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Shock Wave Formation in the Collapse of a Vapor Nanobubble
F. Magaletti
, L. Marino
, C. M. Casciola
Research output
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peer-review
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Keyphrases
Vapor Nanobubbles
100%
Shock Wave Formation
100%
Vapor Bubble
66%
Supercritical Condition
66%
Shock
33%
Oscillation
33%
Shock Waves
33%
Numerical Experiments
33%
Unified Approach
33%
Liquid-vapor Interface
33%
Phase Change
33%
Thermal Conduction
33%
Diffuse Interface
33%
Pure Vapour
33%
Shock Wave Propagation
33%
Propagating Waves
33%
Supercritical State
33%
Compression Wave
33%
Compressibility Effects
33%
Subcritical Conditions
33%
Engineering
Numerical Experiment
100%
Supercritical Condition
100%
Pure Vapor
100%
Supercritical State
100%
Compressibility
100%
Propagating Wave
100%
Compression Wave
100%
Material Science
Compressibility
100%
Chemistry
Compressibility
25%
Heat Conduction
25%
Supercritical Condition
25%
Earth and Planetary Sciences
Compressibility Effect
25%
Compression Wave
25%
Physics
Compressibility Effect
25%
Compression Wave
25%