Learning Goal: To analyze and design a passive, second-order bandpass filter using a series RLC circuit. A bandpass filt

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Learning Goal: To analyze and design a passive, second-order bandpass filter using a series RLC circuit. A bandpass filt

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Learning Goal To Analyze And Design A Passive Second Order Bandpass Filter Using A Series Rlc Circuit A Bandpass Filt 1
Learning Goal To Analyze And Design A Passive Second Order Bandpass Filter Using A Series Rlc Circuit A Bandpass Filt 1 (38.36 KiB) Viewed 31 times
Learning Goal: To analyze and design a passive, second-order bandpass filter using a series RLC circuit. A bandpass filter is needed for an equalizer, a device that allows one to select the level of amplification of sounds within a specific frequency band while not affecting the sounds outside that band. The filter should block frequencies lower than 1.0 kHz and have a resonant frequency of 3.5 kHz. A 3.6 μF capacitor and any needed resistors and inductors are available to be used in the filter. Design and analyze the RLC circuit that will make this bandpass filter. Part B - The highest frequency of the passband What is the upper cutoff frequency for the filter? Express your answer to four significant figures and include appropriate units. ▸ View Available Hint(s) f₂ = Submit |μA 6 R.L= Value Submit Part C-The resistance and inductance required O Units Find the values of the resistance, R. and inductance, L, required for the bandpass filter to block frequencies lower than 1.0 kHz and have a resonant frequency of 3.5 kHz. Express your answers, separated by commas, to four significant figures. ► View Available Hint(s) ΕΠΙΑΣΦ ? 3 ? 2. H
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