A0.100 M solution of K2SO4 would contain the same total ion concentration as which of the following solutions?

Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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R Revier
Part B
What is the concentration of K+ ions in a 0.045 M K,CO3 solution assuming complete dissociation?
e
Express the concentration in molarity.
• View Available Hint(s)
ΑΣφ
concentration of K+ =
M
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Part C
A0.100 M solution of K2SO4 would contain the same total ion concentration as which of the following solutions?
> View Available Hint(s)
O 0.0800 M Na2CO3
O 0.100 M NaCl
O 0.0750 M NazPO4
O 0.0500 M NaOH
Transcribed Image Text:R Revier Part B What is the concentration of K+ ions in a 0.045 M K,CO3 solution assuming complete dissociation? e Express the concentration in molarity. • View Available Hint(s) ΑΣφ concentration of K+ = M Submit Part C A0.100 M solution of K2SO4 would contain the same total ion concentration as which of the following solutions? > View Available Hint(s) O 0.0800 M Na2CO3 O 0.100 M NaCl O 0.0750 M NazPO4 O 0.0500 M NaOH
When a compound is dissolved in water, the resulting solution is either
an electrolyte or a nonelectrolyte. The solution of an electrolyte has the
ability to conduct an electric current. A strong electrolyte dissociates or
ionizes almost completely into ions, whereas a weak electrolyte
undergoes only limited ionization or dissociation. The solution of a
nonelectrolyte does not conduct a current because few, if any, ions are
present in the solution. The electrical conductivity of a solution can
easily be measured with a meter or a light bulb. The total ion
concentration of any solution is determined by both the type and the
concentration of solute.
Transcribed Image Text:When a compound is dissolved in water, the resulting solution is either an electrolyte or a nonelectrolyte. The solution of an electrolyte has the ability to conduct an electric current. A strong electrolyte dissociates or ionizes almost completely into ions, whereas a weak electrolyte undergoes only limited ionization or dissociation. The solution of a nonelectrolyte does not conduct a current because few, if any, ions are present in the solution. The electrical conductivity of a solution can easily be measured with a meter or a light bulb. The total ion concentration of any solution is determined by both the type and the concentration of solute.
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