The continuous-time signal x(t) is fed into a network of systems, all of which are LTI, and out comes the continuous-time signal y(t). The connections of the systems are shown below inside the dashed box. x(t) System 1 h₂(t) System 2 h₂(t) System 3 h₂(t) + y(t) The impulse response of each system is shown below. h₁(t) 0 h₂(t) h₂(t) If the network of systems enclosed in the dashed box is represented by a single system, what will be its impulse response?

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The continuous-time signal x(t) is fed into a network of systems, all of which are LTI, and out comes the continuous-time
signal y(t). The connections of the systems are shown below inside the dashed box.
x(t)
1
System 1
h₂(t)
0
The impulse response of each system is shown below.
h₁(t)
System 2
h₂(t)
1
System 3
h₂(t)
y(t)
h₂(t)
1
1
0
h₂(t)
1
If the network of systems enclosed in the dashed box is represented by a single system, what will be its impulse response?
Transcribed Image Text:The continuous-time signal x(t) is fed into a network of systems, all of which are LTI, and out comes the continuous-time signal y(t). The connections of the systems are shown below inside the dashed box. x(t) 1 System 1 h₂(t) 0 The impulse response of each system is shown below. h₁(t) System 2 h₂(t) 1 System 3 h₂(t) y(t) h₂(t) 1 1 0 h₂(t) 1 If the network of systems enclosed in the dashed box is represented by a single system, what will be its impulse response?
0
Option A
1
Option C
1
2
0
1
Option B
1
Option D
2
Transcribed Image Text:0 Option A 1 Option C 1 2 0 1 Option B 1 Option D 2
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