Consider the bandreject filter shown in (Figure 1). Suppose that R=1975 M. Figure + Vi R < 1 of 1 156.25 mH 100 nF Vo Pa

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answerhappygod
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Consider the bandreject filter shown in (Figure 1). Suppose that R=1975 M. Figure + Vi R < 1 of 1 156.25 mH 100 nF Vo Pa

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Consider The Bandreject Filter Shown In Figure 1 Suppose That R 1975 M Figure Vi R 1 Of 1 156 25 Mh 100 Nf Vo Pa 1
Consider The Bandreject Filter Shown In Figure 1 Suppose That R 1975 M Figure Vi R 1 Of 1 156 25 Mh 100 Nf Vo Pa 1 (38.97 KiB) Viewed 32 times
Consider the bandreject filter shown in (Figure 1). Suppose that R=1975 M. Figure + Vi R < 1 of 1 156.25 mH 100 nF Vo Part A Find the center frequency of the filter. Express your answer using three significant figures. Wo= Submit Part B ΓΗΠΟΙ ΑΣΦ fo= Calculate the center frequency in hertz. Express your answer using three significant figures. Submit Part C Request Answer IVD ΑΣΦ Request Answer ? rad/s Hz
Part C Find the quality factor of the filter. Express your answer using three significant figures. Submit Part D B= ΠΙΑΣΦΩΤ Submit Request Answer Find the bandwidth of the filter in hertz. Express your answer using three significant figures. IVD ΑΣΦΠ vec Request Answer vec MID ? Hz
Part E Find the lower cutoff frequency of the filter. Express your answer using three significant figures. IVD ΑΣΦΩΤ Wel = Submit Part F fa= Request Answer Calculate the lower cutoff frequency of the filter in hertz. Express your answer using three significant figures. ΑΣΦΗΜΙ Submit vec ← Request Answer vec ? ? rad/s Hz
Part G Find the higher cutoff frequency of the filter. Express your answer using three significant figures. ΔΙΑΣΦΩΤ - ملا Submit Part H fa= Request Answer Calculate the higher cutoff frequency of the filter in hertz. Express your answer using three significant figures. ΨΠΙΑΣΦΠ Submit vec Request Answer vec ? rad/s Hz
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