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      Class 11 Chemistry

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      • Chemistry
      • Class 11 Chemistry
      CoursesClass 11ChemistryClass 11 Chemistry
      • 01. Mole Concept
        7
        • Lecture1.1
          Introduction to chemistry and Matter 21 min
        • Lecture1.2
          Laws of Chemical Combination 21 min
        • Lecture1.3
          Atomic Mass, molecular Mass, Atomicity, Average Atomic Mass, Mole concept, Molar volume 44 min
        • Lecture1.4
          Percentage Composition, Calculating Empirical and Molecular Formulae 39 min
        • Lecture1.5
          Limiting Reagent 40 min
        • Lecture1.6
          Principle of Atom Conservation, Concentration Unit of Solution, Mole Fraction, Molarity, 39 min
        • Lecture1.7
          Dilution, Molality, Equivalent Weight, Normality, Equivalent Concept 48 min
      • 02. Atomic Structure
        14
        • Lecture2.1
          Butterfly’s color, Imaging Atoms, Structure of Atom 18 min
        • Lecture2.2
          Time line of Atomic Models, Discharge Tube Experiments, Charge to Mass ratio of Electrons 31 min
        • Lecture2.3
          Charge on the Electron, Discovery of Protons & Neutrons, Thomson’s Plum Pudding Model, Rutherford’s Exp. 35 min
        • Lecture2.4
          Nobel Metals, Bhor model of Atom, wave Nature of E.M Radiation, Wave, 41 min
        • Lecture2.5
          Particle Nature of E.M radiation, Black Body Radiation, Plank’s Quantum Theory, Photoelectric Effect 48 min
        • Lecture2.6
          Miscellaneous Questions 43 min
        • Lecture2.7
          Bhor’s Model for Hydrogen Atom and On its based Calculations 45 min
        • Lecture2.8
          Full Derivation of of Energy of an e- , Failure of Bhor’s Theory, Energy level Diagram 30 min
        • Lecture2.9
          Evidence for the Quantized Electronic energy level: Atomic Spectra, Line spectrum of Hydrogen 37 min
        • Lecture2.10
          Number of Spectral Lines, Dual Behavior of Matter 25 min
        • Lecture2.11
          Heisenberg’s Uncertainty Principle, 42 min
        • Lecture2.12
          Quantum Mechanical Model of Atom, The Schrodinger Question, Quantum Number 55 min
        • Lecture2.13
          Quantum Number-Azimuthal or Subsidiary , Magnetic , Spin 26 min
        • Lecture2.14
          Orbitals-s, p, d, Energies of Orbitals, Aufbau Principle, Pauli’s Exclusion Principle, Hund’s Rules of Maximum multiplicity 56 min
      • 03. Periodic Properties
        4
        • Lecture3.1
          Introduction; Moseley’s Law, Modern Periodic Law, Nomenclature rule for Z>100; Classification of Elements-s, p, d & d Block; 47 min
        • Lecture3.2
          Periodic Tends in Properties of Elements, Effective Nuclear Charge, Trends in Physical Properties, 50 min
        • Lecture3.3
          Ionization Enthalpy, electron affinity, 53 min
        • Lecture3.4
          Electronegativity, Periodic trends In Chemical Properties and Chemical Reactivity 27 min
      • 04. Chemical Bonding
        14
        • Lecture4.1
          Chemical Coding and Molecular structure, Lewis Concept, Kossel-Lewis Approach 24 min
        • Lecture4.2
          Octoate Rule, Ionic or Electrovalent bond, Covalent Bond 25 min
        • Lecture4.3
          Covalent Character in Ionic Compound(Fajariss Rule), Application & Exception of Fajaris Rule 26 min
        • Lecture4.4
          Lewis Structure 25 min
        • Lecture4.5
          Coordinate Bond, Formal Charge, Limitation of the Octet Rule, Lattice enthalpy 28 min
        • Lecture4.6
          Factor affecting Lattice Energy, Consequence of Lattice Energy, Diff. B/w Ionic & Covalent Compound 26 min
        • Lecture4.7
          Bond Enthalpy, Bond Order, Resonance, Polarity of Bond 46 min
        • Lecture4.8
          VSEPR Theory 43 min
        • Lecture4.9
          Predicting the Bond angle based on VSEPR, Orbital Overlap Concept, overlapping of Atomic Orbitals 44 min
        • Lecture4.10
          Types of Overlapping & Nature of Covalent Bond, Hybridization and its Requirements, 57 min
        • Lecture4.11
          Hybridization of Involving d-orbit, Finding Hybridization Quickly, Some more Concept on Dipole moment 47 min
