An infinitely long wire located along the z-axis is carrying a current I as shown in the figure. A square loop of height a and width & is located in the y – z plane. If the current in the wire is time-varying and is given by I = Incos(wt). (a) Calculate the total magnetic flux linkage through the loop. (b) Calculate the magnitude of e.m.f generated between two terminals in the loop. (c) Would the magnitude of the induced e.m.f li) increase, (ii) decrease, or (ii) stay the same, if the square loop were located in the z – z plane? Explain your answer Wire Loop N turns | = l,cos(@t) d.

Physics for Scientists and Engineers: Foundations and Connections
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Chapter31: Gauss’s Law For Magnetism And Ampère’s Law
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An infinitely long wire located along the z-axis is carrying a current I as shown in the figure. A square loop of height a and width & is located in the y – z plane. If the
current in the wire is time-varying and is given by I = Incos(wt).
(a) Calculate the total magnetic flux linkage through the loop.
(b) Calculate the magnitude of e.m.f generated between two terminals in the loop.
(c) Would the magnitude of the induced e.m.f li) increase, (ii) decrease, or (ii) stay the same, if the square loop were located in the z – z plane? Explain your answer
Wire
Loop
N turns
| = l,cos(@t)
d.
Transcribed Image Text:An infinitely long wire located along the z-axis is carrying a current I as shown in the figure. A square loop of height a and width & is located in the y – z plane. If the current in the wire is time-varying and is given by I = Incos(wt). (a) Calculate the total magnetic flux linkage through the loop. (b) Calculate the magnitude of e.m.f generated between two terminals in the loop. (c) Would the magnitude of the induced e.m.f li) increase, (ii) decrease, or (ii) stay the same, if the square loop were located in the z – z plane? Explain your answer Wire Loop N turns | = l,cos(@t) d.
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