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by
Wolski, Andrzej, author.
Format:
Excerpt:
Beam dynamics in high energy particle accelerators / Wolski, Andrzej, author.
by
Koshizuka, Seiichi, author.
Format:
Excerpt:
Moving particle semi-implicit method : a meshfree particle method for fluid dynamics / Koshizuka
by
Stefanovich, Eugene, author.
Format:
Excerpt:
Elementary particle theory. Volume 3, Relativistic quantum dynamics / Stefanovich, Eugene, author.
by
Pizzoferrato, Andrea, author.
Format:
Excerpt:
Large scale dynamics and fluctuations in non-equilibrium stochastic particle systems / Pizzoferrato
by
International Conference on Few Body Problems in Nuclear and Particle Physics (7th : 1975 : University of Delhi)
ScienceDirect http://www.sciencedirect.com/science/book/9780720404814
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and Particle Physics, Delhi, December 29, 1975-January 3, 1976 / International Conference on Few Body
by
Satoh, Akira.
ScienceDirect https://www.sciencedirect.com/science/book/9780123851482
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dynamics, Lattice Boltzmann, dissipative particle dynamics / Satoh, Akira.
by
Kerschen, Nicholas E., author.
Format:
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Investigation into High Explosive Particle Dynamics under Impact Loading / Kerschen, Nicholas E
by
Mann, Ronald A.
ScienceDirect https://www.sciencedirect.com/science/book/9780124692503
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Particle dynamics.
by
Cooper, Ellis D.
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Dynamics of a particle -- Mathematical models.
by
Vujanović, B. D. (Bozidar D.), 1930- author.
Format:
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Particle dynamics.
by
Wang, Pao K.
Format:
Excerpt:
-scale dynamics. Highlights include: the condensation process explained with new insights from chemical physics
by
Zhang, Yiyang. author.
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Excerpt:
macroscopic flow field scale, as well as particle and molecular scale issues such as the interaction force
by
Minier, Jean-Pierre. editor.
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Excerpt:
particle-laden turbulent flow -- Models of turbulent flows and particle dynamics -- Particle deposition and
by
Har, Jason.
Format:
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computational approaches that cover both particle dynamics and flexible continuum structural dynamics
by
Schaub, Hanspeter.
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-- Generalized methods of analytical dynamics -- Variational methods in analytical dynamics -- Hamilton
by
Lyklema, J.
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between pairs of particles, and in concentrated systems, their rheology and dynamics. This volume contains
by
Plumpton, C. (Charles)
ScienceDirect https://www.sciencedirect.com/science/book/9780080250373
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dynamics of a particle with one and two degrees of freedom. Many examples of varying difficulty are worked
by
Devulder, Christopher, author.
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to the emergence of novel dynamics ranging from the modulation of their amplitude to acting like a
by
Garcia Jange, Camila, author.
Format:
Excerpt:
chemical components at particle contact. Silica beads with varied particle sizes were coated with chemical
by
Scheinker, Alexander. author.
Format:
Excerpt:
Choice of Extremum-Seeking Dithers -- Application Study: Particle Accelerator Tuning.
by
Harris, Robert G., 1961-
Format:
Excerpt:
, Anastasios I. Stamou, Nicolas C. Markatos -- Ultra-fine particle and gaseous volatile organic compounds
by
Snook, Ian.
ScienceDirect http://www.sciencedirect.com/science/book/9780444521293
Format:
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. Langevin and Generalised Langevin Dynamics. -- Chapter 7. Brownian Dynamics. -- Chapter 8. Polymer Dynamics
by
Wilkins, Mark R.
ScienceDirect http://www.sciencedirect.com/science/book/9780120887934
Format:
Excerpt:
MEL Scripts; Chapter 19 Examples Using MEL with Particle Dynamics; Chapter 20 Examples Using MEL with
by
Satoh, A.
Format:
Excerpt:
interactions among particles in a dense colloidal dispersion -- Molecular dynamics methods for a dilute
by
Frenkel, Daan, 1948- author.
ScienceDirect https://www.sciencedirect.com/science/book/9780122673511
Format:
Excerpt:
-- Tackling time-scale problems -- Rare events -- Dissipative particle dynamics.
by
McHardy, John.
ScienceDirect http://www.sciencedirect.com/science/book/9780815514169
Format:
Excerpt:
-- Dynamics of Particle Removal by Supercritical Carbon Dioxide -- Abstract -- Surfactants and Microemulsions
by
Jay, William I., author. (orcid)0000-0002-5791-209X
Format:
Excerpt:
partially composite particle. Second, theories of this sort represent a new direction in the study of gauge
by
Malone, Heather R., author.
Format:
Excerpt:
particle-lipid interactions. Of particular interest was determining the particles' rotational dynamics
by
Aljuwaya, Thaar M., author.
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densities, particle collisions by the particle-particle interaction plays an important role. At last, we
by
Schmidt, Michael J., author.
Format:
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must employ a certain number of particles to properly emulate the system dynamics---particularly for
by
Zhang, Xing, author.
