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First General Meeting! The Pre-Health Society’s Monday September 19th
Do you plan on attending Medical School? Dental School? Veterinary School? Or any other Pre-Health Career? Then you should attend… The Pre-Health Society’s First General Meeting! Come to network, learn about the Pre-Health Society, and eat snacks! Monday September 19th 4:30pm The Space
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Chemistry 250-02 Organic Chemistry I Fall, 2016 Day 8 & 9
Organic Chemistry I Fall, 2016 Day 8 & 9 Wed 9/14/16 & Fri 9/16/16 Chapter 4 Acyclic Alkanes and CycloAlkanes Conformational Analysis & Stereochemistry Chem Act 6A, 7A & 7B
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How many H’s are on this molecule?
12 14 16 17 18 20 Other Countdown 10
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How many H’s are on this molecule?
12 14 16 17 18 20 Other Countdown 10
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How many units (degrees) of unsaturation?
3 4 5 6 7 8 9 Countdown 10
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How many units (degrees) of unsaturation?
3 4 5 6 7 8 9 Countdown 10
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What are the numbers of primary, secondary, tertiary and quaternary carbons in this molecule?
2, 3, 3, 2 3, 4, 2, 1 3, 3, 3, 1 3, 4, 3, 0
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What are the numbers of primary, secondary, tertiary and quaternary carbons in this molecule?
2, 3, 3, 2 3, 4, 2, 1 3, 3, 3, 1 3, 4, 3, 0
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What are the numbers of primary, secondary, tertiary and quaternary hydrogens in this molecule?
6, 6, 2, 1 9, 8, 2, 1 9, 8, 3, 1 9, 8, 3, 0
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What are the numbers of primary, secondary, tertiary and quaternary hydrogens in this molecule?
6, 6, 2, 1 9, 8, 2, 1 9, 8, 3, 1 9, 8, 3, 0
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Acyclic Alkanes are non-rigid
≈ 1 kcal/mol
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Cyclic Alkanes are “rigid” cis and trans isomers
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The Dance of Ethane Conformational Isomers
Chem Act 6A Models 1-5 complete CTQ 1-12 = 3 kcal/mol 1 kcal/mol each
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Which statement about bond rotation around the C-C bonds in ethane and ethene is correct? H3C-CH3 H2C=CH2 Rotation around a σ bond is easy because the orbital overlap does not change with rotation. Rotation around a π bond is easy because there are p orbitals available in all directions of space. Rotation around a σ bond is hard because the electron pairs from the adjacent bonds must pass by each other. Rotation around a π bond is hard because the electrons are delocalized. Rotation around σ and π bonds is equally facile.
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Which statement about bond rotation around the C-C bonds in ethane and ethene is correct? H3C-CH3 H2C=CH2 Rotation around a σ bond is easy because the orbital overlap does not change with rotation. Rotation around a π bond is easy because there are p orbitals available in all directions of space. Rotation around a σ bond is hard because the electron pairs from the adjacent bonds must pass by each other. Rotation around a π bond is hard because the electrons are delocalized. Rotation around σ and π bonds is equally facile.
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The Dance of Propane 1.4 kcal 1 kcal
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The Dance of Butane Conformational Isomers
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Melvin Newman Projections (1952)
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Non-Bonded Intramolecular Interactions Draw low and high energy Newman conformations of 2-methylbutane
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Which of the above represents a Newman projection of 2-bromo-3-chlorobutane?
d e
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Which of the above represents a Newman projection of 2-bromo-3-chlorobutane?
d e
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Some Cyclic Natural Products
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Tamiflu
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Some Cyclic Hydrocarbons CnH2n vs CnH2n+2
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Chem Activity 7A Cis and Trans Rings (p. 98)
Read Model 1 and complete CTQ 1-4. If you finish, continue to Model 2. Note for CTQ 7: We are skipping alkenes (E/Z isomers) for now. Ignore those!
