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Consider the RC filter shown in (Figure 1). Figure 1₁ 160 5 μF < 1 of 1 > Part A Find the cutoff frequency (in hertz) of

Posted: Fri Jul 08, 2022 6:24 am
by answerhappygod
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Consider the RC filter shown in (Figure 1). Figure 1₁ 160 5 μF < 1 of 1 > Part A Find the cutoff frequency (in hertz) of the lowpass filter. Express your answer using three significant figures. f = 199 Hz Submit ✔ Correct Part B Previous Answers Calculate H (jw) at We- Enter your answer using polar notation. Express argument in degrees. H (jwe) = 0.707/-45.0 Submit Previous Answers ✓ Correct
Part C Calculate H (jw) at 0.3wc- Enter your answer using polar notation. Express argument in degrees. H (10.3we) = Submit Previous Answers Request Answer * Incorrect; Try Again; 9 attempts remaining Part D |VD ΑΣΦΩΤ vec Calculate H (jw) at twe Enter your answer using polar notation. Express argument in degrees. H (jowe) = Submit ΠΙΑΣΦΗ 11 Request Answer vec ? ?
Part E If U = 31coswt mV, what is the steady-state expression for 1, when w=we? Suppose that vo(t) = V cos(wt +), where -180° << 180°. Determine the values V. w. p. Express your answers using three significant figures separated by commas. vec V.w.o= Submit Part F V.w.p= VAX Submit Request Answer If U₂ = 31c0swt mV, what is the steady-state expression for 1, when w=0.3w? Suppose that vo(t) = V cos(wt+p), where -180° << 180º. Determine the values V. w. o. Express your answers using three significant figures separated by commas. ΠΙΑΣΦΠ Request Answer A vec ? mV, rad/s. ? mV, rad/s, º
Part G If U₂ = 31coswt mV, what is the steady-state expression for U, when w=6w? Suppose that vo(t) = V cos(wt +), where -180° <$<180°. Determine the values V. w. o. Express your answers using three significant figures separated by commas. ΠΙΑΣΦΩΤ V.w.p= Submit Request Answer vec ? mV, rad/s."