Free download Efficiently Studying Organic Chemistry – Exam Training for Chemists, Biochemists, Pharmacists, Life and Health Scientists (3rd revised edition) authored by Eberhard Breitmaier in pdf.
“Eberhard Breitmaier’s ‘Efficiently Studying Organic Chemistry’ is a quintessential companion for students navigating the complexities of organic chemistry. In this third edition, Breitmaier’s expertise shines through as he offers a comprehensive yet concise approach to mastering this challenging subject.
The book is structured in a reader-friendly manner, with clear explanations, insightful examples, and practical study tips scattered throughout. Breitmaier not only elucidates the fundamental principles but also provides strategies for effective learning and retention, making it an invaluable resource for both beginners and advanced learners.
One of the standout features of this edition is its emphasis on efficiency. Breitmaier offers strategic advice on time management, note-taking techniques, and problem-solving strategies, empowering students to streamline their study process and maximize their learning outcomes.
Whether you’re a student preparing for exams or an enthusiast delving into the intricacies of organic chemistry, Breitmaier’s book is a must-have addition to your arsenal. It’s a roadmap to success in a subject that often daunts many, offering clarity, guidance, and a pathway to mastery.”
Based on the author’s extensive teaching experience, this unique textbook comprises the essentials of organic chemistry in 86 chapters as concise, self-contained units of study. Each chapter, visually presented as one or two double pages, includes questions to allow for immediate and effective self-examination.
The perfect fit for bachelor and master students alike, this book is an all-in-one resource for efficiently studying and passing organic chemistry exams.
Contents
Organic Chemistry
- Atomic Orbitals, Electronic Configurations
- Covalent Bonding
- Hybridization of Atomic Orbitals
- Covalent Carbon-Carbon Bonding
- Alkanes
- Skeletal Structure, Structural Isomerism
- Basic Rules of Nomenclature
- Drawing Molecular Structures
- Conformation
- Reactive Intermediates
- Basic Types of Organic Reactions
- Energy Turnover of Chemical Reactions
- Radical Substitution
- Alkenes, Skeletal and Configurational Isomers
- Synthesis of Alkenes
- Dienes
- Additions and Cycloadditions with 1,3-Dienes
- Alkynes
- Cycloalkanes
- Basic Syntheses of Cycloalkanes and Cycloalkenes
- Reactions of Cycloalkanes and Cycloalkenes
- Benzene, Aromaticity, Aromatic Compounds
- Benzenoid Aromatic Compounds
- Electrophilic Substitution of Benzene
- Electrophilic Second Substitution of Benzenes
- Other Reactions of Benzenoid Aromatics
- Polycyclic Benzenoid Aromatic Compounds
- Non-benzenoid Aromatic Compounds
- Alkyl Halides
- Mechanisms of Nucleophilic Substitution
- Organometal Compounds
- Alcohols
- Diols, Triols
- Reactions of Alcohols
- Dehydration of Alcohols
- Ethers
- Amines
- Reactions of Amines
- Diazo and Azo Compounds
- Carboxylic Acids
- Carboxylic Acid Derivatives
- Substituted Carboxylic Acids
- Absolute Configuration
- Enantiomers without Carbon as Stereogenic Center
- Diastereomers
- Aldehydes
- Ketones
- Carbonyl Reactions
- CH Acidity of Carbonyl Compounds
- 1,3-Dicarbonyl Compounds
- Phenols
- Quinones
- Organosulfur Compounds
- Carbonic Acid Derivatives
- Heterocumulenes
- Rearrangements
- Polymers, Polymerization
- Syntheses with Organosilicon Compounds
- Heteroalicycles
- Five-Membered Aromatic Heterocycles
- Six-Membered Aromatic Heterocycles
- Benzo-Fused Five-Membered Heteroaromatics
- Benzo-Fused Six-Membered Heteroaromatics
- Fused Aromatic Heterocycles
- Absorption of Light, Color, Dyes
- Porphyrinoids
- Amino Acids
- Peptides, Proteins
- Alkaloids
- Carbohydrates: Aldoses and Ketoses
- Carbohydrates: Oligo- and Polysaccharides
- Nucleic Acids: DNA and RNA
- Lipids
- Polyketides
- Terpenes
- Steroids
- Selectivity and Specificity of Organic Reactions
- Prochirality, Enantioselectivity
- Planning Organic Syntheses
- Aspects of Molecular Structure
- Mass Spectrometry
- Infrared Spectroscopy
- Nuclear Magnetic Resonance: Proton NMR
- Nuclear Magnetic Resonance: Carbon-13 NMR
- Nuclear Magnetic Resonance: Two-Dimensional NMR
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