Extra problem 1: Determine the transfer function X(s)/(s) for a process-control valve/electro-pneumatic converter described by the following differential equation: d²x dx 0.0001 +0.02 + x = 0.3i dt dt² where x = valve stem position (in) and i= current input signal to the converter (mA).
Extra problem 1: Determine the transfer function X(s)/(s) for a process-control valve/electro-pneumatic converter described by the following differential equation: d²x dx 0.0001 +0.02 + x = 0.3i dt dt² where x = valve stem position (in) and i= current input signal to the converter (mA).
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
Problem 1P: Visit your local library (at school or home) and describe the extent to which it provides literature...
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Chapter 10, Problems: 15, 22, 26 (pages 254-255)
Extra problem 1: Determine the transfer function X(s)/(s) for a process-control valve/electro-pneumatic
converter described by the following differential equation:
T
dx
d²x
dt²
+0.02 + x = 0.3i
dt
where x = valve stem position (in) and i= current input signal to the converter (mA).
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Chapter 10, Problems: 15, 22, 26 (pages 254-255)
Extra problem 1: Determine the transfer function X(s)/(s) for a process-control valve/electro-pneumatic
converter described by the following differential equation:
T
dx
d²x
dt²
+0.02 + x = 0.3i
dt
where x = valve stem position (in) and i= current input signal to the converter (mA).
O Search
16
^
10
6
Y
&
4-
7
C
18
*
0.0001
4+
8
(29
U 1
fg
(
9
O
f11
I
P
12
{
[
=
ins
prt sc
}
↓
L
dele
backs
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Given a differential equation
To determine the transfer function X(s)/I(s)
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