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If that number becomes equal 4n 2 for any value of n then that compound is aromatic(or in other words if the number of pi electrons come in the series – 2, 6, 10, 14, 18….

4n+2 pi electron rule. This organic chemistry video tutorial shows you how to tell if a compound is aromatic, antiaromatic or nonaromatic by using huckel's rule / number of 4n+2 pi. These 4 fill in the orbitals of the succeeding energy level. It is also known as Huckel’s 4n + 2 pi- electrons rule.

-for some reason none of my organic chemistry textbooks, lectures, etc explain what N actually is, so I made this video. Count the number of pi electrons. Then that compound will be aromatic).

The Huckel 4n + 2 Pi Electron Rule. Huckel’s rule helps to decide whether an aromatic compound possesses aromaticity or not. To apply the 4n+2 rule, first count the number of π electrons in the.

N is just any natural number which is used to satisfy the 4n 2 rule. What is N in the 4n+2 rule?. Huckel’s rule was given by German physicist and physical chemistry Erich Huckel in 1931.

Although its succinct formulation as 4n + 2 was given by Professor William von Eggers Doering.

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