Expandability refers to the ability of a material to increase in volume when subjected to heat or pressure. Compressibility, on the other hand, is the ability of a material to decrease in volume when subjected to pressure. These properties are important in various applications such as in engineering, chemistry, and material science.
gas
No, increases in pressure do not increase the compressibility of liquids. Liquids are considered to be nearly incompressible under most conditions, meaning their volume does not change significantly with changes in pressure.
No. Gasses are normally highly compressible. Liquids such as water and melted metals, have low compressibility.
Low density and high compressibility are characteristics of gases. In gases, particles are spaced far apart and can be easily compressed into a smaller volume when pressure is applied. This contrasts with solids and liquids, which have higher densities and lower compressibility due to their closely packed particles.
As airflow speeds increase, the effects of compressibility become more significant, particularly when approaching or exceeding the speed of sound. In subsonic flow, air behaves as an incompressible fluid, but at higher speeds, changes in air density and pressure occur, leading to compressibility effects. This can result in shock waves and increased drag, altering the aerodynamic characteristics of vehicles like aircraft. Ultimately, understanding compressibility is crucial for accurate predictions of airflow behavior at high speeds.
it is expandability because it does not need any media in order to connect the devices.
compressibility of petrol
Lung compliance = Lung expandability
desktops
The compressibility of Jetfuel is 0.88x10-9 m2/N
The gas phase
Compressibility is the physical process of the volume change under the action of an external pressure.
Yes
Yes, compressibility is a physical property of matter that describes how easily a substance can be compressed or its volume reduced. It is often used to characterize the behavior of gases and liquids under pressure. Materials with high compressibility can be easily compressed, while those with low compressibility are difficult to compress.
cost,speed,distance and expandability,environment,security...
right balance of expandability and scalability.
the compressibility of gas