        • Lecture4.12
          Some Important Trends, Summary of Types of Bond, Hydrogen Bond, 36 min
        • Lecture4.13
          Molecular Orbital Theory, Linear Combination of Atomic Orbital, Types of Molecular Orbitals, 54 min
        • Lecture4.14
          Application of MOT, Heteronuclear Diatomic Molecules, Metallic Bond, Malleability & Cohesive force 53 min
      • 05. States of Matter
        8
        • Lecture5.1
          Intermolecular forces, Dispersion Or London Forces, Dipole-Dipole Force, Hydrogen Bond, 34 min
        • Lecture5.2
          Defining the state of a Substances, Pressure, Measurement of Patm, Manometers, Mechanical Equilibrium, Boyle’s Law, Charles Laws 43 min
        • Lecture5.3
          Gay-Lussac’s Law, Avogadro Law, Ideal Gas Equation, Dalton’s Law of Partial Pressures 54 min
        • Lecture5.4
          Miscellaneous Questions 43 min
        • Lecture5.5
          The Kinetic Theory of Gas, Maxwell’s Distribution of Speeds 48 min
        • Lecture5.6
          Some Important Terms, Graham’s Law, 53 min
        • Lecture5.7
          Behavior of Real Gases, Variation of Vander Waals Equation, Boyle’s Temperature 58 min
        • Lecture5.8
          Limitation of Vander Waals Equation, Liquefaction of Gases, Vapour Pressure 40 min
      • 06.Thermodynamics
        12
        • Lecture6.1
          Introduction, Scope and limitation of Thermodynamics, types and State of System, Intensive and Extensive Properties 56 min
        • Lecture6.2
          Zeroth Law of Thermodynamics, Thermodynamics Process, Reversibility and Inversibility, Heat, F.L.O.T 59 min
        • Lecture6.3
          Internal Energy 37 min
        • Lecture6.4
          Heat Capacity 57 min
        • Lecture6.5
          Reversible & Irreversible Isochoric Process, Reversible Isobaric Process, Reversible Adiabatic Process 55 min
        • Lecture6.6
          Bomb Calorimeter 49 min
        • Lecture6.7
          Calculating heat, work, ΔU and ΔH during phase transition, thermochemistry, Hess law of constant summation 56 min
        • Lecture6.8
          Lattice Energy of a Crystal, Enthalpy of Solution, Enthalpy of Neutralization 01 min
        • Lecture6.9
          Enthalpy of Transition, Enthalpy of Atomization, Bond Enthalpy 38 min
        • Lecture6.10
          Enthalpy of transition, Enthalpy changes during phase Transformation, Enthalpy of atomization 01 hour
        • Lecture6.11
          2nd and 3rd Law of Thermodynamics, Gibbs energy and Spontaneity 52 min
        • Lecture6.12
          Gibbs Energy changes and Equilibrium, Effect of temp. on Spontaneity of Reaction, Combining 1st and 2nd Law 36 min
      • 07. Chemical Equilibrium
        10
        • Lecture7.1
          Carbon di oxide & ocean Acidification, Chemical Reactions, types of Equilibrium system, 43 min
        • Lecture7.2
          Physical Equilibrium, Eq.. involving dissolution of Solid or gases in liquids. Chemical Equilibrium, Nature of Chy. Eq. 45 min
        • Lecture7.3
          Law of Chemical Equilibrium, Law of Mass Action, 35 min
        • Lecture7.4
          Homogeneous & Heterogeneous Equilibrium, Equilibrium Constant Kp & Kc, Relation b/w Kp & Kc and Kp & Kx, Unit of Kp & Kc, 39 min
        • Lecture7.5
          Formation of NH3, Dissociation of PCl5, 36 min
        • Lecture7.6
          Quick Recap, Keq & Q to Predict, 33 min
        • Lecture7.7
          Characteristics of Keq & Factors affecting it, Degree of Dissociation, 47 min
        • Lecture7.8
          Le-Chatelier Principle, 58 min
        • Lecture7.9
          Application of Le-Chatelier’s Principle, Thermodynamics of Equilibrium 58 min
        • Lecture7.10
          Quick Recap 46 min
      • 08. Ionic Equilibrium
        9
        • Lecture8.1
          Ionic Equilibrium, Degree of Dissociation, Ostwald Dilution Law, Common Ion effect, Acids, bases & Salts, 41 min
        • Lecture8.2
          Leveling Effect, Acid-Base Equilibrium & Ionization Constants, Ionic Ware of Water, Acidity and pH scale, 44 min
        • Lecture8.3
          pH calculation of diff. types of Solutions 01 hour
        • Lecture8.4
          Miscellaneous Questions, Factors affecting acid strength, pH of a mixture, Salt Hydrolysis, 46 min
        • Lecture8.5
