For the following exercises, graph two full periods of each function and state the amplitude, period, and midline. State the maximum and minimum y-values and their corresponding x-values on one period for x > 0. Round answers to two decimal places if necessary.y = 3sin(8(x + 4)) + 5
m = 3sin(5*pi*t)-sin(40*pi*t)+5cos(10*pi*t)
a)What is the bandwidth of the message?
b)What should be the minimum cut-off frequency of the LPF (BWmin)?
Why? What will you observe, when you choose value of BW smaller
than BWmin?
c)What should be the maximum cut-off frequency of the LPF (BWmax)?
Why? What will you observe, when you choose value of BW higher than
BWmax?
d)What is the ideal sampling rate? Why?
e)What is the ideal cut-off frequency of the LPF(Low Pass Filter)?
Why?
For the following exercises, graph two full periods of each function and state the amplitude, period, and midline. State the maximum and minimum y-values and their corresponding x-values on one period for x > 0. Round answers to two decimal places if necessary.y = 2sin(3x − 21) + 4
For the following exercises, graph the functions for two periods and determine the amplitude or stretching factor, period, midline equation, and asymptotes.f(x) = 2tan(x − π/6)