Electric Circuits, 9th Edition P59. Designed for use in a one or two-semester Introductory Circuit Analysis or Circuit Theory Course taught in Electrical or Computer Engineering Departments. Electric Circuits 9/e is the most widely used introductory circuits textbook of the past 25 years. As this book has evolved over the years to meet the changing learning styles of students, importantly, the underlying teaching approaches and philosophies remain unchanged. | 556 Introduction to Frequency Selective Circuits Use a 500 nF capacitor to design a bandreject filter orsiGN as shown in Fig. . The filter has a center frc-pspice quency of 4 kHz and a quality factor of 5. multisim a gpectfy the numerical values of R and L. b Calculate the upper and lower corner or cutoff frequencies in kilohertz. c Calculate the filter bandwidth in kilohertz. Assume the bandreject filter in Problem is pspice loaded with a 1 kfl resistor. a What is the quality factor of the loaded circuit b What is the bandwidth in kilohertz of the loaded circuit c What is the upper cutoff frequency in kilohertz d What is the lower cutoff frequency in kilohertz Design a series RLC bandreject filter using only three components from Appendix H that comes closest to meeting the filter specifications in Problem . a Draw your filter labeling all component values and the input and output voltages. b Calculate the percent error in this new filter s center frequency and quality factor when compared to the values specified in Problem . Design an RLC bandreject filter see Fig. a with a quality of and a center frequency of 25 krad s using a 200 nF capacitor. a Draw your circuit labeling the component values and output voltage. b For the filter in part a calculate the bandwidth and the values of the two cutoff frequencies. The input to the RLC bandreject filter designed in Problem is 250coswi mV. Find the voltage drop across the series combination of the inductor and capacitor when a w b w wtl c a a c2 d co e co 5co . The input to the RLC bandreject filter designed in Problem is 250cos coi mV. Find the voltage drop across the resistor when a co co0 b co coc c a o c2 d co e co 5cof . The purpose of this problem is to investigate how a resistive load connected across the output terminals of the bandreject filter shown in Fig. a affects the behavior of the filter. The loaded .