Q3 The supply voltage for the circuit in Figure 3.1 is given by: V(t) =10sin (27× 637×10°t) V R

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Q3
The supply voltage for the circuit in Figure 3.1 is given by:
V(t)=10sin (27 × 637×10°t) V
R
V(t)
R=6 kQ, L=4 mH
Figure 3.1
Explaining each step, calculate the:
(i)
reactance of the inductor;
(ii)
impedance of the circuit;
(iii)
peak amplitude of the supply current;
(iv)
phase angle between the current and the supply voltage;
(v)
amplitude of the voltage across R;
(vi)
amplitude of the voltage across L;
(vii)
the power dissipated in the circuit.
Transcribed Image Text:Q3 The supply voltage for the circuit in Figure 3.1 is given by: V(t)=10sin (27 × 637×10°t) V R V(t) R=6 kQ, L=4 mH Figure 3.1 Explaining each step, calculate the: (i) reactance of the inductor; (ii) impedance of the circuit; (iii) peak amplitude of the supply current; (iv) phase angle between the current and the supply voltage; (v) amplitude of the voltage across R; (vi) amplitude of the voltage across L; (vii) the power dissipated in the circuit.
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