Foreword |
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ix | |
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1 | (10) |
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4 | (2) |
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Laser Processing and Analysis of Liquid Systems That Are Not Covered in This Book |
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6 | (2) |
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Inventions in Liquids-Assisted Laser Processing |
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8 | (3) |
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11 | (58) |
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11 | (1) |
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Principles of Liquids-Assisted Laser Cleaning |
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12 | (5) |
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Particles removal by frontside laser irradiation (steam laser cleaning) |
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12 | (1) |
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Particles removal by backside laser irradiation |
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12 | (1) |
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Removal of particles by laser-generated acoustic waves in liquid |
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13 | (1) |
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Liquid-assisted laser shock cleaning |
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13 | (1) |
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Removal of particles by bubble collapse induced flow |
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13 | (1) |
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Removal of surface layers by laser ablation/spallation in liquid |
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14 | (1) |
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Removal of frozen gas and liquid layers from optical surfaces |
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15 | (1) |
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Laser-generated shock wave enhanced scale removal |
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16 | (1) |
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Removal of organic contaminants by water decomposition products |
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16 | (1) |
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Cleaning of surfaces through contaminants dissolution in laser-generated supercritical solution |
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16 | (1) |
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Dehydroxylation of a silica glass surface |
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16 | (1) |
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Ice-assisted laser particles removal |
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17 | (1) |
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Particles on Solid Surfaces |
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17 | (13) |
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Adhesion phenomena and adhesion forces |
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17 | (8) |
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Adhesion force theories considering the deformation of the particle and the substrate |
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25 | (5) |
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Experimental Techniques in Laser Wet/Steam Cleaning Research |
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30 | (7) |
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Preparation of particles covered surfaces |
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30 | (1) |
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Application of liquid and monitoring the liquid film thickness and condition |
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31 | (2) |
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Complete cleaning systems |
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33 | (1) |
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Measuring and monitoring techniques in steam laser cleaning |
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33 | (4) |
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Physics and Phenomenology of Liquids-Assisted Laser Removal of Particles from Surfaces |
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37 | (32) |
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Detailed description of the standard steam cleaning process |
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37 | (1) |
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37 | (1) |
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Acceleration and inertial effects |
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37 | (2) |
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Heating and phase change (absorbing substrate, non-absorbing liquid) |
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39 | (4) |
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43 | (1) |
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Particles removal threshold and efficiency in steam laser cleaning |
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44 | (1) |
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Effect of capillary condensed water in `dry' laser cleaning |
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45 | (24) |
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69 | (74) |
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69 | (1) |
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Residual Stresses and Their Measurement |
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70 | (7) |
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77 | (63) |
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77 | (1) |
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77 | (4) |
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81 | (1) |
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Shock propagation and wave phenomena |
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82 | (2) |
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Shock-induced changes in materials |
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84 | (4) |
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Mathematical models of laser shock peening |
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88 | (15) |
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Applications of laser peening |
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103 | (37) |
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Laser Shock Forming and Cladding |
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140 | (1) |
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140 | (1) |
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140 | (1) |
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Densification of Porous Materials |
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141 | (2) |
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143 | (66) |
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143 | (28) |
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143 | (2) |
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145 | (22) |
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High-power laser underwater and water-assisted cutting |
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167 | (4) |
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Liquid-Jet-Guided Laser Beam Machining |
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171 | (6) |
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Applications and performance |
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174 | (1) |
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Molten salt-jet-guided laser beam |
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174 | (3) |
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Water at Backside of an Opaque Material |
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177 | (1) |
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Backside Machining of Transparent Materials |
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177 | (25) |
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177 | (4) |
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Technologies, phenomenology, and etching mechanisms |
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181 | (21) |
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Machining of Liquid-Containing Materials |
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202 | (1) |
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202 | (1) |
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202 | (1) |
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Laser Cleaving of Crystals in Water and of Water-Containing Crystals |
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203 | (6) |
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Breaking of single-crystal silicon wafers |
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203 | (1) |
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Cleaving of protein crystals |
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203 | (6) |
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Generation and Modification of Particles |
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209 | (52) |
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209 | (1) |
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Optical Properties of Small Particles |
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210 | (3) |
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Experimental Techniques of Particles Generation |
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213 | (1) |
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214 | (26) |
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214 | (1) |
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Mechanisms determining the particles size |
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214 | (3) |
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Modification of suspending particles by laser irradiation |
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217 | (23) |
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Inorganic Compound Particles |
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240 | (10) |
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240 | (10) |
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Silicon and Amorphous Carbon Particles |
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250 | (1) |
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Diamond and DLC Particles and Films |
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250 | (8) |
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258 | (3) |
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Surface Modification, Deposition of Thin Films, Welding, and Cladding |
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261 | (20) |
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261 | (1) |
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Modification of surfaces of inorganic materials |
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261 | (1) |
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Modification surfaces of organic materials |
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262 | (1) |
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Deposition and Transfer of Thin Films |
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262 | (15) |
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Laser ablation deposition in water vapour |
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262 | (4) |
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Laser ablation deposition using a liquid target |
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266 | (6) |
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Laser ablation deposition using frozen target |
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272 | (1) |
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Forward transfer from solution (LIFT, MDW) |
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273 | (4) |
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Welding and Cladding Under Water |
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277 | (4) |
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Physics and Chemistry of Laser--Liquid--Solid Interactions |
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281 | (34) |
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Laser Beams and Their Propagation |
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281 | (7) |
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Properties of Gaussian beams |
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282 | (3) |
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285 | (2) |
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Propagation of Gaussian beams |
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287 | (1) |
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288 | (7) |
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288 | (1) |
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Vaporization from free liquid surfaces |
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289 | (1) |
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Nucleation of vapour bubbles |
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290 | (2) |
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292 | (3) |
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Optical Breakdown of Liquids and Plasma |
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295 | (7) |
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Photoionization of a dielectric liquid |
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295 | (1) |
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Cascade ionization (avalanche ionization) |
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296 | (1) |
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Photoionization absorption coefficients of atoms |
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297 | (1) |
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297 | (1) |
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Diffusion loss of electrons from the plasma |
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297 | (1) |
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298 | (1) |
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Thermal conductivity of the plasma |
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298 | (1) |
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Rate equation for free electrons |
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298 | (1) |
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Internal energy density of electrons and particles in plasma |
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299 | (1) |
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Energy balance equation for electrons |
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299 | (1) |
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Heat flux conducted from plasma to adjacent matter |
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300 | (1) |
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Dependence of optical breakdown threshold on laser pulse length |
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300 | (1) |
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Factors affecting the breakdown threshold in liquids |
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300 | (1) |
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Temperatures and pressures at laser breakdown and ablation in water |
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301 | (1) |
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Shock Waves in Liquids and Solids |
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302 | (4) |
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Laser-Induced Reactions of Carbon with Organic Solvents and Water |
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306 | (2) |
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Reactions of carbon with organic solvents |
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306 | (2) |
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Reactions of carbon with water |
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308 | (1) |
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Behaviour of Oxides in High Temperature Water and Water Vapour |
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308 | (7) |
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Liquids and Their Properties |
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315 | (72) |
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315 | (17) |
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Properties of 100 Selected Liquids |
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332 | (47) |
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379 | (8) |
References |
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387 | (36) |
Glossary |
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423 | (18) |
Subject index |
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441 | (10) |
Liquids |
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451 | |