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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.
This is known as Bernoulli's principle, which states that as the speed of a fluid increases, its pressure decreases. It is commonly applied in fluid dynamics to understand the relationship between fluid velocity and pressure.
The Bernoulli principle states that as the speed of a fluid increases, its pressure decreases. This principle is often used to explain the lift of airplanes, as the faster-moving air above the wing creates lower pressure, resulting in lift.
According to Bernoulli's principle, as the velocity of a fluid increases, the pressure exerted by the fluid decreases. This is because when the fluid flows faster, it has more kinetic energy and less pressure energy.
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.
Bernoulli's principle states that as the speed of a moving fluid increases, the pressure exerted by the fluid decreases.
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.
as the velocity of a fluid pressure exerted by that fluid decreases
This is known as Bernoulli's principle, which states that as the speed of a fluid increases, its pressure decreases. It is commonly applied in fluid dynamics to understand the relationship between fluid velocity and pressure.
The Bernoulli principle states that as the speed of a fluid increases, its pressure decreases. This principle is often used to explain the lift of airplanes, as the faster-moving air above the wing creates lower pressure, resulting in lift.
Yes, pressure exerted by a moving stream of fluid is generally greater than that of a stationary fluid due to the added kinetic energy involved in the flow. This increase in pressure is described by the Bernoulli's principle, which states that as the speed of a fluid increases, its pressure decreases and vice versa.
According to Bernoulli's principle, as the velocity of a fluid increases, the pressure exerted by the fluid decreases. This is because when the fluid flows faster, it has more kinetic energy and less pressure energy.
Bernoulli's principle states that when the speed of a moving fluid increases, the pressure in the fluid decreases.
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.
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.
When a fluid moves, the fluid pressure decreases. This is due to the conservation of energy principle, where the kinetic energy of the moving fluid is converted from the pressure energy of the fluid. The pressure decreases as the fluid gains velocity.
Bernoulli's principle.