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#fluidphysics — Public Fediverse posts

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  1. ● Capillary waves: ripples on droplets ●

    Explore, in the ESPCI MOOC video, how surface tension and inertia create capillary waves on droplets. Understanding these waves is important for advanced droplet dynamics studies.

    🎥 youtube.com/watch?v=w6VA2E7v14

    ⏳ No time right now? Save this post and come back later

    #CapillaryWaves #FluidPhysics #LeidenfrostEffect #MOOC #Physics

  2. ● Capillary waves: ripples on droplets ●

    Explore, in the ESPCI MOOC video, how surface tension and inertia create capillary waves on droplets. Understanding these waves is important for advanced droplet dynamics studies.

    🎥 youtube.com/watch?v=w6VA2E7v14

    ⏳ No time right now? Save this post and come back later

    #CapillaryWaves #FluidPhysics #LeidenfrostEffect #MOOC #Physics

  3. ● Capillary waves: ripples on droplets ●

    Explore, in the ESPCI MOOC video, how surface tension and inertia create capillary waves on droplets. Understanding these waves is important for advanced droplet dynamics studies.

    🎥 youtube.com/watch?v=w6VA2E7v14

    ⏳ No time right now? Save this post and come back later

    #CapillaryWaves #FluidPhysics #LeidenfrostEffect #MOOC #Physics

  4. ● Capillary waves: ripples on droplets ●

    Explore, in the ESPCI MOOC video, how surface tension and inertia create capillary waves on droplets. Understanding these waves is important for advanced droplet dynamics studies.

    🎥 youtube.com/watch?v=w6VA2E7v14

    ⏳ No time right now? Save this post and come back later

    #CapillaryWaves #FluidPhysics #LeidenfrostEffect #MOOC #Physics

  5. ● Capillary waves: ripples on droplets ●

    Explore, in the ESPCI MOOC video, how surface tension and inertia create capillary waves on droplets. Understanding these waves is important for advanced droplet dynamics studies.

    🎥 youtube.com/watch?v=w6VA2E7v14

    ⏳ No time right now? Save this post and come back later

    #CapillaryWaves #FluidPhysics #LeidenfrostEffect #MOOC #Physics

  6. From industrial foams to volcanic systems, frothy fluids combine gas and liquid in surprisingly complex ways. This study introduces a streamlined model to better understand how these bubbly materials flow and evolve.

    🔗 pubs.aip.org/aip/pof/article/3

    #BubbleDynamics #FluidPhysics #Foams #Rheology #Science

  7. From industrial foams to volcanic systems, frothy fluids combine gas and liquid in surprisingly complex ways. This study introduces a streamlined model to better understand how these bubbly materials flow and evolve.

    🔗 pubs.aip.org/aip/pof/article/3

    #BubbleDynamics #FluidPhysics #Foams #Rheology #Science

  8. From industrial foams to volcanic systems, frothy fluids combine gas and liquid in surprisingly complex ways. This study introduces a streamlined model to better understand how these bubbly materials flow and evolve.

    🔗 pubs.aip.org/aip/pof/article/3

    #BubbleDynamics #FluidPhysics #Foams #Rheology #Science

  9. From industrial foams to volcanic systems, frothy fluids combine gas and liquid in surprisingly complex ways. This study introduces a streamlined model to better understand how these bubbly materials flow and evolve.

    🔗 pubs.aip.org/aip/pof/article/3

    #BubbleDynamics #FluidPhysics #Foams #Rheology #Science

  10. From industrial foams to volcanic systems, frothy fluids combine gas and liquid in surprisingly complex ways. This study introduces a streamlined model to better understand how these bubbly materials flow and evolve.

    🔗 pubs.aip.org/aip/pof/article/3

    #BubbleDynamics #FluidPhysics #Foams #Rheology #Science

  11. ▪️ Liquid jets: dynamics and instability▪️

    Learn how liquid jets form and break up

    ➡️ Essential for understanding Leidenfrost droplet trajectories.

    Video from the "Dynamics of fluid interfaces" MOOC by ESPCI Paris - PSL.

