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Determine Isomeric Relationships | 5.5 Organic Chemistry
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Organic Chemistry - Determine Isomeric Relationships | 5.5 Organic Chemistry

Master Organic Chemistry with Chad's Prep: From Lewis Structures to Advanced Reaction Mechanisms! Dive into the world of organic chemistry through engaging lessons and comprehensive explanations. Perfect for students eager to excel!

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What you'll learn

Understand and apply Lewis structures and formal charge concepts.
Compare and evaluate SN1 and SN2 reaction mechanisms.
Name and synthesize carboxylic acids and their derivatives.
Interpret IR spectra to identify functional groups in organic compounds.

This course includes

  • 41.5 hours of video
  • Certificate of completion
  • Access on mobile and TV

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Chad shows how to identify the type of isomerism between two molecules if any. They may be different compounds, identical, constitutional isomers, enantiomers, or diastereomers. The first question to ask is whether two molecules even have the same bond connectivity as this will help determine between constitutional isomers and stereoisomers. If two molecules do not have the same bond connectivity, they are either constitutional isomers or not even isomers at all. If two molecules have the same bond connectivity, they are either identical, enantiomers, or diastereomers (i.e. identical or stereoisomers). Chad demonstrates that in some cases the pair of molecules may be drawn in such a way that the visual comparison is all that is needed to identify the type of isomerism. In other cases, a visual comparison may be problematic, and he shows that assigning R and S to chiral centers can help to distinguish between structures that have the same bond connectivity. In such cases, if the two molecules have all the same absolute configurations (same assignments of R and S), then they are identical. If they are chiral and have all the opposite absolute configurations, they are enantiomers. Finally, if they have some chiral centers in the same configuration and some in the opposite configuration, then they are diastereomers. If you want all my study guides, quizzes, and practice exams, check out my premium course at https://www.chadsprep.com/organic-chemistry-youtube 00:00 Lesson Introduction 01:01 Problem #1 - Identical, Enantiomers, or Diastereomers? 03:28 Problem #2 - Identical, Enantiomers, or Diastereomers? 05:49 Problem #3 - Identical, Enantiomers, or Diastereomers? 08:44 Problem #4 - Meso Compound - Identical? 10:04 Problem #5 - Identical, Enantiomers, or Diastereomers with Fischer Projections https://www.chadsprep.com/ #organicchemistry #organicchemistrytutorial #stereoisomerism

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