2. The surfaces p= 3 and 10 mm, and z = 0 and 25 cm are perfect conductors. The region enclosed by these surfaces has u= 2.5 × 10-° H/m, e = 4 × 10-1" F/m, and o = 0. Let H = (2/p) cos(10zz) cos(@t) ô A/m. Make use of Maxwell's equations to find @.
2. The surfaces p= 3 and 10 mm, and z = 0 and 25 cm are perfect conductors. The region enclosed by these surfaces has u= 2.5 × 10-° H/m, e = 4 × 10-1" F/m, and o = 0. Let H = (2/p) cos(10zz) cos(@t) ô A/m. Make use of Maxwell's equations to find @.
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![2. The surfaces p = 3 and 10 mm, and z = 0 and 25 cm are perfect conductors. The
region enclosed by these surfaces has u = 2.5 x 10-6 H/m, e = 4 × 10¬11 F/m, and o
= 0. Let H = (2/p) cos(10az) cos(@t) ô A/m. Make use of Maxwell's equations to
find w.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F7dc7f715-5431-4139-ab0c-69a7d0234b3b%2F12037735-87db-45d3-820f-7469ac161d41%2Frivvfmh_processed.png&w=3840&q=75)
Transcribed Image Text:2. The surfaces p = 3 and 10 mm, and z = 0 and 25 cm are perfect conductors. The
region enclosed by these surfaces has u = 2.5 x 10-6 H/m, e = 4 × 10¬11 F/m, and o
= 0. Let H = (2/p) cos(10az) cos(@t) ô A/m. Make use of Maxwell's equations to
find w.
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