
(a)
Interpretation:
The volume of the
Concept Introduction:
- The molarity is the number of moles of the solute dissolved per liter volume of the solution. It is represented in mathematical term such that,
Where, n is the number of moles,
V is the volume of the solution.
- The equation of dilution is given as,
Where,
(a)

Answer to Problem 41A
Explanation of Solution
Given information:
The acetic acid volume is,
The molarities of acetic acid and sodium hydroxide is,
Calculation:
The molarity formula is,
And,
- The equation of dilution is given as,
The balanced equation of the given solution is,
Hence, 1 mole of
So, Firstly, calculate the number of moles of hydrogen ion in
For neutralizing the reaction, the number of hydrogen ions must be equal to the number of hydroxide ions. The hydroxide ions are limiting.
According o the balanced equations both hydrogen and hydroxide ions are reacted in a
Therefore, the number of moles of hydroxide ions are,
Now, calculate the volume of the
The volume of the
(b)
Interpretation:
The volume of the
Concept Introduction:
- The molarity is the number of moles of the solute dissolved per liter volume of the solution. It is represented in mathematical term such that,
Where, n is the number of moles,
V is the volume of the solution.
- The equation of dilution is given as,
Where,
(b)

Answer to Problem 41A
Explanation of Solution
Given information:
The volume is,
The molarities of
Calculation:
- The molarity formula is,
And,
- The equation of dilution is given as,
The balanced equation of the given solution is,
Hence, 1 mole of
So, Firstly, calculate the number of moles of hydrogen ion in solution
For neutralizing the reaction, the number of hydrogen ions must be equal to the number of hydroxide ions. The hydroxide ions are limiting.
According to the balanced equations both hydrogen and hydroxide ions are reacted in a
Therefore, the number of moles of hydroxide ions are,
Now, calculate the volume of the
The volume of the
(c)
Interpretation:
The volume of the
Concept Introduction:
- The molarity is the number of moles of the solute dissolved per liter volume of the solution. It is represented in mathematical term such that,
Where, n is the number of moles,
V is the volume of the solution.
- The equation of dilution is given as,
Where,
(c)

Answer to Problem 41A
Explanation of Solution
Given information:
The volume is,
The molarities of
Calculation:
- The molarity formula is,
And,
- The equation of dilution is given as,
The balanced equation of the given solution is,
Hence, 1 mole of
For neutralizing the reaction, the number of hydrogen ions must be equal to the number of hydroxide ions.
According to the balanced equations both hydrogen and hydroxide ions are reacted in a
Therefore, the number of moles of hydroxide ions are,
Now, calculate the volume of the
The volume of
(d)
Interpretation:
The volume of the
Concept Introduction:
- The molarity is the number of moles of the solute dissolved per liter volume of the solution. It is represented in mathematical term such that,
Where, n is the number of moles,
V is the volume of the solution.
- The equation of dilution is given as,
Where,
.
(d)

Answer to Problem 41A
Explanation of Solution
Given information:
The volume is,
The molarities of
Calculation:
- The molarity formula is,
And,
- The equation of dilution is given as,
The balanced chemical equation is,
Hence, 1 mole of Sulphuric acid is neutralizes the 2 moles of sodium hydroxide.
Firstly, calculate the number of moles of hydrogen ion in
For neutralizing the reaction, the number of hydrogen ions must be equal to the number of hydroxide ions.
According to the balanced equations both hydrogen and hydroxide ions are reacted in a
Therefore, the number of moles of hydroxide ions are,
Now, calculate the volume of the
The volume is
Chapter 15 Solutions
World of Chemistry, 3rd edition
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- What is the missing reactant in this organic reaction? R+ HO-C-CH2-CH3 0= CH3 CH3 —CH, C−NH—CH CH3 + H₂O Specifically, in the drawing area below draw the condensed structure of R. If there is more than one reasonable answer, you can draw any one of them. If there is no reasonable answer, check the No answer box under the drawing area. Note for advanced students: you may assume no products other than those shown above are formed. No Answer Click anywhere to draw the first atom of your structure. €arrow_forward个 CHEM&131 9267 - $25 - Intro to Mail - Hutchison, Allison (Student x Aktiv Learnin https://app.aktiv.com Draw the product of the reaction shown below. Ignore inorganic byproducts. + Na2Cr2O7 Acetone, H2SO4 Type here to search Dryng OH W Prarrow_forwardPredict the products of this organic reaction: OH + NaOH A? Specifically, in the drawing area below draw the skeletal ("line") structure of the product, or products, of this reaction. (If there's more than one product, draw them in any arrangement you like, so long as they aren't touching.) If there aren't any products because this reaction won't happen, check the No reaction box under the drawing area. No reaction Click and drag to start drawing a structure. ✓ Sarrow_forward
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