Table of contents
- 1. Matter and Measurements(0)
- What is Chemistry?(0)
- The Scientific Method(0)
- Classification of Matter(0)
- States of Matter(0)
- Physical & Chemical Changes(0)
- Chemical Properties(0)
- Physical Properties(0)
- Intensive vs. Extensive Properties(0)
- Temperature (Simplified)(0)
- Scientific Notation(0)
- SI Units (Simplified)(0)
- Metric Prefixes(0)
- Significant Figures (Simplified)(0)
- Significant Figures: Precision in Measurements(0)
- Significant Figures: In Calculations(0)
- Conversion Factors (Simplified)(0)
- Dimensional Analysis(0)
- Density(0)
- Specific Gravity(0)
- Density of Geometric Objects(0)
- Density of Non-Geometric Objects(0)
- 2. Atoms and the Periodic Table(0)
- The Atom (Simplified)(0)
- Subatomic Particles (Simplified)(0)
- Isotopes(0)
- Ions (Simplified)(0)
- Atomic Mass (Simplified)(0)
- Atomic Mass (Conceptual)(0)
- Periodic Table: Element Symbols(0)
- Periodic Table: Classifications(0)
- Periodic Table: Group Names(0)
- Periodic Table: Representative Elements & Transition Metals(0)
- Periodic Table: Elemental Forms (Simplified)(0)
- Periodic Table: Phases (Simplified)(0)
- Law of Definite Proportions(0)
- Atomic Theory(0)
- Rutherford Gold Foil Experiment(0)
- Wavelength and Frequency (Simplified)(0)
- Electromagnetic Spectrum (Simplified)(0)
- Bohr Model (Simplified)(0)
- Emission Spectrum (Simplified)(0)
- Electronic Structure(0)
- Electronic Structure: Shells(0)
- Electronic Structure: Subshells(0)
- Electronic Structure: Orbitals(0)
- Electronic Structure: Electron Spin(0)
- Electronic Structure: Number of Electrons(0)
- The Electron Configuration (Simplified)(0)
- Electron Arrangements(0)
- The Electron Configuration: Condensed(0)
- The Electron Configuration: Exceptions (Simplified)(0)
- Ions and the Octet Rule(0)
- Ions and the Octet Rule (Simplified)(0)
- Valence Electrons of Elements (Simplified)(0)
- Lewis Dot Symbols (Simplified)(0)
- Periodic Trend: Metallic Character(0)
- Periodic Trend: Atomic Radius (Simplified)(0)
- 3. Ionic Compounds(0)
- Periodic Table: Main Group Element Charges(0)
- Periodic Table: Transition Metal Charges(0)
- Periodic Trend: Ionic Radius (Simplified)(0)
- Periodic Trend: Ranking Ionic Radii(0)
- Periodic Trend: Ionization Energy (Simplified)(0)
- Periodic Trend: Electron Affinity (Simplified)(0)
- Ionic Bonding(0)
- Naming Monoatomic Cations(0)
- Naming Monoatomic Anions(0)
- Polyatomic Ions(0)
- Naming Ionic Compounds(0)
- Writing Formula Units of Ionic Compounds(0)
- Naming Ionic Hydrates(0)
- Naming Acids(0)
- 4. Molecular Compounds(0)
- Covalent Bonds(0)
- Naming Binary Molecular Compounds(0)
- Molecular Models(0)
- Bonding Preferences(0)
- Lewis Dot Structures: Neutral Compounds (Simplified)(0)
- Multiple Bonds(0)
- Multiple Bonds (Simplified)(0)
- Lewis Dot Structures: Multiple Bonds(0)
- Lewis Dot Structures: Ions (Simplified)(0)
- Lewis Dot Structures: Exceptions (Simplified)(0)
- Resonance Structures (Simplified)(0)
- Valence Shell Electron Pair Repulsion Theory (Simplified)(0)
- Electron Geometry (Simplified)(0)
- Molecular Geometry (Simplified)(0)
- Bond Angles (Simplified)(0)
- Dipole Moment (Simplified)(0)
- Molecular Polarity (Simplified)(0)
- 5. Classification & Balancing of Chemical Reactions(0)
- Chemical Reaction: Chemical Change(0)
- Law of Conservation of Mass(0)
- Balancing Chemical Equations (Simplified)(0)
- Solubility Rules(0)
- Molecular Equations(0)
- Types of Chemical Reactions(0)
- Complete Ionic Equations(0)
- Calculate Oxidation Numbers(0)
- Redox Reactions(0)
- Spontaneous Redox Reactions(0)
- Balancing Redox Reactions: Acidic Solutions(0)
- Balancing Redox Reactions: Basic Solutions(0)
- Balancing Redox Reactions (Simplified)(0)
- Galvanic Cell (Simplified)(0)
- 6. Chemical Reactions & Quantities(0)
- 7. Energy, Rate and Equilibrium(0)
- Nature of Energy(0)
- First Law of Thermodynamics(0)
- Endothermic & Exothermic Reactions(0)
- Bond Energy(0)
- Thermochemical Equations(0)
- Heat Capacity(0)
- Thermal Equilibrium (Simplified)(0)
- Hess's Law(0)
- Rate of Reaction(0)
- Energy Diagrams(0)
- Chemical Equilibrium(0)
- The Equilibrium Constant(0)
