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1 | (14) |
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1 | (7) |
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8 | (1) |
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Low-Frequency Bulk Acoustic Wave (BAW) Applications |
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9 | (1) |
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Surface Acoustic Waves (SAW) |
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10 | (1) |
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11 | (1) |
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11 | (1) |
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12 | (1) |
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12 | (1) |
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Underwater Acoustics and Seismology |
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13 | (2) |
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Introduction to Vibrations and Waves |
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15 | (24) |
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15 | (14) |
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18 | (1) |
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Exponential Solutions: Phasors |
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18 | (1) |
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19 | (1) |
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20 | (4) |
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Phasors and Linear Superposition of Simple Harmonic Motion |
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24 | (2) |
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26 | (1) |
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Nonperiodic Waves: Fourier Integral |
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27 | (2) |
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29 | (10) |
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32 | (2) |
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Plane Waves in Three Dimensions |
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34 | (1) |
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Dispersion, Group Velocity, and Wave Packets |
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35 | (1) |
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36 | (1) |
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37 | (2) |
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39 | (20) |
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One-Dimensional Theory of Fluids |
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39 | (9) |
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42 | (3) |
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45 | (1) |
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46 | (2) |
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48 | (1) |
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48 | (11) |
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50 | (1) |
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51 | (6) |
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57 | (1) |
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58 | (1) |
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Introduction to the Theory of Elasticity |
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59 | (18) |
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A Short Introduction to Tensors |
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59 | (2) |
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61 | (3) |
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64 | (2) |
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Thermodynamics of Deformation |
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66 | (1) |
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67 | (4) |
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71 | (6) |
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74 | (1) |
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74 | (3) |
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Bulk Acoustic Waves in Solids |
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77 | (14) |
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One-Dimensional Model of Solids |
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78 | (1) |
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Wave Equation in Three Dimensions |
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79 | (5) |
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84 | (7) |
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89 | (1) |
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90 | (1) |
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Finite Beams, Radiation, Diffraction, and Scattering |
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91 | (24) |
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91 | (13) |
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91 | (4) |
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Radiation from a Circular Piston |
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95 | (9) |
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104 | (3) |
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104 | (2) |
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106 | (1) |
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107 | (3) |
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110 | (1) |
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111 | (4) |
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113 | (1) |
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114 | (1) |
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Reflection and Transmission of Ultrasonic Waves at Interfaces |
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115 | (28) |
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115 | (2) |
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Reflection and Transmission at Normal Incidence |
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117 | (7) |
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120 | (2) |
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122 | (2) |
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Oblique Incidence: Fluid-Fluid Interface |
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124 | (4) |
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128 | (1) |
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128 | (10) |
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138 | (5) |
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Solid-Solid Interface: SH Modes |
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139 | (1) |
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Reflection at a Free Solid Boundary |
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140 | (1) |
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141 | (1) |
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141 | (2) |
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143 | (18) |
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143 | (1) |
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Rayleigh Wave Propagation |
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144 | (5) |
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149 | (12) |
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154 | (3) |
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Lateral Waves: Summary of Leaky Rayleigh Waves |
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157 | (1) |
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Stoneley Waves at a Liquid-Solid Interface |
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158 | (1) |
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159 | (1) |
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160 | (1) |
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161 | (14) |
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Potential Method for Lamb Waves |
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162 | (6) |
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168 | (7) |
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Fluid-Loaded Plate: One Side |
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168 | (1) |
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Fluid-Loaded Plate: Same Fluid Both Sides |
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169 | (1) |
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Fluid-Loaded Plate: Different Fluids |
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169 | (1) |
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Fluid-Loaded Solid Cylinder |
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170 | (1) |
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171 | (1) |
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172 | (1) |
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172 | (3) |
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175 | (28) |
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Introduction: Partial Wave Analysis |
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175 | (1) |
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Waveguide Equation: SH Modes |
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176 | (4) |
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180 | (2) |
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182 | (1) |
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183 | (11) |
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184 | (3) |
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187 | (4) |
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191 | (3) |
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194 | (3) |
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197 | (1) |
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197 | (6) |
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198 | (2) |
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200 | (1) |
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Circular Fiber Waveguides |
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200 | (1) |
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201 | (1) |
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201 | (2) |
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203 | (14) |
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203 | (3) |
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205 | (1) |
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Group Velocity and Characteristic Surfaces |
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206 | (4) |
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210 | (7) |
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210 | (1) |
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Piezoelectric Constitutive Relations |
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211 | (3) |
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Piezoelectric Coupling Factor |
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214 | (3) |
