Find the Ic(s) equation in the laplace domain of the current flowing through the capacitance in the circuit given in the figure below. Then substitute s=K for s in this equation to get a number called M. Then get the Ic(t) equation, which is the inverse laplace value of the Ic(s) equation. Substitute t=Q for t in the Ic(t) equation to obtain a number called N. In which option is the number closest to the M*N value given? Take the initial conditions of the elements in the circuit Vc(0)=A volts, IL(0)=B amps. 2001 200 E R13 200 C Ict R2 2001 below are the values Şekil E=50 Volt. 90742 RI=13 ohm R2=24 ohm C=1 farad 20010 L=1 henry A= - 12 Volt B=16 Amper 19531997 Q=4 saniye K=2 31997 4.047 A B 2.115 5.481 9531997 3.884 6.302 200100116- 1953199742 953199742 200100116-1953199742 20010011 200100116-195319974 199742
Find the Ic(s) equation in the laplace domain of the current flowing through the capacitance in the circuit given in the figure below. Then substitute s=K for s in this equation to get a number called M. Then get the Ic(t) equation, which is the inverse laplace value of the Ic(s) equation. Substitute t=Q for t in the Ic(t) equation to obtain a number called N. In which option is the number closest to the M*N value given? Take the initial conditions of the elements in the circuit Vc(0)=A volts, IL(0)=B amps. 2001 200 E R13 200 C Ict R2 2001 below are the values Şekil E=50 Volt. 90742 RI=13 ohm R2=24 ohm C=1 farad 20010 L=1 henry A= - 12 Volt B=16 Amper 19531997 Q=4 saniye K=2 31997 4.047 A B 2.115 5.481 9531997 3.884 6.302 200100116- 1953199742 953199742 200100116-1953199742 20010011 200100116-195319974 199742
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
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