subject
Engineering, 22.01.2020 06:32 kevinsosdik

Throughout the chapter we focused on c(t) = a_c cos(2 pi f_c t) as the sinusoidal carrier wave. suppose we choose c(t) = a_c sin(2 pi f_c t) as the sinusoidal carrier wave. to be consistent, suppose we also define m(t) = a_c sin(2 pi f_m t) evaluate the spectrum of the new definition of am: s(t) = a_c[1 + k_a m(t)] sin (2 pi f_c t) where k_a is the amplitude sensitivity. compare the result derived in part (a) with that studied in example 3.1. what difference does the formulation in this problem make to the formulation of modulation theory illustrated in example 3.1? consider the message signal m(t) = 20 cos(2 pi t) volts and the carrier wave c(t) = 50 cos(100 pi t) volts sketch (to scale) the resulting am wave for 75 percent modulation. find the power developed across a load of 100 ohms due to this am wave.

ansver
Answers: 3

Other questions on the subject: Engineering

image
Engineering, 04.07.2019 18:10, qwertylol12345
Different types of steels contain different elements that alter the characteristics of the steel. for each of the following elements, explain what the element does when alloyed with steel.
Answers: 2
image
Engineering, 04.07.2019 18:10, namira16
Which of the following controllers anticipates the future from the slope of errors over time? a)-proportional b)-on/off c)-integral d)-derivative.
Answers: 2
image
Engineering, 04.07.2019 18:10, wyattlb97
Water at the rate of 1 kg/s is forced through a tube with a 2.5 cm inner diameter. the inlet water temperature is 15°c, and the outlet water temperature is 50°c. the tube wall temperature is 14°c higher than the local water temperature all along the length of the tube. what is the length of the tube?
Answers: 3
image
Engineering, 04.07.2019 18:10, oliviasoreo92
Compute the pressure drop of 30°c air flowing with a mean velocity of 8 m/s in a circular sheet-metal duct 300 mm in diameter and 15 m long. use a friction factor, f 0.02, and pair = 1.1644 kg/m a. 37.26 pa b. 25.27 pa n c. 29.34 pa d. 30.52 pa
Answers: 1
You know the right answer?
Throughout the chapter we focused on c(t) = a_c cos(2 pi f_c t) as the sinusoidal carrier wave. supp...

Questions in other subjects: