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Shock Waves in Condensed Matter

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Cover of 'Shock Waves in Condensed Matter'

Table of Contents

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    Book Overview
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    Chapter 1 Shock Wave Research: Yesterday, Today and Tomorrow
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    Chapter 2 Recent Developments in Static High Pressure Research
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    Chapter 3 Computer Simulation of Nonequilibrium Processes
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    Chapter 4 The Role of Shock Wave Compression in Materials Science
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    Chapter 5 Theory of the High Temperature Shocked Metallic State
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    Chapter 6 Shock Hugoniot Equation of State - Electron Band Theory Approach
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    Chapter 7 The Overlap of Electron Core States for Very High Compressions
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    Chapter 8 Theory of Molecular Dissociation in Shocked Nitrogen and Oxygen
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    Chapter 9 High-Pressure Ion-Thermal Properties of Metals from AB Initio Interatomic Potentials
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    Chapter 10 Positron Annihilation and Pressure-Induced Electronic s-d Transition
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    Chapter 11 Short Range Interactions in Diatomic Molecules
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    Chapter 12 A New Fluid Integral Equation Application to the Equation of State of Xenon
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    Chapter 13 Static Compression of Gold and Copper and Calibration of the Ruby Pressure Scale to Pressures to 1.8 Megabars (Static.RNO)
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    Chapter 14 The Equation of State of Dense Argon; A Comparison of Shock and Static Studies
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    Chapter 15 Shock Wave Overtake Measurements on Cesium Iodide
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    Chapter 16 High Pressure Strength of Shocked Aluminum
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    Chapter 17 Hugoniot Measurements in Aluminum to 420 GPa Using the LLNL Two-Stage Light-Gas Gun
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    Chapter 18 Using the Hugoniot to Approximate the Release Adiabat
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    Chapter 19 Shock Hugoniot Measurement on Tungsten
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    Chapter 20 Simplified Equation of State P = P(ρ,E) and P = P(ρ,T) for Condensed Matter
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    Chapter 21 A New Method for the Evaluation of the Gruneisen Parameter from Lagrangian Gage Records
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    Chapter 22 Analysis of Transitions Between Ferroelectric and Antiferroelectric States Under Conditions of Uniaxial Strain
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    Chapter 23 Sandia Shock Compression Database
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    Chapter 24 Raman Spectroscopy of Shocked Water
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    Chapter 25 Molecular Emission Spectra from Shock-Decomposed Benzene
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    Chapter 26 Coherent Anti-Stokes Raman Scattering in Benzene and Nitromethane Shock-Compressed to 11 GPA
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    Chapter 27 Effects of Temperature on the UV-Visible Spectrum of Dynamically Compressed CS 2
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    Chapter 28 Spectroscopic Studies of Carbon Disulfide at High Pressure
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    Chapter 29 Absorption Spectra of Shocked Liquid CS 2
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    Chapter 30 Time-Resolved Infrared Spectral Photography Studies of Shock-Induced Chemistry in CS 2
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    Chapter 31 Spectral Shifts in the Fluorescence of Anthracene and Lifetime Changes in Crystal Violet Under Laser Driven Shock Compression: Probes of Pressure and Viscosity
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    Chapter 32 Temperature Measurements of Shocked Water Using a Fluorescence Probe
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    Chapter 33 Reflectivity Measurements on Shock-Unloading Solids
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    Chapter 34 Shock Induced Radiation from Minerals
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    Chapter 35 Molecular Dynamics Studies of Plastic Flow at High Strain Rates
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    Chapter 36 Wave Propagation and Long-Time Behavior on the Driven Sine-Gordon Chain
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    Chapter 37 Simulation of Lattice Damage Due to Dynamic Loading
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    Chapter 38 Dislocation Kinetics Behind Shear Shocks
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    Chapter 39 Temperature Dependence of the Precursor Amplitude in <111> Lithium Fluoride
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    Chapter 40 Dislocation Mobility in High Purity LiF from 100°K to 300°K
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    Chapter 41 The Dynamic Response of Porous Calcium Carbonate Minerals
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    Chapter 42 Computational Models for Nucleation, Growth, and Coalescence of Adiabatic Shear Bands
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    Chapter 43 Modeling of Instability at the Tip of a Shear Band
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    Chapter 44 A Micromechanical Model of Porous-Brittle Solids
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    Chapter 45 A Multiphase Mixture Model for the Shock Induced Consolidation of Metal Powders
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    Chapter 46 Microlevel Numerical Modeling of the Shock Wave Induced Consolidation of Metal Powders
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    Chapter 47 Constitutive Relation for 6061T6 Aluminum under Shock Loading Conditions
