Electric Circuits. (11th Edition)
11th Edition
ISBN: 9780134746968
Author: James W. Nilsson, Susan Riedel
Publisher: PEARSON
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Chapter 2, Problem 42P
To determine
Find the total power required for the three radiators using PSPICE and compare with the radiator power obtained in Problem 2.41.
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EEE 316-Electr...chines | PQ..pdf
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Phoenix Files
4th September, 2023.
INSTRUCTIONS:
Answer FIVE (5) QUESTIONS,
DURATION: 3 HOURS
QUESTION ONE:
1a)
What is electromechanical energy conversion.
(3 Mark:
1b)
Explain the following terms: permanent magnets and non-permanent magnets
(5 Mark:
1c)
A short shunt generator delivers 45A at 240V and the resistance of the shunt field and armature:
500 and 0.030 respectively. Calculated the generated emf.
(6 Marks
QUESTION TWO:
2a)
2b)
Energy can never be created or destroyed", discuss with examples
Why is the air-gap very important in electromechanical systems.
(4 Marks
(4 Marks,
2c)
A short shunt generator delivers 450A at 240V and the resistance of the shunt field and armature
are 500 and 0.030 respectively. Calculated the generated emf.
(6Marks)
QUESTION THREE:
3a)
3b)
List and explain the two types of armature windings mostly used in DC machines.
Differentiate between electromechanical devices and machines with examples.…
2.
For the circuit shown, V = -10 V, R. = 10 kQ, R
Calculate the operating point for the circuit shown. Use /,
= 2.2 kQ, R = 3.6 kQ, R = 1 kQ.
//ẞ and calculate /. for ẞ = 90.
R1
m
R2
22
Rc
C
Vec
RE
HE
Pls show neat and whole solution
Chapter 2 Solutions
Electric Circuits. (11th Edition)
Ch. 2.1 - Prob. 1APCh. 2.1 - For the circuit shown,
What value of α is required...Ch. 2.2 - For the circuit shown,
If υg = 1 kV and ig = 5 mA,...Ch. 2.2 - For the circuit shown,
If ig = 0.5 A and G = 50...Ch. 2.4 - Prob. 5APCh. 2.4 - Use Ohm’s law and Kirchhoff’s laws to find the...Ch. 2.4 - a)
The terminal voltage and terminal current were...Ch. 2.4 - Repeat Assessment Problem 2.7, but use the...Ch. 2.5 - Prob. 9APCh. 2.5 - The current iϕ in the circuit shown is 2 A....
Ch. 2 - Prob. 1PCh. 2 - Prob. 2PCh. 2 - If the interconnection in Fig. P2.3 is valid, find...Ch. 2 - If the interconnection in Fig. P2.4 is valid, find...Ch. 2 - The interconnection of ideal sources can lead to...Ch. 2 - Consider the interconnection shown in Fig....Ch. 2 - Consider the interconnection shown in Fig....Ch. 2 - If the interconnection in Fig. P2.8 is valid, find...Ch. 2 - Find the total power developed in the circuit in...Ch. 2 - Is the interconnection in Fig. P2.10 valid?...Ch. 2 - For the circuit shown in Fig. P2.11
Figure...Ch. 2 - For the circuit shown in Fig. P2.12
Figure...Ch. 2 - A pair of automotive headlamps is connected to a...Ch. 2 - The terminal voltage and terminal current were...Ch. 2 - A variety of current source values were applied to...Ch. 2 - A variety of voltage source values were applied to...Ch. 2 - Find the currents i1 and i2 in the circuit in Fig....Ch. 2 - Given the circuit shown in Fig. P2.18, find
Figure...Ch. 2 - The current ia in the circuit shown in Fig. P2.19...Ch. 2 - Prob. 20PCh. 2 - The current ix in the circuit shown in Fig. P2.21...Ch. 2 - The current io in the circuit in Fig. P2.22 is 2...Ch. 2 - The voltage across the 22.5 Ω resistor in the...Ch. 2 - The currents i1 and i2 in the circuit in Fig....Ch. 2 - The currents ia and ib in the circuit in Fig....Ch. 2 - Prob. 26PCh. 2 - The variable resistor R in the circuit in Fig....Ch. 2 - The voltage and current were measured at the...Ch. 2 - The voltage and current were measured at the...Ch. 2 - Prob. 30PCh. 2 - Prob. 31PCh. 2 - Consider the circuit shown in Fig. P2.32.
