All GRE Subject Test: Chemistry Resources
Example Questions
Example Question #41 : Acid Base Chemistry
Determine the pH of a solution of
.
is a strong base and therefore completely ionizes in solution. Therefore, all the
ions dissociate in the
molecules in solutions according to the below chemical equation:
This means that the
NaOH solution. There is one mole of OH- in every mole
of NaOH, therefore:
The equation with the relationship between pH and pOH is below:
We can calculate the pH by rearranging this equation:
Example Question #42 : Acid Base Chemistry
Calculate the Ka for
.
The pka of is
. The pka is simply calculated based on the following equation:
Therefore, in order to determine the ka, simply use f the following equation:
Example Question #43 : Acid Base Chemistry
Calculate the Ka for
.
The pka of is
. The pka is simply calculated based on the following equation:
Therefore, in order to determine the ka, simply use f the following equation:
Example Question #44 : Acid Base Chemistry
Find the pH of if its
is
at
.
is a symbol for the ionization constant for water. This value is temperature dependent. At
, the
for water is
.
Water dissociates or ionizes according to the chemical equation below:
Therefore, the ionization of water results in:
Let us set
Example Question #45 : Acid Base Chemistry
Find the pH of if its
is
at
.
is a symbol for the ionization constant for water. This value is temperature dependent. At
, the
for water is
.
Water dissociates or ionizes according to the chemical equation below:
Therefore, the ionization of water results in:
Let us set
Example Question #45 : Acid Base Chemistry
Considering the for HCN is
, what is the
for
?
The equilibrium governing the dissolution of HCN in water is:
is the conjugate acid of
. In other words,
is the conjugate base of
.
Using the relationship, , we can calculate the
.
By rearranging the equation we get:
Example Question #18 : P H
What is the pH of a solution of
?
We need to calculate the pH of a
solution. There is one mole of
in every mole
of , therefore:
The equation with the relationship between pH and pOH is below:
We can calculate the pH by rearranging this equation:
Another way of solving this problem is shown below. The equation with the relationship between
and concentration is:
Rearranging this equation gives:
We can calculate the pH of this solution using the equation below:
Example Question #11 : P H
What is the pH of a solution in which concentration is
?
The pH of a solution is related to the number of hydrogen ions in solutions. The equation to determine the pH of a solution is below:
Plugging the concentration given into the equation above gives:
Therefore, the pH of the solution is:
Example Question #132 : Gre Subject Test: Chemistry
What is the concentration of a solution with pH
?
The pH of a solution is related to the number of hydrogen ions in solutions. The equation to determine the pH of a solution is below:
The above equation can be converted into the following form in order to determine the hydrogen ion concentration:
Therefore, the hydrogen ion concentration of a solution of pH 7 is:
Example Question #133 : Gre Subject Test: Chemistry
What is the pH of a solution with a pOH of ?
The equation that expresses the relationship between pH and pOH is:
Plugging the pOH given into the equation above gives:
Rearranging this expression gives:
Therefore, the pH of a solution with a pOH of is:
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All GRE Subject Test: Chemistry Resources
