0(1) 18 N-m-s/rad 1 N-m-s/rad T(1) 02(1) 5 kg-m2 3 kg-m2 3 N-m/rad 9 N-m/rad (a) Figure P2.16a John Wiley & Sons, Inc. All rights reserved. The transfer function where the output Thetaz is s²+5s +1 0,(s) H(s) =- T(s) a. %3D 4. s +30s' + 80s+s+15 s² +5s +1 0,(s) b. H(s)=- %3D T(s) 25s +30s +80s² +s +15 0,(s) H(s)= 5s +9s+9 C. %3D T(s) 15s* + 30s +95s² +s + 27 0,(s) 5s +9s +9 d. H(s)= %3D 4. T(s) 15s +32s' +95s² +99s +27 ||

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
Section: Chapter Questions
Problem 1.1MA
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Fantastick.
of 6)
A Microsoft PowerPoint - chapter 2 x
O Rotational system.pdf
O Essay on Life in a Big City for Stu x
10 Advantages of Living
A https://moodle1.du.edu.om/mod/quiz/attempt.php?attempt340840&cmid%3D2247468&page=D4
- Moodle English (en) -
01(1)
18 N-m-s/rad
1 N-m-s/rad T(1) 02(1)
$ kg-m2
3 kg-m2
3 N-m/rad
9 N-m/rad
(a)
Figure P2.16a
John Wiley & Sons, Inc. All rights reserved.
The transfer function where the output Theta, is
0,(s)
H(s) =
T(s)
s² +5s +1
s* +30s` +80s² +s +15
a.
%3D
S
0,(s)
b. H(s)=-
s´+5s +1
%3D
25s +30s +80s² +s+15
4.
T(s)
0,(s)
H(s)= -
T(s)
5s² +9s +9
15s* +30s+95s² + s+ 27
c.
4.
5s +9s +9
0,(s)
d. H(s)=
T(s)
15s +32s +95s² +99s+ 27
Transcribed Image Text:Fantastick. of 6) A Microsoft PowerPoint - chapter 2 x O Rotational system.pdf O Essay on Life in a Big City for Stu x 10 Advantages of Living A https://moodle1.du.edu.om/mod/quiz/attempt.php?attempt340840&cmid%3D2247468&page=D4 - Moodle English (en) - 01(1) 18 N-m-s/rad 1 N-m-s/rad T(1) 02(1) $ kg-m2 3 kg-m2 3 N-m/rad 9 N-m/rad (a) Figure P2.16a John Wiley & Sons, Inc. All rights reserved. The transfer function where the output Theta, is 0,(s) H(s) = T(s) s² +5s +1 s* +30s` +80s² +s +15 a. %3D S 0,(s) b. H(s)=- s´+5s +1 %3D 25s +30s +80s² +s+15 4. T(s) 0,(s) H(s)= - T(s) 5s² +9s +9 15s* +30s+95s² + s+ 27 c. 4. 5s +9s +9 0,(s) d. H(s)= T(s) 15s +32s +95s² +99s+ 27
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