Find...Ch. 2 - For the circuit shown in Fig. P2.33, find υo and...Ch. 2 - For the circuit shown in Fig. P2.34, find υo and...Ch. 2 - Find (a) io, (b) i1, and (c) i2 in the circuit in...Ch. 2 - For the circuit shown in Fig. P2.36, calculate (a)...Ch. 2 - Find υ1 and υg in the circuit shown in Fig. P2.37...Ch. 2 - Derive Eq. 2.21. Hint: Use Eqs. (3) and (4) from...Ch. 2 - For the circuit shown in Fig. 2.24, R1 = 40 kΩ R2...Ch. 2 - Suppose you want to add a third radiator to your...Ch. 2 - Repeat Problem 2.41 using the wiring diagram shown...Ch. 2 - Repeat Problem 2.41 using the wiring diagram shown...Ch. 2 - Repeat Problem 2.41 using the wiring diagram shown...
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- Pls show neat and whole solutionarrow_forwardA. A dc chopper with a free-wheeling diode feeds a dc motor with an armature inductance of 15 mH and resistance of 12. The dc source voltage is 200 V. The ON time and OFF time are 2 ms and 0.5 ms respectively. Determine the armature current when the back Emf of the motor is 155 V. Also draw the power circuitry.arrow_forwardAn inductive load is controlled by an impulse commutation chopper in Fig.1 and peak load current IL-450A at a supply voltage of 220V. The chopping frequency f=275 Hz, commutation capacitor C=60μF and reversing inductance Lm=20μH.The source inductance Ls 8μH, determine: td tc tr=tc+td a) peak Capacitor discharge Current. b) Circuit turn off time. c) Commutation time. d) The maximum instantaneous capacitor voltage. Vects = Vs+ IL LS sin ust Ls 000002 a C T₁ IL T₂ FWD ic oooooL L D₁ fig1 LOAD Vo Iarrow_forward
- An inductive load is controlled by an impulse commutation chopper in Fig.1 and peak load current IL-450A at a supply voltage of 220V. The chopping frequency f=275 Hz, commutation capacitor C=60μF and reversing inductance Lm=20μH.The source inductance Ls=8μH, determine : td tc tr=tc+td a) peak Capacitor discharge Current. b) Circuit turn off time. c) Commutation time. d) The maximum instantaneous capacitor voltage. Vects = Vs+ ILLS Ls 000002 a C ic T₁ iTI IL T₂ FWD LOAD Vo oooooL L D₁ fig1 Iarrow_forwardA. A dc chopper with a free-wheeling diode feeds a dc motor with an armature inductance of 15 mH and resistance of 10. The dc source voltage is 200 V. The ON time and OFF time are 2 ms and 0.5 ms respectively. Determine the armature current when the back Emf of the motor is 155 V. Also draw the power circuitry. 100arrow_forward1. For the circuit shown, VBB = +10 V, Vcc = +30 V, RB = 470 kQ, Rc = 6 kQ. Calculate the operating point for the circuit shown for a ẞ value of 90 and for a ẞ value of 130. VBB RB w Rc Vccarrow_forward
- The circuit in the figure below has been left for a long time. Determine the current i.arrow_forwardDraw and explain the electronic circuit diagram of ON/OFF controller. Write its advantagesand disadvantages.arrow_forwardThe expected value of the vyoltage across a resistor is 545 V However, measurement yields avalue o 500 V. Calculate: a) Absolute error b) Percentage error c) Absolute accuracy d) Relative accuracy.arrow_forward
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