A liquid that has been cooled so fast it does not freeze into a solid instead it stays in a form halfway between the two and as suggested in the question this form is extremely cold
The definition of glass is a super cooled liquid. Any liquid that is super cooled takes on the properties of glass. Glass as you think of it is just super cooled silica. What happens is that it is cooled so quickly that it doesn't actually undergo a phase change back to a solid. In reality glass is just an incredibly slow moving liquid.
super-cooled liquid
Bcoz they are pseudo solids nd dats why have the tendency to flow.
Bcoz they are pseudo solids nd dats why have the tendency to flow.
One example of a substance that can exist as both a liquid and a solid is honey. At room temperature, honey is a thick liquid, but if cooled below its freezing point, it can solidify into a semi-solid state.
super cooled, D
in general you need to two things: But Liquid Nitrogen is not made this way. 1st it needs to be cooled very cold. Then it needs to be compressed. The proccess usually does this both at the same time, Cooled Nitrogen is run through a compressor and then cooled agian, and then super cooled to create Liquid. It is produced using a proccess called fractional distilation of air resulting in Liquid Oxegen and Liquid Nitrogen.
a liquid then if cooled further it would turn into a solid a liquid then if cooled further it would turn into a solid
Glass is in the category which is considered a super cooled liquid. There is no crystaline structure to maintain it's shape.
b'coz super conductivity is achieved only when the material is cooled below a critical temperature. if it cooled above the critical temp. than the material ceases to be a super conductor. to maintain it conductivity helium and liquid nitrogen which is not easy 2 be used that is why super conductor can't be used for commercial purposes in our day to day life
Yes, Apple did manufacture liquid-cooled computers. Some configurations of the PowerMac G5 computer (notably, the quad-core systems) were liquid-cooled.
Super cooled metals are good conductors because their super cooled properties allow them to conduct electric currents without resistance. This means no loss of energy.