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States of Matter
   Introduction to States of Matter by S.S. Education
   The Gaseous State S.S. Education
   Gas Laws - Boyle's Law by S.S. Education
   Charle's Law by S.S. Education
   Avogadro's Law by S.S. Education
   Dalton's Law of Partial Pressures by S.S. Education
   Graham's Law of Diffusion by S.S. Education
   Ideal Gas Equation by S.S. Education
   Ideal and Real Gases by S.S. Education
   Kinetic Molecular Theory of Gases by S.S. Education
   Liquefaction of Gases by S.S. Education
   Relationship between Critical Constant and Van der Waal's Constants by S.S. Education
   Maxwell's Distribution of Molecular Speeds by S.S. Education
   The Liquid State by S.S. Education
   Properties of Liquids - I by S.S. Education
   Properties of Liquids - II by S.S. Education
   The Solid State by S.S. Education
   Classification of Solids by S.S. Education
   Crystalline Solids by S.S. Education
Other Maths Tutorials
   Introduction to Vectors and 3-D Geometry
   Matrices and Determinant Tutorials
   Differential Equation Tutorials
Other AIEEE/IIT/PRE-ENGINEERING TUTORIALS
   Maths Tutorials for AIEEE IIT Pre Engineering
   Physics Tutorials for AIEEE IIT Pre Engineering
   Chemistry Tutorials for AIEEE IIT Pre Engineering
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The Liquid State

The liquid state lies between the gaseous and the solid state. Liquids are neither completely disordered nor completely ordered. The cohesive forces between the liquid particles are strong enough to keep them together but these particles do not occupy fixed lattice sites and are relatively more free as compared to the particles in solids.
In terms of kinetic molecular model, the nature of the liquid state can be described as follows:
Liquids are composed of molecules that are relatively closer than gases.
Appreciable intermolecular forces hold the molecules of liquids together.
Due to weak intermolecular forces, the molecules are in constant random motion.
The average kinetic energy of molecules in a given sample is proportional to the absolute temperature.
It may be noted that the nature and magnitude of intermolecular forces decide the structure of a liquid and also its characteristic properties.


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