    🎥 youtube.com/watch?v=L2i1meVgtE

    #LiquidJets #FluidPhysics #Leidenfrost #MOOC

  12. ▪️ Liquid jets: dynamics and instability▪️

    Learn how liquid jets form and break up

    ➡️ Essential for understanding Leidenfrost droplet trajectories.

    Video from the "Dynamics of fluid interfaces" MOOC by ESPCI Paris - PSL.

    🎥 youtube.com/watch?v=L2i1meVgtE

    #LiquidJets #FluidPhysics #Leidenfrost #MOOC

  13. From condensation to self-cleaning: electrostatically sprayed coatings trigger droplet jumping and limit water buildup.

    Airflow and surface orientation also shape performance in cooling systems.

    🔗 doi.org/10.1063/5.0312727

    #Condensation #FluidPhysics #ThermalEngineering #SurfaceScience #HVAC

  14. Printing on a slope is trickier than it looks.

    This work shows how inclined surfaces affect the stability of inkjet lines, highlighting the balance between flow, gravity and surface tension.

    🔗 pubs.aip.org/aip/pof/article-a

    #FluidPhysics #surfacetension #inkjet #thinfilms #flow

  15. - Wetting dynamics: how droplets spread -

    The speed and shape of droplet spreading depend on wetting dynamics.

    Discover it in this video from the "Dynamics of fluid interfaces" MOOC by ESPCI Paris - PSL.

    🎥 youtube.com/watch?v=K3gcJXDVjZ

    #WettingDynamics #LeidenfrostEffect #FluidPhysics #MOOC #FluidDynamics

  16. - Capillarity and viscosity: how liquids move -

    Understand the relationship between capillarity and viscosity and their role in droplet dynamics with this video from the "Dynamics of fluid interfaces" MOOC by ESPCI Paris - PSL.

    🎥 youtube.com/watch?v=Mq1EUe3cOC

    #Capillarity #Viscosity #FluidPhysics #FluidDynamics

  17. - Capillary number: balancing viscosity and surface tension -

    The capillary number quantifies how viscosity and surface tension interact in droplets. Explore this key concept in the ESPCI Paris - PSL MOOC video.

    🎥 youtube.com/watch?v=bbEOcd977e

    #CapillaryNumber #Viscosity #SurfaceTension #FluidPhysics #LeidenfrostEffect

  18. - Gravity effects on liquid-solid contact -

    Gravity affects the shape and motion of droplets. Discover its role in the Leidenfrost phenomenon in these ESPCI Paris - PSL MOOC videos.

    🎥 1️⃣ youtube.com/watch?v=AqxZAKuFFA

    🎥 2️⃣ youtube.com/watch?v=-y9yaGzN7J

    ⏳ No time right now? Save this post and come back later

    #GravityEffects #FluidPhysics #Leidenfrost #FluidDynamics #Physics

  19. - Gravity effects on liquid-solid contact -

    Gravity affects the shape and motion of droplets. Discover its role in the Leidenfrost phenomenon in these ESPCI Paris - PSL MOOC videos.

    🎥 1️⃣ youtube.com/watch?v=AqxZAKuFFA

    🎥 2️⃣ youtube.com/watch?v=-y9yaGzN7J

    ⏳ No time right now? Save this post and come back later

    #GravityEffects #FluidPhysics #Leidenfrost #FluidDynamics #Physics

  20. - Gravity effects on liquid-solid contact -

    Gravity affects the shape and motion of droplets. Discover its role in the Leidenfrost phenomenon in these ESPCI Paris - PSL MOOC videos.

    🎥 1️⃣ youtube.com/watch?v=AqxZAKuFFA

    🎥 2️⃣ youtube.com/watch?v=-y9yaGzN7J

    ⏳ No time right now? Save this post and come back later

    #GravityEffects #FluidPhysics #Leidenfrost #FluidDynamics #Physics

  21. - Gravity effects on liquid-solid contact -

    Gravity affects the shape and motion of droplets. Discover its role in the Leidenfrost phenomenon in these ESPCI Paris - PSL MOOC videos.

    🎥 1️⃣ youtube.com/watch?v=AqxZAKuFFA

    🎥 2️⃣ youtube.com/watch?v=-y9yaGzN7J

    ⏳ No time right now? Save this post and come back later

    #GravityEffects #FluidPhysics #Leidenfrost #FluidDynamics #Physics