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    About 13 results
    • https://phys.libretexts.org/Courses/Joliet_Junior_College/Physics_201_-_Fall_2019v2/Book%3A_Custom_Physics_textbook_for_JJC/12%3A_Temperature_and_Kinetic_Theory/12.11%3A_Diffusion
      Diffusion is the movement of particles from regions of high concentration towards regions of lower concentration.
    • https://phys.libretexts.org/Learning_Objects/A_Physics_Formulary/Physics/09%3A_Transport_Phenomena
      Fluid dynamics, flow, Navier-Stokes equation
    • https://phys.libretexts.org/Courses/Prince_Georges_Community_College/PHY_2030%3A_General_Physics_II/12%3A_Temperature_and_Kinetic_Theory/12.9%3A_Diffusion
      Diffusion is the movement of particles from regions of high concentration towards regions of lower concentration.
    • https://phys.libretexts.org/Courses/Prince_Georges_Community_College/PHY_1030%3A_General_Physics_I/11%3A_Fluid_Dynamics_and_Its_Applications/11.4%3A_Other_Applications
      It is imperative to consider turbulent flow when designing many things such as airplanes, medical equipment, heat exchangers, and bridges.
    • https://phys.libretexts.org/Bookshelves/University_Physics/Physics_(Boundless)/19%3A_Electric_Current_and_Resistance/19.6%3A_Electricity_in_the_World
      The hazards from electricity can be categorized into thermal and shock hazards.
    • https://phys.libretexts.org/Courses/Prince_Georges_Community_College/PHY_2030%3A_General_Physics_II/19%3A_Electric_Current_and_Resistance/19.6%3A_Electricity_in_the_World
      The hazards from electricity can be categorized into thermal and shock hazards.
    • https://phys.libretexts.org/Courses/Georgia_State_University/GSU-TM-Introductory_Physics_II_(1112)/zz%3A_Back_Matter/10%3A_13.1%3A_Appendix_J-_Physics_Formulas_(Wevers)/1.09%3A_Transport_Phenomena
      Fluid dynamics, flow, Navier-Stokes equation
    • https://phys.libretexts.org/Courses/Joliet_Junior_College/Physics_201_-_Fall_2019/Book%3A_Physics_(Boundless)/11%3A_Temperature_and_Kinetic_Theory/11.11%3A_Diffusion
      Diffusion is the movement of particles from regions of high concentration towards regions of lower concentration.
    • https://phys.libretexts.org/Bookshelves/University_Physics/Physics_(Boundless)/11%3A_Fluid_Dynamics_and_Its_Applications/11.4%3A_Other_Applications
      It is imperative to consider turbulent flow when designing many things such as airplanes, medical equipment, heat exchangers, and bridges.
    • https://phys.libretexts.org/Courses/Joliet_Junior_College/JJC_-_PHYS_110/05%3A_Book-_Physics_(Boundless)/5.07%3A_Fluid_Dynamics_and_Its_Applications/5.7.04%3A_Other_Applications
      It is imperative to consider turbulent flow when designing many things such as airplanes, medical equipment, heat exchangers, and bridges.
    • https://phys.libretexts.org/Bookshelves/College_Physics/College_Physics_1e_(OpenStax)/12%3A_Fluid_Dynamics_and_Its_Biological_and_Medical_Applications/12.07%3A_Molecular_Transport_Phenomena-_Diffusion_Osmosis_and_Related_Processes
      Osmosis will be to the right, since water is less concentrated there. (b) The fluid level rises until the back pressure ρgh equals the relative osmotic pressure; then, the net transfer of wate...Osmosis will be to the right, since water is less concentrated there. (b) The fluid level rises until the back pressure ρgh equals the relative osmotic pressure; then, the net transfer of water is zero. The study of active transport carries us into the realms of microbiology, biophysics, and biochemistry and it is a fascinating application of the laws of nature to living structures.

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