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Cycloalkanes - Physical Properties
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Cyclopropane C3H6
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Cyclopropane Stereoisomers
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Cyclobutane C4H8
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Cyclopentane C5H10
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Some Natural Cyclopentanes The Prostaglandins
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Are these two molecules the same?
No; one is cis and one is trans. No; the methyl groups are not on the same side of the ring. Yes; they have the same #s of C’s and H’s. Yes; they can be interconverted without breaking bonds. Yes; they have the same stereochemistry
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Which of these 4 molecules are the same?
A & B and C & D A & C and B & D A & D and B & C None are the same. All are the same.
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CnH2n + 2nO2 = nCO2 + 2nH2O
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What kind of strain is there and Which cycloalkane is most strain free ?
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Nomenclature with rings
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Problems
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Cyclohexane and its Stereochemistry
Organic Chemistry I Fall, 2016 Day 9 Fri 9/16/16 Chapter 4 Cyclohexane and its Stereochemistry Chem Act 7A, 7B - Today
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Cyclohexane C6H12 and Analogs
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Visualizing Cyclohexane The Chair – Chem Act 7B Model 3
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What kind of strain is there and Which cycloalkane is most strain free ?
Chem Act 7B Model 4
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CnH2n + 2nO2 = nCO2 + 2nH2O
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Axial and Equatorial Chem Act 7B Model 5
Axial and Equatorial Chem Act 7B Model 5
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What happens to an axial hydrogen in a chair conformation of cyclohexane when all bonds “rotate” in a synchronized fashion? nothing, it stays where it was as an axial H it “flips” to the equatorial position on the same carbon it “flips” to the equatorial position on the next carbon the carbon to which the hydrogen is attached changes hybridization it moves from a cis to a trans position
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Strain in Substituted Cyclohexanes
ΔG = - RT ln K ΔG (in kcal/mole) = log K K log K ΔG Why so large ? Why so small ?
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Substituted Cyclohexanes
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What happens to a substituent in a chair conformation of cyclohexane when all bonds “rotate” in a synchronized fashion? nothing, it stays where it was in an axial position it “flips” to the equatorial position on the same carbon it moves to the next carbon the carbon to which the substituent is attached changes hybridization it moves from a cis to a trans position
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Which of these 4 molecules have the same relative stereochemistry ?
A & B and C & D A & C and B & D A & D and B & C None have the same. All have the same.
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What is the relationship between A and B (or C and D) ?
Constitutional isomers Conformational isomers Configurational isomers They have different molecular weights. All are the same.
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1,2-Dimethylcyclohexane
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What is the energy difference between the two chair conformations of trans-1,2-dimethylcyclohexane?
zero one gauche interaction vs two CH3-H diaxial interactions one gauche interaction vs four CH3-H diaxial interactions two gauche interactions vs four CH3-H diaxial interactions one gauche interaction vs two gauche interactions
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Problem 4.18 Draw the most stable chair conformation of
a) trans-1-Chloro-3-methylcyclohexane b) cis-1-Ethyl-2-methylcyclohexane c) cis-1-Bromo-4-ethylcyclohexane d) cis-1-tert-Butyl-4-ethylcyclohexane
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Which of the above molecules represents the most stable conformation of trans-1,3-dimethylcyclohexane? a b c d e
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Which of the above molecules will have the highest energy after the chair flip?
d e
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Which of the above structures represents the most stable (lowest PE) conformation of tert-butyl-3,5-dimethylcyclohexane? a b c d e
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Which of the above structures represents the least stable (highest PE) conformation of tert-butyl-3,5-dimethylcyclohexane? a b c d e
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What are the relative geometries of ring fusions (starting from the left) for the steroid shown below? cis, cis, cis cis, cis, trans cis, trans, trans trans. cis, cis trans, trans, cis
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Substituted Cyclohexanes
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Decalin C10H18
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Reactions of Alkanes
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