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The increasing number of benzene rings results in higher T.
It is bent, with an angle of 128 between the two benzene rings.
Iodine is not easily introduced into the benzene ring directly.
Longer chain analogues with up to 10 benzene rings are also known.
Most chemicals, in fact, are based in part on benzene rings.
The solution to the puzzle was the benzene ring.
Benzene rings are a molecular structure of carbon, the basis for all life on earth.
This makes it a "benzene ring," in chemical language.
One of the hydrogen atoms in ammonia is replaced by a benzene ring.
Its chemical structure is made up of a vinyl group bonded onto a benzene ring.
Living human stuff was only a business of benzene rings and side-chains, just like his dyes!
Neither does the 6-carbon pi-bond of the benzene ring.
It consists of a benzene ring substituted with five chlorine atoms.
It retains the aromatic character of the benzene ring.
There are four peaks between 130-140 ppm from the carbons in the benzene ring.
It is a planar molecule made of four fused benzene rings.
Benzene rings are very common in organic compounds.
You know what a benzene ring is?
Phenol, an alcohol where the hydroxyl group is bound to a benzene ring.
This molecule has one central benzene ring surrounded by six alkyl chains.
But compound 8 proved difficult to produce, presumably because of the ease with which water can eliminate across the benzene ring.
In 1865 he reported his discovery of the benzene ring as the basis for another major group of carbon molecules.
Single bonds with hydrogen replace the double bonds in the benzene rings.
The benzene rings in indigo can be modified to give a variety of related dyestuffs.
It can be seen as a lattice of benzene rings connected by acetylene bonds.