnetic field exerts on the wire. Provide the answer as a clockwise angle from the left-hand straight segment.
- **Response Box:** \( \phi = \) ___ \( ^\circ \)
**Figure Explanation:**
- **Title:** Magnetic field region
- **Details:**
- The wire, carrying current \( I \), enters a magnetic field region where it makes two bends.
- The magnetic field \( B \) has a uniform direction coming out of the plane (indicated by 'X' marks).
- Dimensions: The wire covers a vertical distance of \( 75.0 \, \text{cm} \), and a horizontal base distance of \( 1.00 \, \text{m} \).
- The wire bends at angles of \( 30.0^\circ \) and \( 40.0^\circ \) inside the magnetic field region.
**Footer:**
- **Copyright:** © 2022 Pearson Education Inc. All rights reserved.
- **Links:** Terms of Use | Privacy Policy | Permissions | Contact Us](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F63bb191a-61cc-448b-b04a-df0fd02619c9%2F6f9c1a7f-0a52-478a-93ae-f5296485490c%2Fsld07c9_processed.png&w=3840&q=75)
Transcribed Image Text:**Description:**
The task involves a long wire carrying a current \( I = 6.40 \, \text{A} \) which makes two bends, as illustrated in Figure 1. The bent section of the wire passes through a uniform magnetic field of \( 0.250 \, \text{T} \), directed as shown in the figure and confined to a limited region of space.
**Part A:**
- **Objective:** Find the magnitude of the force that the magnetic field exerts on the wire.
- **Response Box:** \( F = \) ___ N
- **Feedback:** Incorrect; try again. 5 attempts remaining.
**Part B:**
- **Objective:** Find the direction of the force that the magnetic field exerts on the wire. Provide the answer as a clockwise angle from the left-hand straight segment.
- **Response Box:** \( \phi = \) ___ \( ^\circ \)
**Figure Explanation:**
- **Title:** Magnetic field region
- **Details:**
- The wire, carrying current \( I \), enters a magnetic field region where it makes two bends.
- The magnetic field \( B \) has a uniform direction coming out of the plane (indicated by 'X' marks).
- Dimensions: The wire covers a vertical distance of \( 75.0 \, \text{cm} \), and a horizontal base distance of \( 1.00 \, \text{m} \).
- The wire bends at angles of \( 30.0^\circ \) and \( 40.0^\circ \) inside the magnetic field region.
**Footer:**
- **Copyright:** © 2022 Pearson Education Inc. All rights reserved.
- **Links:** Terms of Use | Privacy Policy | Permissions | Contact Us
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