Format:
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for the dynamics of a solid particle moving in one or two-phase flows using an extended finite element
by
Andrews, David L., 1952-
ScienceDirect https://www.sciencedirect.com/science/book/9780123740274
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Forces between Nanoparticles -- Optical Vortices and the Dynamics of Particle Rotation -- Rotating
by
Salmon, A. D. (Agba D.)
ScienceDirect http://www.sciencedirect.com/science/book/9780444518712
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understanding of the basis of particle products and this important industry sector. Four themes run through the
by
Chiu, Wah, editor.
Format:
Excerpt:
/ Michael S. Chapman and Lars Liljas -- Virus particle dynamics / John E. Johnson -- Viral genome
by
Gibilaro, L. G.
ScienceDirect http://www.sciencedirect.com/science/book/9780750650038
Format:
Excerpt:
predictive expressions for the basic forces that act on a fluidized particle, offers a clear way into the
by
Finlay, Warren H.
ScienceDirect http://www.sciencedirect.com/science/book/9780122569715
Format:
Excerpt:
Dynamics in the Respiratory Tract -- Particle Deposition in the Respiratory Tract -- Jet Nebulizers -- Dry
by
Berz, M.
ScienceDirect http://www.sciencedirect.com/science/book/9780120147502
Format:
Excerpt:
. Dynamics of Particles and Fields; 1.1 Beams and Beam Physics; 1.2 Differential Equations, Determinism, and
by
Ehrenreich, Henry.
Format:
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Model; V. Extensions of the Electromagnetic Model; VI. Particle Dipolar Interactions; VII. Enhanced
by
Rudinger, George.
ScienceDirect http://www.sciencedirect.com/science/book/9780444418531
Format:
Excerpt:
. Viscous drag of single particles; 2.2. Drag in gas-particle flow; 2.3. Gas-particle heat transfer; 2.4
by
Howard, Michael Patrick, author.
Format:
Excerpt:
-throughput particle separation using microfluidic devices, the deposition of multilayer or functional coatings, and
by
Passucci, Giuseppe, author.
Format:
Excerpt:
fibroblast trajectory dynamics by replacing parameters in simulations (speed, rotational diffusion, tumble
by
Farajidizaji, Farzad, author.
Format:
Excerpt:
physics and role of the particle-induced flow field on the particle dynamics.
by
Crose, Marquis Grant, author.
Format:
Excerpt:
-four dominant plasma-phase reactions. In Chapters 2 and 3, the gas-phase dynamics are approximated using a first
by
Hayes, Austin, author.
Format:
Excerpt:
dynamics are currently being explored using high speed imaging and particle image velocimetry. By printing
by
WAS, GARY S. author.
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Excerpt:
-atom interaction for a range of particle types, the amount and spatial extent of the resulting radiation damage
by
Marenne, Stephanie, author.
Format:
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radius and kT is the thermal energy. Most results are computed with Accelerated Stokesian dynamics (ASD
by
Singh, Balwant.
Format:
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apertures which allow for mapping and trace particle surfaces, microbes, roots, channels and elements at the
by
Jena, Purusottam.
Format:
Excerpt:
Biology at the Nanoscale / C. Leung and R. Palmer -- 15. Dynamics of Biomolecules from Firstprinciples / I
by
Bridgeman, Jonathan Matthew, author.
Format:
Excerpt:
assessed using a jar tester. Here, computational fluid dynamics (CFD) was used to model the flow field
by
Williamson, John, author.
Format:
Excerpt:
particle filtering processes is illustrated. The process by which the results of goal inference can be fed
by
Marin, Guy B.
ScienceDirect http://www.sciencedirect.com/science/bookseries/00652377
ScienceDirect http://www.sciencedirect.com/science/book/9780120085316
ScienceDirect http://www.sciencedirect.com/science/book/9780120085316
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-- III. System 1: Flow Dynamics of Gas-Liquid-Solid Fluidized Beds -- IV. System 2: Deformation Dynamics
by
Kli͡at͡skin, Valeriĭ Isaakovich.
ScienceDirect http://www.sciencedirect.com/science/book/9780444517968
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index, conductivity, diffusivity, etc. The well known example of Brownian particle suspended in fluid
by
Garmire, Elsa M., 1939-
Format:
Excerpt:
. Applications: Spectroscopy and Dynamics of Electronic States in Heterostructures; VII. Fundamentals of Four-Particle
by
International Conference on Multiphase Flow (2nd : 1995 : Kyoto, Japan)
ScienceDirect http://www.sciencedirect.com/science/book/9780444818119
ScienceDirect https://www.sciencedirect.com/science/book/9780444818119
ScienceDirect https://www.sciencedirect.com/science/book/9780444818119
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AND THEIR EFFECT ON BED-LOAD MOTION; 5. CONCLUSION; REFERENCES; Chapter 7. Modelling of Dynamics of
by
Mader, Detlef, 1954-
ScienceDirect http://www.sciencedirect.com/science/book/9780444873521
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-- 5.4. Reservoir stability and fluid dynamics -- 5.5. Areal distribution of potential reservoirs -- 5
by
Seitz, Frederick, 1911-2008.
