To explain this we need to consider two major equationsLet us take1. Bernoulli's equation:P + (Rho)gy + (1/2)(Rho)v^2 const.2.Continuity equation:Which is to maintain constant flow rateQA1v1 A2v2Considering flow is happening through a tapering pipe.P pressureRho densityg gravityy heightQ Flow rate (Kg/cu.metre)A1 area of cross-section-1A2 area of cross-section-2v1 velocity at cross-section-1v2 velocity at cross-section-2Section 1 Larger than Section 2So when flow happens from section 1 to section 2 the area is decresing so the velocity will increase to maintain the constant flow rate by continuity equation.So if you take Bernoulli's equation, to maintain constant value at one side the datum/height or the pressure has to be increased.So Area decreases-->Velocity will increase-->Pressure increases.So velocity and Pressure are inversely proportional unless the Datum/Height is same.Hope this solves your query
Air density and air pressure are inversely related. As air density increases, air pressure also increases because there are more air molecules in a given space exerting force on the surroundings. Conversely, when air density decreases, air pressure decreases as well due to fewer air molecules exerting force.
Scroll down to related links and look at "Density of air - Wikipedia". See there: Importance of temperature.
Air density and air pressure are both properties of the atmosphere that are related to each other. As air density increases, air molecules are packed more closely together, which also leads to an increase in air pressure. Conversely, as air density decreases, air pressure decreases as well.
In the ideal gas law equation p RT, pressure (p), density (), temperature (T), and the gas constant (R) are related. Pressure is directly proportional to density and temperature, and inversely proportional to the gas constant. This means that as pressure or temperature increases, density also increases, while the gas constant remains constant.
To find density with temperature and pressure, you can use the ideal gas law equation: density (pressure)/(gas constant x temperature). This formula relates the density of a gas to its pressure and temperature.
Density = mass/volume so it is related to mass and volume. And Volume is related to temperature and pressure, so it is related to those as well.
It doesnt real ate
As air pressure pressure decreases with altitude, so does the densite of air.
As air pressure pressure decreases with altitude, so does the densite of air.
Air density and air pressure are inversely related. As air density increases, air pressure also increases because there are more air molecules in a given space exerting force on the surroundings. Conversely, when air density decreases, air pressure decreases as well due to fewer air molecules exerting force.
Scroll down to related links and look at "Density of air - Wikipedia". See there: Importance of temperature.
Air density and air pressure are both properties of the atmosphere that are related to each other. As air density increases, air molecules are packed more closely together, which also leads to an increase in air pressure. Conversely, as air density decreases, air pressure decreases as well.
I assume you mean dansity of a fluid because fluid density changing proportionally to temperature and to pressure change by the equation:ρ1 = [ ρ0 / (1 + β (t1 - t0)) ] / [1 - (p1 - p0) / E]Check out the website in the related link
hey!um why is this not giving me an answer?jk. i no y!
Air has both density and pressure.
Pressure affects the density of air by increase of pressure increases the density
Humidity is related to air pressure because as the amount of water vapor in the air increases, the air becomes less dense. This decrease in density leads to a decrease in air pressure. Conversely, when the air is dry, it is denser and the air pressure is higher.