Question: fixed copper rail, as shown in the figure. The background magnetic field is constant and points into the page with a magnitude B = 2

fixed copper rail, as shown in the figure. The background magnetic field is constant and points into the page with a magnitude B=2.0T. You can think of the metal bar as forming two separate loops with the fixed copper rail.
a) Sketch the direction of the induced current in all segments of the copper rectangle, as well as in the metal bar.
b) If the height of the copper rectangle is h=10.0cm, the speed of the bar is v=10cms, what is the magnitude of the induced emf across the metal bar?
c) Is the direction of the induced current in the left-loop in agreement with Lenz's law? Explain.
d) Is the magnitude of the emf around the left-loop in agreement with Faraday's law? Explain.
fixed copper rail, as shown in the figure. The

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