Format:
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. Aspects of Group Theory in Electron Dynamics; I. Introduction; II. Charged Particle in an Electromagnetic
by
Sweeney, Matthew Ryan, author.
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The fluid dynamics at the impact zone of an impinging jet dictate the initial conditions for the
by
Narayanan Subramani, Deepak, author.
Format:
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-optimal path and headings be obtained through a particle backtracking equation. For the missions considered, we
by
McLain, Marie Anne Patton, author.
Format:
Excerpt:
dynamics in the number density, such as particle-hole and soliton formation. Moreover, g (2) correlations
by
Gladkina, Anastasia, author.
Format:
Excerpt:
describe the evolution of a quantum particle in a particular class of nonlocal potentials, where to realize
by
Ma, Dan, author. (orcid)0000-0001-9701-2750
Format:
Excerpt:
-grained dissipative particle dynamics (DPD) simulations in an explicit solvent simulation, we studied the distribution
by
Tsubota, Makoto.
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; Chapter 5. Visualisation of Quantum Turbulence; 1 Introduction; 2 Turbulent Helium II; 3 Dynamics of
by
Krishnaswami, S., Prof.
Format:
Excerpt:
-210 and Polonium-210 Future Studies U- and Th-Series Nuclides as Tracers of Particle Dynamics
by
Louie, Steven G., 1949-
ScienceDirect http://www.sciencedirect.com/science/book/9780444509765
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Excerpt:
, spectroscopic properties, and Green's functions -- 2.7 Single-particle Green's function and electron self energy
by
Hannah, Iain G., author.
Format:
Excerpt:
concept of a collisionless resistivity arising from the chaotic particle dynamics in our X-point structure
by
Kli͡at͡skin, Valeriĭ Isaakovich.
ScienceDirect https://www.sciencedirect.com/science/book/9780444517975
Format:
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index, conductivity, diffusivity, etc. The well known example of Brownian particle suspended in fluid
by
Marghitu, Dan B.
ScienceDirect http://www.sciencedirect.com/science/book/9780124713703
Format:
Excerpt:
-- Dynamics of a Particle -- Planar Kinematics of a Rigid Body -- Dynamics of a Rigid Body -- 3. Mechanics of
by
Keane, Aidan J., author.
Format:
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particle, neglecting the influence of any gravitational force on the particle. The saturation velocity is
by
Cotton, William R., 1940-
Format:
Excerpt:
Dynamics; References; Chapter 5. Radiative Transfer in a Cloudy Atmosphere and Its Parameterization; 5.1
by
Michell, S. J. (Stanislaw Jozef)
ScienceDirect https://www.sciencedirect.com/science/book/9780080133126
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accordingly into two main branches, namely, fluid statics and fluid dynamics. This text then examines the
by
Liu, Yong.
Format:
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electrospinning devices -- 6.6 Conclusion -- References -- 7 - Dissipative particle dynamics simulations of
by
Ismail, Fauzi.
Format:
Excerpt:
-- 5.2.1. Computation and Experiments -- 5.2.2. Module Observation -- 5.2.3. Module Imaging by Particle
by
Wilson, Leslie, 1941-
ScienceDirect https://www.sciencedirect.com/science/book/9780123748157
ScienceDirect https://www.sciencedirect.com/science/bookseries/0091679X/95
ScienceDirect https://www.sciencedirect.com/science?_ob=PublicationURL&_tockey=%23TOC%2318065%232010%23999049999%231985684%23FLA%23&_cdi=18065&_pubType=BS&_auth=y&_next=y&_acct=C000059602&_version=1&_urlVersion=0&_userid=4429&md5=10992c0e9ad03c4006dd36bd4e5f4102
ScienceDirect https://www.sciencedirect.com/science/bookseries/0091679X/95
ScienceDirect https://www.sciencedirect.com/science?_ob=PublicationURL&_tockey=%23TOC%2318065%232010%23999049999%231985684%23FLA%23&_cdi=18065&_pubType=BS&_auth=y&_next=y&_acct=C000059602&_version=1&_urlVersion=0&_userid=4429&md5=10992c0e9ad03c4006dd36bd4e5f4102
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microtubules from thermal fluctuation measurements on an attached tracer particle / Katja M. Taute, Francesco
by
Yohkoh 10th Anniversary Meeting (2002 : Kailua Kona, Hawaii)
Format:
Excerpt:
Flare plasma dynamics -- Non-thermal velocities in solar flares / Correlated dynamics of hot and
by
Yamada Conference (42nd : 1994 : Nagoya-shi, Japan)
Format:
Excerpt:
-- Chapter 62. Solvation free energy of protein reproduced by the combination of the extended scaled particle
by
De Ruiter, Anton H. J.
Format:
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Rigorous Definition of Angular Velocity 35 References 37 2 Rigid Body Dynamics 39 2.1 Dynamics of a Single

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