Consider the system shown in Figure 2 G1 R(s) |C(s) G3 G2 Figure 2 1 . Obtain natural frequency (@n) and damping ratio (5) for G,(s)==, G,(s) =- 4s+ G,(s) = 4 , and H(s) = 0.5 Obtain inverse Laplace transform of the system for the unit step input (c(t)=?)
Consider the system shown in Figure 2 G1 R(s) |C(s) G3 G2 Figure 2 1 . Obtain natural frequency (@n) and damping ratio (5) for G,(s)==, G,(s) =- 4s+ G,(s) = 4 , and H(s) = 0.5 Obtain inverse Laplace transform of the system for the unit step input (c(t)=?)
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![Consider the system shown in Figure 2
G1
R(s)
C(s)
G
H
Figure 2
a. Obtain natural frequency (@n) and damping ratio (5) for G,(s) ==, G,(s) = -
4s+2'
G,(s) = 4 , and H (s) = 0.5
b. Obtain inverse Laplace transform of the system for the unit step input (c(t)=?)](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fadc1cd20-5d20-480e-959d-2dda553638af%2F917fff0e-047d-4a76-a5df-3f6a70cacfb5%2Fawzv58e_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Consider the system shown in Figure 2
G1
R(s)
C(s)
G
H
Figure 2
a. Obtain natural frequency (@n) and damping ratio (5) for G,(s) ==, G,(s) = -
4s+2'
G,(s) = 4 , and H (s) = 0.5
b. Obtain inverse Laplace transform of the system for the unit step input (c(t)=?)
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