문제 53
Like all equilibrium constants, the value of Kw depends on temperature. At body temperature (37 °C), Kw = 2.4×10–14. What are the [H3O+] and pH of pure water at body temperature?
문제 54
The value of Kw increases with increasing temperature. Is the autoionization of water endothermic or exothermic?
문제 54e
Determine whether or not the mixing of each pair of solutions results in a buffer. e. 105.0 mL of 0.15 M CH3NH2; 95.0 mL of 0.10 M HCl
문제 55
Calculate the pH of each acid solution. Explain how the resulting pH values demonstrate that the pH of an acid solution should carry as many digits to the right of the decimal place as the number of significant figures in the concentration of the solution. [H3O+] = 0.044 M [H3O+] = 0.045 M [H3O+] = 0.046 M
문제 56
Determine the concentration of H3O+ to the correct number of significant figures in a solution with each pH. Describe how these calculations show the relationship between the number of digits to the right of the decimal place in pH and the number of significant figures in concentration. pH = 2.50 pH = 2.51 pH = 2.52
문제 57a
For each strong acid solution, determine [H3O+], [OH–], and pH. a. 0.25 M HCl
문제 57b
For each strong acid solution, determine [H3O+], [OH–], and pH. b. 0.015 M HNO3
문제 57c
For each strong acid solution, determine [H3O+], [OH–], and pH. c. a solution that is 0.052 M in HBr and 0.020 M in HNO3
문제 57d
For each strong acid solution, determine [H3O+], [OH–], and pH. d. a solution that is 0.655% HNO3 by mass (assume a density of 1.01 g/mL for the solution)
문제 59
What mass of HI must be present in 0.250 L of solution to obtain a solution with each pH value?
a. pH = 1.25 b. pH = 1.75 c. pH = 2.85
문제 60
What mass of HClO4 must be present in 0.500 L of solution to obtain a solution with each pH value? a. pH = 2.50 b. pH = 1.50 c. pH = 0.50
문제 61
What is the pH of a solution in which 224 mL of HCl(g), measured at 27.2 °C and 1.02 atm, is dissolved in 1.5 L of aqueous solution?
문제 63
Determine the [H3O+] and pH of a 0.100 M solution of benzoic acid.
문제 64
Determine the [H3O+] and pH of a 0.200 M solution of formic acid.
문제 65
Determine the pH of an HNO2 solution of each concentration. In which cases can you not make the simplifying assumption that x is small? a. 0.500 M b. 0.100 M c. 0.0100 M
문제 66
Determine the pH of an HF solution of each concentration. In which cases can you not make the simplifying assumption that x is small? (Ka for HF is 6.8×10–4.) a. 0.250 M b. 0.0500 M c. 0.0250 M
문제 69
A 0.185 M solution of a weak acid (HA) has a pH of 2.95. Calculate the acid ionization constant (Ka) for the acid.
문제 71
Determine the percent ionization of a 0.125 M HCN solution.
문제 72
Determine the percent ionization of a 0.225 M solution of benzoic acid.
- What is the percent ionization of an acetic acid solution at the following concentrations? a. 1.00 M b. 0.500 M c. 0.100 M d. 0.0500 M
문제 73
문제 74a
Calculate the percent ionization of a formic acid solution having the given concentration. a. 1.00 M
문제 74b
Calculate the percent ionization of a formic acid solution having the given concentration. b. 0.500 M
문제 74c
Calculate the percent ionization of a formic acid solution having the given concentration. c. 0.100 M
문제 74d
Calculate the percent ionization of a formic acid solution having the given concentration. d. 0.0500 M
문제 75
A 0.148 M solution of a monoprotic acid has a percent ionization of 1.55%. Determine the acid ionization constant (Ka) for the acid.
- A 0.085 M solution of a monoprotic acid has a percent ionization of 0.59%. Determine the acid ionization constant (Ka) for the acid.
문제 76
- Find the pH and percent ionization of each HF solution. (Ka for HF is 6.8 * 10^-4.) a. 0.250 M HF b. 0.100 M HF c. 0.050 M HF.
문제 77
- Find the pH and percent ionization of a 0.100 M solution of a weak monoprotic acid given the following Ka values: a. Ka = 1.0 * 10^-5, b. Ka = 1.0 * 10^-3, c. Ka = 1.0 * 10^-1.
문제 78
문제 79a
Find the pH of each mixture of acids. a. 0.115 M in HBr and 0.125 M in HCHO2
문제 79b,c,d
Find the pH of each mixture of acids. b. 0.150 M in HNO2 and 0.085 M in HNO3 c. 0.185 M in HCHO2 and 0.225 M in HC2H3O2 d. 0.050 M in acetic acid and 0.050 M in hydrocyanic acid
Ch.17 - Acids and Bases
