SUBJECTS
|
BROWSE
|
CAREER CENTER
|
POPULAR
|
JOIN
|
LOGIN
Business Skills
|
Soft Skills
|
Basic Literacy
|
Certifications
About
|
Help
|
Privacy
|
Terms
|
Email
Search
Test your basic knowledge |
MCAT Organic Chemistry
Start Test
Study First
Subjects
:
mcat
,
science
Instructions:
Answer 50 questions in 15 minutes.
If you are not ready to take this test, you can
study here
.
Match each statement with the correct term.
Don't refresh. All questions and answers are randomly picked and ordered every time you load a test.
This is a study tool. The 3 wrong answers for each question are randomly chosen from answers to other questions. So, you might find at times the answers obvious, but you will see it re-enforces your understanding as you take the test each time.
1. Y = position of double bond - x is position of triple bond - root is the prefix representing the length of the principal carbon chain
y- root - en -x-yne
anti conformation
covalent bond
C3H8 + 5O2 = 3CO2 + 4H2O + heat
2. Two p orbital form pi and third p orbital combine with s to make two sp hybrid. 180 degree apart
sp
oxidizing
electrophilic addition of H2O
torsional strain
3. Arise from angle strain - torsional strian and nonbonded strain
ring strain
electrophile
specific rotation
alcohol
4. Hydrocarbon with one or more carbon carbon triple bond
conformational isomer
carboxylic acid
vicinal
alkyne
5. Ozonolysis under hot acidic kmO4 - e.g. H2O2 condition
Combustion
ozonolysis
oxidizing
chiral
6. Two hydroxyl groups
diol
sigma bond
enantiomer
primary carbon
7. A = observed rotation / concentration * length
specific rotation
structural isomers
diol
sp3
8. Propylenes attached to a backbone at the C-3 position. Meaning the double bond at end of the chain and single bonded carbon at rest
allyl
not ignored
quantum numbers
nonbonded strain
9. When bond angles deviate from ideal values
vicinal
angle strain
primary carbon
Haloalkane
10. No double bonds. it has the maximum number of hydrogens.
mcpba
saturated hydrocarbon
absolute configuration
Alkane
11. Compounds with halogen
fischer projection
catalytic hydrogenation
Haloalkane
amines
12. Reducing an alkene by adding molecular hydrogen to double bond with aid of metal catalyst. e.g. pt - pd - ni. takes place on surface of metal so it does syn addition
methylene
catalytic hydrogenation
meso compound
aprotic solvent
13. How many stereoisomers can a molecule have with n chiral centers
2^n
Vinyl
basicity
achiral
14. Functionality is specified by alkoxy- prefix. ROR
torsional strain
ethers
molecular orbital
chiral center
15. Diol with hydroxyl group on same carbon
oxidizing
hybridization
geminal
optical activity
16. Diborane add to double bond. boron acts as lewis acid and attaches to less hindered carbon. hydride transferred to adjacent carbon. antimarkonikov - alcohol produced
hydroboration
propionaldehyde
absolute configuration
alkyne
17. Combustion reaction occurs through a radical process
C3H8 + 5O2 = 3CO2 + 4H2O + heat
Alkene
absolute configuration
Vinyl
18. Cleaves double bond in half - it only oxidizes the carbon to an aldehyde under reducing conditions. if ozidizing make same product as KMNO4
vicinal
stereoisomers
peroxycarboxylic acid
ozonolysis
19. Fast process. double bond is nucleophile and attack x2. make cyclic halonium ion with either br or cl. and make dihalo trans
electrophilic addition of X2
hybridization
covalent bond
oxidizing
20. Carbon double bonded to an oxygen
enantiomer
carbonyl
chiral
reducing
21. Refers to the =CH2 group
oxidation
methylene
diastereomers
enantiomer
22. Chain of carbons connected by single bonds with hydrogen atoms attached.
y- root - en -x-yne
Alkane
oxidation
specific rotation
23. O3
ozonolysis
hot - acidic potassium permanganate
angle strain
electrophilic addition of free radicals
24. Creation of long - high molecular weight polymer composed of repeating subunit called monomers. occur through a radical mechanism.
