The block having transfer functions G1 = 1/ (s+2); G2 = 1/ (s+5); G3 = (s+1) / (s+3); are cascaded. The equivalent transfer function is: O a. (s + 10s? + 37s + 31) /[(s+2)(s+3)(s+5)] O b. -(s+1)/[(s+2)(s+3)(s+5)] O c. (s+1)/[(s+2)(s+3)(s+5)] O d. (s3 + 10s2 + 37s + 31) /[(s+2)(s+3)(s+5)]
The block having transfer functions G1 = 1/ (s+2); G2 = 1/ (s+5); G3 = (s+1) / (s+3); are cascaded. The equivalent transfer function is: O a. (s + 10s? + 37s + 31) /[(s+2)(s+3)(s+5)] O b. -(s+1)/[(s+2)(s+3)(s+5)] O c. (s+1)/[(s+2)(s+3)(s+5)] O d. (s3 + 10s2 + 37s + 31) /[(s+2)(s+3)(s+5)]
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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![The block having transfer functions G1 = 1/ (s+2); G2 = 1/ (s+5); G3 = (s+1) / (s+3);
%3D
%3D
%3D
are cascaded. The equivalent transfer function is:
O a. -(s3 + 10s? + 37s + 31)/[(s+2)(s+3)(s+5)]
O b. -(s+1)/[(s+2)(s+3)(s+5)]
O c. (s+1)/[(s+2)(s+3)(s+5)]
O d. (s3 + 10s2 + 37s + 31) /[(s+2)(s+3)(s+5) ]](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F9ffebe7c-fd03-4e26-983d-f6da4a39c0f3%2F81c309fa-187c-42c1-84c0-1bda12bbd9d4%2F22pjyea_processed.png&w=3840&q=75)
Transcribed Image Text:The block having transfer functions G1 = 1/ (s+2); G2 = 1/ (s+5); G3 = (s+1) / (s+3);
%3D
%3D
%3D
are cascaded. The equivalent transfer function is:
O a. -(s3 + 10s? + 37s + 31)/[(s+2)(s+3)(s+5)]
O b. -(s+1)/[(s+2)(s+3)(s+5)]
O c. (s+1)/[(s+2)(s+3)(s+5)]
O d. (s3 + 10s2 + 37s + 31) /[(s+2)(s+3)(s+5) ]
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