
Concept explainers
(a) Show how you would rewire the protoboard in Figure 5-4(a) so that all the odd-numbered resistors come first followed by the even-numbered ones. (b) Determine the resistance value of each resistor.
FIGURE 5-4
(a)

Show the rewired diagram of the protoboard in given Figure so that all the odd-numbered resistors come first followed by the even-numbered ones.
Explanation of Solution
Discussion:
Refer to given Figure 5-4 in the textbook.
The circuit in given Figure is redrawn as Figure 1 as per the given data.
Given that, the odd-numbered resistors are connected first, and then followed by the even-numbered resistors. That is, the resistors
The schematic circuit of Figure 1 is drawn as Figure 2.
Conclusion:
Thus, the rewired diagram of the given protoboard is drawn.
(b)

Find the resistance value for each of the resistors in the given Figure.
Answer to Problem 1RP
The resistance value for the resistor
Explanation of Solution
Calculation:
Using the standard color codes, the value of the resistors can be calculated. The resistor schematic with 4-band code is drawn as shown in Figure 3.
For Resistor
The color code for brown color is digit
Therefore, the value of the resistor
For Resistor
The color code for the first orange color line is digit
Therefore, the value of the resistor
For Resistor
The color code for orange color is digit
Therefore, the value of the resistor
For Resistor
The color code for yellow color is digit
Therefore, the value of the resistor
For Resistor
The color code for the first red color line is digit
Therefore, the value of the resistor
Conclusion:
Thus, the resistance value for the resistor
Want to see more full solutions like this?
Chapter 5 Solutions
Principles Of Electric Circuits
Additional Engineering Textbook Solutions
Java How to Program, Early Objects (11th Edition) (Deitel: How to Program)
Java: An Introduction to Problem Solving and Programming (8th Edition)
Computer Science: An Overview (13th Edition) (What's New in Computer Science)
Starting Out With Visual Basic (8th Edition)
Modern Database Management
Starting Out with Java: From Control Structures through Objects (7th Edition) (What's New in Computer Science)
- K Q4/ For the unity-feedback system where G(s) = do the following: a. Plot the Nyquist diagram. (S+2)(S+4)(S+6) b. Use your Nyquist diagram to find the range of gain, K, for stabilityarrow_forwardQ6/ Answer (two) of the following question A For the following G(s), find analytical expressions for the magnitude and phase response and make a plot of the logmagnitude and the phase, using log-frequency in rad/s as the ordinate. G(S)=- 1 (S+2)(S+4)arrow_forwardQ5 Given the system of Figure below, with dominant poles -5.415 t/10.57. design a PID controller so that the system can operate with a peak time that is two-thirds that of the uncompensated system at 20% overshoot to get and with zero steady-state error for a step input and KV= 5.7163sec and final K=4.6. R(s) + E(s) K(s + 8) (s+3)(x+6)(s + 10) C(s)arrow_forward
- ".I need the correct answers with explanations" Answer True or False, then correct errors or explain if any: 1. The term pole in filter terminology refers to the feedback circuit. 2, A voltage shunt feedback with Ai-10, A-20, p 0.45, then Aif will be 1. 3. The integrator Op-Amp circuit can be used to produce square waves. 4. The equivalent circuit of the crystal oscillator is series and parallel (R, C) components. 5. The transistor in a class A power amplifier conducts for the entire input cycle. 6. Bypass capacitors in an amplifier determine the low and high-frequency responses. 7. The midrange voltage gain of an amplifier is 100. The input RC circuit has a lower critical frequency of 1 kHz. The actual voltage gain at f-100 Hz is 100. 8. The Bessel filter types produce almost ripple frequency response. 9. RC phase shift oscillators are based on both positive and negative feedback circuits. 10. In a high-pass filter, the roll-off region occurs above the critical frequency.arrow_forward".I need the correct answers with explanations" Answer True or False and correct errors if found: Marks) 1. The LC oscillator circuits are used to operate in low and moderate frequencies. 2. The voltage series feedback can increase both input and output impedances. 