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Titlebook: Shock Focussing Effect in Medical Science and Sonoluminescence; Ramesh C. Srivastava,Dieter Leutloff,Hans Grönig Book 2003 Springer-Verlag

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Shock and Thermal Waves Emanating from a Sonoluminescing Gas Bubble,red by using the bubble wall motion developed by Keller and Miksis in conjunction with the analytical solutions for the gas inside bubble and the Kirkwood-Bethe hypothesis for the outgoing wave. The propagation of the pressure wave inside the bubble, where there are inhomogeneities of density, press
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Destructive Action of Cavitation Bubbles Collapsing Near Boundaries,lsive pressure generation and subsequent damage pit formation resulting from single-bubble collapse near a plane rigid boundary. The following topic is concerned with the possibility of high-pressure generation by bubble collapse due to interaction of a bubble with other effects such as the shock wa
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Shock Focusing in Sonoluminescing Gas Bubbles,entre of the bubble and the consequent formation of a plasma that causes a flash of light. We present the study of the behaviour of a shock launched by the bubble as it converges and leaves the centre of symmetry. As such a shock propagates towards the centre, upon convergence and subsequent reflect
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Focusing of Shock Waves and Their Applications to Medicine,g shock waves, the gas dynamic nonlinearity; hence the ratio of peak to initial pressures at focal points can never increase to infinity, whereas in the case of very weak shock waves it does tend towards infinity [13].
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Mechanics of Stone Fragmentation in Extracorporeal Shock-Wave Lithotripsy,trical acoustics describing the impingement of a cavitation microjet on an elastic solid boundary and the subsequent propagation of the resultant shock waves in the solid. The model incorporated the acoustic and mechanical properties of different stone types to calculate the jet impact pressure at t
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Pressure Pulses in Extracorporeal Shock Wave Lithotripsy and Extracorporeal Shock Wave Pain Therapyation pave the way to better understanding of stone disintegration and biological effects. A comparison of the widely used measuring techniques is given. In recent years research has brought new insights to identify the importance of various pressure pulse parameters. The negative portions of the pr
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Extracorporeal Shock Waves: Bioeffects and Mechanisms of Action,ve with a lower maximum yet longer duration. A typical example of a pressure registration is depicted in Fig. 9.1. The major medical application of extracorporeal shock waves is the fragmentation of stones in the body. The method was first applied in 1980.
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Evaluating Indirect Worke points in this chapter also apply to Chapter 9. However, there are differences in the kind of measurement instrument used in indirect work and the work itself is also different. This chapter therefore considers examples of work in training, social support and institutional systems, and reviews a r
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