(a)
Interpretation: The molecule between
Concept Introduction : A substance is soluble in water by forming hydrogen bonds with the water molecules.
(b)
Interpretation: The molecule between
Concept Introduction : A substance is soluble in water by forming hydrogen bonds with the water molecules. Polar substance is dissolved more in polar solvent.
(c)
Interpretation: The molecule between
Concept Introduction : A substance is soluble in water by forming hydrogen bonds with the water molecules.
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EBK WEBASSIGN FOR ZUMDAHL'S CHEMICAL PR
- What is the usual solubility behavior of an ionic compound in water when the temperature is raised? Give an example of an exception to this behavior.arrow_forwardConsider two hypothetical pure substances, AB(s) and XY(s). When equal molar amounts of these substances are placed in separate 500-mL samples of water, they undergo the following reactions: AB(s)A+(aq)+B(aq)XY(s)XY(aq) a Which solution would you expect to have the lower boiling point? Why? b Would you expect the vapor pressures of the two solutions to be equal? If not, which one would you expect to have the higher vapor pressure? c Describe a procedure that would make the two solutions have the same boiling point. d If you took 250 mL of the AB(aq) solution prepared above, would it have the same boiling point as the original solution? Be sure to explain your answer. e The container of XY(aq) is left out on the bench top for several days, which allows some of the water to evaporate from the solution. How would the melting point of this solution compare to the melting point of the original solution?arrow_forwardRationalize the temperature dependence of the solubility of a gas in water in terms of the kinetic molecular theory.arrow_forward
- How do colloids differ from solutions with regard to dispersed particle size and homogeneity?arrow_forwardFor each of the following pairs, predict which substance would be more soluble in water. a. or b. or c. orarrow_forwardThe solubility of NaCl in water at 100 C is 39.1 g/100. g of water Calculate the boiling point of this solution. (Assume i = 1.85 for NaCl.)arrow_forward
- Apply your knowledge of polarity and solubility topredict whether solvation is possible in each situationshown in Table 14.9. Explain your answers.arrow_forwardWill red blood cells crenate, hemolyze, or remain unaffected when placed in each of the solutions in Problem 8-107?arrow_forwardHow can it be demonstrated that colloidal particles are electrically charged?arrow_forward
- Distinguish between dispersion methods and condensation methods for preparing colloidal systems.arrow_forwardConcentrated hydrochloric acid contains 1.00 mol HCl dissolved in 3.31 mol H2O. What is the mole fraction of HCl in concentrated hydrochloric acid? What is the molal concentration of HCl?arrow_forwardA 12.0-g sample of a nonelectrolyte is dissolved in 80.0 g of water. The solution freezes at -1.94 C. Calculate the molar mass of the substance.arrow_forward
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