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    Chapter 48 Shock Viscosity and the Calculation of Steady Shock Wave Profiles
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    Chapter 49 Strain Rate Dependence in Steady, Plastic Shock Waves
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    Chapter 50 Shock Response of SiC/2014-T4 Aluminum Composite
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    Chapter 51 Threshold Stress Measurements in Shock-Deformed Copper
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    Chapter 52 Non-Linear Propagation of Elasto-Plastic Waves in Rods
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    Chapter 53 Use of the Bodner-Partom Viscoplastic Constitutive Model to Describe HY100 Steel
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    Chapter 54 Determination of Dynamic Mechanical Properties from Explosively Driven Rings
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    Chapter 55 Computer Simulation and Analysis of the Expanding Ring Test
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    Chapter 56 Rapid Cavitation Induced by the Reflection of Shock Waves
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    Chapter 57 Tension-Recompression Response of Shock Loaded Polycarbonate α
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    Chapter 58 The Stress and Strain-Rate Dependence of Spall Strength in Two Aluminum Alloys
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    Chapter 59 Spall Zones in Polycrystalline Ceramics
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    Chapter 60 Shock Fracture and Recompaction of Ceramics
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    Chapter 61 Measurements of Compressive and Tensile Wave in a Shock Loaded Pyrex Glass
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    Chapter 62 An Application of Geometric Statistics to Dynamic Fragmentation
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    Chapter 63 Laser Interferometer Measurements of Refractive Index in Shock-Compressed Materials
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    Chapter 64 Experimental Technique for Measuring the Isentrope of Hydrogen to Several Megabars
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    Chapter 65 Numerical Studies of the Dynamic Isentropic Loading of Solid Molecular Hydrogen
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    Chapter 66 Shock Temperature Measurements in Ammonia
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    Chapter 67 Electrical Conductivity Measurements in Shock Compressed Liquid Nitrogen
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    Chapter 68 Hugoniot and Electric Resistivity Measurements on Amorphous Se
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    Chapter 69 Ferroelectric Properties and Shock Response of a Poled PVF 2 Polymer and of VF 2 /C 2 F 3 H Copolymers
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    Chapter 70 Studies of the Bauer Piezoelectric Polymer Gauge (PVF 2 ) Under Impact Loading
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    Chapter 71 Polyvinylidene Fluoride Transducer for Dynamic Pressure Measurements
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    Chapter 72 Piezoresistance Response of Manganin Foils: Experiments and Analysis
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    Chapter 73 Piezoresistance Response of Different Batches of Ytterbium Foils
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    Chapter 74 Piezoresistant Response of Vapor-Deposited Ytterbium
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    Chapter 75 On the Lateral Stress Measurement in Shock Loaded Targets with Transverse Piezoresistance Gauges
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    Chapter 76 Generation of Ultra-High Pressure Shocks in 0.26 μm Wavelength Laser Experiments
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    Chapter 77 Laser-Driven Shock Waves in Plexiglass
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    Chapter 78 Velocity Measurements of Laser-Driven Flyers Backed by High Impedance Windows
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    Chapter 79 Recent Developments in Microshell®-Tipped Optical Fibers as High-Pressure Shock Detectors
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    Chapter 80 Application of PVF2 Active Gage as an Initiation Diagnostic
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    Chapter 81 Analysis of Electrical Noise from Shock Loading a Steel Flatpack Soil Stress Gage
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    Chapter 82 Description of a New 63-M M Diameter Gas Gun Facility
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    Chapter 83 Application of Shock Wave Data to Earth and Planetary Science
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    Chapter 84 High-Pressure Release-Wave Measurements and Phase Transformation in CaCO 3
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    Chapter 85 Analysis of Shock Wave Structure in Single-Crystal Olivine Using Visar
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    Chapter 86 Shock Loading and Release Behavior of X-Cut Quartz
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    Chapter 87 Thermal History of Shock-Compressed Solids
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    Chapter 88 Seismic Verification of Underground Explosions
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    Chapter 89 Comparative Response of Alluvium to Hopkinson Bar and Gas Gun Loading
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    Chapter 90 Determining a Soil Model from Wave Propagation Data
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    Chapter 91 Measurements and Calculations of Shock Propagation in Dry Desert Alluvium
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    Chapter 92 Ground Motion Measurements for the Queso Nuclear Event
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    Chapter 93 Experimental Techniques for Measuring Mass Ejection from Shock-Loaded Metallic Sample
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    Chapter 94 Mass Ejection from the Free Surface of Shock-Loaded Metallic Samples
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    Chapter 95 Heterogeneous Response of Aluminum and Lithium Niobate to Shock Waves
