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1 Electrostatic Field in Free Space |
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1 | (40) |
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1 | (8) |
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1.2 Electric Field Intensity Vector Due to Given Charge Distributions |
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9 | (11) |
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1.3 Electric Scalar Potential |
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20 | (6) |
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1.4 Differential Relationship Between the Field and Potential in Electrostatics, Gradient |
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26 | (2) |
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28 | (2) |
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1.6 Gauss' Law in Integral Form |
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30 | (1) |
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1.7 Differential Form of Gauss' Law, Divergence |
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31 | (2) |
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1.8 Method of Moments for Numerical Analysis of Charged Metallic Bodies |
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33 | (8) |
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2 Electrostatic Field in Dielectrics |
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41 | (32) |
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2.1 Characterization of Dielectric Materials |
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41 | (5) |
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2.2 Dielectric-Dielectric Boundary Conditions |
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46 | (4) |
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2.3 Poisson's and Laplace's Equations |
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50 | (1) |
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2.4 Finite-Difference Method for Numerical Solution of Laplace's Equation |
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51 | (8) |
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2.5 Evaluation of Capacitances of Capacitors and Transmission Lines |
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59 | (10) |
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2.6 Capacitors with Inhomogeneous Dielectrics |
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69 | (1) |
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2.7 Dielectric Breakdown in Electrostatic Systems |
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70 | (3) |
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3 Steady Electric Currents |
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73 | (13) |
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3.1 Continuity Equation, Conductivity, and Ohm's Law in Local Form |
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73 | (6) |
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3.2 Boundary Conditions for Steady Currents |
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79 | (2) |
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81 | (1) |
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3.4 Resistance and Ohm's Law |
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82 | (4) |
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4 Magnetostatic Field in Free Space |
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86 | (20) |
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4.1 Magnetic Force and Magnetic Flux Density Vector |
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86 | (6) |
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4.2 Magnetic Field Computation Using Biot-Savart Law |
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92 | (6) |
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4.3 Ampere's Law in Integral Form |
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98 | (4) |
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4.4 Differential Form of Ampere's Law, Curl |
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102 | (1) |
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4.5 Magnetic Vector Potential |
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103 | (1) |
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104 | (2) |
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5 Magnetostatic Field in Material Media |
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106 | (12) |
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5.1 Permeability of Magnetic Materials |
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106 | (2) |
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5.2 Boundary Conditions for the Magnetic Field |
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108 | (1) |
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109 | (9) |
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6 Time-Varying Electromagnetic Field |
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118 | (28) |
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6.1 Faraday's Law of Electromagnetic Induction |
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118 | (7) |
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125 | (2) |
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127 | (1) |
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128 | (2) |
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6.5 Maxwell's Equations for the Time-Varying Electromagnetic Field |
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130 | (2) |
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6.6 Boundary Conditions for the Time-Varying Electromagnetic Field |
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132 | (4) |
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6.7 Time-Harmonic Electromagnetics |
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136 | (1) |
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6.8 Complex Representatives of Time-Harmonic Field and Circuit Quantities |
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137 | (7) |
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6.9 Instantaneous and Complex Poynting Vector |
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144 | (2) |
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7 Uniform Plane Electromagnetic Waves |
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146 | (27) |
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7.1 Time-Harmonic Uniform Plane Waves and Complex-Domain Analysis |
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146 | (5) |
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7.2 Arbitrarily Directed Uniform Plane Waves |
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151 | (2) |
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7.3 Theory of Time-Harmonic Waves in Lossy Media |
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153 | (5) |
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7.4 Wave Propagation in Good Dielectrics |
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158 | (1) |
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7.5 Wave Propagation in Good Conductors |
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158 | (1) |
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159 | (2) |
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7.7 Wave Propagation in Plasmas |
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161 | (2) |
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7.8 Polarization of Electromagnetic Waves |
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163 | (10) |
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8 Reflection and Transmission of Plane Waves |
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173 | (31) |
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8.1 Normal Incidence on a Perfectly Conducting Plane |
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173 | (7) |
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8.2 Normal Incidence on a Penetrable Planar Interface |
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180 | (9) |
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8.3 Oblique Incidence on a Perfect Conductor |
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189 | (3) |
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8.4 Oblique Incidence on a Dielectric Boundary |
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192 | (10) |
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8.5 Wave Propagation in Multilayer Media |
