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Topic: Stereocenters  (Read 27635 times)

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Offline prncess23

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Stereocenters
« on: December 06, 2008, 03:16:31 AM »
Hello,

Ok, so i know that in order for a carbon to be a stereocenter, it has to have 4 different things attached to it. So, a carbon with a double bond can NEVER be a stereocenter because it will only have 3 things attached to it...at most...right? And that if a carbon is chiral its mirror image is NOT superimposeable.

So....i am confused with determining how many isomers 1,4-pentadien-3-ol has and citric acid.  But first, i need to determine how many stereocenters it has so i can use the 2n rule.

structures are below:

1,4-pentadien-3-ol


Citric Acid


Offline Borek

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Re: Stereocenters
« Reply #1 on: December 06, 2008, 04:24:35 AM »
Do you see a carbon with four different groups attached in any of these compounds?
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Offline prncess23

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Re: Stereocenters
« Reply #2 on: December 06, 2008, 04:39:26 AM »
Do you see a carbon with four different groups attached in any of these compounds?

1,4-pentadien-3-ol, i see that carbon 3 with the OH group attached.

citric acid...the three carbons in the middle of the molecule, between the double bonds have 4 things attached, but the 2 H's are the same...so...that molecule is achiral right...b/c its mirror image CAN be superimposed upon itself...and b/c it has a internal plane of symmetry???

Offline Borek

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Re: Stereocenters
« Reply #3 on: December 06, 2008, 05:25:46 AM »
1,4-pentadien-3-ol, i see that carbon 3 with the OH group attached.

List and compare all three groups attached.
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Offline prncess23

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Re: Stereocenters
« Reply #4 on: December 06, 2008, 05:32:09 AM »
1,4-pentadien-3-ol, i see that carbon 3 with the OH group attached.

List and compare all three groups attached.

but in order for it to be a stereocenter, the carbon needs to have 4 different groups attached...NOT 3....

Offline prncess23

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Re: Stereocenters
« Reply #5 on: December 06, 2008, 05:34:55 AM »
1,4-pentadien-3-ol, i see that carbon 3 with the OH group attached.

List and compare all three groups attached.

but in order for it to be a stereocenter, the carbon needs to have 4 different groups attached...NOT 3....

groups:
CH
CH
OH
H

Offline Borek

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Re: Stereocenters
« Reply #6 on: December 06, 2008, 07:54:47 AM »
List and compare all three groups attached.

but in order for it to be a stereocenter, the carbon needs to have 4 different groups attached...NOT 3....

Sorry. Let's call it a typo. I was thinking about other three groups (apart from -OH that you have already named).

groups:
CH
CH
OH
H

CH are wrong, it is not only the closest atom that counts.

Try to compare these groups.
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Offline wanderlust

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Re: Stereocenters
« Reply #7 on: December 15, 2008, 05:24:34 AM »
Neither of these two compounds has a stereocenter.  If you're having troubles try watching this series of youtube videos they might be helpful http://www.youtube.com/watch?v=NxIOrK6wF70

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