Lesson List
Some Basic Concept of Chemistry
Classification of Matter
00:00:00
Law of Chemical Combination
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Law of Chemical Combination Part – 1
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Law of Chemical Combination Part – 2
00:00:00
Law of Chemical Combination Part – 3
00:00:00
Avogadro’s Law
00:00:00
Dalton’s Atomic Theory
00:00:00
Atom and Molecule
00:00:00
Atomic Mass and Average Atomic Mass
00:00:00
Molecular and Gram Molecular Mass
00:00:00
Equivalent Mass
00:00:00
Percent by Mass
00:00:00
Percent by Volume
00:00:00
Empirical and Molecular Formula
00:00:00
Stoichiometry Part – 1
00:00:00
Stoichiometry Part – 2
00:00:00
Stoichiometry Part – 3
00:00:00
Stoichiometry Part – 4
00:00:00
Limiting Reagent
00:00:00
Concentration Terms
00:00:00
Concept of Mole
00:00:00
Mole Fraction
00:00:00
Molarity
00:00:00
Molarity of a Mixture
00:00:00
Normality
00:00:00
Normality of a Mixture
00:00:00
Numerical (Level 1)
00:00:00
Numerical (Level 2)
00:00:00
Numerical (Level 3)
00:00:00
States of Matter
Introduction to Gas Law
00:00:00
Measurable Properties of Gases (Mass and Temperature)
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Measurable Properties of Gases (Pressure, Volume and Density)
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Boyle’s Law
00:00:00
Graph Based on Boyle’s Law P vs V
00:00:00
Graph Based on Boyle’s Law log P vs Log V
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Graphs Based on Boyle’s Law P vs 1/V
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Graph Problems on Boyle’s Law
00:00:00
Modification for Boyle’s Law
00:00:00
Charles Law
00:00:00
Charles Law in Degree Celsius
00:00:00
Graph Based on Charle’s Law
00:00:00
Graph for Degree Celsius Form of Charles Law
00:00:00
Log V vs Log T
00:00:00
Graphical Modification for Charles Law
00:00:00
Modification of Charles Law
00:00:00
Gay Lussac’s Law
00:00:00
Graph Based on Gay Lussac’s Law
00:00:00
Graphical Modification of Gay Lussac’s Law
00:00:00
Modification of Gay Lussac’s Law
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Avogadro’s Law
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Application of Avogadro’s Law Part-2
00:00:00
Grahams Law of Diffusion
00:00:00
Grahams Law of Diffusion – Equation
00:00:00
Grahams Law of Diffusion Case – 2
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Determination of Rate of Diffusion 1
00:00:00
Ideal Gas Equation
00:00:00
Combined Gas Equation
00:00:00
Units & Values of Universal Gas Constant
00:00:00
Ideal Gas Equation in Terms of Density
00:00:00
Dalton’s Law
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Derivation of Dalton’s Law
00:00:00
Modification of Dalton’s Law
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Kinetic Gas Equation
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Different Speed Associated with Gas Molecules Part 1
00:00:00
Different Speed Associated with Gas Molecules Part 2
00:00:00
Maxwell Distribution Part 1
00:00:00
Maxwell Distribution Part 2
00:00:00
Real Gas Introduction
00:00:00
Deviation of Real Gas Part – 1
00:00:00
Deviation of Real Gas Part – 2
00:00:00
Deviation of Real Gas Part – 3
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Variation of Z vs P
00:00:00
Variation of Z vs T
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Real Gas Equation
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Real Gas Equation- Pressure Correction Part-1
00:00:00
Real Gas Equation- Pressure Correction Part-2
00:00:00
Real Gas Equation – Significance of a and b
00:00:00
Real Gas Equation – Units of a and b
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Real Gas Equation – Volume Correction
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Real Gas Equation – Comparison of a
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Real Gas Equation – Vender Wall’s
00:00:00
Liquidification of Gas and Critical Constants Part – 1
00:00:00
Liquidification of Gas and Critical Constants Part – 2
00:00:00
Numerical (Level 1)
00:00:00
Numerical (Level 2)
00:00:00
Numerical (Level 3)
00:00:00
Structure of Atom
Dalton’s Atomic Theory
00:00:00
Discovery of Cathode Rays
00:00:00
Properties of Cathode Rays
00:00:00
Discovery of Anode Rays
00:00:00
Properties of Anode Rays
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Properties of Charge Part – 1
00:00:00
Properties of Charge Part – 2
00:00:00
Thomson’s Model
00:00:00
Bohr’s Postulates
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Spectral Series of Hydrogen & Bohr’s Equation
00:00:00
Bohr’s Equation
00:00:00
Bohr’s Quantisation Condition
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Limitations of Bohr’s Model & Debroglie’s Explanation
00:00:00
Drawbacks of Bohr’s Atomic Model
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Rutherford’s Model of Atom
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Results of Rutherford’s Experiment part – 1
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Results of Rutherford’s Experiment Part – 2