- Le Chatelier's Principle(0)
- Solubility Product Constant (Ksp)(0)
- Spontaneous Reaction(0)
- Entropy (Simplified)(0)
- Gibbs Free Energy (Simplified)(0)
- 8. Gases, Liquids and Solids(0)
- Pressure Units(0)
- Kinetic Molecular Theory(0)
- The Ideal Gas Law(0)
- The Ideal Gas Law Derivations(0)
- The Ideal Gas Law Applications(0)
- Chemistry Gas Laws(0)
- Chemistry Gas Laws: Combined Gas Law(0)
- Standard Temperature and Pressure(0)
- Dalton's Law: Partial Pressure (Simplified)(0)
- Gas Stoichiometry(0)
- Intermolecular Forces (Simplified)(0)
- Intermolecular Forces and Physical Properties(0)
- Atomic, Ionic and Molecular Solids(0)
- Heating and Cooling Curves(0)
- 9. Solutions(0)
- Solutions(0)
- Solubility and Intermolecular Forces(0)
- Solutions: Mass Percent(0)
- Percent Concentrations(0)
- Molarity(0)
- Osmolarity(0)
- Parts per Million (ppm)(0)
- Solubility: Temperature Effect(0)
- Intro to Henry's Law(0)
- Henry's Law Calculations(0)
- Dilutions(0)
- Solution Stoichiometry(0)
- Electrolytes (Simplified)(0)
- Equivalents(0)
- Molality(0)
- The Colligative Properties(0)
- Boiling Point Elevation(0)
- Freezing Point Depression(0)
- Osmosis(0)
- Osmotic Pressure(0)
- 10. Acids and Bases(0)
- Acid-Base Introduction(0)
- Arrhenius Acid and Base(0)
- Bronsted Lowry Acid and Base(0)
- Acid and Base Strength(0)
- Ka and Kb(0)
- The pH Scale(0)
- Auto-Ionization(0)
- pH of Strong Acids and Bases(0)
- Acid-Base Equivalents(0)
- Acid-Base Reactions(0)
- Gas Evolution Equations (Simplified)(0)
- Ionic Salts (Simplified)(0)
- Buffers(0)
- Henderson-Hasselbalch Equation(0)
- Strong Acid Strong Base Titrations (Simplified)(0)
- 11. Nuclear Chemistry(0)
- BONUS: Lab Techniques and Procedures(0)
- BONUS: Mathematical Operations and Functions(0)
- 12. Introduction to Organic Chemistry(0)
- 13. Alkenes, Alkynes, and Aromatic Compounds(0)
- 14. Compounds with Oxygen or Sulfur(0)
- 15. Aldehydes and Ketones(0)
- 16. Carboxylic Acids and Their Derivatives(0)
- 17. Amines(0)
- 18. Amino Acids and Proteins(0)
- 19. Enzymes(0)
- 20. Carbohydrates(0)
- Intro to Carbohydrates(0)
- Classification of Carbohydrates(0)
- Fischer Projections(0)
- Enantiomers vs Diastereomers(0)
- D vs L Enantiomers(0)
- Cyclic Hemiacetals(0)
- Intro to Haworth Projections(0)
- Cyclic Structures of Monosaccharides(0)
- Mutarotation(0)
- Reduction of Monosaccharides(0)
- Oxidation of Monosaccharides(0)
- Glycosidic Linkage(0)
- Disaccharides(0)
- Polysaccharides(0)
- 21. The Generation of Biochemical Energy(0)
- 22. Carbohydrate Metabolism(0)
- 23. Lipids(0)
- Intro to Lipids(0)
- Fatty Acids(0)
- Physical Properties of Fatty Acids(0)
- Waxes(0)
- Triacylglycerols(0)
- Triacylglycerol Reactions: Hydrogenation(0)
- Triacylglycerol Reactions: Hydrolysis(0)
- Triacylglycerol Reactions: Oxidation(0)
- Glycerophospholipids(0)
- Sphingomyelins(0)
- Steroids(0)
- Cell Membranes(0)
- Membrane Transport(0)
- 24. Lipid Metabolism(0)
- 25. Protein and Amino Acid Metabolism(0)
- 26. Nucleic Acids and Protein Synthesis(0)
- Intro to Nucleic Acids(0)
- Nitrogenous Bases(0)
- Nucleoside and Nucleotide Formation(0)
- Naming Nucleosides and Nucleotides(0)
- Phosphodiester Bond Formation(0)
- Primary Structure of Nucleic Acids(0)
- Base Pairing(0)
- DNA Double Helix(0)
- Intro to DNA Replication(0)
- Steps of DNA Replication(0)
- Types of RNA(0)
- Overview of Protein Synthesis(0)
- Transcription: mRNA Synthesis(0)
- Processing of pre-mRNA(0)
- The Genetic Code(0)
- Introduction to Translation(0)
- Translation: Protein Synthesis(0)
12. Introduction to Organic Chemistry
Naming Alkanes with Substituents
12. Introduction to Organic Chemistry
Naming Alkanes with Substituents: Study with Video Lessons, Practice Problems & Examples
2PRACTICE PROBLEM
Is the given alkane incorrectly named? If so, what is wrong with the provided name, and what is its correct name?
![Chemical structure of an alkane with substituents, illustrating naming conventions in organic chemistry.](data:image/png;base64,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)
Is the given alkane incorrectly named? If so, what is wrong with the provided name, and what is its correct name?