The specific rotation, [a]D> for (-)-2-butanol is +14. What is the observed rotation for a solution of 3.3 g of (-)-2-butanol in 10 mL of water in a sample tube having a pathlength of 10 cm? degrees . The observed rotation of a solution of 0.75 g of a compound in 10 mL of water is -6.9 degrees. If the pathlength is 10 cm, what is the specific rotation of the compound?

Organic Chemistry
8th Edition
ISBN:9781305580350
Author:William H. Brown, Brent L. Iverson, Eric Anslyn, Christopher S. Foote
Publisher:William H. Brown, Brent L. Iverson, Eric Anslyn, Christopher S. Foote
Chapter3: Stereoisomerism And Chirality
Section3.7: Optical Activity—how Chirality Is Detected In The Laboratory
Problem 3.9P
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The specific rotation, [a]p, for (-)-2-butanol is +14.
What is the observed rotation for a solution of 3.3 g of
(-)-2-butanol in 10 mL of water in a sample tube
having a pathlength of 10 cm?
degrees .
The observed rotation of a solution of 0.75 g of a
compound in 10 mL of water is -6.9 degrees. If the
pathlength is 10 cm, what is the specific rotation of the
compound?
Transcribed Image Text:The specific rotation, [a]p, for (-)-2-butanol is +14. What is the observed rotation for a solution of 3.3 g of (-)-2-butanol in 10 mL of water in a sample tube having a pathlength of 10 cm? degrees . The observed rotation of a solution of 0.75 g of a compound in 10 mL of water is -6.9 degrees. If the pathlength is 10 cm, what is the specific rotation of the compound?
How many monochloro substitution products are
produced when the alkane below is chlorinated?
Consider both constitutional isomers and
stereoisomers.
The number of monochloro substitution products is
Transcribed Image Text:How many monochloro substitution products are produced when the alkane below is chlorinated? Consider both constitutional isomers and stereoisomers. The number of monochloro substitution products is
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