          Miscellaneous Questions 35 min
        • Lecture8.6
          Buffer Solution, [Salts]/[Acids], 48 min
        • Lecture8.7
          Miscellaneous Questions and Titration 45 min
        • Lecture8.8
          Weak base-strong acid titration, Indicators, Condition for Precipitation, 47 min
        • Lecture8.9
          Common ion effect on Solubility, Condition for Precipitation, 31 min
      • 09. Hydrogen
        3
        • Lecture9.1
          Position of Hydrogen in the periodic Table, Preparation and its Properties of Dihydrogen, H2, 32 min
        • Lecture9.2
          Hydrides, water 44 min
        • Lecture9.3
          Hydrogen Peroxide, Dihydrogen as a fuel, 39 min
      • 10. Redox
        11
        • Lecture10.1
          Redox Reactions Introduction, About Oxidation & Reductions 14 min
        • Lecture10.2
          Classical Idea of Redox Reactions 24 min
        • Lecture10.3
          Redox Reactions in Terms of Electron Transfer Reactions, Competitive Transfer Reactions, 22 min
        • Lecture10.4
          Oxidation Number, Rules for calculation of Oxidation Number 30 min
        • Lecture10.5
          Stock Notation, Types of Redox Reactions 29 min
        • Lecture10.6
          Paradox of Fractional Oxidation Number 51 min
        • Lecture10.7
          Balancing of Redox Reactions-Oxidation Number 19 min
        • Lecture10.8
          Balancing of Redox Reactions-Ion-electron or Half -Reaction Method, 19 min
        • Lecture10.9
          Miscellaneous Questions 36 min
        • Lecture10.10
          Miscellaneous Questions based on Balancing 38 min
        • Lecture10.11
          Redox Reactions as the Basis for titrations , Redox reactions and Electrode Processes 01 hour
      • 11. S-Block
        7
        • Lecture11.1
          Electrolyte Imbalance, Diagonal Relationship, Alkali Metals, Chemical Properties 43 min
        • Lecture11.2
          General Characteristics of the Compounds of the Alkali metals, Halides, Lattice Energy 36 min
        • Lecture11.3
          Anomalous Properties of Lithium, Points of similarities b/w Li & Mg 29 min
        • Lecture11.4
          Sodium Carbonate, Sodium Chloride, Sodium Hydroxide 37 min
        • Lecture11.5
          Sodium Hydrogen Carbonate, Solubility Trends for s-block element salts 01 hour 04 min
        • Lecture11.6
          Reactivity of Alkaline Earth Metals 38 min
        • Lecture11.7
          Anomalous Behaviour of Be, Diagonal Relationship b/w Al & Be, Flame colors, Some important Compounds of Calcium, MgSO4, Calcium Sulphate 35 min
      • 12. P-Block
        11
        • Lecture12.1
          Group-13, First Member of Group, and Properties 34 min
        • Lecture12.2
          O.S and Trends in Chemical Reactivity, Reactivity towards air and acids & alkali and Halogens 38 min
        • Lecture12.3
          Anomalous Properties & Chemistry of Boron, Orthoboric Acid 32 min
        • Lecture12.4
          Element, Diborane, Breaking of Banana bond 42 min
        • Lecture12.5
          Aluminum, Basic uses of Al and B 11 min
        • Lecture12.6
          Group-14, Oxidation state & Trends in Chemical Reactivity, Reactivity towards Oxygen and water 30 min
        • Lecture12.7
          Reactivity towards Halogens, Anomalous Behaviors of Carbon 30 min
        • Lecture12.8
          Allotropes of Carbon, Uses of Carbon, Reactivity towards Acids 29 min
        • Lecture12.9
          Oxides of Carbon, Carbonic acid, Co2 Causes Green House Effect 37 min
        • Lecture12.10
          Carbides, Silicon Carbide, Silicon dioxide, Silicones 37 min
        • Lecture12.11
          Silicates, Zeolites 14 min
      • 13. GOC
        12
        • Lecture13.1
          Vital Force Theory, Organic Compounds, Formal Charge, Methane, Ethane, Restricted Rotation about the double bond, Writing Structural Formulas, 3-D Formulas 57 min
        • Lecture13.2
          Hybridization & Shapes, Electronegativity, Types of Carbon and Hydrogen atom 01 hour 06 min
        • Lecture13.3
          IUPAC Nomenclature, Rules for Writing Radicals, Primary or n-alkyl, Iso – alkyl, Secondary alkyl, Tertiary Alkyl, Neo Alkyl, Naming of saturated hydrocarbons 01 hour 01 min
        • Lecture13.4
          Some more Examples of Naming of Compound 21 min
        • Lecture13.5
