Given the circuit shown in Figure 7.3a with v;(t) = 1.5 sin(1000nt) [V], R = 6.8 [k], and C = 0.01 [µF]. 1. Find the impedance phasor ZRC. 2. Determine the phasors Vi, VR, and Voc corresponding to the...


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Given the circuit shown in Figure 7.3a with v;(t) = 1.5 sin(1000nt) [V], R = 6.8 [k], and C = 0.01 [µF].<br>1. Find the impedance phasor ZRC.<br>2. Determine the phasors Vi, VR, and Voc corresponding to the phasors for the input voltage, resistor<br>voltage, and capacitor voltage.<br>3. Draw the impedance and voltage phasor diagrams.<br>

Extracted text: Given the circuit shown in Figure 7.3a with v;(t) = 1.5 sin(1000nt) [V], R = 6.8 [k], and C = 0.01 [µF]. 1. Find the impedance phasor ZRC. 2. Determine the phasors Vi, VR, and Voc corresponding to the phasors for the input voltage, resistor voltage, and capacitor voltage. 3. Draw the impedance and voltage phasor diagrams.
Ri(t)<br>VR(t)<br>v;(t) (~<br>vo(t)=v.(t)<br>C'<br>-<br>(a)<br>Figure 7.3: Passive lowpass filters: (a) S<br>

Extracted text: Ri(t) VR(t) v;(t) (~ vo(t)=v.(t) C' - (a) Figure 7.3: Passive lowpass filters: (a) S

Jun 11, 2022
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