For example naphtalene and iodine are soluble in cycloheaxane. Generally organic compounds are soluble.
Iodine is soluble in cyclohexane. 'like' dissolves 'like' (i.e. non-polar dissolves non-polar) Iodine is non-polar as both atoms of iodine have the same electronegativities Cyclohexane is non-polar due to its symmetric structure Therefore iodine does dissolve in cyclohexane
the solutes mix with the solvent
Cyclohexane and water are immiscible because they have different polarities. Cyclohexane is nonpolar, while water is polar. Like dissolves like, so the differing polarities of the molecules prevent them from mixing together to form a homogeneous solution.
Cyclohexane dissolves in dichloromethane due to similar intermolecular forces between the two substances. Both cyclohexane and dichloromethane are non-polar molecules, which allows them to mix together and form a homogenous solution. This results in the molecules of cyclohexane being surrounded by the molecules of dichloromethane, creating a stable solution.
Water does not mix with cyclohexane because water is polar and cyclohexane is nonpolar. They will form two separate layers, with water on top and cyclohexane on the bottom, due to their difference in polarity. This separation is due to the principle of "like dissolves like," where polar substances dissolve in polar solvents and nonpolar substances dissolve in nonpolar solvents.
Generally polar solutes are dissolved in polar solvents and nonpolar solutes are dissolved in nonpolar solvents.
Generally polar solutes are dissolved in polar solvents and nonpolar solutes are dissolved in nonpolar solvents.
When two liquids are mixed, the term is miscible, not soluble. But yes, CCl4 is miscible in cyclohexane.
Example: polar solutes are dissolved in polar solvents, nonpolar solutes are dissolved in nonpolar solvents; this is a general rule but not absolute.
Universal Solvent.
strring , grinding, and temperature affect the speed which a solid dissolves in water.
Bromine (Br2) dissolves in cyclohexane due to its nonpolar nature, which is similar to cyclohexane's nonpolar composition. In contrast, bromine does not dissolve in water because water is a polar solvent and bromine is nonpolar, leading to poor solubility due to the mismatch in polarity.