HO- OH Ho- H어- H Ho- Ho HO Ho flo- for HO HO HO OH Ha Ha Ho HO- O4 HCL OH lo- a. Pick one of the sugars above you did not find a mirror image for, draw an arrow pointing to that sugar. Next, below this question draw that sugar in the cyclized ring form as a B-pyranose ring. b. Show the B(1>3) linkage between two of the same ring you drew.
Reactive Intermediates
In chemistry, reactive intermediates are termed as short-lived, highly reactive atoms with high energy. They rapidly transform into stable particles during a chemical reaction. In specific cases, by means of matrix isolation and at low-temperature reactive intermediates can be isolated.
Hydride Shift
A hydride shift is a rearrangement of a hydrogen atom in a carbocation that occurs to make the molecule more stable. In organic chemistry, rearrangement of the carbocation is very easily seen. This rearrangement can be because of the movement of a carbocation to attain stability in the compound. Such structural reorganization movement is called a shift within molecules. After the shifting of carbocation over the different carbon then they form structural isomers of the previous existing molecule.
Vinylic Carbocation
A carbocation where the positive charge is on the alkene carbon is known as the vinyl carbocation or vinyl cation. The empirical formula for vinyl cation is C2H3+. In the vinyl carbocation, the positive charge is on the carbon atom with the double bond therefore it is sp hybridized. It is known to be a part of various reactions, for example, electrophilic addition of alkynes and solvolysis as well. It plays the role of a reactive intermediate in these reactions.
Cycloheptatrienyl Cation
It is an aromatic carbocation having a general formula, [C7 H7]+. It is also known as the aromatic tropylium ion. Its name is derived from the molecule tropine, which is a seven membered carbon atom ring. Cycloheptatriene or tropylidene was first synthesized from tropine.
Stability of Vinyl Carbocation
Carbocations are positively charged carbon atoms. It is also known as a carbonium ion.
a. Pick one of the sugars above you did not find a mirror image for; draw an arrow pointing to that sugar. Next, below this question draw that sugar in the cyclized ring form as a β-pyranose ring
b. Show the β(13) linkage between two of the same ring you drew.
![4. (4 points)
For the Fischer projections below identify any mirror images of each other. Place circles around
the first pair found. Use squares if you find a second pair. Use Triangles if you find a third pair.
b. How many chiral carbons are on each of these sugars?
HO
-아
OH HO
-애
Ho
-OH
HO
но
HO
-아
OH HO
Ha
Ho
-HO-
-O4 Ho
HC
a. Pick one of the sugars above you did not find a mirror image for; draw an arrow pointing to that
sugar. Next, below this question draw that sugar in the cyclized ring form as a B-pyranose ring.
b. Show the B(1->3) linkage between two of the same ring you drew.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F199c5ea2-a8fc-4498-aa95-2dbdc17ee523%2F631a1edc-7fdf-4493-9eed-371950f917e2%2Fnsajbgk_processed.png&w=3840&q=75)
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