Organic Chemistry - Bonding And Molecular Structure




Organic Chemistry - Bonding And Molecular Structure

Hi!!!

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Whatever the reason you have for thinking about studying Organic Chemistry , Whether you  were Chemistry student, Pharmacy student, Biology student, this course will help you to understand the essential basics of Chemistry.

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This course will help you in covering everything you will need to know as you prepare for possible future exams.  It doesn't matter how much, or how little, prior knowledge of Chemistry you've got as this course will take you through all the necessary stages.

If You just love Organic chemistry !!!! OR Whatever the reason you have for thinking about studying Chemistry further, ENROLL in this course to help you learn and understand the Organic Chemistry basics very easily.

Hey!!! Am  Mohammad Abualrub, I have PhD in Organic Chemistry and am Expert in pharmaceutical Industry - +8Years & Expert in teaching Chemistry +4Years.

In this Course we will cover the following topics:

Bonding & Molecular Structure

  • Introduction to Organic Chemistry

  • Atomic Structure

  • Isotopes

  • Valence Electrons

  • The Structure Theory of Organic Chemistry

  • Molecular Formula and Structural Formula

  • Isomers

  • Chemical Bonds: The Octet Rule

  • How to Write Lewis Structures

  • Exception to Octet Rule

  • Formal Charge

  • Resonance

  • How to write resonance structure

  • Electron Configuration

  • Hybridization sp3

  • Hybridization sp2

  • Hybridization sp1

  • Restricted Rotation of Double Bond

  • Cis - Trans Isomerism

  • Sigma Bonds and Pi Bond 

  • Molecular Geometry: The Valence Shell Electron Pair Repulsion Model

Families of Carbon Compounds - Functional Groups

  • Hydrocarbons

  • Polar Covalent Bonds 

  • Functional Groups

Physical Properties and Molecular Structure

  • Ionic Compounds: Ion-Ion Forces

  • Solubility of Organic Compounds 

  • Inter-molecular Forces (van Der Waals Forces)

Organic Reactions and Their Mechanisms Acids and Bases

  • Homolysis and Heterolysis of Covalent Bonds

  • Acid – Base Reactions

  • Carbocations, Carbanions, Electrophiles and Nucleophiles

  • The Strength of Brønsted–Lowry-Acids and Bases: Ka and pKa

  • How to Predict the Outcome of Acid–Base Reactions

  • Relationships between Structure and Acidity

  • The Acidity of Carboxylic Acids 

  • A Mechanism for an Organic Reaction

Alkanes & Cycloalkanes

  • Introduction to Alkanes and Cycloalkanes

  • Shapes of Alkanes 

  • Physical Properties of Alkanes & Cycloalkanes

Nomenclature of Alkanes & Cycloalkanes

  • IUPAC Nomenclature

  • Nomenclature of Branched-Chain Alkanes

  • Examples - Branched-Chain Alkanes

  • Nomenclature of Branched Alkyl Groups

  • Nomenclature of Alkyl Halides

  • Nomenclature of Alcohol

  • Nomenclature of Cycloalkanes

  • Nomenclature of Alkenes, Alcohols & Cycloalkenes

  • Nomenclature of Alkynes 

  • IUPAC Nomenclature Examples

Bond Rotation and Conformations

  • Sigma Bonds, Bond Rotation and Conformations

  • Conformational Analysis of Butane

  • The Relative Stabilities of Cycloalkanes: Ring Strain

  • Conformations of Cyclohexane: The Chair & the Boat

  • Substituted Cyclohexanes: Axial & Equatorial Hydrogen Atoms

  • Disubstituted Cycloalkanes Cis-Trans Isomerism

  • Synthesis of Alkanes and Cycloalkanes 

  • Index of hydrogen deficiency (IHD)

Stereochemistry – Chiral Molecules

  • Chirality & Stereochemistry

  • Isomerism: Constitutional Isomers & Stereoisomers

  • Stereoisomers

  • Enantiomers and Chiral Molecules

  • How to Test for Chirality: Planes of Symmetry

  • Naming Enantiomers: R, S-System

  • Properties of Enantiomers: Optical Activity

  • Plane-Polarized Light

  • Racemic Forms

  • The Synthesis of Chiral Molecules

  • Molecules with More than One Chirality Center

  • Meso Compounds 

  • Fischer Projection Formulas      

Nucleophilic Substitution and Elimination Reactions of Alkyl Halides

  • Organic Halides

  • Nucleophilic Substitution Reactions

  • Nucleophiles, Leaving Groups

  • Kinetics of a Nucleophilic Substitution Reaction: An SN2 Reaction

  • Transition State Theory: Free Energy Diagrams

  • The SN1 Reaction

  • A Mechanism for the SN1 Reaction

  • Carbocations

  • Factors Affecting the Rates of Reactions - The structure of the substrate

  • The Effect of the Concentration & Strength of the Nucleophile

  • Solvent Effects on SN2 Reactions

  • The nature of the leaving group

  • Organic Synthesis: Functional Group

  • Elimination Reactions of Alkyl Halides

  • The E2 Reaction

  • The E1 Reaction 

  • How To Determine Whether Substitution or Elimination Is Favored

In addition to that, there are a lot of Examples added to this course in order to enhance students understanding to the contents of this course and get the desired value !!!

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Udemy has an unconditional 30 day money back guarantee so there is no risk. You have everything to gain and nothing to lose! I will stress this as well and stand behind this course, if you feel that you have gained NO VALUE at all within 30 days, I will personally guarantee you a Refund! I am confident in what I have created.

Lets start success together! Click on the “take this course" link at the top right of this page right NOW! Don't let another minute go by not living your dreams.

Dr Mohammad Abualrub PhD in Chemistry Expert in pharmaceutical Industry +8Years & Expert in teaching Chemistry +4Years...

Your Essential Guide to Organic Chemistry helps you to understand the Basics in Organic Chemistry - Bonding Molecules

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What you will learn
  • You Will Understand The Atomic Structure Of The Atom.
  • You Will Be Able To Know What Are Isotopes.
  • You Will See The Importance of Valence Electrons And How To Know them For Any Element.

Rating: 4.2

Level: All Levels

Duration: 6 hours

Instructor: Dr Mohammad Abualrub


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