! Required information Element values of 8 mF and 2 nH are employed in the construction of a simple source-free parallel RLC circuit. Write the equation for the resistor current if its initial value is iR(0¹) = 13 PA and dig/ dt It-0+ = 1nA/s. (Assume R=240.0 μ.) (Round the final answers to three decimal places.) (Include a minus sign if necessary.) ]s-¹1, C = The value of resistor current ip(t) = A x 10-11 eBt+Cx 10-11eDt A, where, A= | s-1. B and D=

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Publisher:Robert L. Boylestad
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Required information
Element values of 8 mF and 2 nH are employed in the construction of a simple source-free parallel RLC circuit.
Write the equation for the resistor current if its initial value is iR(0¹) = 13 PA and dipldt |t-0+ = 1nA/s. (Assume R = 240.0 µS.) (Round the
final answers to three decimal places.) (Include a minus sign if necessary.)
The value of resistor current ip(t) = A x 10-11èBt + C × 10-11èDt A, where, A =
S-1
9
=
s-1, C =
"
and D =
Transcribed Image Text:! Required information Element values of 8 mF and 2 nH are employed in the construction of a simple source-free parallel RLC circuit. Write the equation for the resistor current if its initial value is iR(0¹) = 13 PA and dipldt |t-0+ = 1nA/s. (Assume R = 240.0 µS.) (Round the final answers to three decimal places.) (Include a minus sign if necessary.) The value of resistor current ip(t) = A x 10-11èBt + C × 10-11èDt A, where, A = S-1 9 = s-1, C = " and D =
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