1. In the given block diagram let r(t) = 3.5u(t); G1(s) = i G,(6) =Ga(s) = 6/s 3 S43i G2(s) s+2 C(s) using Wolfram Alpha R(s) a. Find b. Find c(t) using W. A c. Draw the curve using Desmos, or W. A d. Does the response reach steady state? e. If so at approximately what time does it reach steady state

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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1.
In the given block diagram let r(t) = 3.5u(t); G1(s) =
G2(s) = ; G3(s) = 6/s
2
s+3
s+2
C(s)
using Wolfram Alpha
R(s)
a. Find
b. Find c(t) using W. A
c. Draw the curve using Desmos, or W. A
d. Does the response reach steady state?
e. If so at approximately what time does it reach steady state
?
f. If the system reaches steady state, is it underdamped or not
underdamped response?
G1 (s)
G2(s)
G3(s)
+
Amplifier and
Heater
Thermostat
valves
Transcribed Image Text:1. In the given block diagram let r(t) = 3.5u(t); G1(s) = G2(s) = ; G3(s) = 6/s 2 s+3 s+2 C(s) using Wolfram Alpha R(s) a. Find b. Find c(t) using W. A c. Draw the curve using Desmos, or W. A d. Does the response reach steady state? e. If so at approximately what time does it reach steady state ? f. If the system reaches steady state, is it underdamped or not underdamped response? G1 (s) G2(s) G3(s) + Amplifier and Heater Thermostat valves
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