3. A two-pole Sallen-Key high-pass filter contains one capacitor and two resistors. 4. The main feature of a crystal oscillator is the high frequency operation that operates with optoelectronic effect. 5. The max. efficiency of the class B power amplifier is 50%. 6. The Q-point must be centered on the load line for maximum class AB output signal swing. 7. The differentiator Op-Amp can convert the triangle waveform into sinewave. 8. Class AB power amplifier eliminates crossover distortion found in pure class A. 9. RC-phase shift oscillators are based on positive feedback circuits. 10. Bypass capacitors in an amplifier determine the low and high-frequency responses.arrow_forwardK Q2/A For the system G(s)= H(s)=1 9 (s+5)(s+2 )(s+5) a. Draw the Bode log-magnitude and phase plots. b. Find the range of K for stability from your Bode plots. c. Evaluate gain margia, phase margin, zero dB frequency, and 180° frequency from your Bode plots for K = 10,000.arrow_forward
- Please solve this question step by step handwritten solution and do not use ai or chat gpt pleasearrow_forward".I need the correct answers with explanations" Q1: What is the orientation of voltage regulation value (positive or negative) of alternator loaded by capacitive load? Explain the effect of armature reaction on voltage regulation for this load? Draw the load characteristics of alternator for capacitive, inductive, and inductive loads? Q2: A 2000 kVA,2200 V, 60 Hz,Y-connected alternator has a resistance of 0.25 between each pair of terminal. A field current of 80 A produces a short circuit current equal to full load current in each line. The same field current produces an e.m.f of 800 V(L-L) on open circuit .Determine the full load voltage regulation of alternator at unity p.f?arrow_forward12. If the length of a transmission line increases, its inductance is B. decreases C. Constant D. None of them A. increases 13. When the regulation is negative, then receiving end voltage (VR) is.......... than sending and voltage (VS). B. More C. Equal A. Less D. None of the them 10. If the spacing between the conductors is decrease, the inductance of the line will be: A. Increase B. decreases C. Not effected D. Non of them 6. Cables have more effective in... A. Inductance B. Capacitance than over head transmission lines C. Resistance D. All of the abov 7. By which of the following methods string efficiency can be equa! 100% A. Using a guard ring B. Equal insulator voltage C. Using long cross arm D.Non of them Power system Prove answerarrow_forward
- ".I need the correct answers with explanations" A power station has a daily load cycle as under: 260 kwh for 6 hours; 200 kwh for 8 hours: 160 kwh for 4 hours, 100 kwh for 6 hours. If the power station is equipped with 4 units of 75 kw each, calculate (i) daily load factor (ii) plant capacity factor and (iii) daily requirement of fuel in kg if the calorific value of fuel used were 10,000 kcal/kg.arrow_forward"I need the correct answers with explanations" Pick up the correct answer 1. The area under the daily load curve gives A. average load in kw B. units generated in kwh 2. the minimum phase-neutral voltage at which corona A. Visual critical voltage B. Receiving voltage C. plant capacity in kw D. Maximum demand in kw occurs is C. String voltage D. Critical disruptive voltage. 3. If the length of a transmission line increases, its inductance is B. Decreases C. Constant A. Increases 4. Photo cells are connected in parallel in order to D. None of them A. Increase voltage rating B. Increase current rating C. Increase life cells. D. All of the them 5. Which of the following is a high head turbine? A. Pelton turbine B. Francis turbine 6. Best diversity factor will be at: C. Kaplan turbine D. Propeller turbine A. diversity factor 1 7. When the voltage regulation is positive, then receiving voltage is ...... than sending voltage A. Less B. More C. Equal D. None of the them 8. Fill factor of solar…arrow_forwardConsider the system shown in Fig. Q4(b). Draw a Bode diagram of the open-loop transfer function, and determine the value of the gain K such that the phase margin is 50° . Also, obtain the gain margin of the system with the determined value of gainarrow_forward
- Electricity for Refrigeration, Heating, and Air C...Mechanical EngineeringISBN:9781337399128Author:Russell E. SmithPublisher:Cengage Learning
