Pm = " The magnetic flux through the loop shown in the accompanying figure varies with time according to - 3 Poe at sin(wt), where 00: = 4 x 10 T. m², a = 5 s and w= 120 rad/s. What are the direction and magnitude of the current through the 5-0 resistor at (a) t = = 0; (b) t = 2.17 x 107 s, and (c) t = 3.00 s? 2 01 Hints a. Current with b. Current with c. Current with ●fm Select an answer Select an answer Select an answer 5.0 Ω mA at t = 0. mA at t = 2.17 × 10 mA at t = 3.00 s. 2 S.
Pm = " The magnetic flux through the loop shown in the accompanying figure varies with time according to - 3 Poe at sin(wt), where 00: = 4 x 10 T. m², a = 5 s and w= 120 rad/s. What are the direction and magnitude of the current through the 5-0 resistor at (a) t = = 0; (b) t = 2.17 x 107 s, and (c) t = 3.00 s? 2 01 Hints a. Current with b. Current with c. Current with ●fm Select an answer Select an answer Select an answer 5.0 Ω mA at t = 0. mA at t = 2.17 × 10 mA at t = 3.00 s. 2 S.
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
Transcribed Image Text:The magnetic flux through the loop shown in the accompanying figure varies with time according to
120T rad/s. What are the
Pm
-at sin(wt), where o 4 x 10-³ Tm², a = 5 s ¹, and w =
=
=
2
Poe
direction and magnitude of the current through the 5-0 resistor at (a) t = 0; (b) t = 2.17 × 10 s, and (c)
t = 3.00 s?
5.0
Hints
a. Current
Select an answer
b. Current Select an answer
c. Current Select an answer
●fm
with
with
with
mA at t
mA at t
mA at t
= 0.
=
2.17 x 10-2
3.00 s.
S.
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