Which statement correctly compares the particle size in a suspension with that in a solution?
Suspension particles are larger than solution particles
In a suspension, the dispersed particles are relatively large (greater than about 1000 nm), which is why they are visible to the naked eye and settle down on standing.
In a true solution, the dissolved particles are of molecular/ionic size (less than about 1 nm) and remain uniformly mixed.
Since suspension particles are much bigger than solution particles, This is the correct answer.
If 25 g of salt is dissolved in 175 g of water, what is the concentration of the solution in mass percentage?
Which of the following is a property of a colloidal solution?
Which of the following statements is true for homogeneous mixtures?
What are the two main components of a colloidal solution?
Which of the following is a characteristic property of a suspension?
Which of the following mixtures best demonstrates a heterogeneous mixture at the macroscopic level?
A student mixes oil and water in a beaker and notices two separate layers. Which explanation best fits this observation?
A teacher prepares three mixtures: sugar dissolved in water, salt dissolved in water, and sand stirred in water. Which of the following is a suspension?
Which of the following is a common example of a suspension found in daily life?
Which of the following is NOT a property of a solution?
What will happen to the boiling point of water when a little common salt is added to water and then heated?
Which Statement is correct ?
The pH value of 1 × 10 -8 (M) HCl is:
Tyndall effect is not observed in:
A non-volatile solute, urea ($CO(NH_2)_2$, molar mass $60 \ g/mol$), is dissolved in $180 \ g$ of water ($H_2O$, molar mass $18 \ g/mol$). If the vapor pressure of pure water at a certain temperature is $50 \ mmHg$, what is the vapor pressure of the solution when $18 \ g$ of urea is added?