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  • {{r|Fluid dynamics}}
    627 bytes (75 words) - 16:02, 8 May 2010
  • {{r|Fluid dynamics}}
    837 bytes (105 words) - 18:24, 11 January 2010
  • ...increasing importance of flow simulations using computers ([[computational fluid dynamics]]), illustrating the flow with the help of [[computer graphics]] has become
    3 KB (511 words) - 19:14, 23 February 2008
  • ...mathematics]]; [[thermodynamics]]; [[heat transfer]]; [[mass transfer]]; [[fluid dynamics]]; [[chemical reactors]] and chemical [[reaction kinetics]]; transport and
    2 KB (205 words) - 17:17, 18 February 2010
  • {{r|Fluid dynamics}}
    2 KB (284 words) - 11:47, 27 March 2012
  • Vortices are one of the most important research areas in [[fluid dynamics]]. This comes mainly from two facts. First, vortices have a great impact on
    992 bytes (155 words) - 22:42, 15 November 2007
  • * [[Fluid dynamics]]
    1 KB (154 words) - 09:35, 14 September 2013
  • ...peed instrumentation, often with [[X-ray]]s or [[proton]]s, to determine [[fluid dynamics]] of what happens inside an explosive reaction. <ref name=GS-hydrodynamic>{
    2 KB (347 words) - 09:02, 4 May 2024
  • ...st a cylinder''' is one of the first mathematical models that a student of fluid dynamics encounters. This flow is an excellent vehicle for the study of concepts tha
    7 KB (1,247 words) - 05:26, 22 November 2013
  • ...ugh a venturi, we start with this common form of the [[Bernoulli equation (fluid dynamics)|Bernoulli equation]] for fluid flow:
    12 KB (1,976 words) - 16:12, 10 February 2024
  • ...cable in different areas of physics, among others [[electrostatics]] and [[fluid dynamics]]. Another very important application of the theorem is that several physic
    4 KB (639 words) - 10:31, 19 June 2009
  • ...ecently, advances in [[computing]] have enabled the use of [[computational fluid dynamics]] to simulate the behavior of fluid, reducing time and expense spent on win
    9 KB (1,256 words) - 07:31, 20 April 2024
  • ...particular synthesis of the fundamentals of [[physics]], [[chemistry]], [[fluid dynamics]] and [[thermodynamics]].
    13 KB (1,867 words) - 11:50, 2 February 2023
  • ...facilities using the concepts of [[fluid pressure]], [[fluid statics]], [[fluid dynamics]], and [[hydraulics]], among others.
    13 KB (1,853 words) - 07:08, 12 September 2013
  • The fluid dynamics of these explosions was much less understood, in the early 2000s, than tjat
    5 KB (699 words) - 07:37, 18 March 2024
  • ...hor=Catherine J. Clarke and Bob Carswell|title=Principles of Astrophysical Fluid Dynamics|edition=1st Edition| publisher=Cambridge University Press|year=2007|pages=p
    10 KB (1,535 words) - 13:11, 23 October 2021
  • ...column bottoms liquid into the kettle, or there may be sufficient [[Head (fluid dynamics)|liquid head]] to deliver the liquid into the reboiler. In this reboiler t
    6 KB (877 words) - 18:42, 29 May 2010
  • ...involve continuous systems such as phenomena in [[physical cosmology]], [[fluid dynamics]] (e.g. [[climate model]]s, [[roadway noise]] models, [[roadway air dispers * [[Computational fluid dynamics]] simulations are used to simulate the behaviour of flowing air, water and
    14 KB (1,986 words) - 17:07, 22 March 2024
  • ...<var>n</var>=1 is due to [[Jean Le-Rond D'Alembert]] in his 1752 work on [[Fluid dynamics|hydrodynamics]]<ref>See {{harvnb|D'Alembert|1752}}.</ref>: this connection
    6 KB (874 words) - 03:45, 7 October 2013
  • ...physics|mathematical physics]] as [[scalar potential]]s in, for example, [[fluid dynamics]]. [[Laplace's equation]] is also basic to the study of [[partial different
    6 KB (1,077 words) - 19:25, 29 September 2020
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