Below is the differential equation of a system. d df 2 (t) d dt == x₁ (t) = x₂(t) 704x₁(t) x₂(t) + 4u(t) y(t) = x₁(t) + x₂ (t) The initial conditions of the system are given below. x₁ (0) = 5, x₂ (0) = 10 Find the Mason gain formula and the Y(s)/ U (s) transfer function by drawing a signal flow diagram.

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Below is the differential equation of a system.
d
df 2 (t)
d
dt
==
x₁ (t) = x₂(t)
704x₁(t) x₂(t) + 4u(t)
y(t) = x₁(t) + x₂(t)
The initial conditions of the system are given below.
x₁ (0) = 5, x₂ (0) = 10
Find the Mason gain formula and the Y(s)/ U (s) transfer function by drawing a signal flow diagram.
Transcribed Image Text:Below is the differential equation of a system. d df 2 (t) d dt == x₁ (t) = x₂(t) 704x₁(t) x₂(t) + 4u(t) y(t) = x₁(t) + x₂(t) The initial conditions of the system are given below. x₁ (0) = 5, x₂ (0) = 10 Find the Mason gain formula and the Y(s)/ U (s) transfer function by drawing a signal flow diagram.
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