Crossref Citations
This article has been cited by the following publications. This list is generated based on data provided by
Crossref.
GOHO, S. MATTS
and
ORLOWSKI, T.E.
1988.
Metallurgical Coatings 1988.
p.
335.
Vogel, Alfred
and
Lauterborn, Werner
1988.
Time-resolved particle image velocimetry used in the investigation of cavitation bubble dynamics.
Applied Optics,
Vol. 27,
Issue. 9,
p.
1869.
Reboud, J.L.
and
Guelin, P.
1988.
Impact response of an elastoplastic medium.
Mechanics Research Communications,
Vol. 15,
Issue. 4,
p.
253.
Delius, M.
and
Brendel, W.
1988.
A model of extracorporeal shock wave action: Tandem action of shock waves.
Ultrasound in Medicine & Biology,
Vol. 14,
Issue. 6,
p.
515.
Blake, J.R.
1988.
MATHEMATCAL THEORY OF CAVITATION BUBBLE DYNNAMICS.
Australian Journal of Statistics,
Vol. 30A,
Issue. 1,
p.
69.
Goho, S.Matts
and
Orlowski, T.E.
1988.
Microscopic bubble formation and collapse at liquid-solid interfaces during electrical powering of thin film structures.
Thin Solid Films,
Vol. 166,
Issue. ,
p.
335.
Shima, A.
Tomita, Y.
and
Sugiu, T.
1988.
Impulsive pressure generation by bubble/pressure-wave interaction.
AIAA Journal,
Vol. 26,
Issue. 4,
p.
434.
Vogel, Alfred
and
Lauterborn, Werner
1988.
Time resolved particle image velocimetry.
Optics and Lasers in Engineering,
Vol. 9,
Issue. 3-4,
p.
277.
Vokurka, K.
1989.
Free oscillations of a cavitation bubble.
Journal of Sound and Vibration,
Vol. 135,
Issue. 3,
p.
399.
VAN DER MEULEN, J.H.J.
1989.
Theoretical and Applied Mechanics.
p.
369.
Shima, A.
Tomita, Y.
Gibson, D. C.
and
Blake, J. R.
1989.
The growth and collapse of cavitation bubbles near composite surfaces.
Journal of Fluid Mechanics,
Vol. 203,
Issue. ,
p.
199.
Okada, T.
Iwai, Y.
and
Awazu, K.
1989.
A study of cavitation bubble collapse pressures and erosion part 1: A method for measurement of collapse pressures.
Wear,
Vol. 133,
Issue. 2,
p.
219.
Delius, M.
1989.
Biological effects of extracorporeal shock waves.
p.
983.
Tomita, Y.
Shima, A.
and
Sato, K.
1990.
Dynamic behavior of two-laser-induced bubbles in water.
Applied Physics Letters,
Vol. 57,
Issue. 3,
p.
234.
Vogel, A.
Schweiger, P.
Frieser, A.
Asiyo, M.N.
and
Birngruber, R.
1990.
Intraocular Nd:YAG laser surgery: laser-tissue interaction, damage range, and reduction of collateral effects.
IEEE Journal of Quantum Electronics,
Vol. 26,
Issue. 12,
p.
2240.
Kucera, A.
and
Blake, J.R.
1990.
Approximate methods for modelling cavitation bubbles near boundaries.
Bulletin of the Australian Mathematical Society,
Vol. 41,
Issue. 1,
p.
1.
Ward, B.
and
Emmony, D. C.
1991.
Direct observation of the pressure developed in a liquid during cavitation-bubble collapse.
Applied Physics Letters,
Vol. 59,
Issue. 18,
p.
2228.
Trench, S. Almaas
Hanonge, D.
and
Hayward, G.
1991.
Ultrasonics International 91.
p.
605.
Graf, T.
Fischer, H.
Reul, H.
and
Rau, G.
1991.
Cavitation Potential of Mechanical Heart Valve Prostheses.
The International Journal of Artificial Organs,
Vol. 14,
Issue. 3,
p.
169.
Ward, B.
and
Emmony, D.C.
1991.
Interferometric studies of the pressures developed in a liquid during infrared-laser-induced cavitation-bubble oscillation.
Infrared Physics,
Vol. 32,
Issue. ,
p.
489.