(a) Interpretation: The molar mass of adipic acid ( C 6 H 10 O 4 ) should be calculated. Concept Introduction: Molar mass refers to the mass of one mole of the compound. It is calculate by adding the mass of each atom of each element present in one molecule of a compound.
(a) Interpretation: The molar mass of adipic acid ( C 6 H 10 O 4 ) should be calculated. Concept Introduction: Molar mass refers to the mass of one mole of the compound. It is calculate by adding the mass of each atom of each element present in one molecule of a compound.
The molar mass of adipic acid (C6H10O4) should be calculated.
Concept Introduction:
Molar mass refers to the mass of one mole of the compound. It is calculate by adding the mass of each atom of each element present in one molecule of a compound.
Expert Solution
Answer to Problem 111AP
The molar mass of adipic acid (C6H10O4) is 146.1 g/mol.
Explanation of Solution
Molar mass of adipic acid (C6H10O4)
=[6(Atomic mass of C)+10(Atomic mass of H)+4(Atomic mass of O)]=[6(12.01)+10(1.008)+4(15.99)]g/mol=146.1 g/mol
Here,
Atomic mass of carbon = 12.01 g/mol.
Atomic mass of hydrogen = 1.008 g/mol.
Atomic mass of oxygen = 15.99 g/mol.
Interpretation Introduction
(b)
Interpretation:
The molar mass of caffeine (C8H10N4O2) should be calculated.
Concept Introduction:
Molar mass refers to the mass of one mole of the compound. It is calculate by adding the mass of each atom of each element present in one molecule of a compound.
Expert Solution
Answer to Problem 111AP
The molar mass of caffeine (C8H10N4O2) is 194.1 g/mol.
Explanation of Solution
Molar mass of caffeine (C8H10N4O2)
=[8(atomic mass of C)+10(atomic mass of H)+4(atomic mass of N)+2(atomic mass of O)]=[8(12.01)+10(1.008)+4(14)+2(15.99)]g/mol=194.1 g/mol
Here,
Atomic mass of carbon = 12.01 g/mol.
Atomic mass of hydrogen = 1.008 g/mol.
Atomic mass of nitrogen = 14 g/mol.
Atomic mass of oxygen = 15.99 g/mol.
Interpretation Introduction
(c)
Interpretation:
The molar mass of eicosane (C20H42) should be calculated.
Concept Introduction:
Molar mass refers to the mass of one mole of the compound. It is calculate by adding the mass of each atom of each element present in one molecule of a compound.
Expert Solution
Answer to Problem 111AP
The molar mass of eicosane (C20H42) is 282.5 g/mol.
Explanation of Solution
Molar mass of eicosane (C20H42)
=[20(atomic mass of C)+42(atomic mass of H)]=[20(12.01)+42(1.008)]g/mol=282.5 g/mol
Here,
Atomic mass of carbon = 12.01 g/mol.
Atomic mass of hydrogen = 1.008 g/mol.
Interpretation Introduction
(d)
Interpretation:
The molar mass of cyclohexanol (C6H11OH) should be calculated.
Concept Introduction:
Molar mass refers to the mass of one mole of the compound. It is calculate by adding the mass of each atom of each element present in one molecule of a compound.
Expert Solution
Answer to Problem 111AP
The molar mass of cyclohexanol (C6H11OH) is 100.15 g/mol.
Explanation of Solution
Molar mass of cyclohexanol (C6H11OH)
=[6(Atomic mass of C)+12(Atomic mass of H)+1(Atomic mass of O)]=[6(12.01)+12(1.008)+1(15.99)]g/mol=100.15 g/mol
Here,
Atomic mass of carbon = 12.01 g/mol.
Atomic mass of hydrogen = 1.008 g/mol.
Atomic mass of oxygen = 15.99 g/mol.
Interpretation Introduction
(e)
Interpretation:
The molar mass of vinyl acetate (C4H6O2) should be calculated.
Concept Introduction:
Molar mass refers to the mass of one mole of the compound. It is calculate by adding the mass of each atom of each element present in one molecule of a compound.
Expert Solution
Answer to Problem 111AP
The molar mass of vinyl acetate (C4H6O2) is 86.09 g/mol.
Explanation of Solution
Molar mass of vinyl acetate (C4H6O2)
=[4(Atomic mass of C)+6(Atomic mass of H)+2(Atomic mass of O)]=[4(12.01)+6(1.008)+2(15.99)] g/mol=86.09 g/mol
Here,
Atomic mass of carbon = 12.01 g/mol.
Atomic mass of hydrogen = 1.008 g/mol.
Atomic mass of oxygen = 15.99 g/mol.
Interpretation Introduction
(f)
Interpretation:
The molar mass of dextrose (C6H12O6) should be calculated.
Concept Introduction:
Molar mass refers to the mass of one mole of the compound. It is calculated by adding the mass of each atom of each element present in one molecule of a compound.
Expert Solution
Answer to Problem 111AP
The molar mass of dextrose (C6H12O6) is 180.1 g/mol.
Explanation of Solution
Molar mass of dextrose (C6H12O6)
=[6(Atomic mass of C)+12(Atomic mass of H)+6(Atomic mass of O)]=[6(12.01)+12(1.008)+6(15.99)] g/mol =180.1 g/mol
Here,
Atomic mass of carbon = 12.01 g/mol.
Atomic mass of hydrogen = 1.008 g/mol.
Atomic mass of oxygen = 15.99 g/mol.
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Retry
Curved arrows are used to illustrate the flow of electrons. Use the reaction conditions provided and follow
the arrows to draw the reactant and missing intermediates involved in this reaction.
Include all lone pairs and charges as appropriate. Ignore inorganic byproducts.
Incorrect, 6 attempts remaining
:0:
Draw the Reactant
H
H3CO
H-
HIO:
Ö-CH3
CH3OH2*
protonation
H.
a
H
(+)
H
Ο
CH3OH2
O:
H3C
protonation
CH3OH
deprotonation
>
CH3OH
nucleophilic addition
H.
HO
0:0
Draw Intermediate
a
X
Can I please get the blank spaces answered/answers?
1. Identify the following alkenes as E or Z
NH₂
Br
2. Draw the structures based on the IUPAC names
(3R,4R)-3-bromo-4-fluoro-
1-hexene
(Z)-4-bromo-2-iodo-3-ethyl-
3-heptene
تر
3. For the following, predict all possible elimination product(s) and circle the major product.
HO
H₂SO4
Heat
80
F4
OH
H2SO4
Heat
어요
F5
F6
1
A
DII
4
F7
F8
F9
%
&
5
6
7
* ∞
8
BAB
3
E
R
T
Y
U
9
F
D
G
H
J
K
O
A
F11
F10