optical activity
polymerization
Haloalkane
structural isomers
25. Share molecular formula but have different chemical and physical properties
structural isomers
markovnikov's rule
initiation propagation termination
2^n
26. Results when cyclic molecules must assume conformations that have eclipsed interactions
torsional strain
carboxylic acid
saturated hydrocarbon
aprotic solvent
27. In presence of peroxide - oxygen or ultraviolet light. antimarkonikov because they want a stable free radical. therefore X ends up on least subsituted carbon
carboxylic acid
electrophilic addition of free radicals
hydroboration
racemic mixture
28. Sharing of electron between atoms
basicity
ring flip
ozonolysis
covalent bond
29. When a molecular orbital is formed head to head or tail to tail. all single bonds are tehese.
2^n
sigma bond
ozonolysis
fischer projection
30. Occur when a molecule is broken down by heat. used to reduce the avverage molecular weight of heavy oils. c - c - bonds are cleave dand make small chain alkyl radicals that recombine to form different alkanes
configuration
pi bond
ionic bond
pyrolysis
31. Is bonded to only one other carbon atom
electrophilic addition of free radicals
sp3
primary carbon
sp
32. Nonsuperimposable mirror image of chiral objects - a specific steroisomer.
hybridization
enantiomer
potassium permanganate
ring flip
33. F - CL - Br - I
basicity
halogen
conformational isomer
ozonolysis
34. Charged - need electrons
carboxylic acid
not ignored
electrophile
eclipsed conformation
35. Alkene oxidized with this - strong oxidizing agent. CH3CO3H or mcpba and it makes epoxide or oxirane
chiral
electrophilic addition of H2O
peroxycarboxylic acid
weak bases
36. Water can be added to alkenes under acidic conditions. make carbocation. ends with alcohol
nucleophile
nonbonded strain
aprotic solvent
electrophilic addition of H2O
37. E of double bond act as lewis base and react with hydrogen of hx. make carbocation intermediate. use markonikovs rule
Alkyne
electrophilic addition of HX
alcohol
sigma bond
38. Solvents with protons in solution - e.g. water or alcohol. large atoms tend to be better nucleophiles in here because they can shed the solvating protons around them and are more polarizable
vicinal
enantiomer
alcohol
protic solvent
39. Common name for ethyne
Acetylene
hot - acidic potassium permanganate
basicity
optical activity
40. Monosubstituted ethylene
anti conformation
racemic mixture
Vinyl
acetaldehyde
41. Same chemical formula. same atomic connectivity . different in how atoms are arranged in space
peroxycarboxylic acid
meso compound
stereoisomers
reducing
42. Transfer of electrions from one atome to another
allyl
ionic bond
relative configuration
disproportionation
43. Describes the exact spatial arrangement of groups of atoms independent of other molecules.
absolute configuration
electrophilic addition of X2
combustion - disproportionation - free - radical substitution - pyrolysis
amines
44. Rotations cancel each other out therefore no optical activity
racemic mixture
potassium permanganate
Haloalkane
carboxylic acid
45. A sigma bond and two pi bonds
electrophilic addition of H2O
pi bond
triple bond
Combustion
46. Object that is not superimposable upon mirror image
enantiomer
Vinyl
chiral
initiation propagation termination
47. Goal is to produce most stable carbocation
48. When two p orbitals line up in parallel and electron clouds overlap. it exsits over a single bond.
2^n
cold potassium permanganate
ring flip
pi bond
49. Most favorable of staggared conformations
anti conformation
aprotic solvent
sp
saturated hydrocarbon
50. Lowest priority group projects into the page
mcpba
fischer projection
aldehyde
angle strain