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Single bubble perturbation in cavitation proximity of solid glass: Hot spot versus distance
Darya Radziuk
, Helmuth Möhwald
,
Kenneth Suslick
Chemistry
Materials Research Laboratory
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peer-review
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Dive into the research topics of 'Single bubble perturbation in cavitation proximity of solid glass: Hot spot versus distance'. Together they form a unique fingerprint.
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Keyphrases
Cavitation
100%
Single Bubble
100%
Single-bubble Sonoluminescence
100%
Argon
40%
Temperature Decrease
40%
Pressure Drop
40%
Emission Lines
20%
Order of Magnitude
20%
Nanomaterials
20%
Close Proximity
20%
Electron Density
20%
Energy Loss
20%
Glass Surface
20%
Acoustic Field
20%
Surface Distance
20%
Cavitating
20%
Micromaterials
20%
Molecular Emission
20%
OH Emission
20%
Emission Temperature
20%
Cavitation Bubble
20%
Glass Rods
20%
Multiple Bubbles
20%
Engineering
Single Bubble
100%
Hot Spot
100%
Nanomaterial
16%
Close Proximity
16%
Model System
16%
Rod
16%
Energy Dissipation
16%
Glass Surface
16%
Acoustic Field
16%
Bubble Cavitation
16%
Surface Distance
16%
Boundary Condition
16%
Carrier Concentration
16%
Material Science
Sonoluminescence
100%
Carrier Concentration
20%
Nanostructured Material
20%
Acoustics
20%