USE THE FOLLOWING SYMBOLS FOR YOUR EQUATION: B = MANETIC FIELD, I= CURRENT, L = LENGTH OF WIRE, v = SPEED OF THE PARTICLE, q = magnitude of the charge, F = force, N = NO. OF LOOPS, Pi = Pi (use 3.14), u = permeability of free space, theta = angle, sin = sine 1. A long, straight wire carries a 6.0-A current that is directed in the positive x direction. When a uniform magnetic field is applied perpendicular to a 3.0-m segment of the wire, the magnetic force on the segment is 0.36 N, directed in the negative y direction, as shown. What are the magnitude and direction of the magnetic field
USE THE FOLLOWING SYMBOLS FOR YOUR EQUATION: B = MANETIC FIELD, I= CURRENT, L = LENGTH OF WIRE, v = SPEED OF THE PARTICLE, q = magnitude of the charge, F = force, N = NO. OF LOOPS, Pi = Pi (use 3.14), u = permeability of free space, theta = angle, sin = sine 1. A long, straight wire carries a 6.0-A current that is directed in the positive x direction. When a uniform magnetic field is applied perpendicular to a 3.0-m segment of the wire, the magnetic force on the segment is 0.36 N, directed in the negative y direction, as shown. What are the magnitude and direction of the magnetic field
University Physics Volume 3
17th Edition
ISBN:9781938168185
Author:William Moebs, Jeff Sanny
Publisher:William Moebs, Jeff Sanny
Chapter5: Relativity
Section: Chapter Questions
Problem 36P: Describe the following physical occurrences as events, that is, in the form (x, y, z, t): (a) A...
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USE THE FOLLOWING SYMBOLS FOR YOUR EQUATION:
B = MANETIC FIELD, I= CURRENT, L = LENGTH OF WIRE, v = SPEED OF THE PARTICLE, q = magnitude of the charge, F = force,
N = NO. OF LOOPS, Pi = Pi (use 3.14), u = permeability of free space, theta = angle, sin = sine
1. A long, straight wire carries a 6.0-A current that is directed in the positive x direction. When a uniform magnetic field is applied perpendicular to a 3.0-m segment of the wire, the magnetic force on the segment is 0.36 N, directed in the negative y direction, as shown. What are the magnitude and direction of the magnetic field?
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University Physics Volume 3
Physics
ISBN:
9781938168185
Author:
William Moebs, Jeff Sanny
Publisher:
OpenStax