nsulating material. The figure below shows a cross section of such an arrangement. The current in the center rod is 4.28 A out of the page and the current in the outer conductor has the same magnitude but is in he opposite direction. If the distance a is 4.06 mm, determine the magnitude of the magnetic field at the following locations. (a) P, located at r = a (b) P, located at r= 3a (c) P3 tr=5a (d) P, located at r = 7a

Principles of Physics: A Calculus-Based Text
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ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
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Chapter22: Magnetic Forces And Magnetic Fields
Section: Chapter Questions
Problem 47P
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An experimental arrangement used for magnetic field experimentation consists of a solid center-conducting rod and an outer coaxial cylindrical conductor. The space between the conductors is filled with a good
insulating material. The figure below shows a cross section of such an arrangement. The current in the center rod is 4.28 A out of the page and the current in the outer conductor has the same magnitude but is in
the opposite direction. If the distance a is 4.06 mm, determine the magnitude of the magnetic field at the following locations.
P. P,
P,
(a)
P1
located at r = a
(b)
P, located at r = 3a
T
Rectangular Snip
(c)
P3 located at r = 5a
T
(d)
Pa located at r = 7a
T
Transcribed Image Text:An experimental arrangement used for magnetic field experimentation consists of a solid center-conducting rod and an outer coaxial cylindrical conductor. The space between the conductors is filled with a good insulating material. The figure below shows a cross section of such an arrangement. The current in the center rod is 4.28 A out of the page and the current in the outer conductor has the same magnitude but is in the opposite direction. If the distance a is 4.06 mm, determine the magnitude of the magnetic field at the following locations. P. P, P, (a) P1 located at r = a (b) P, located at r = 3a T Rectangular Snip (c) P3 located at r = 5a T (d) Pa located at r = 7a T
Current flows along two infinite sheets as shown in the accompanying figures. The current per unit length along each sheet is J in amperes per meter. (Use the following as necessary: J and µo. Enter the magnitudes. Assume J > 0.)
J
is the magnitude of the magnetic field on either side of an infinite sheet to calculate the magnetic field between, above, and below the pair of infinite sheets shown in the accompanying figure.
2
(a) Use the fact that B =
B
between
В
above
%3D
Bbelow
(b) Repeat your calculations from part (a) if the direction of the current in the lower sheet is reversed.
B
between
B
above
%3D
Bbelow
Transcribed Image Text:Current flows along two infinite sheets as shown in the accompanying figures. The current per unit length along each sheet is J in amperes per meter. (Use the following as necessary: J and µo. Enter the magnitudes. Assume J > 0.) J is the magnitude of the magnetic field on either side of an infinite sheet to calculate the magnetic field between, above, and below the pair of infinite sheets shown in the accompanying figure. 2 (a) Use the fact that B = B between В above %3D Bbelow (b) Repeat your calculations from part (a) if the direction of the current in the lower sheet is reversed. B between B above %3D Bbelow
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