Engineering
Engineering, 05.09.2019 01:30, juana2019

The following represent solutions of the transmission line differential equations for some arbitrary function f(u):
v(z, t) = 60 cos(1000t -5z) - 120 pi f (2t + z/100+12) v
i(z, t) = 2 pi f (2t +z/100 +12) - cos (1000 t -5z) a
(a) what is the forward propagating voltage waveform?
(b) what is the beckward propagating curent waveform?
(c) what is the characteristic impedence of this line?
(d) what is thw velocity of propagation for a signal on this line?
(e) what is the total voltage at t=0 at the input end of the line (z=0)

answer
Answers: 1

Other questions on the subject: Engineering

image
Engineering, 04.07.2019 18:10, samanthabutryn
Which one from below is not one of the reasons of planning failures? (clo3) a)-planner is careless. b-planner spend less time in the field but more time on the desk c)-planner is not qualified d)-planner does not have sufficient time to properly plan
Answers: 3
image
Engineering, 04.07.2019 18:20, ashleyjaslin
Derive the correction factor formula for conical nozzle i=-(1+ cosa) and calculate the nozzle angle correction factor for a nozzle whose divergence hal-fangle is 13 (hint: assume that all the mass flow originates at the apex of the cone.
Answers: 3
image
Engineering, 06.07.2019 04:10, jessicajustice6215
Cold water (cp=4180j/kg k) leadıng to a shower enters a thin-walled double-pipe heat transfer at 15c at a rate of 0.25kg/s and is heated to 45c by hot water (cp=4190j/kg k) that enters at 100c at the rate of 3kg/s. if the overall heat transfer coefficient is 950w /m2 k , determıne the rate of heat transfer and the heat transfer surface area of the heat exchanger using e - ntu method
Answers: 1
image
Engineering, 06.07.2019 04:10, ninaaforever
Natural gas (95 percent methane and 5 percent ethane by volume) flows through a 90 cm diameter pipeline with a velocity of 3 m/s. the pressure in the pipeline is 700 kpa, and the temperature is 15°c. calculate: (a) the mass and volumetric flow rates in this pipe.
Answers: 1
Do you know the correct answer?
The following represent solutions of the transmission line differential equations for some arbitrary...

Questions in other subjects:

Konu
Mathematics, 12.04.2020 07:43
Konu
Law, 12.04.2020 07:43