Problem 7: A square loop of side length a = current that varies with time at a constant rate as, where Q = 7.03 A/s is a constant. = 3.67 cm is placed a distance b = fundamental constants. I(t) = Qt Find an expression for the magnetic 0.66 cm from a long wire carrying a a b due to the wire as a function of time at a distance r from the wire in terms of a, b, Q, t, r, and
Problem 7: A square loop of side length a = current that varies with time at a constant rate as, where Q = 7.03 A/s is a constant. = 3.67 cm is placed a distance b = fundamental constants. I(t) = Qt Find an expression for the magnetic 0.66 cm from a long wire carrying a a b due to the wire as a function of time at a distance r from the wire in terms of a, b, Q, t, r, and
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
Transcribed Image Text:Problem 7: A square loop of side length a = 3.67 cm is placed a distance b = 0.66 cm from a long wire carrying a
current that varies with time at a constant rate as,
where Q = 7.03 A/s is a constant.
I(t) = Qt
Find an expression for the magnetic
fundamental constants.
a
(b) What is the magnitude of the flux through the loop? Select the correct expression.
(c) If the loop has a resistance of 4.24 №, then what is the induced current, in amperes, that flows in the loop?
(d) In what direction does this current flow?
b
I
due to the wire as a function of time at a distance r from the wire in terms of a, b, Q, t, r, and
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