The resistance and inductance of the circuit in Fig. 8.5 are and 20 mH, respectively. a) Find the value of C that makes the voltage response critically damped. b) If C is adjusted to give a neper frequency of , find the value of C and the roots of the characteristic equation. c) If C is adjusted to give a resonant frequency of , find the value of C and the roots of the characteristic equation. 20 krad>s 5 krad>s 100 Answer: (a) (b) (c) s2 = -74,641 rad>s. s1 = -5359 rad>s, C = 125 nF, s2 = -5000 - j5000 rad>s; s1 = -5000 + j5000 rad>s, C = 1 mF, 500 nF;
Read moreTable of Contents
Textbook Solutions for Biology: The Dynamics of Life
Question
The initial energy stored in the 31.25 nF capacitor in the circuit in Fig. P8.41 is . The initial energy stored in the inductor is zero. The roots of the characteristic equation that describes the natural behavior of the current i are anda) Find the numerical values of R and L.b) Find the numerical values of andimmediately after the switch has been closed.c) Find ford) How many microseconds after the switch closesdoes the current reach its maximum value?e) What is the maximum value of i in milliamperes?f) Find for t 0.
Solution
The first step in solving 24.1 problem number 41 trying to solve the problem we have to refer to the textbook question: The initial energy stored in the 31.25 nF capacitor in the circuit in Fig. P8.41 is . The initial energy stored in the inductor is zero. The roots of the characteristic equation that describes the natural behavior of the current i are anda) Find the numerical values of R and L.b) Find the numerical values of andimmediately after the switch has been closed.c) Find ford) How many microseconds after the switch closesdoes the current reach its maximum value?e) What is the maximum value of i in milliamperes?f) Find for t 0.
From the textbook chapter Life Cycles of Mosses, Ferns, and Conifers you will find a few key concepts needed to solve this.
Visible to paid subscribers only
Step 3 of 7)Visible to paid subscribers only
full solution