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Why does water seek its own level?

Why does water seek its own level?

The level of the liquid rises to the same level in all four tubes, regardless of their shape. This is a consequence of Pascal’s principle, whereby pressure is uniformly transmitted thoughout a liquid. In more familiar terms, “water seeks its own level”.

What is meant by a liquid seeks its own level?

The meaning of the sentence ” A liquid seeks its own level ” is that a liquid irrespective of the shape of the container in which it is poured attains its own level because the pressure applied at the bottom on either of the container remains same.

Why do liquids flow from higher level to lower level?

Originally Answered: Why do liquids flow from higher to lower levels? Gravity causes liquids to seek a lower level. The liquid will flow upward temporarily, moving through the tube from a lower level to a higher level, before discharging at a lower level. There should be no air pocket in the tube.

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Why can liquids easily flow?

(i) A liquid generally flows easily because the intermolecular space between the liquid particles are more as compared to solids. Moreover there particles are loosely packed due to the presence of a little force of attraction between them.

What is it called when a solid turns into a gas?

Under some circumstances, the solid phase can transition directly to the gas phase without going through a liquid phase, and a gas can directly become a solid. The solid-to-gas change is called sublimation, while the reverse process is called deposition.

What are properties of gas?

Gases have three characteristic properties: (1) they are easy to compress, (2) they expand to fill their containers, and (3) they occupy far more space than the liquids or solids from which they form.

What is ideal and non ideal solution 12?

Solutions which do not obey the Raoults law over the entire range of concentration, are called non-ideal solutions. The vapour pressure of non-ideal solutions is either higher or lower than the ideal, i.e. predicted by Raoult’s Law.

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What are the ideal and real solutions?

A true solution is where you can’t differentiate between the solute and solvent molecules even at the microscopic level. It is completely homogeneous. An ideal solution, on the other hand, is one where molecular interactions between solute molecules are absolutely zero, and it follows Raoult’s law.

What are considered real solutions?

A real solution in algebra is simply a solution to an equation that is a real number.