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The molarity of $0.006$ mole of $NaCl$ in $ $ solution is
When the concentration is expressed as the number of moles of a solute per litre of solution it is known as
The number of moles of $KCl$ in $1000$ ml of $3$ molar solution is
2.0 molar solution is obtained, when 0.5 mole solute is dissolved in
$20g$ of hydrogen is present in $5$ litre vessel. The molar concentration of hydrogen is
Molarity of a solution prepared by dissolving $75.5 g$ of pure $KOH$ in $540 ml$ solution is
What will be the molarity of a solution containing $5g$ of sodium hydroxide in $250ml$ solution
$200ml$ of a solution contains $5.85g$ dissolved in sodium chloride. The concentration of the solution will be $(Na=23;\ Cl=35.5)$
Increasing the temperature of an aqueous solution will cause
The correct expression relating molality (m), molarity (M), density (d) and molar mass $({{M}_{2}})$of solute is

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