          Isomerism 34 min
        • Lecture13.6
          Fundamental Concepts in Organic Reaction Mechanism, Electron Displacement effect in Covalent Bonds, Conjugation 51 min
        • Lecture13.7
          Resonance Energy, Rules for Writing Resonance Structures, Relative Stability of Canonical Forms, Resonance or Mesomeric Effect 42 min
        • Lecture13.8
          Steric Inhibition of Resonance, Hyperconjugation, Negative Hyperconjugation, Electrometric Effect, Aromatic, Non-aromatic and anti-aromatic character 47 min
        • Lecture13.9
          Reaction Intermediates, Stability of Carbocations, Rearrangements of Carbonation 44 min
        • Lecture13.10
          Carbanion, Free – Radicals, Miscellaneous Questions Based on Rearrangement 27 min
        • Lecture13.11
          Tautomerism, Miscellaneous Questions 14 min
        • Lecture13.12
          Geometry & Hybridization, Calculating Hybridization 49 min
      • 14. Stereochemistry
        7
        • Lecture14.1
          Introduction, Stereoisomers, Conformational Isomerism, Newman & Sawhorse Projection, Factors affecting Stability of Conformations 32 min
        • Lecture14.2
          Relatives stabilities of cycloalkanes, Axual and Equatorial Positions, Substituted Cyclohexane Ring, Configurational Isomers 37 min
        • Lecture14.3
          Geometrical Isomerism, Naming of G.I. Number of Geometrical Isomers 51 min
        • Lecture14.4
          Chirality and Stereochemistry, Stereoisomers, Symmetry Elements 42 min
        • Lecture14.5
          Properties of enantiomers, Specific Rotation, Configurational nomenclature in Optical Isomers, R, S-Nomenclature, Naming of 3-D Structures 56 min
        • Lecture14.6
          How to Convert Newman Projection, Racemic Mixture, Optical Purity, Enantiomeric Excess, Optical Diastereomers 46 min
        • Lecture14.7
          Molecules with more than one chirality center, Stereoselective Synthesis, Optical Resolution 49 min
      • 15. Alkanes
        4
        • Lecture15.1
          Alkanes and cycloalkanes, Method of Preparation of alkanes 54 min
        • Lecture15.2
          Physical Properties of Alkanes, Chemical Reactions of Alkanes, Reactivity selectivity Principle 01 hour 05 min
        • Lecture15.3
          Miscellaneous Questions 27 min
        • Lecture15.4
          Quick Recap of Alkanes and Cycloalkanes 26 min
      • 16. Alkenes Alkynes
        7
        • Lecture16.1
          Introduction to Alkenes & Alkynes, Nomenclature of Alkanes & Alkynes, degree of Unsaturation (DBE), Relative Stabilities of Alkenes, Bredt’s Rule 46 min
        • Lecture16.2
          Preparation of Alkenes and Alkynes 36 min
        • Lecture16.3
          Chemical Reactions of Alkenes & Alkynes 51 min
        • Lecture16.4
          Chemical Reactions of Alkenes & Alkynes 38 min
        • Lecture16.5
          Stereochemistry of Halogen-addition across C=C, Acid & Base-Catalyzed Opening of Epoxide 47 min
        • Lecture16.6
          Chemical Reactions of Alkane and Alkynes, Distinction b/w Alkane and Alkyne 30 min
        • Lecture16.7
          Miscellaneous Problems, Some Previous Years Problems 41 min
      • 17. Aromatic Compounds
        8
        • Lecture17.1
          Introduction to Aromatic Compounds, Nomenclature, Reaction of Benzene, Thermodynamic Stability of Benzene, Molecular orbital explanation of the structure of benzene, Huckel’s Rule 32 min
        • Lecture17.2
          Addition reactions of Benzene, Electrophilic Aromatic Substitution 42 min
        • Lecture17.3
          Friedel Craft Alkylation, Limitation of F.C Alkylation, Friedel Craft Acylation, How do Substituent affect Reactivity? 40 min
        • Lecture17.4
          Problem Solving, Wurtz-fitting Reaction, Side -chain Reaction of Benzene Derivatives 43 min
        • Lecture17.5
          Nucleophilic Aromatic Substitution 45 min
        • Lecture17.6
          Uses of Protecting and Blocking Groups, Reduction of Aromatic Compounds 39 min
        • Lecture17.7
          Phenols- IUPAC Names, Preparation, Acidic Character of Phenol, Other Reactions 39 min
        • Lecture17.8
          Other reactions continues, Reactions with Formaldehyde and Some problems 46 min
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