A N = 245-turn solenoid with inductance, L = 75.8 mH, is wired in series to an emf, & = 60.5 V, a resistor, R = 12.2 , and a two-way switch. (a) Write a symbolic expression for the maximum magnetic flux through the coil in terms of L, &, N, and R, as needed, plus constants, then calculate its numeric value. Φmax mWb (b) What is the current through the resistor t = 3.73 msec after you put the switch in position a? I(t) = A = E msec (c) After a long time, you move the switch to position b. How long after you move the switch will the current be 2.98 A? S 000

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A N = 245-turn solenoid with inductance, L = 75.8 mH, is wired in series
to an emf, E = 60.5 V, a resistor, R = 12.22, and a two-way switch.
(a) Write a symbolic expression for the maximum magnetic flux
through the coil in terms of L, E, N, and R, as needed, plus
constants, then calculate its numeric value.
$max =
(b) What is the current through the resistor t = 3.73 msec after you put the switch in position a?
l(t) =
A
mWb
msec
a
S
R
(c) After a long time, you move the switch to position b. How long after you move the switch will the current be 2.98 A?
ele
L
Transcribed Image Text:A N = 245-turn solenoid with inductance, L = 75.8 mH, is wired in series to an emf, E = 60.5 V, a resistor, R = 12.22, and a two-way switch. (a) Write a symbolic expression for the maximum magnetic flux through the coil in terms of L, E, N, and R, as needed, plus constants, then calculate its numeric value. $max = (b) What is the current through the resistor t = 3.73 msec after you put the switch in position a? l(t) = A mWb msec a S R (c) After a long time, you move the switch to position b. How long after you move the switch will the current be 2.98 A? ele L
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