
Master the basics of organic chemistry by exploring carbon's role, functional groups, and hydrocarbon structures. Identify common oxygen- and nitrogen-containing compounds and learn fundamental naming and classification of organic compounds.
Master IUPAC nomenclature for organic compounds by identifying functional groups, selecting the main chain, and applying prefixes and suffixes in correct sequential order.
Explore the concept of isomerism in organic compounds, distinguishing optical and geometrical isomers, understanding conformational variations, and applying polarized light to identify optical activity.
Explore electronic effects in organic molecules, detailing inductive and resonance effects, hyperconjugation, conjugation, and how electronegativity and polarity influence reactivity and stability.
Master the mechanisms of alkene and alkyne reactions, from substitution and addition to rearrangements, driven by nucleophile and electrophile interactions.
Explore oxidation and reduction in organic chemistry, including oxidation of alkanes and alcohols, aldehyde to carboxylic acid transformations, selective oxidation of primary and secondary alcohols, and common reagents.
Explore benzene and aromatic compounds reactions via substitution, detailing activating and deactivating groups, directing effects, sigma complex formation, and roles of sulfuric and nitric acids.
Explore organic reactions of aromatic compounds, focusing on nucleophile and electrophile roles in substitution processes. Gain practical insight into benzene chemistry and aromatic reaction mechanisms.
Explore alkyl halide reactivity and the roles of alcohol, ether, and amine in nucleophilic substitution and elimination mechanisms, including leaving groups, nucleophiles, and reaction pathways.
Explore aldehydes, ketones, and carboxylic acids, focusing on nucleophilic attacks, derivatives, and reaction mechanisms. Investigate hydration and substitution in carbonyl chemistry.
Define carbohydrates as polyhydroxy aldehydes or ketones in open-chain or cyclic form, and outline amino acids, peptide bonds, and the formation of biopolymers and synthetic polymers such as nylon.
Dear student,
This is CRASH COURSE of ORGANIC CHEMISTRY
This course was undertaken to give you a clear view of organic chemistry through detailed examples and provides numerous problems with their solution which I am taking in class.
You can use this course as a review for taking exams or as a vehicle for self-instruction.
My primary goal is to help you focus on understanding basics and concepts of organic chemistry rather than memorising.
It is my hope that this course, through its careful explanations of concepts and its use of numerous practical examples, helps you develop the necessary skills to bridge the gap between knowledge and the confidence to do well in your exams (in case you are a student) or in your professional career.
What makes me qualified to teach you :
I am Post Graduate from DDU Gorakhpur with NET and teaching students preparing for IIT/NEET from last 16 years. I have produced many AIR 100 including 56, Subham Jain in IIT
My Promise to You :
I am an active online teacher and I will be here for you every step of the way. If you have any questions about the course content or anything related to this topic, you can always post your questions or send me a private message. It will be my pleasure to provide assistance and answer your questions.
What I expect from you :
1. If you have any suggestion to help improve the quality of this material, then please let me know. I will do my best to take it into account.
2. If the course meets your expectation, then I would kindly ask you to leave a honest review in line with what you have experienced.
Finally, I can ensure you with confidence that this course is by far the best and most complete organic chemistry course available online.
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In this course 10 Lectures cover following topics in detail
Lecture 1: Basic Understanding of Organic Organic Chemistry
Lecture 2: IUPAC Nomenclature of Organic Compounds
Lecture 3: Isomerism in Organic Compounds
Lecture 4: Electronic Effects & their Applications
Lecture 5: Chemical Reactions of Alkene & Alkyne
Lecture 6: Oxidation Reduction & Alkane
Lecture 7: Organic Reactions of aromatic compounds
Lecture 8: Alkyl halide, alcohol, ether and amine
Lecture 9: Aldehyde, ketone, carboxylic acid & derivatives
Lecture 10: Biomolecule- Carbohydrates, Amino acids, Polymer