NEW
Font size
WorksheetsChapter 18 Alternating Current Circuits
Total questions: 16
Worksheet time: 24mins
A pure resistor is connected to an a.c. source where its current is given by I=5.0 sin 628t. Which of the following statements is not true about the circuit?
The peak value of current flowing through the resistor is 5.0 A
The root mean square current flowing through the resistor is 3.5 A
The frequency of the current flowing through across the resistor is 120 Hz
The equivalent direct current which gives the same average heating power in the resistor is 3.5 A
Which of the following statements is not true about the above circuit?
The instantaneous current in the circuit is I=I0 sin ωt
The peak value of the alternating current is RV0
The impedance of the circuit is ωR
The hot-wire ammeter in the circuit can also be used to measure the direct current
A
B
C
D
Find the ratio of power dissipated through R in (b)mean power dissipated through R in (a)
2
21
4
41
An inductor of inductance 22.0 mH is connected to an a.c. supply with frequency f. If the reactance of the inductor is 660 Ω, what is the value of f?
1.45 ×103 Hz
3.00 ×103 Hz
4.77 ×103 Hz
7.16 ×103 Hz
The variation of voltage across an inductor with time t in an a.c. circuit is as shown in the graph. Which graphs shows the variation of the current I which flows through the inductor with time t?
A pure inductor is connected to an a.c. source of frequency 100 Hz and the r.m.s. value of the voltage is 12 V. If the peak value of the current flowing through the inductor is 14 A, what is the inductance of the inductor?
1.6 mH
1.9 mH
30 mH
39 mH
A pure inductor of inductance 15 H is connected to an a.c.s source of frequency 100 Hz. If the r.m.s. value of the voltage is 12 V, what is the maximum instantaneous output power?
1.3 ×10−3W
1.5 ×10−2W
0 W
1.5 W
A pure capacitor of capacitance C is connected to an a.c. supply of peak voltage V0. Which pair of expressions below are for the voltage and current in the circuit?
V=V0 sin (ωt+2π) I=I0 sinωt
V=V0 sin (ωt+2π) I=I0 cos ωt
V=V0 sin ωt I=I0cos ωt
V=V0 sin ωt I=I0 sin ωt
A pure capacitor is connected to an a.c. supply of frequency 50 Hz and r.m.s. voltage 6.0 V. If the r.m.s. value of the current in the circuit is 30 mA, what is the capacitance of the capacitor?
13 μ F
14 μ F
15 μ F
16 μ F
An alternating current I which flows through a capacitor of capacitance 2 μF is given by I=5 sin (100t) . If I is in ampere and t is seconds, what is the mean power generated in the capacitor?
0 W
5 W
7 W
10 W
A sinusoidal a.c. source of r.m.s. voltage 25 V as shown in the diagram. If the potential difference across the resistor R has an r.m.s. value of 10 V, what is the potential difference across the capacitor?
10 V
15 V
23 V
25 V
A pure inductor of inductance 0.20 H and a resistor of resistance 200 Ω are connected in series to an a.c. source of voltage V=300 sin 120t. Calculate the r.m.s. value of current in the circuit.
1.1 A
8.8 A
9.3 A
10 A
Which of the following diagrams is the correct phasor diagram for VR, VL and V?
A
B
C
D
The reactance Xc of the capacitor and the resistance R are shown in the phasor diagram. Which of the following statements describes Z and ϕ correctly?
Z is the impedance of the combined R and Xc
ϕ is the phase angle where current leads the voltage
Z is the impedance of the combined R and Xc
ϕ is the phase angle where voltage leads the current
Z is the reactance of the resistor
ϕ is the phase angle where R leads Z.
Z is the impedance of the combined R and Xc
ϕ is the phase angle where Z leads R
