The mass of NaOH in grams from the given pH and the volume of its solution is to be determined. Concept introduction: Number of moles ( n ) of any substance is defined as the ratio of its given mass ( m ) to its molecular mass ( MM ) . n = m MM …… (1) Molarity ( M ) is defined as the concentration of a solution in terms of the number of moles ( n ) of solute in one-liter solution. Mathematically, it is expressed as: M = n V …… (2) Here, V is the volume of the solution in liters. Molarity is also defined as mol/L . A strong base is an electrolyte that gets completely dissociated when dissolved in water to produce hydroxide ions and its conjugate acid. BOH ( a q ) → B + ( a q ) + OH − ( a q ) pOH is the measure of basicity of a solution that depends on the concentration of hydroxide ions and the temperature of the solution. The formula to calculate the hydroxide ion concentration is: [ OH − ] = 10 − pOH …… (3) The relationship between pH and pOH is: pH + pOH = 14 …… (4) The conversion factor to convert mL to L is: 1 L 1000 mL
The mass of NaOH in grams from the given pH and the volume of its solution is to be determined. Concept introduction: Number of moles ( n ) of any substance is defined as the ratio of its given mass ( m ) to its molecular mass ( MM ) . n = m MM …… (1) Molarity ( M ) is defined as the concentration of a solution in terms of the number of moles ( n ) of solute in one-liter solution. Mathematically, it is expressed as: M = n V …… (2) Here, V is the volume of the solution in liters. Molarity is also defined as mol/L . A strong base is an electrolyte that gets completely dissociated when dissolved in water to produce hydroxide ions and its conjugate acid. BOH ( a q ) → B + ( a q ) + OH − ( a q ) pOH is the measure of basicity of a solution that depends on the concentration of hydroxide ions and the temperature of the solution. The formula to calculate the hydroxide ion concentration is: [ OH − ] = 10 − pOH …… (3) The relationship between pH and pOH is: pH + pOH = 14 …… (4) The conversion factor to convert mL to L is: 1 L 1000 mL
Solution Summary: The author defines molarity as the concentration of a solution in terms of the number of moles (m) of solute in one-liter solution.
The mass of NaOH in grams from the given pH and the volume of its solution is to be determined.
Concept introduction:
Number of moles (n) of any substance is defined as the ratio of its given mass (m) to its molecular mass (MM).
n=mMM …… (1)
Molarity (M) is defined as the concentration of a solution in terms of the number of moles (n) of solute in one-liter solution. Mathematically, it is expressed as:
M=nV …… (2)
Here, V is the volume of the solution in liters. Molarity is also defined as mol/L.
A strong base is an electrolyte that gets completely dissociated when dissolved in water to produce hydroxide ions and its conjugate acid.
BOH(aq)→B+(aq)+OH−(aq)
pOH is the measure of basicity of a solution that depends on the concentration of hydroxide ions and the temperature of the solution.
The formula to calculate the hydroxide ion concentration is:
R₂
R₁
R₁
a
R
Rg
Nu
R₂
Rg
R₁
R
R₁₂
R3
R
R
Nu enolate forming
R₁ R
B-Alkylated carbonyl
species or amines
Cyclic B-Ketoester
R₁₁
HOB
R
R₁B
R
R₁₂
B-Hydroxy carbonyl
R
diester
R2 R3
R₁
RB
OR
R₂ 0
aB-Unsaturated carbonyl
NaOR
Aldol
HOR
reaction
1) LDA
2) R-X
3) H₂O/H₂O
ketone,
aldehyde
1) 2°-amine
2) acid chloride
3) H₂O'/H₂O
0
O
R₁
R₁
R
R₁
R₁₂
Alkylated a-carbon
R₁
H.C
R₁
H.C
Alkylated methyl ketone
acetoacetic
ester
B-Ketoester
ester
R₁
HO
R₂ R
B-Dicarbonyl
HO
Alkylated carboxylic acid
malonic ester
Write the reagents required to bring about each reaction next to the arrows shown.
Next, record any regiochemistry or stereochemistry considerations relevant to the
reaction. You should also record any key aspects of the mechanism, such as forma-
tion of an important intermediate, as a helpful reminder. You may want to keep
track of all reactions that make carbon-carbon bonds, because these help you build
large molecules from smaller fragments. This especially applies to the reactions in…
Provide the reasonable steps to achieve the following synthesis.
Identify which compound is more acidic. Justify your choice.
Need a deep-dive on the concept behind this application? Look no further. Learn more about this topic, chemistry and related others by exploring similar questions and additional content below.
Author:Steven D. Gammon, Ebbing, Darrell Ebbing, Steven D., Darrell; Gammon, Darrell Ebbing; Steven D. Gammon, Darrell D.; Gammon, Ebbing; Steven D. Gammon; Darrell
Author:Steven D. Gammon, Ebbing, Darrell Ebbing, Steven D., Darrell; Gammon, Darrell Ebbing; Steven D. Gammon, Darrell D.; Gammon, Ebbing; Steven D. Gammon; Darrell