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

    Learn how Bernoulli's equation describes the conservation of mechanical energy in ideal fluid flow. Explore consequences of Bernoulli's equation, including Torricelli's theorem.

  2. ¿Qué es la ecuación de Bernoulli? (artículo) | Khan Academy

    ¿Qué es la ecuación de Bernoulli? La ecuación de Bernoulli es esencialmente una manera matemática de expresar el principio de Bernoulli de forma más general, tomando en cuenta …

  3. Bernoulli distribution mean and variance formulas - Khan Academy

    In the last video we figured out the mean, variance and standard deviation for our Bernoulli Distribution with specific numbers. What I want to do in this video is to generalize it.

  4. Fluids | AP®︎/College Physics 1 | Science | Khan Academy

    Discover how forces and conservation laws are used to analyze the behavior of ideal fluids. Learn about density and pressure, and how the relationship between pressure and depth in a fluid …

  5. O que é a equação de Bernoulli? (artigo) | Khan Academy

    A equação de Bernoulli é, em sua essência, uma forma mais geral e matemática do princípio de Bernoulli que também leva em consideração variações na energia potencial gravitacional.

  6. 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.

  7. Qu'est-ce que l'équation de Bernoulli - Khan Academy

    L'équation de Bernoulli est simplement une forme plus générale et plus mathématique du principe de Bernoulli qui prend en compte les variations d'énergie potentielle de pesanteur.

  8. Mean and variance of Bernoulli distribution example

    Calculating the mean and variance of a distribution, including Bernoulli, helps us understand the distribution's central tendency (where most values cluster) and variability (how spread out the …

  9. 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

  10. Fluids in motion questions (practice) | Khan Academy

    According to your understanding of Bernoulli’s principle and continuity equation, which of the following statements accurately describes the phenomenon of vascular flutter which occurs …