2. Convert the starting volume of (+/-)-trans-1,2-diaminocyclohexane to moles. Show calculation   with units.

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2. Convert the starting volume of (+/-)-trans-1,2-diaminocyclohexane to moles. Show calculation

 

with units.

 

3. The starting (+/-)-trans-1,2-diaminocyclohexane is racemic, meaning there are equal amounts of each enantiomer present. How many moles of the (+)-enantiomer are you starting with? How many moles of the (-)-enantiomer are you starting with?

 

Please help with a least question 2 I believe the starting (+/-)-trans-1,2-diaminocyclohexane is given as racemic trans-1,2-diaminocyclohexane in the quantity of 2.4 ml 

Mm of the trans-1,2-diaminocyclohexane is 114.19 g/mol, L-Tartaric acid 150.09 g/mol

Add 5.0 mL of distilled water and 2.5 g of L-(+)-tartaric acid to a 25 mL Erlenmeyer flask with a
stir bar. Stir the solution until all of the L-(+)-tartaric acid dissolves. While stirring, add 2.4 mL of racemic
trans-1,2-diaminocyclohexane in one portion. After 5 minutes of additional stirring, add 1.0 mL of 17.4 M
acetic acid to the flask and cover the flask with a watch glass. Continue to stir for 10 minutes. Any extra
acetic acid should be diluted with water, neutralized using small portions of sodium bicarbonate, and, after
checking the pH with your TA, pour down the drain with plenty of water.
Transcribed Image Text:Add 5.0 mL of distilled water and 2.5 g of L-(+)-tartaric acid to a 25 mL Erlenmeyer flask with a stir bar. Stir the solution until all of the L-(+)-tartaric acid dissolves. While stirring, add 2.4 mL of racemic trans-1,2-diaminocyclohexane in one portion. After 5 minutes of additional stirring, add 1.0 mL of 17.4 M acetic acid to the flask and cover the flask with a watch glass. Continue to stir for 10 minutes. Any extra acetic acid should be diluted with water, neutralized using small portions of sodium bicarbonate, and, after checking the pH with your TA, pour down the drain with plenty of water.
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