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In Bernoulli's principle, the relationship between two fluids is that as the velocity of a fluid increases, its pressure decreases, and vice versa. This principle describes how the total energy of a fluid is conserved along a streamline, taking into account the fluid's kinetic, potential, and internal energy.

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Is it true that Bernoulli's principle is wrong?

No, Bernoulli's principle is not wrong. It is a fundamental principle in fluid dynamics that describes the relationship between the pressure and velocity of a fluid in motion.


Bernoulli's principle describes the relationship between which two values of a fluid?

Bernoulli's principle describes the relationship between the pressure, velocity, and height of a fluid in motion. It states that as the velocity of a fluid increases, its pressure decreases, and vice versa.


Who created the bernoulli principle and when?

The Bernoulli Principle is named after Swiss mathematician and physicist Daniel Bernoulli, who developed it in 1738. The principle describes the behavior of fluid flow and the relationship between the pressure and velocity of a fluid.


What was Daniel Bernoulli famous for?

Daniel Bernoulli was a Swiss mathematician and physicist known for his work in fluid dynamics and the development of Bernoulli's principle, which describes the relationship between the speed of fluid flow and its pressure. This principle is fundamental in fields such as aviation and engineering.


Who is the father of hydrodynamics?

Daniel Bernoulli is often referred to as the father of hydrodynamics. He made significant contributions to the understanding of fluid dynamics and developed Bernoulli's principle, which describes the relationship between pressure and velocity in a fluid.


Whose principle states that the pressure exerted by a moving stream of fluid is less than the pressure of the surrounding fluid?

Bernoulli's principle states that the pressure exerted by a moving stream of fluid is less than the pressure of the surrounding fluid. This principle describes the relationship between fluid velocity and pressure in a flowing fluid system.


What Best describes the relationship between the velocity and pressure of a fluid?

The relationship between velocity and pressure in a fluid is described by Bernoulli's principle, which states that when the velocity of a fluid increases, the pressure decreases and vice versa. This relationship is based on the conservation of energy in a flow system.


What According to Bernoulli's principle what characteristics of a moving fluid determines its pressure?

speed


What does the Bernoulli's principal state?

Bernoulli's principle states that an increase in the speed of a fluid occurs simultaneously with a decrease in pressure. This principle is commonly used to explain the lift that an airplane wing generates as it moves through the air. It describes the relationship between the velocity and pressure of a fluid in motion.


What scientific rule states that the pressure exerted by a moving stream of fluid is less than the pressure of the surrounding the fluid?

Bernoulli's principle states that the pressure exerted by a moving stream of fluid is less than the pressure of the surrounding fluid. This principle describes the relationship between the speed of a fluid and its pressure, showing that as the speed of a fluid increases, its pressure decreases.


What describes the relationship between the velocity and pressure of a fluid?

In a fluid, the velocity and pressure are related by Bernoulli's principle, which states that as the velocity of a fluid increases, its pressure decreases, and vice versa. This relationship is often seen in applications such as fluid dynamics and aerodynamics.


As the velocity of a fluid increases the pressure exerted by the fluid decreases this statement is?

This statement is known as Bernoulli's principle. It states that as the velocity of a fluid increases, the pressure exerted by the fluid decreases and vice versa. This principle is commonly used in fluid dynamics to understand the relationship between fluid velocity and pressure.