![SOLVED: The angular frequency of the signal is 8000 rad/s. Calculate the frequency of the signal in Hertz. SOLVED: The angular frequency of the signal is 8000 rad/s. Calculate the frequency of the signal in Hertz.](https://cdn.numerade.com/ask_images/6735919257524f49a891dfcfa02238aa.jpg)
SOLVED: The angular frequency of the signal is 8000 rad/s. Calculate the frequency of the signal in Hertz.
![SOLVED: Determine the Nyquist sampling frequency both in rad/s and Hz corresponding to each of the following signals. (a) x(t) = 1 + cos(50t) + sin(150t) (b) x(t) = 5 sin(30t) - SOLVED: Determine the Nyquist sampling frequency both in rad/s and Hz corresponding to each of the following signals. (a) x(t) = 1 + cos(50t) + sin(150t) (b) x(t) = 5 sin(30t) -](https://cdn.numerade.com/ask_images/605d074add474222bcd259482972aee6.jpg)
SOLVED: Determine the Nyquist sampling frequency both in rad/s and Hz corresponding to each of the following signals. (a) x(t) = 1 + cos(50t) + sin(150t) (b) x(t) = 5 sin(30t) -
![SOLVED: Q4. What frequency (in rad/s) will cause Zeg = R + j0? 50 Ω 120 Hz 60 mH ω = 577 rad/s ω = 377 rad/s ω = 60 rad/s ω = 1.2 rad/s ω = 13 rad /s SOLVED: Q4. What frequency (in rad/s) will cause Zeg = R + j0? 50 Ω 120 Hz 60 mH ω = 577 rad/s ω = 377 rad/s ω = 60 rad/s ω = 1.2 rad/s ω = 13 rad /s](https://cdn.numerade.com/ask_images/d1ab423b10fa4d33b9664a366154c305.jpg)