General Fluid Dynamics: Theory
ORAL · G9 ·
Presentations
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Bending and stretching of two-dimensional fluids and solids
ORAL
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Authors
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James Hanna
- Virginia Polytechnic Institute and State University
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Peeling, sliding, pulling and bending
ORAL
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Authors
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John Lister
- University of Cambridge
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Gunnar Peng
- University of Cambridge
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Fluid-driven fracturing of adhered elastica: evolution of the vapour tip
ORAL
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Authors
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Thomasina V. Ball
- BP Institute, Department of Earth Sciences, University of Cambridge
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Jerome A. Neufeld
- University of Cambridge
- Univ of Cambridge
- BP Institute, Department of Earth Sciences, Department of Applied Mathematics and Theoretical Physics, University of Cambridge
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Finite time singularities in the quasigeostrophic model
ORAL
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Authors
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richard scott
- northwest research associates
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The Lorentz gas in Kaluza's MHD: Transport equations
ORAL
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Authors
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Alfredo Sandoval-Villalbazo
- Department of Physics and Mathematics, U. Iberoamericana
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Alma Rocio Sagaceta-Mejia
- Department of Physics and Mathematics, U. Iberoamericana
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Jose Humberto Mondragon-Suarez
- Department of Physics and Mathematics, U. Iberoamericana
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Density Stoke's Law for Particles having the Density Lower than the Surrounding Medium
ORAL
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Authors
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Arjun Krishnappa
- None
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Investigation of Dalton and Amagat’s laws for gas mixtures with shock propagation
ORAL
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Authors
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Patrick Wayne
- University of New Mexico
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Ignacio Trueba Monje
- University of New Mexico
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Jason H. Yoo
- University of New Mexico
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C. Randall Truman
- University of New Mexico
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Peter Vorobieff
- University of New Mexico
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Center of mass velocity during diffusion: Comparisons of fluid and kinetic models
ORAL
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Authors
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Erik Vold
- Los Alamos Natl Lab
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Lin Yin
- Los Alamos Natl Lab
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William Taitano
- Los Alamos Natl Lab
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Kim Molvig
- Los Alamos Natl Lab
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B. J. Albright
- Los Alamos Natl Lab
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Preserving the Helmholtz dispersion relation: One-way acoustic wave propagation using matrix square roots
ORAL
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Authors
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Laurence Keefe
- Desondes LLC, West Linn, OR
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A Second Order Continuum Theory of Fluids -- Beyond the Navier-Stokes Equations
ORAL
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Authors
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Samuel Paolucci
- Univ of Notre Dame
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