Ampere's Law 2. Figure 4 shows a cross-sectional view of a coaxial cable. The center conductor is surrounded by a rubber layer, an outer conductor, and a second rubber layer. Suppose the current in the inner conductor is 11 = 1.00 A pointing out of the page and the current in the outer conductor is 12 = 3.00 A pointing in the page. If the distance d = 1.00 mm, determine the magnitude and direction of the magnetic field at (a) point "a", and (b) at point "b". Figura 4
Ampere's Law 2. Figure 4 shows a cross-sectional view of a coaxial cable. The center conductor is surrounded by a rubber layer, an outer conductor, and a second rubber layer. Suppose the current in the inner conductor is 11 = 1.00 A pointing out of the page and the current in the outer conductor is 12 = 3.00 A pointing in the page. If the distance d = 1.00 mm, determine the magnitude and direction of the magnetic field at (a) point "a", and (b) at point "b". Figura 4
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![Ampere's Law
2. Figure 4 shows a cross-sectional view of a coaxial cable. The center conductor is
surrounded by a rubber layer, an outer conductor, and a second rubber layer.
Suppose the current in the inner conductor is 11 = 1.00 A pointing out of the page
and the current in the outer conductor is 12 = 3.00 A pointing in the page. If the
distance d = 1.00 mm, determine the magnitude and direction of the magnetic
field at (a) point "a", and (b) at point "b".
Figura 4](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Ff7e9c16d-2f5f-40ec-979b-ad1979260caa%2F8bb8d926-f492-4dca-ab72-282d3b9551f3%2Fgls9ww_processed.png&w=3840&q=75)
Transcribed Image Text:Ampere's Law
2. Figure 4 shows a cross-sectional view of a coaxial cable. The center conductor is
surrounded by a rubber layer, an outer conductor, and a second rubber layer.
Suppose the current in the inner conductor is 11 = 1.00 A pointing out of the page
and the current in the outer conductor is 12 = 3.00 A pointing in the page. If the
distance d = 1.00 mm, determine the magnitude and direction of the magnetic
field at (a) point "a", and (b) at point "b".
Figura 4
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