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Piezoelectric Transducers, Delay Lines, and Analog Signal Processing |
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217 | (26) |
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Bulk Acoustic Wave Transducers |
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217 | (7) |
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220 | (2) |
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222 | (2) |
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Bulk Acoustic Wave Delay Lines |
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224 | (6) |
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224 | (3) |
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227 | (1) |
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Acoustic Losses in Buffer Rods |
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228 | (1) |
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BAW Buffer Rod Applications |
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229 | (1) |
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Surface Acoustic Wave Transducers |
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230 | (3) |
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230 | (1) |
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Interdigital Transducers (IDT) |
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231 | (1) |
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Simple Model of SAW Transducer |
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231 | (2) |
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233 | (10) |
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233 | (2) |
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235 | (1) |
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236 | (1) |
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236 | (1) |
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Coded Time Domain Structures |
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237 | (1) |
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238 | (1) |
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Multistrip Couplers (MSC) |
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239 | (4) |
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243 | (44) |
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Thickness-Shear Mode (TSM) Resonators |
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244 | (6) |
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249 | (1) |
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TSM Resonator with a Viscoelastic Film |
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250 | (1) |
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250 | (6) |
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251 | (1) |
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Acoustoelectric Interaction |
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252 | (3) |
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Elastic and Viscoelastic Films on SAW Substrates |
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255 | (1) |
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Shear Horizontal (SH) Type Sensors |
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256 | (5) |
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Acoustic Plate Mode (APM) Sensors |
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256 | (3) |
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259 | (1) |
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260 | (1) |
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Slow Transverse Wave (STW) Sensors |
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261 | (1) |
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Flexural Plate Wave (FPW) Sensors |
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261 | (4) |
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Thin Rod Acoustic Sensors |
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265 | (4) |
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Gravimetric Sensitivity Analysis and Comparison |
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269 | (4) |
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Physical Sensing of Liquids |
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273 | (7) |
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273 | (2) |
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275 | (1) |
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276 | (2) |
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278 | (1) |
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279 | (1) |
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280 | (5) |
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280 | (1) |
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Chemical Interfaces for Sensing |
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281 | (2) |
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283 | (1) |
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Gas Chromatography with Acoustic Sensor Detection |
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283 | (2) |
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285 | (2) |
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287 | (32) |
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287 | (6) |
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293 | (6) |
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299 | (5) |
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Contrast Mechanisms and Quantitative Measurements |
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304 | (5) |
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304 | (1) |
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Reflectance Function from Fourier Inversion |
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305 | (1) |
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306 | (2) |
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Subsurface (Interior) Imaging |
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308 | (1) |
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Applications of Acoustic Microscopy |
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309 | (6) |
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309 | (2) |
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311 | (1) |
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312 | (2) |
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314 | (1) |
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315 | (4) |
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Nondestructive Evaluation (NDE) of Materials |
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319 | (32) |
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319 | (4) |
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323 | (5) |
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Principles of Rayleigh Wave NDE |
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324 | (1) |
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Generation of Rayleigh Waves for NDE |
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325 | (1) |
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Critical Angle Reflectivity (CAR) |
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326 | (2) |
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328 | (3) |
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Leaky Lamb Waves: Dispersion Curves |
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328 | (2) |
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NDE Using Leaky Lamb Waves (LLW) |
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330 | (1) |
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331 | (9) |
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331 | (1) |
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Modal Frequency Spacing (MFS) Method |
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332 | (4) |
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Modified Modal Frequency Spacing (MMFS) Method |
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336 | (4) |
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340 | (3) |
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343 | (6) |
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Mode-Cutoff-Based Approaches |
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346 | (3) |
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349 | (2) |
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351 | (18) |
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351 | (3) |
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Time Reversal Mirrors (TRM) |
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354 | (3) |
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357 | (4) |
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361 | (4) |
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Resonant Ultrasound Spectroscopy |
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365 | (4) |
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Cavitation and Sonoluminescence |
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369 | (28) |
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369 | (7) |
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Quasistatic Bubble Description |
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369 | (1) |
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370 | (4) |
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374 | (1) |
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Acoustic Response of Bubbly Liquids |
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375 | (1) |
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Multibubble Sonoluminescence (MBSL) |
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376 | (4) |
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Summary of Experimental Results |
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378 | (2) |
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Single Bubble Sonoluminescence (SBSL) |
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380 | (17) |
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380 | (2) |
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382 | (3) |
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385 | (4) |
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389 | (5) |
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394 | (3) |
| References |
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397 | (12) |
| Appendices |
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409 | (36) |
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409 | (2) |
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B. Acoustic Properties of Materials |
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411 | (26) |
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C. Complementary Laboratory Experiments |
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437 | (8) |
| Index |
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445 | |