10 kN C2 560 pF 8V 560 pF f 20 kHz Figure 3. Diagram of the RC electrical circuit Q 4(a) Calculate the total resistance; Q 4(b) Calculate the total capacitance; Q 4(c) Calculate the total reactance;

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Q 4(d)
Calculate the impedance;
Q 4(e)
Calculate the phase angle;
Q 4(f)
Calculate the total current3;
Q 4(g)
Calculate the voltage across the capacitors;
Q 4(h)
Calculate the voltage across the resistor;
Q 4(i)
Calculate the current through C1 and C2;
Q 4(j)
Calculate the reactive power,
Q 4(k)
Calculate the true (active) power;
Q 4(1)
Calculate the apparent power;
Q 4(m)
Sketch the phasor diagram for the powers.
Transcribed Image Text:Q 4(d) Calculate the impedance; Q 4(e) Calculate the phase angle; Q 4(f) Calculate the total current3; Q 4(g) Calculate the voltage across the capacitors; Q 4(h) Calculate the voltage across the resistor; Q 4(i) Calculate the current through C1 and C2; Q 4(j) Calculate the reactive power, Q 4(k) Calculate the true (active) power; Q 4(1) Calculate the apparent power; Q 4(m) Sketch the phasor diagram for the powers.
10 kN
C1
560 pF
C2
560 pF
8V
f%3D20 kHz
Figure 3. Diagram of the RC electrical circuit
Q 4(a)
Calculate the total resistance;
Q 4(b)
Calculate the total capacitance;
Q 4(c)
Calculate the total reactance;
Q 4(d)
Calculate the impedance;
Q 4(e)
Calculate the phase angle;
Q 4(f)
Calculate the total current;
Transcribed Image Text:10 kN C1 560 pF C2 560 pF 8V f%3D20 kHz Figure 3. Diagram of the RC electrical circuit Q 4(a) Calculate the total resistance; Q 4(b) Calculate the total capacitance; Q 4(c) Calculate the total reactance; Q 4(d) Calculate the impedance; Q 4(e) Calculate the phase angle; Q 4(f) Calculate the total current;
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We need to find out resistance and capacitance and reactance .

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