(a) Interpretation: The conjugate base for the acid should be determined. Concept Introduction: Acid is defined as a substance that gives hydrogen ion/s in the aqueous solution. Similarly, base is a substance that gives hydroxide ions in the aqueous solution. When a acid gives its hydrogen ion, conjugate base is formed and when a base gives its hydroxide ion, conjugate acid is formed. For example, if HA is an acid, the reaction for formation of conjugate base will be as follows: HA → H + +A − Here, A − is conjugate base. Similarly, if BOH is a base, the reaction for formation of conjugate acid will be as follows: BOH → B + +OH − Here, B + is conjugate acid. Thus, a conjugate base can accept hydrogen ion and conjugate base can accept hydroxide ion.
(a) Interpretation: The conjugate base for the acid should be determined. Concept Introduction: Acid is defined as a substance that gives hydrogen ion/s in the aqueous solution. Similarly, base is a substance that gives hydroxide ions in the aqueous solution. When a acid gives its hydrogen ion, conjugate base is formed and when a base gives its hydroxide ion, conjugate acid is formed. For example, if HA is an acid, the reaction for formation of conjugate base will be as follows: HA → H + +A − Here, A − is conjugate base. Similarly, if BOH is a base, the reaction for formation of conjugate acid will be as follows: BOH → B + +OH − Here, B + is conjugate acid. Thus, a conjugate base can accept hydrogen ion and conjugate base can accept hydroxide ion.
Solution Summary: The author explains that acid gives hydrogen ion/s in the aqueous solution, whereas base gives hydroxide ions.
The conjugate base for the acid should be determined.
Concept Introduction:
Acid is defined as a substance that gives hydrogen ion/s in the aqueous solution. Similarly, base is a substance that gives hydroxide ions in the aqueous solution. When a acid gives its hydrogen ion, conjugate base is formed and when a base gives its hydroxide ion, conjugate acid is formed.
For example, if HA is an acid, the reaction for formation of conjugate base will be as follows:
HA→H++A−
Here, A− is conjugate base.
Similarly, if BOH is a base, the reaction for formation of conjugate acid will be as follows:
BOH→B++OH−
Here, B+ is conjugate acid.
Thus, a conjugate base can accept hydrogen ion and conjugate base can accept hydroxide ion.
Interpretation Introduction
(b)
Interpretation:
The conjugate base for the acid should be determined.
Concept Introduction:
Acid is defined as a substance that gives hydrogen ion/s in the aqueous solution. Similarly, base is a substance that gives hydroxide ions in the aqueous solution. When a acid gives its hydrogen ion, conjugate base is formed and when a base gives its hydroxide ion, conjugate acid is formed.
For example, if HA is an acid, the reaction for formation of conjugate base will be as follows:
HA→H++A−
Here, A− is conjugate base.
Similarly, if BOH is a base, the reaction for formation of conjugate acid will be as follows:
BOH→B++OH−
Here, B+ is conjugate acid.
Thus, a conjugate base can accept hydrogen ion and conjugate base can accept hydroxide ion.
Interpretation Introduction
(c)
Interpretation:
The conjugate base for the acid should be determined.
Concept Introduction:
Acid is defined as a substance that gives hydrogen ion/s in the aqueous solution. Similarly, base is a substance that gives hydroxide ions in the aqueous solution. When a acid gives its hydrogen ion, conjugate base is formed and when a base gives its hydroxide ion, conjugate acid is formed.
For example, if HA is an acid, the reaction for formation of conjugate base will be as follows:
HA→H++A−
Here, A− is conjugate base.
Similarly, if BOH is a base, the reaction for formation of conjugate acid will be as follows:
BOH→B++OH−
Here, B+ is conjugate acid.
Thus, a conjugate base can accept hydrogen ion and conjugate base can accept hydroxide ion.
Interpretation Introduction
(d)
Interpretation:
The conjugate base for the acid should be determined.
Concept Introduction:
Acid is defined as a substance that gives hydrogen ion/s in the aqueous solution. Similarly, base is a substance that gives hydroxide ions in the aqueous solution. When a acid gives its hydrogen ion, conjugate base is formed and when a base gives its hydroxide ion, conjugate acid is formed.
For example, if HA is an acid, the reaction for formation of conjugate base will be as follows:
HA→H++A−
Here, A− is conjugate base.
Similarly, if BOH is a base, the reaction for formation of conjugate acid will be as follows:
BOH→B++OH−
Here, B+ is conjugate acid.
Thus, a conjugate base can accept hydrogen ion and conjugate base can accept hydroxide ion.
achieve.macmillanlearning.com
Canvas
EA eac
h Hulu
YouTube
G 3 methyl cyclobutanol - Google Search
Ranking Phenol Acidity
Course -236 - Organic Chemistry - Mac...
←
Assessment
Completed 10 of 22 Questions
1 +
Netflix
paramount plus
chem hw
Galdehyde reaction with grignard reagent...
b My Questions | bartleby
M Inbox - chenteislegit@gmail.com - Gmail
Due: Fri, Jan 31
Resources
Solution
Penalized
? Hint
Submit Answer
Use retrosynthetic analysis to suggest two paths to synthesize 2-methyl-3-hexanol using the Grignard reaction. (Click and drag
the appropriate image to the correct position in the reactions.)
Route 1
Aldehyde 1
or
+98
Aldehyde 2
Route 2
Q6
+100
Solved in 1 attempt
Q7
+95
Solved in 2 attempts
Q8
+98
Unlimited attempts
possible
+
+
Grignard 1
OH
H3O+
Grignard 2
Answer Bank
Q9
+90
MgBr
Unlimited attempts
possible
CH3CH2CH2MgBr
Q10
Unlimited attempts
Q11
?
?
+100
in 1 attempt
2-methyl-3-hexanol
CH3CH2MgBr
H
H
о
H
Attempt 3
2) (4 pt) After the reaction was completed, the student collected the following data. Crude
product data is the data collected after the reaction is finished, but before the product
is purified. "Pure" product data is the data collected after attempted purification using
recrystallization.
Student B's data:
Crude product data
"Pure"
product data
after
recrystallization
Crude mass: 0.93 g grey solid
Crude mp: 96-106 °C
Crude % yield:
Pure mass: 0.39 g white solid
Pure mp: 111-113 °C
Pure % yield:
a) Calculate the crude and pure percent yields for the student's reaction.
b) Summarize what is indicated by the crude and pure melting points.
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.