For the given table, the missing hydrogen ion concentration [ H 3 O + ] , hydroxide ion concentration [ OH − ] , pH, pOH and nature of the solution should be determined. Concept information: The pH of a solution is expressed by the formula as follows: pH = − log [ H 3 O + ] The pH scale is used to classify the solution as follows: The solution having pH value less than 7 is acidic. The solution having pH value greater than 7 is basic. If the solution has pH equal to 7, then it is neutral. The pOH of a solution is expressed by the formula as follows: pOH = − log [ OH − ] The sum of pOH and pH of a solution is equal to 14. pOH + pH = 14.0 The ion product constant is expressed as follows: [ H 3 O + ] [ OH − ] = K w = 1.0 × 10 − 14 The solution is acidic if the concentration of hydronium ions is less than 1.0 × 10 − 7 M and vice-versa. The solution is basic if concentration of hydroxide ions is more than 1.0 × 10 7 M 1.0 × 10 − 7 M and vice-versa.
For the given table, the missing hydrogen ion concentration [ H 3 O + ] , hydroxide ion concentration [ OH − ] , pH, pOH and nature of the solution should be determined. Concept information: The pH of a solution is expressed by the formula as follows: pH = − log [ H 3 O + ] The pH scale is used to classify the solution as follows: The solution having pH value less than 7 is acidic. The solution having pH value greater than 7 is basic. If the solution has pH equal to 7, then it is neutral. The pOH of a solution is expressed by the formula as follows: pOH = − log [ OH − ] The sum of pOH and pH of a solution is equal to 14. pOH + pH = 14.0 The ion product constant is expressed as follows: [ H 3 O + ] [ OH − ] = K w = 1.0 × 10 − 14 The solution is acidic if the concentration of hydronium ions is less than 1.0 × 10 − 7 M and vice-versa. The solution is basic if concentration of hydroxide ions is more than 1.0 × 10 7 M 1.0 × 10 − 7 M and vice-versa.
Solution Summary: The author explains how the pH, pOH, and nature of the solution should be determined for the given table.
For the given table, the missing hydrogen ion concentration [H3O+], hydroxide ion concentration [OH−], pH, pOH and nature of the solution should be determined.
Concept information:
The pH of a solution is expressed by the formula as follows:
pH=−log[H3O+]
The pH scale is used to classify the solution as follows:
The solution having pH value less than 7 is acidic.
The solution having pH value greater than 7 is basic.
If the solution has pH equal to 7, then it is neutral.
The pOH of a solution is expressed by the formula as follows:
pOH=−log[OH−]
The sum of pOH and pH of a solution is equal to 14.
pOH+pH=14.0
The ion product constant is expressed as follows:
[H3O+][OH−]=Kw=1.0×10−14
The solution is acidic if the concentration of hydronium ions is less than 1.0×10−7M and vice-versa.
The solution is basic if concentration of hydroxide ions is more than 1.0×107M1.0×10−7M and vice-versa.
Chloroform, long used as an anesthetic and now considered carcinogenic, has a heat of vaporization of 31.4 kJ/mol. During vaporization, its entropy increases by 94.2 J/mol.K. Therefore, select the alternative that indicates the temperature, in degrees Celsius, at which chloroform begins to boil under a pressure of 1 atm.
A) 28
B) 40
C) 52
D) 60
E) 72
If we assume a system with an anodic overpotential, the variation of n as a function
of current density:
1. at low fields is linear 2. at higher fields, it follows Tafel's law
Obtain the range of current densities for which the overpotential has the same value
when calculated for 1 and 2 cases (maximum relative difference of 5% compared to
the behavior for higher fields).
To which overpotential range does this correspond?
Data: i = 1.5 mA cm², T = 300°C, B = 0.64, R = 8.314 J K1 mol-1 and F = 96485 C mol-1.
Answer by equation please
Chapter 14 Solutions
Introductory Chemistry, Books a la Carte Edition (6th Edition)
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