subject
Engineering, 23.12.2019 22:31 perlacruz0505

Suppose that a causal lti discrete-time system has the impulse response h1(n) = 0.5 nu(n) (10) and that an anti-causal lti discrete-time system has the impulse response h2(n) = 3nu(−n − 1). (11)

(a) if these two systems are connected in cascade, what is the transfer function h(z) and roc of the total system?
(b) find the impulse response h(n) of the total system, show your derivation, and make a stem plot of h(n) using matlab.
(c) consider the stable inverse g(z) = 1/h(z). find the roc of g(z) and g(n). make a stem plot g(n) using matlab. verify in matlab that it is an inverse by convolving g(n) and h(n) to get δ(n). (you will need to truncate h and g first as they are infinite in length.)

ansver
Answers: 2

Another question on Engineering

question
Engineering, 04.07.2019 08:10
Which of the following is an easy way to remember the modified “x” tire rotation? a. nondrive wheels straight, cross the drive wheels b. drive wheels straight, cross the nondrive wheels c. drive wheels crossed, nondrive wheels straight d. drive wheels crossed, nondrive wheels crossed
Answers: 1
question
Engineering, 04.07.2019 18:10
The temperature of air decreases as it is compressed by an adiabatic compressor. a)- true b)- false
Answers: 2
question
Engineering, 04.07.2019 18:10
Apump is used to circulate hot water in a home heating system. water enters the well-insulated pump operating at steady state at a rate of 0.42 gal/min. the inlet pressure and temperature are 14.7 lbf/in.2, and 180°f, respectively; at the exit the pressure is 60 lbf/in.2 the pump requires 1/15 hp of power input. water can be modeled as an incompressible substance with constant density of 60.58 lb/ft3 and constant specific heat of 1 btu/lb or. neglecting kinetic and potential energy effects, determine the temperature change, in °r, as the water flows through the pump.
Answers: 1
question
Engineering, 04.07.2019 18:10
Water at 55c flows across a flat plate whose surface temperature is held constant at 95c. if the temperature gradient at the plate's surface for a given value of x is 18 c/mm, find a) local heat transfer coefficient. b) heat flux
Answers: 3
You know the right answer?
Suppose that a causal lti discrete-time system has the impulse response h1(n) = 0.5 nu(n) (10) and t...
Questions
question
Mathematics, 30.10.2019 08:31
question
Mathematics, 30.10.2019 08:31
question
Health, 30.10.2019 08:31
Questions on the website: 13722360