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This video describes the chemically equivalent and non-equivalent protons in a molecule. The reason for the chemical equivalence has been discussed by giving examples. It has been discussed how we can determine the presence of chemically distinct hydrogens in a molecules by their NMR spectra. The NMR absorption peaks for chemically equivalent and non-equivalent protons in NMR spectra has been well explained. The molecules having all chemically equivalent hydrogens and two, three and more chemically non-equivalent protons are given in this video. #NMRSpectroscopy#ChemicalEquivalence Absorption Of Energy https://cutt.ly/FR9ay22 Introduction to NMR Spectroscopy https://bit.ly/3vvf3pT Molecular Spectroscopy (Brief Introduction) https://bit.ly/3AJ7jRU Type of Reaction (Lecture 1) https://bit.ly/3uJFW94 Types of Reactions (Lecture 2) https://bit.ly/3oDiUjo Introduction To Reaction Mechanism https://bit.ly/3uDG4XI Basic Organic Chemistry https://rb.gy/qctwae Orientation in Halohydrin Formation https://www.youtube.com/watch?v=zHlJj... Stereochemistry of Hydroboration-Oxidation of Alkenes • Stereochemistry of Hydroboration-Oxidation... Hydroboration-Oxidation of Alkenes • Hydroboration-Oxidation of Alkenes Orientation in Alkenes Hydration: Regioselectivity https://rb.gy/nwfirq Hydration of Alkenes https://rb.gy/hnb28w Hydrohalogenation of Alkenes: Markovnikov’s Rule https://rb.gy/idjb1o Nomenclature of Alkenes, Alkynes, Aromatic compounds and Phenols https://rb.gy/n34azl Alkenes Preparation: Wittig Reaction https://rb.gy/akd6r3 Preparation of Alkenes: Alcohol Dehydration https://rb.gy/yu3zli Alkenes Preparation: Regioselectivity, Stereoselectivity & Rearrangement in Alcohol Dehydration https://rb.gy/jn5vcq Alkenes Reactivity: Hydrogenation https://rb.gy/pn6jxf