The figure below shows a rectangular coil of length e and width w consisting of N turns of conducting wire, moving to the right with a constant velocity v. The coil moves into a region of uniform magnetic field B perpendicular to the plane of the coil. The total resistance of the coil is R. Find the magnitude and direction of the total magnetic force on the coil for the following situations. (Use the following as necessary: N, B, w, e, v, and R.) x x x x x x х х х х х х х х х х х х х х х х х х х х о (a) as it enters the magnetic field magnitude F = direction -Select (b) as it moves within the field magnitude F = direction ---Select- (c) as it leaves the field magnitude F = direction --Select-
The figure below shows a rectangular coil of length e and width w consisting of N turns of conducting wire, moving to the right with a constant velocity v. The coil moves into a region of uniform magnetic field B perpendicular to the plane of the coil. The total resistance of the coil is R. Find the magnitude and direction of the total magnetic force on the coil for the following situations. (Use the following as necessary: N, B, w, e, v, and R.) x x x x x x х х х х х х х х х х х х х х х х х х х х о (a) as it enters the magnetic field magnitude F = direction -Select (b) as it moves within the field magnitude F = direction ---Select- (c) as it leaves the field magnitude F = direction --Select-
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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PP15
![B
x x x
Afectangular coil with verticalk width w and horizontal lengthe
e is oriented with its faces parallel to the plane of the page in
a tegion of no magnetic field.The čoil moves fightward with*
velocity vector v toward a region of uniform magnetic field,
vector B, pointing into the page. The region of magnetic field
is wider and longer than the coil, filling the space to the right
of the coil.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F1f58ffb9-dcf0-482e-981d-5070d72961d5%2F55fd1acf-d97c-4c5d-9808-2ef6099bbcd7%2Fxcg6x9b_processed.png&w=3840&q=75)
Transcribed Image Text:B
x x x
Afectangular coil with verticalk width w and horizontal lengthe
e is oriented with its faces parallel to the plane of the page in
a tegion of no magnetic field.The čoil moves fightward with*
velocity vector v toward a region of uniform magnetic field,
vector B, pointing into the page. The region of magnetic field
is wider and longer than the coil, filling the space to the right
of the coil.
![The figure below shows a rectangular coil of length { and width w consisting of N turns of conducting wire, moving to the right with a constant velocity v. The coil moves into a region of uniform magnetic field B, pointing into the page and
perpendicular to the plane of the coil. The total resistance of the coil is R.
Find the magnitude and direction of the total magnetic force on the coil for the following situations. (Use the following as necessary: N, B, w, e, v, and R.)
х х х х х х х
х х х х х х хG
(a) as it enters the magnetic field
magnitude
F =
direction
-Select---
(b) as it moves within the field
magnitude
F =
=
direction
---Select---
(c) as it leaves the field
magnitude
F =
direction
---Select--](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F1f58ffb9-dcf0-482e-981d-5070d72961d5%2F55fd1acf-d97c-4c5d-9808-2ef6099bbcd7%2Frqbs90c_processed.png&w=3840&q=75)
Transcribed Image Text:The figure below shows a rectangular coil of length { and width w consisting of N turns of conducting wire, moving to the right with a constant velocity v. The coil moves into a region of uniform magnetic field B, pointing into the page and
perpendicular to the plane of the coil. The total resistance of the coil is R.
Find the magnitude and direction of the total magnetic force on the coil for the following situations. (Use the following as necessary: N, B, w, e, v, and R.)
х х х х х х х
х х х х х х хG
(a) as it enters the magnetic field
magnitude
F =
direction
-Select---
(b) as it moves within the field
magnitude
F =
=
direction
---Select---
(c) as it leaves the field
magnitude
F =
direction
---Select--
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