should be in terms of 1o, a, b,c,N,@, and any necessary constants. Show all work; draw direction of B-fields at the instant shown in the figure. Be sure to draw and label all relevant distances that go in your derivation. You can use symmetry arguments as needed to simplify the derivation. You can assume that the coil is far from either end of the straight wire segments.

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Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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should be in terms of Io, a, b, c, N,w, and any necessary constants. Show all work; draw
direction of B-fields at the instant shown in the figure. Be sure to draw and label all relevant
distances that go in your derivation. You can use symmetry arguments as needed to simplify
the derivation. You can assume that the coil is far from either end of the straight wire
segments.
Transcribed Image Text:should be in terms of Io, a, b, c, N,w, and any necessary constants. Show all work; draw direction of B-fields at the instant shown in the figure. Be sure to draw and label all relevant distances that go in your derivation. You can use symmetry arguments as needed to simplify the derivation. You can assume that the coil is far from either end of the straight wire segments.
6. A very long U-shaped wire carries current I = l,sin (wt). An N-turn rectangular conducting
coil is equidistant from the two very long straight segments of the wire as shown in the figure.
Notice that the current oscillates (changes direction) but the figure shows a snapshot at an
instant. Derive a symbolic expression for the peak induced emf in the coil. Your expression
Transcribed Image Text:6. A very long U-shaped wire carries current I = l,sin (wt). An N-turn rectangular conducting coil is equidistant from the two very long straight segments of the wire as shown in the figure. Notice that the current oscillates (changes direction) but the figure shows a snapshot at an instant. Derive a symbolic expression for the peak induced emf in the coil. Your expression
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