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  1. Bernoulli's equation (article) | Fluid flow | Khan Academy

    This inverse relationship between the pressure and speed at a point in a fluid is called Bernoulli's principle: At points along a horizontal streamline, higher pressure regions have slower fluid speed, …

  2. Khan Academy | Khan Academy

    Learn about Bernoulli's equation and its applications in fluid dynamics with this comprehensive article from Khan Academy.

  3. Bernoulli's equation derivation part 1 (video) | Khan Academy

    Bernoulli's equation is an equation from fluid mechanics that describes the relationship between pressure, velocity, and height in an ideal, incompressible fluid.

  4. Venturi effect and Pitot tubes (video) | Khan Academy

    This video breaks down Bernoulli's equation, revealing the surprising principle that faster fluid equals lower pressure. It also introduces the Pitot tube, a practical tool for measuring fluid velocity.

  5. Czym jest równanie Bernoulliego? (artykuł) | Khan Academy

    This inverse relationship between the pressure and speed at a point in a fluid is called Bernoulli's principle. Bernoulli's principle: At points along a horizontal streamline, higher pressure regions have …

  6. Applying Bernoulli's equation (practice) | Khan Academy

    Let's practice some problems to better understand how to apply Bernoulli's equation in some real-life situations.

  7. Bernoulli's equation derivation part 2 (video) | Khan Academy

    This is the second of two videos where Sal derives Bernoulli's equation. In the second half of the video Sal also begins an example problem where liquid exits a hole in a container.

  8. Understanding Bernoulli's equation (practice) | Khan Academy

    Let's practice some problems to better understand how energy is conserved in a streamlined flow, as summarized by the Bernoulli's equation

  9. Finding flow rate from Bernoulli's equation - Khan Academy

    Sal solves a Bernoulli's equation example problem where fluid is moving through a pipe of varying diameter. Understand how pressure differentials and pipe dimensions influence flow rate and …

  10. Khan Academy | Khan Academy

    Oups. Il y a eu un problème. S'il vous plaît, veuillez reessayer. Oups, on dirait qu'il y a eu une erreur ! Vous devez actualiser. Si le problème persiste, dites-nous.