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202 | (2) |
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9 Field Analysis of Transmission Lines |
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204 | (18) |
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9.1 Field Analysis of Lossless Transmission Lines |
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204 | (3) |
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9.2 Transmission Lines with Small Losses |
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207 | (5) |
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9.3 Evaluation of Primary and Secondary Circuit Parameters of Transmission Lines |
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212 | (1) |
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9.4 Transmission Lines with Inhomogeneous Dielectrics |
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213 | (1) |
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9.5 Multilayer Printed Circuit Board |
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213 | (9) |
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10 Circuit Analysis of Transmission Lines |
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222 | (69) |
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10.1 Telegrapher's Equations and Their Solution |
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222 | (3) |
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10.2 Reflection Coefficient for Transmission Lines |
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225 | (7) |
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10.3 Transmission-Line Impedance |
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232 | (1) |
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10.4 Complete Solution for Line Voltage and Current |
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233 | (2) |
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10.5 Short-Circuited, Open-Circuited, and Matched Transmission Lines |
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235 | (2) |
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10.6 Impedance-Matching Using Short- and Open-Circuited Stubs |
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237 | (4) |
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10.7 The Smith Chart - Construction and Basic Properties |
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241 | (6) |
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10.8 Circuit Analysis of Transmission Lines Using the Smith Chart |
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247 | (16) |
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10.9 Transient Analysis of Transmission Lines |
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263 | (4) |
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10.10 Step Response of Transmission Lines with Purely Resistive Terminations |
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267 | (5) |
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10.11 Analysis of Transmission Lines with Pulse Excitations |
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272 | (7) |
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279 | (7) |
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10.13 Transient Response for Reactive Terminations |
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286 | (5) |
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11 Waveguides and Cavity Resonators |
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291 | (30) |
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11.1 Analysis of Rectangular Waveguides Based on Multiple Reflections of Plane Waves |
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291 | (8) |
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11.2 Arbitrary TE and TM Modes in a Rectangular Waveguide |
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299 | (7) |
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11.3 Wave Impedances of TE and TM Waves |
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306 | (1) |
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11.4 Power Flow Along a Waveguide |
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307 | (3) |
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11.5 Waveguides With Small Losses |
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310 | (2) |
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11.6 Waveguide Dispersion and Group Velocity |
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312 | (2) |
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11.7 Rectangular Cavity Resonators |
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314 | (2) |
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11.8 Electromagnetic Energy Stored in a Cavity Resonator |
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316 | (3) |
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11.9 Quality Factor of Rectangular Cavities with Small Losses |
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319 | (2) |
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12 Antennas and Wireless Communication Systems |
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321 | |
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12.1 Electromagnetic Field due to a Hertzian Dipole |
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321 | (2) |
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323 | (3) |
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12.3 Steps in Far Field Evaluation of an Arbitrary Antenna |
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326 | (2) |
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12.4 Radiation and Ohmic Resistances of an Antenna |
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328 | (3) |
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12.5 Antenna Radiation Patterns, Directivity, and Gain |
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331 | (6) |
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12.6 Wire Dipole Antennas of Arbitrary Lengths |
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337 | (7) |
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12.7 Theory of Receiving Antennas. Wireless Links with Nonaligned Wire Antennas |
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344 | (6) |
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12.8 Friis Transmission Formula for a Wireless Link |
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350 | (2) |
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352 | |
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Appendix 1 Quantities, Symbols, Units, and Constants |
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1 | (3) |
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Appendix 2 Mathematical Facts and Identities |
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4 | (4) |
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A2.1 Trigonometric Identities |
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4 | (1) |
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A2.2 Exponential, Logarithmic, and Hyperbolic Identities |
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4 | (1) |
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A2.3 Solution of Quadratic Equation |
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5 | (1) |
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A2.4 Approximations for Small Quantities |
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5 | (1) |
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5 | (1) |
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5 | (1) |
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A2.7 Vector Algebraic Identities |
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5 | (1) |
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A2.8 Vector Calculus Identities |
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6 | (1) |
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A2.9 Gradient, Divergence, Curl, and Laplacian in Orthogonal Coordinate Systems |
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6 | (1) |
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A2.10 Vector Algebra and Calculus Index |
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7 | (1) |
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Appendix 3 List of MATLAB Exercises |
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8 | (14) |
Bibliography |
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22 | (3) |
Index |
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25 | |