Given an LTI system with its impulse response h(t) as shown below. If an input signal x(t) (as shown) is applied to it, then: Syte h(t) 4 Write an expression for h(t) Write an expression for x(t) Find the system output by convolving (graphically and numerically) x(t) with h(t) for : time. 2.1. 2.2. 2.3.

Power System Analysis and Design (MindTap Course List)
6th Edition
ISBN:9781305632134
Author:J. Duncan Glover, Thomas Overbye, Mulukutla S. Sarma
Publisher:J. Duncan Glover, Thomas Overbye, Mulukutla S. Sarma
Chapter6: Power Flows
Section: Chapter Questions
Problem 6.15P
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Given an LTI system with its inmpulse response h(t) as shown.
below. If an input signal x(t) (as shown) is applied to it, then:
Systea
h(t)
1-
Write an expression for h(t)
Write an expression for x(t)
Find the system output by convolving (graphically and numerically) x(t) with h(t) for :
time.
2.1.
2.2.
2.3.
إزالة العلامة المائية
الم مسوحة ضوئیا ب CamScan ner
Given a periodic signel f(r) as shown in the figure helow.
14
16
34567 8 9 10 12
2.1. Use the FT to find the spectrum F(@) for the signal f).
2.2. Find the Complex FS coefficients C, for the signal f().
2.3. Compare your results in 2.1 and 2.2 and comment.
omHee
Transcribed Image Text:Given an LTI system with its inmpulse response h(t) as shown. below. If an input signal x(t) (as shown) is applied to it, then: Systea h(t) 1- Write an expression for h(t) Write an expression for x(t) Find the system output by convolving (graphically and numerically) x(t) with h(t) for : time. 2.1. 2.2. 2.3. إزالة العلامة المائية الم مسوحة ضوئیا ب CamScan ner Given a periodic signel f(r) as shown in the figure helow. 14 16 34567 8 9 10 12 2.1. Use the FT to find the spectrum F(@) for the signal f). 2.2. Find the Complex FS coefficients C, for the signal f(). 2.3. Compare your results in 2.1 and 2.2 and comment. omHee
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