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Titlebook: Mechanics and Physics of Bubbles in Liquids; Proceedings IUTAM Sy L. Wijngaarden Conference proceedings 1982 Martinus Nijhoff Publishers, T

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Biophysical implications of bubble dynamicsent. In a suspension of cells or other particles a pulsating gas bubble causes the particles to migrate toward its surface via radiation force. This motion, in addition to acoustic micro-streaming, transports particles into the bubble near-field where they are subjected to highly localized stress fi
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Thresholds for rectified diffusion and acoustic microstreaming by bubbles in biological tissueave), at which rectified diffusion may begin in environments represented by the liquid/cell structure of biological tissue, exposed to ultrasonic frequencies, 1–4 MHz, typical for clinical devices. Computations based on excitation by peak pressure amplitude values typical for continuous and pulse-ec
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Bubble nucleation in aqueous media: implications for diving physiology fluid can be affected, including bone. This generality suggests a common basis in the physical and chemical properties of water, particularly those relating to cavitation. In this paper, we review a cavitation model developed at the University of Hawaii in which spherical gas nuclei are stabilized
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Acoustic cavitation in cryogenic and boiling liquidsour bubbles in time due to linear effects of rectified heat and mass transfer are studied. The growth thresholds of vapour bubbles depending on thermodynamic parameters of liquid, static overcompression, and acoustic field frequency are presented. Essential influence of resonance properties of bubbl
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Growth and departure of individual bubbles at a wallrgely experimental study of individual bubbles of vapour growing at a wall. The outline plan is indicated in Table 1, which shows the selection of operating conditions. The aim was to start with the simplest possible situation (liquid initially stagnant and isothermally supersaturated, at zero gravi
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