a.
Find the current values
a.
![Check Mark](/static/check-mark.png)
Answer to Problem 1P
The current values
Explanation of Solution
PSPICE Circuit:
Refer to the Figure P7.1 in the textbook.
Draw the given circuit diagram in PSPICE as shown in Figure 1.
Simulation settings:
Provide the simulation settings as shown in Figure 2.
PSPICE output:
After run the PSPICE circuit a black output screen will be displayed. Right click on the mouse by keeping cursor on the output screen, click the option “Add Trace” and type the expression “-I(R3)” in trace expression box.
The current plot
From PSPICE output, the initial values of current are,
Similarly, type the expression “-I(R2)” in trace expression box to obtain the current
From PSPICE output, the initial values of current are,
Conclusion:
Therefore, the values of
b.
Find the current values
b.
![Check Mark](/static/check-mark.png)
Answer to Problem 1P
The current values
Explanation of Solution
Calculation:
From Figure 2 and Figure 3, the current values are,
Conclusion:
Therefore, the current values
c.
Find the expression
c.
![Check Mark](/static/check-mark.png)
Answer to Problem 1P
The expression
Explanation of Solution
Calculation:
Find the equivalent resistance after the switch is opened at
Find time constant from the circuit diagram.
Here,
L is the inductance.
Substitute
The expression
Substitute 5 mA for
Conclusion:
Therefore, the expression
d.
Find the expression
d.
![Check Mark](/static/check-mark.png)
Answer to Problem 1P
The expression
Explanation of Solution
Calculation:
Find the equivalent resistance after the switch is opened at
Find time constant from the circuit diagram.
Here,
L is the inductance.
Substitute
The expression
Substitute –5 mA for
Conclusion:
Therefore, the expression
e.
Explain the reason for why
e.
![Check Mark](/static/check-mark.png)
Explanation of Solution
Calculation:
The current in the resistor changes instantaneously. The switching operation makes the current
Conclusion:
Therefore, the reason for why
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Chapter 7 Solutions
ELECTRIC CIRCUITS-W/MASTERINGENGINEERING
- 5. Represent the following system in state-space form. Write A, B, C and D clearly in your answer. d³y d²y dt3 - +5y=2u dt²arrow_forward3. Find the transfer function H(s) and frequency response H (w) of the following system whose differential equation is given by d¹y d³y +3. dy +5 dt4 dt3 dt - d²u du 4y = - 5 dt² dtarrow_forward1. Consider a plant that you want to control. The input u(t) and output y(t) of the plant are related by y(t) = 7 u(t) + w(t) where w(t) is an additive disturbance at the output which is bounded by -0.5 w(t) ≤0.5 for all time t. You want to build a controller so that the output follows a constant reference signal r(t) = where -15 ≤≤ 15. You will consider both open-loop and closed-loop for this problem. a) Sketch the block diagram of the plant. b) Please build an open-loop controller that sets the output to 7, assuming the disturbance is ignored. Please show your controller both as an equation and a block diagram. c) Say that you use the open-loop controller in part b, but now the disturbance w(t) is present. What is the maximum possible magnitude of error in the output for the reference signal? Suppose you have designed a feedback control for the plant where the controller has the form u(t) = K(r(t) − y(t)). Here K is the gain constant of the controller that you will design. d) Please…arrow_forward
- 2. Suppose the Laplace transform of a causal signal x(t) is given by s² +2 X(s) = S³ + 1 Using the lookup tables for standard Laplace transforms and the Laplace transform properties, find the Laplace transforms of the following signals. You do not need to simplify the expressions. a) x₁(t) = e² x(t) + 38(t − 1) − (t − 2)² u(t − 2) b) x2(t) = x(2t - 1) + et u(t − 2)arrow_forwardPlease explain in detail the steps to solve this. Thank youarrow_forward6. Answer the following questions. Take help from ChatGPT to answer these questions (if you need). But write the answers briefly using your own words with no more than two sentences and make sure you check whether ChatGPT is giving you the appropriate answers in our context. a) What is the difference between a regulator and a servo system? Which is harder to build? b) What are the advantages and drawbacks of manual control systems over automatic ones? c) Does transfer exist for the non-linear systems? d) Explain the convolution property of the Laplace transform. e) What are the advantages of using state-space representation?arrow_forward
- 4. Find the differential equation of the following system whose transfer function is given by S+3 H(s) = s3 +3s+2arrow_forwardPreliminary Laboratory (Prelab) Work Complete the following tasks in the space provided below for the circuit shown in Figure 2. 1. Use voltage division to compute the phasor voltages VR and Vc assuming nominal values of R = 1000[2], C = 0.01[u], and a cosinusoidal time-domain source voltage signal given by equation 5 below. Voltage division must be used to receive any credit. (10 points) equation (5) Vs(t) = VRMSCOS(ct + 0) = 5cos(@t + 0) = 5cos(62832t + 0) = 5cos(62832t) [V] =VRMSCOS(2лft + 0) = 5cos[2л(10000)t + 0] = 5cos[2л(10000)t] [V] 2. Compute the phasor current, Is. (3 points) 3. Calculate the complex power, S, active power, P, and reactive power, Q, for the circuit. (4 points) 4. Construct the phasor diagram for the circuit, and show mathematically that the phasor (vector) sum of the phasor voltages VR and Vc is equal to Vs. (3 points) Agilent 33210A (BECC4242) or Vs Keysight 33500B (BECC4261) Function Generators Is R w + VR Vc + + Zc V out =Vc Figure 2: RC circuit connected…arrow_forwardPlease explain in detail. My answer for the first question is 15/2. I am more confused about how to do the graphing part and figure how long it will take to reach its final value. Thank you, I will like this.arrow_forward
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