The reason as to why the process of vaporization requires an input of energy is to be stated. The reason as to why it is important that water has a large heat of vaporization is to be stated. The definition of condensation is to be stated. The explanation corresponding to the given statement that is the process of vaporization and condensation represent equilibrium in a closed container is to be stated. The equilibrium vapor pressure of a liquid is to be defined. An explanation for the increase of pressure in a closed container is to be stated. An experiment that demonstrates vapor pressure and aids in measuring the magnitude of heat pressure is to be described. An explanation for the magnitude of liquid’s vapor pressure related to the intermolecular forces in the liquid is to be stated. Concept Introduction: There are two types of forces that exist between the molecules. These forces are intermolecular and intramolecular forces. Intermolecular forces are always present between the two or more molecules, whereas intramolecular forces are present within the same molecule.
The reason as to why the process of vaporization requires an input of energy is to be stated. The reason as to why it is important that water has a large heat of vaporization is to be stated. The definition of condensation is to be stated. The explanation corresponding to the given statement that is the process of vaporization and condensation represent equilibrium in a closed container is to be stated. The equilibrium vapor pressure of a liquid is to be defined. An explanation for the increase of pressure in a closed container is to be stated. An experiment that demonstrates vapor pressure and aids in measuring the magnitude of heat pressure is to be described. An explanation for the magnitude of liquid’s vapor pressure related to the intermolecular forces in the liquid is to be stated. Concept Introduction: There are two types of forces that exist between the molecules. These forces are intermolecular and intramolecular forces. Intermolecular forces are always present between the two or more molecules, whereas intramolecular forces are present within the same molecule.
Solution Summary: The author explains that the process of vaporization requires an input of energy to overcome the intermolecular forces present in liquid molecules.
The reason as to why the process of vaporization requires an input of energy is to be stated. The reason as to why it is important that water has a large heat of vaporization is to be stated. The definition of condensation is to be stated. The explanation corresponding to the given statement that is the process of vaporization and condensation represent equilibrium in a closed container is to be stated. The equilibrium vapor pressure of a liquid is to be defined. An explanation for the increase of pressure in a closed container is to be stated. An experiment that demonstrates vapor pressure and aids in measuring the magnitude of heat pressure is to be described. An explanation for the magnitude of liquid’s vapor pressure related to the intermolecular forces in the liquid is to be stated.
Concept Introduction:
There are two types of forces that exist between the molecules. These forces are intermolecular and intramolecular forces. Intermolecular forces are always present between the two or more molecules, whereas intramolecular forces are present within the same molecule.
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Solution
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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
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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.
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