Concept explainers
(a)
Interpretation:
Among the solutions W, X, Y, Z, the one that has highest
Concept Introduction:
Equilibrium constant for water can be given by the equation shown below,
This is also known as ionization constant for water.
The above equation applies to water and all aqueous solutions. From this the solution is acidic, basic, or neutral can be identified. This can be given as shown below,
(a)
Explanation of Solution
Solution W:
Concentration of
Concentration of
Solution X:
Concentration of
Concentration of
Solution Y:
Concentration of
Concentration of
Solution Z:
Concentration of
Concentration of
All the solutions can be arranged in the order or decreasing
The solution that has highest concentration of
(b)
Interpretation:
Among the solutions W, X, Y, Z, two solutions that has concentration of
(b)
Explanation of Solution
All the given solutions can be arranged in the order or decreasing
The solutions that have concentration
Solution Z:
Concentration of
Solution X:
Concentration of
(c)
Interpretation:
Among the solutions W, X, Y, Z, the one that is closest to being a neutral solution has to be identified.
Concept Introduction:
Refer part (a).
(c)
Explanation of Solution
All the given solutions can be arranged in the order or decreasing
Neutral solution has the concentration of
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Chapter 14 Solutions
Chemistry: The Molecular Science
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- What is the conjugate base of boric acid, B(OH)3? (A) OH– (B) B(OH)4– (C) B(O)(OH)22– (D) B(H2O)(OH)2+arrow_forwardThe pH of a chemical solution is given by theformula pH = - log10 [H+ ] where [H+ ] is the concentration of hydrogen ions in molesper liter. Values of pH range from 0 (acidic) to 14 (alkaline).(a) What is the pH of a solution for which [H+ ] is 0.1?(b) What is the pH of a solution for which [H+ ] is 0.01?(c) What is the pH of a solution for which [H+ ] is 0.001?(d) What happens to pH as the hydrogen ion concentration decreases?(e) Determine the hydrogen ion concentration of an orange (pH = 3.5).(f) Determine the hydrogen ion concentration of human blood (pH = 7.4).arrow_forwardWhat is the basis for referring to the hydrogen ion as a proton? (a) The Arrhenius definition of an acid. (b) The Brønsted-Lowry definition of an acid x (c) The Lewis definition of an acid. (d) H* exists as a bare proton. (e) None of these.arrow_forward
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