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Using Computer Tools for Electric Circuits Book and 3.5 Disk 5th edition [Raamat]

  • Formaat: Book, 153 pages, illustrations
  • Sari: World Student S.
  • Ilmumisaeg: 18-Sep-1995
  • Kirjastus: Addison Wesley
  • ISBN-10: 0201847078
  • ISBN-13: 9780201847079
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Using Computer Tools for Electric Circuits Book and 3.5 Disk 5th edition
  • Formaat: Book, 153 pages, illustrations
  • Sari: World Student S.
  • Ilmumisaeg: 18-Sep-1995
  • Kirjastus: Addison Wesley
  • ISBN-10: 0201847078
  • ISBN-13: 9780201847079
Teised raamatud teemal:
Part of the Addison-Wesley world student series, this volume accompanies "Electric Circuits" and provides guidelines for employing a variety of computer tools.
Circuit Simulation
1(32)
A dc circuit with a dependent source
6(1)
Finding the Thevenin equivalent
7(2)
Stepping the values of two dc sources
9(2)
A two-stage op amp amplifier circuit
11(2)
The natural response of a series RLC circuit as R varies
13(1)
The frequency response of a parallel RLC circuit as C varies
14(19)
Schematic Capture and Circuit Analysis
33(24)
A dc circuit with five mesh-current equations
35(2)
Creating a library model of an op amp
37(2)
The effect of variable resistor values on the gain of an op amp inverting amplifier
39(6)
The time response of a two-stage cascade of integrating op amp amplifiers
45(1)
The frequency response of a series RLC circuit as C varies
45(5)
Response of RC circuit to a pulsed source, using Fourier series analysis
50(7)
Matrix Equation Solvers
57(20)
A dc circuit with five mesh-current equation
59(2)
A general solution to the circuit in Example 3.1
61(3)
The time response of an inductor to a current pulse
64(1)
The effect of resistor value on the time response of inductor current in a parallel RLC circuit
65(3)
Partial fraction expansion of a transfer function
68(2)
Plotting the frequency response of a second-order low-pass filter as the damping ratio changes
70(2)
Fourier series analysis of a sawtooth wave
72(5)
Spreadsheets
77(12)
Equivalent resistance of a complex resistor network
79(1)
Maximizing the power absorbed by a load as the load resistance varies
80(2)
Equivalent impedance of a circuit with varying dependent-source gain
82(1)
Frequency response plot of a second-order circuit
83(2)
Constructing a sawtooth wave from Fourier series terms
85(4)
Symbolic Equation Solvers
89(14)
A dc circuit with five mesh-current equations
91(2)
Time response of an inductor to a current pulse
93(4)
Partial fraction expansion of a transfer function
97(2)
Frequency response plot of a second-order circuit
99(1)
Constructing a sawtooth wave from Fourier series terms
100(3)
Problems 103