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Internal dynamics

J.A. Owczarek, Fundamentals of Gas Dynamics, International Textbook, Scranton, PA, 1964. [Pg.42]

Supplier Cham, London. U.K. or Hunstville. AL or Creare.x. Inc. Hanover. NH Fluent Europe. Sheffield. U.K. or Lebanon. NH CFDS AEA Tech.. Oxon. U.K. or Pittsburgh. PA CFDS. AEA Tech.. Oxon. U.K. or Pittsburgh. PA Fluid Dynamics. International. Inc. Evanston. IL. USA... [Pg.826]

Houze RA Jr (1993) Cloud dynamics. International Geophysics Series, vol 53. Academic Press, San Diego... [Pg.54]

Construction of the Dynamic Internal Yield Locus. The dynamic yield locus represents the steady state deformation, as opposed to the static yield locus which represents the incipient failure. The dynamic yield locus is constructed by plotting on a (a, t) plane the principal Mohr circles obtained for various consolidation stresses. The dynamic yield locus will be the curve or straight line tangent to all circles, as shown in Figure 17. The dynamic angle of internal friction S and cohesion C are independent of the consolidation stress. S and Q are obtained as the slope and the intercept at er=0 of the dynamic yield locus of the powder. [Pg.231]

Streamlines for turbulent flow in an axi-symmetric turn-around duct. (Reproduced with permission of Fluid Dynamics International)... [Pg.336]

Dol, M. Edwards, S.F. The Theory of Polymer Dynamics International Series of Monographs on Physics 73 Oxford Science, 1986 Chapter 10, pp 350-380. [Pg.154]

A commercial Computational Fluid Dynamics package (FIDAP Version 7.6, Fluid Dynamics International, Evanston, IL) based on the finite element method was used to solve the governing continuity, momentum and heat transport equations. A mesh was defined with more nodes near the wall and the entrance of the tubular heat exchanger to resolve the larger variations of temperature and velocities near the wall and the entrance. [Pg.451]

As a dynamic international scientist and businessman. Dr. Knablein served as consultant for global players, among them Baxter, Hoechst and Elan Pharmaceuticals focusing on fast-track product development, time-to-market reduction and imple-... [Pg.1836]

Colver, G. M., Use of Electrical Resistivity in the Diagnostics of Powder Dynamics, International Powder and Bulk Solids Conference/Exhibition, Chicago, Illinois, May 12-14, 1981, pp. 89-96. [Pg.103]

Oxygen Homeostasis and its Dynamics. International Symposium held at Minato-ku, Tokyo, on December 8-13 1996 [In Keio Univ. Symp. Life Sci. Med., 1998 1]. 619 pp. [Pg.179]

Hullinger, D. G. (1999), Taylor Enterprise Dynamics, Internal Report, F H Simulations Inc., Orem, UT. [Pg.2466]

Gill, A. E. (1982) Atmosphere-ocean dynamics. International Geophysics Series Vol. 30, Academic Press, 662 pp. [Pg.634]

Fluid Dynamics International (1991) FIDAP Theoretical Manual. [Pg.230]

FIDAP Package, Fluid Dynamics International, Inc., Evanston, IL, USA. [Pg.915]

Hughes, T.J.R. 1979. A note on the stability of Newmark s algorithm in nonlinear structural dynamics. International Journal for Numerical Methods in Engineering, 11, 383-386. [Pg.69]

Kuhl, D., Crisfield, M.A. 1999. Energy-conserving and decaying algorithms in non-linear structural dynamics. International Journal for Nmnerical Methods in Engineering 45 569—599. [Pg.595]

Natarajan B, et al. Dynamic internal cavities of dendrimers as constrained media a study of photochemical isomerizations of stilbene and azobenzene using poly(alkyl aryl ether) dendrimers. J Org Chem 2012 77 2219-24. [Pg.199]

SHINOZUKA, M., Monte Carlo Solution of Structural Dynamics, International Journal of Computers and Structures, Vol.2, (1972a), pp.855-874. [Pg.81]


See other pages where Internal dynamics is mentioned: [Pg.146]    [Pg.114]    [Pg.514]    [Pg.1418]    [Pg.204]    [Pg.83]    [Pg.160]    [Pg.488]    [Pg.569]    [Pg.470]    [Pg.388]    [Pg.199]    [Pg.1934]    [Pg.29]    [Pg.118]    [Pg.319]    [Pg.80]    [Pg.486]    [Pg.402]    [Pg.199]    [Pg.285]    [Pg.183]    [Pg.1418]   
See also in sourсe #XX -- [ Pg.62 ]




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