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    Chapter 96 Asymmetric Supersonic Collisions
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    Chapter 97 An Investigation of the Shock Structures and Conditions for Jetting During Liquid Impact
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    Chapter 98 Computer Simulation of the Effect of Free Surface Reflection on Shock Wave Propagation in Water
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    Chapter 99 The Calculation of Dimensions of the Steady Mach Wave
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    Chapter 100 Spherical Shocks in Solids
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    Chapter 101 The Attenuation of Shock Waves in PU Foam and its Application
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    Chapter 102 Chemical Synthesis under High Pressure Shock Loading
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    Chapter 103 Dynamic Consolidation of Aluminum Powders
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    Chapter 104 Properties of Niobium Recovered from Megabar Dynamic Pressures
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    Chapter 105 Dynamic Compaction of a Monosized Spherical Tungsten Powder
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    Chapter 106 Shock Consolidation of In-100 Nickel-Base Superalloy Powder
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    Chapter 107 Mach Stem Characterization in MBAR Designs Using RSR Powder
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    Chapter 108 Shock Synthesis of Nickel Aluminides
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    Chapter 109 Shock-Wave Synthesis of Titanium Aluminides
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    Chapter 110 Tem of Nickel Aluminides Produced by Shock Compaction
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    Chapter 111 Synthesis of Nickel-Aluminum Alloys by Shock Compression of Composite Particles
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    Chapter 112 Optical Measurements of Shock-Induced Chemical Reactions in Mixed Aluminum-Nickel Powder
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    Chapter 113 Shock Waves Profiles in Powder Compacts of α Al 2 0 3
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    Chapter 114 Dynamic Compaction of SiC Powder
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    Chapter 115 Shock-Recovery Experiments on PZT 95/5
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    Chapter 116 Catalytic Activity of Shock Modified ZnO for CO Oxidation and Methanol Synthesis
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    Chapter 117 X-Ray Diffraction Studies of Shock-Synthesized Zinc Ferrite
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    Chapter 118 Analytical Electron Microscopy Study of Shock Synthesized Zinc Ferrite
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    Chapter 119 Mossbauer Study of Shock-Synthesized Zinc Ferrite
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    Chapter 120 Magnetic Properties of Shock-Synthesized and Furnace-Reacted Zinc Ferrite
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    Chapter 121 The Effect of Shock Compression on Graphite-Like Boron Nitride
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    Chapter 122 Effect of Explosion on the Catalytic Properties of Stochiometric Inorganic Substances
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    Chapter 123 Shock-Induced Temperature Distributions in Powder Compact Recovery Fixtures
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    Chapter 124 Numerical Simulation of a Sample Recovery Fixture for High Velocity Impact
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    Chapter 125 Rate-Determining Steps for Ignition of Shocked Nitromethane
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    Chapter 126 Molecular Orbital Calculation of Indices of Impact and Shock Induced Reactivity in Trinitroaromatic Molecules
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    Chapter 127 Investigation of Shear Induced Reaction in Composition B3
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    Chapter 128 Dynamic and Static Compressibility of Porous Granular Hexanitrostilbene
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    Chapter 129 Raman Scattering Temperature Measurement behind a Shock Wave a Study of Solid Explosives
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    Chapter 130 Equilibrium Shock and Release Properties of Post Detonation Mixtures of PBX-9404 LX-14, RDX, and TNT
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    Chapter 131 Impact Experiments on Thin Layers of Polymers and Intermediate Explosives
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    Chapter 132 Subthreshold Generation of Free Radicals in Shock-Loaded Organic Solids
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    Chapter 133 Pop Plot and Arrhenius Parameters for <110> Pentaerythritol Tetranitrate Single Crystals
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    Chapter 134 Chemical Reaction of Energetic Materials during High Acceleration
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    Chapter 135 A Method of Parameterising Hydrocode Kinetic Models for Non-Ideal Explosives Based on the Variation of Detonation Velocity with Charge Diameter
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    Chapter 136 High Current Electrical Conduction of Pressed Condensed Detonating Explosives
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    Chapter 137 Calculations of Liquid Plane-Wave Generators
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Title
Shock Waves in Condensed Matter
Published by
Springer US, December 2012
DOI 10.1007/978-1-4613-2207-8
ISBNs
978-1-4612-9296-8, 978-1-4613-2207-8
Editors

Gupta, Y. M.

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The data shown below were compiled from readership statistics for 18 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
United States 1 6%
Unknown 17 94%

Demographic breakdown

Readers by professional status Count As %
Researcher 5 28%
Student > Ph. D. Student 3 17%
Professor > Associate Professor 2 11%
Student > Bachelor 2 11%
Student > Master 2 11%
Other 2 11%
Unknown 2 11%
Readers by discipline Count As %
Physics and Astronomy 6 33%
Engineering 6 33%
Earth and Planetary Sciences 2 11%
Materials Science 1 6%
Unknown 3 17%