Problem 2: The values for the components of the circuit shown in the figure are V= 12 V, C = 4.2 µF, and L = 190 mH. When the capacitor is fully charged, you simultaneously open switch S, and close switch S2- C Part (a) Find the frequency of the resulting oscillations, in hertz. f= sin() cos() tan() 8 НОМЕ cotan() asin() acos() 4 5 6. atan() acotan() sinh() 1 2 3 tanh() ODegrees O Radians cosh() cotanh() END vol BACKSPACE DEL CLEAR Submit Hint Feedback I give up! Part (b) What is the maximum charge on the capacitor, in coulombs, during the oscillations? Part (c) Find the maximum current through the inductor, in amperes, during the oscillations. Part (d) What is the electromagnetic energy of the oscillating circuit, in joules?

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Chapter1: Units, Trigonometry. And Vectors
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Problem 2: The values for the components of the circuit shown in the figure are V= 12 V, C =
4.2 µF, and L = 190 mH. When the capacitor is fully charged, you simultaneously open switch S, and
close switch S2-
C
Part (a) Find the frequency of the resulting oscillations, in hertz.
f =
sin()
cos()
tan()
8
НОМE
cotan()
asin()
acos()
4
5
6.
atan()
acotan()
sinh()
1
2
tanh()
ODegrees O Radians
cosh()
cotanh()
END
vol BACKSPACE DEL CLEAR
Submit
Hint
Feedback
I give up!
Part (b) What is the maximum charge on the capacitor, in coulombs, during the oscillations?
Part (c) Find the maximum current through the inductor, in amperes, during the oscillations.
Part (d) What is the electromagnetic energy of the oscillating circuit, in joules?
Transcribed Image Text:Problem 2: The values for the components of the circuit shown in the figure are V= 12 V, C = 4.2 µF, and L = 190 mH. When the capacitor is fully charged, you simultaneously open switch S, and close switch S2- C Part (a) Find the frequency of the resulting oscillations, in hertz. f = sin() cos() tan() 8 НОМE cotan() asin() acos() 4 5 6. atan() acotan() sinh() 1 2 tanh() ODegrees O Radians cosh() cotanh() END vol BACKSPACE DEL CLEAR Submit Hint Feedback I give up! Part (b) What is the maximum charge on the capacitor, in coulombs, during the oscillations? Part (c) Find the maximum current through the inductor, in amperes, during the oscillations. Part (d) What is the electromagnetic energy of the oscillating circuit, in joules?
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