44. Employ phasor-based analysis to obtain an expression for i(t) in the circuit of Fig. 10.57. i(t) 4 cos (100t – 20°) A ( 1 mF 20 mH FIGURE 10.57 ele

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44. Employ phasor-based analysis to obtain an expression for i(t) in the circuit of
Fig. 10.57.
i(t)
2 0
4 cos (100t – 20°) A(
1 mF
20 mH
I FIGURE 10.57
45. Design a suitable combination of resistors, capacitors, and/or inductors which
has an equivalent impedance at w = 100 rad/s of (a) 1 2 using at least one
inductor; (b) 7/10° N; (c) 3 – j4 2.
46. Design a suitable combination of resistors, capacitors, and/or inductors which
has an equivalent admittance at w = 10 rad/s of (a) 1 S using at least one
capacitor; (b) 12/–18° S ; (c) 2 + j mS.
Transcribed Image Text:44. Employ phasor-based analysis to obtain an expression for i(t) in the circuit of Fig. 10.57. i(t) 2 0 4 cos (100t – 20°) A( 1 mF 20 mH I FIGURE 10.57 45. Design a suitable combination of resistors, capacitors, and/or inductors which has an equivalent impedance at w = 100 rad/s of (a) 1 2 using at least one inductor; (b) 7/10° N; (c) 3 – j4 2. 46. Design a suitable combination of resistors, capacitors, and/or inductors which has an equivalent admittance at w = 10 rad/s of (a) 1 S using at least one capacitor; (b) 12/–18° S ; (c) 2 + j mS.
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