Preface |
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xi | |
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An Introduction to Electronic Signals |
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1 | (14) |
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The World of Electronic Signals |
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2 | (1) |
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An Introduction to Current and Voltage |
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2 | (3) |
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The Electronic Signal as a Function of Time |
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5 | (1) |
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Creating and Transmitting Electronic Signals |
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6 | (1) |
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Measuring Electronic Signals |
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7 | (1) |
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8 | (2) |
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Software Utilized in Circuit Analysis |
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10 | (5) |
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Essentials of DC Circuit Analysis |
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15 | (50) |
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16 | (1) |
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16 | (1) |
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17 | (1) |
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The Resistor and Ohm's Law |
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18 | (2) |
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Kirchhoff's Voltage Law (KVL) |
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20 | (4) |
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24 | (5) |
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29 | (2) |
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Measuring Voltage with Respect to Circuit Ground |
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31 | (2) |
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The Single Line Circuit Diagram |
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33 | (2) |
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35 | (1) |
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Kirchhoff's Current Law (KCL) |
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35 | (1) |
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Total Equivalent Resistance and Conductance |
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36 | (3) |
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Analysis of a Parallel DC Circuit |
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39 | (3) |
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42 | (23) |
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Analysis of DC Combination Circuits |
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65 | (44) |
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The Combination DC Circuit |
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66 | (1) |
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Determining Total Equivalent Resistance |
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66 | (1) |
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Ohm's Law and the Combination DC Circuit |
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66 | (1) |
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Kirchhoff's Laws and the Combination DC Circuit |
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66 | (1) |
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Current and Voltage Division in a Combination DC Circuit |
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67 | (1) |
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Voltage with Respect to Circuit Ground |
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67 | (1) |
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Voltage Difference between Two Points |
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67 | (1) |
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Analysis of Combination DC Circuits |
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67 | (14) |
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The DC Voltage Divider Circuit |
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81 | (2) |
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The DC Voltage Divider Circuit with Load |
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83 | (1) |
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Analysis of Combination DC Circuits with Opens and Shorts |
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84 | (8) |
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Analysis of the Bridge Circuit |
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92 | (17) |
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The Sine Wave and Linear Response |
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109 | (48) |
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The Sine Wave as a Function of Time |
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110 | (1) |
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111 | (8) |
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119 | (2) |
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Adding Sine Waves in the Time Domain |
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121 | (1) |
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The Sine Wave in the Phasor Domain |
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122 | (1) |
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123 | (4) |
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The Phasor in Rectangular Form |
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127 | (3) |
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Plotting Sine Waves with MATLAB |
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130 | (1) |
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The Resistor in the Time Domain |
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131 | (4) |
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The Resistor in the Phasor Domain |
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135 | (3) |
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The Inductor in the Time Domain |
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138 | (4) |
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The Inductor in the Phasor Domain |
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142 | (3) |
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The Capacitor in the Time Domain |
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145 | (5) |
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The Capacitor in the Phasor Domain |
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150 | (7) |
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Essentials of AC Circuit Analysis |
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157 | (36) |
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The Series Resistive Circuit in the Phasor Domain |
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158 | (3) |
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The Series R-L Circuit in the Phasor Domain |
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161 | (3) |
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The Series R-C Circuit in the Phasor Domain |
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164 | (4) |
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The Series R-L-C Circuit in the Phasor Domain |
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168 | (2) |
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The Series R-L-C Circuit in the Time Domain |
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170 | (2) |
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The Parallel R-L-C Circuit in the Phasor Domain |
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172 | (4) |
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The Combination R-L-C Circuit in the Phasor Domain |
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176 | (17) |
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Signal Processing Circuit Analysis and Design |
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193 | (58) |
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An Introduction to Signal Processing Concepts |
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194 | (1) |
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Voltage Gain and the Decibel |
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195 | (2) |
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197 | (2) |
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Concepts of Frequency Response |
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199 | (1) |
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200 | (1) |
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201 | (5) |
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Computer Analysis of the R-C Low-Pass Filter |
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206 | (6) |
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212 | (4) |
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Computer Analysis of the R-C High-Pass Filter |
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216 | (2) |
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218 | (4) |
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222 | (3) |
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The Series Resonant Band-Pass Filter |
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225 | (6) |
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Computer Analysis of the Series Resonant Band-Pass Filter |
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231 | (3) |
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A Three-Way Crossover Network |
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234 | (2) |
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The Parallel Resonant Band-Pass Filter |
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236 | (15) |
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Transient Circuit Analysis |
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251 | (50) |
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Steady-State and Transient Response |
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252 | (1) |
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252 | (1) |
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The Capacitor Storing Energy |
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253 | (8) |
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The Capacitor Releasing Energy |
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261 | (8) |
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The Capacitor Storing and Releasing Energy |
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269 | (3) |
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Total Equivalent Capacitance |
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272 | (1) |
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The Inductor Storing Energy |
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273 | (5) |
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The Inductor Releasing Energy |
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278 | (4) |
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Total Equivalent Inductance |
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282 | (1) |
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An Introduction to the Rectangular Pulse Waveform |
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283 | (3) |
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The Integrator and Differentiator |
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286 | (2) |
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Computer Analysis of the R-C Response to a Pulse Waveform |
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288 | (13) |
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Network Analysis and Selected Theorems |
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301 | (50) |
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302 | (9) |
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311 | (3) |
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The Superposition Theorem |
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314 | (8) |
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322 | (10) |
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332 | (6) |
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Alternate Methods of Solving Networks |
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338 | (13) |
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Power Considerations in Electronic Circuits |
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351 | (52) |
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The General Power Equation |
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352 | (2) |
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354 | (2) |
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356 | (6) |
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362 | (6) |
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Power in Complex AC Circuits |
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368 | (2) |
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Power Factor and the Power Triangle |
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370 | (2) |
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372 | (2) |
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Voltage and Current Transformation |
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374 | (2) |
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376 | (2) |
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Maximum AC Signal Power Transfer |
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378 | (2) |
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Transformer Impedance Matching |
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380 | (4) |
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Maximum Power and Thevenin's Theorem |
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384 | (3) |
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387 | (5) |
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392 | (11) |
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Analysis of Nonlinear Analog Circuits |
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403 | (44) |
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404 | (1) |
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404 | (2) |
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The Diode Half-Wave Rectifier |
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406 | (8) |
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414 | (5) |
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419 | (5) |
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424 | (1) |
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Analysis of a Fixed Bias Network |
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425 | (2) |
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Analysis of a Voltage Divider Bias Network |
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427 | (3) |
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Design of a Fixed Bias Network |
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430 | (2) |
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Analysis of a Transistor Logic Circuit |
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432 | (2) |
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Analysis of Circuits That Contain ``Black Box'' Devices |
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434 | (13) |
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An Introduction to Nonsinusoidal Signals |
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447 | (22) |
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An Introduction to Fourier Series |
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448 | (1) |
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448 | (4) |
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The Frequency Spectrum Diagram |
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452 | (1) |
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453 | (4) |
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457 | (2) |
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Circuit Analysis Using Fourier Series |
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459 | (10) |
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469 | (26) |
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Complete Solutions to Practice Exercises |
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469 | (12) |
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Answers to Odd-Numbered Essential Learning Exercises |
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481 | (1) |
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Answers to Selected Challenging Learning Exercises |
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482 | (13) |
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495 | (8) |
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495 | (5) |
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Mathematical Derivation of the Maximum Power Transfer Theorem |
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500 | (3) |
Index |
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503 | |