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Results of Rutherford’s Experiment Part – 3
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Results of Rutherford’s Experiment Part – 4
00:00:00
Rutherford’s Gold Foil Experiment Conclusion
00:00:00
Discovery of Neutrons
00:00:00
Atomic Number and Mass Number
00:00:00
Iso Series Part -1
00:00:00
Iso Series Part – 2
00:00:00
Limitations of Rutherford’s Model
00:00:00
Failure of Rutherford’s Model
00:00:00
Electron Volt
00:00:00
Dual Nature of Light
00:00:00
General Characteristics of Transverse Wave Part – 1
00:00:00
General Characteristics of Transverse Wave Part – 2
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General Characteristics of Transverse Wave Part – 3
00:00:00
Electromagnetic Waves Part – 1
00:00:00
Electromagnetic Waves Part – 2
00:00:00
Planck’s Quantum Theory Part – 1
00:00:00
Planck’s Quantum Theory Part – 2
00:00:00
Ionisation Energy
00:00:00
Bond Energy and Kinetic Energy
00:00:00
Photoelectric Effect Part – 1
00:00:00
Photoelectric Effect Part – 2
00:00:00
Photoelectric Effect Part – 3
00:00:00
Photoelectric Effect Part – 4
00:00:00
Photoelectric Effect Part – 5
00:00:00
Dual Nature of Matter (De Broglie Equation)
00:00:00
Heisenberg’s Uncertainty Principle
00:00:00
Quantum Numbers
00:00:00
Schrodinger’s Wave Equation
00:00:00
Atomic Orbitals
00:00:00
Shape of Orbitals
00:00:00
Aufbau Principle
00:00:00
Pauli’s Exclusion Principle
00:00:00
Hund’s Rule of Maximum Multiplicity
00:00:00
Extra Stability of Atomic Orbital
00:00:00
Electronic Configuration
00:00:00
Significance of Ψ
00:00:00
Numerical (Level 1)
00:00:00
Numerical (Level 2)
00:00:00
Surface Chemistry
Introduction
00:00:00
Sorption and Occlusion
00:00:00
Adsorption
00:00:00
Difference between Adsorption and Absorption
00:00:00
Comparison of Physisorption and Chemisorption
00:00:00
Factors Affecting Adsorption
00:00:00
Freundlich Adsorption Isotherm
00:00:00
Application of Adsorption
00:00:00
Catalysis
00:00:00
Types of Catalysis
00:00:00
Shape Selective Catalysis
00:00:00
Types of Solution
00:00:00
Classification of Colloids
00:00:00
Difference between Lyophilic and Lyophobic Colloids
00:00:00
Micellization
00:00:00
Electrical Properties of Colloids
00:00:00
Purification of Colloidal Solutions
00:00:00
Optical Property of Colloids – Tyndall Effect
00:00:00
Kinetic Property of Colloids – Brownian Motion
00:00:00
Coagulation
00:00:00
Emulsion
00:00:00
Distinction between O/W in Water and W/O Emulsions
00:00:00
Applications of Colloids
00:00:00
Cleansing Action of Soaps
00:00:00
Surfactants
00:00:00
Chemical Bonding and Molecular Structure
Introduction
00:00:00
Kossel and Lewis Approach
00:00:00
Ionic Bond
00:00:00
Ionic Solid Structure and Lattice Enthalpy
00:00:00
Covalent Bond
00:00:00
Limitation of Octet Rule
00:00:00
Formal Charge
00:00:00
Resonance Structure
00:00:00
Potential Energy Diagram for Formation of Hydrogen Molecule
00:00:00
Overlap of Atomic Orbitals
00:00:00
Formation of Multiple Bonds
00:00:00
Formation of Methane Molecule
00:00:00
Formation of Ethene Molecule
00:00:00
Formation of Boron Trichloride Molecule
00:00:00
SP Hybridisation
00:00:00
Formation of Beryllium Dichloride Molecule
00:00:00
Limitations of VBT
00:00:00
Molecular Orbital Theory
00:00:00
Formation of Molecular Orbitals
00:00:00
MO Description of Simple Diatomic Molecules 1
00:00:00
MO Description of Simple Diatomic Molecules 2
00:00:00
MOT – Formation of Oxygen Molecule
00:00:00
MOT – Formation of Fluorine Molecule
00:00:00
Bond Angle
00:00:00
Types of Molecular Orbitals
00:00:00
Odd Electron Molecules
00:00:00
Thermodynamics
Introduction
00:00:00
Basic Terms in Thermodynamics
00:00:00
Types of System
00:00:00
Exothermic Reaction
00:00:00
Endothermic Reaction
00:00:00
Types of Processes
00:00:00
Internal Energy as a State Function
00:00:00
Extensive and Intensive Properties
00:00:00
State of the System
00:00:00
Mechanical Work
00:00:00
Concept of Maximum Work
00:00:00
Second Law of Thermodynamics
00:00:00
Enthalpy
00:00:00
Bond Energy or Bond Enthalpies
00:00:00
Born-Habber Cycle for NaCl
00:00:00
Relationship Between ΔH and ΔU
00:00:00
Hess’s Law
00:00:00
Thermochemical Equation
00:00:00
Different Types of Enthalpy
00:00:00
Entropy of Phase Transition
00:00:00
Spontaneous Process
00:00:00
Gibb’s Free Energy
00:00:00
Standard Gibb’s Free Energy
00:00:00
Heat Capacity
00:00:00
Relation Between Cp and Cv
00:00:00
Third Law of Thermodynamics
00:00:00
Entropy Change During Phase Transition and for Ideal Gases
00:00:00
Entropy Change in Reversible and Irreversible Process
00:00:00
Applications of Hess’s Law
00:00:00
Gibbs Free Energy as Criteria for Spontaneity
00:00:00
Numericals Level – 1
00:00:00
Numericals Level – 2
00:00:00
Numericals Level – 3
00:00:00
The Solid State
Introduction
00:00:00
Classification of Solids
00:00:00
Classification of Crystalline Solids
00:00:00
Crystal Lattice and Unit Cell
00:00:00
Seven Crystal Systems and Fourteen Bravais Lattice
00:00:00
Number of Atoms Per Unit Cell
00:00:00
Unit Cell Parameters part – 1
00:00:00
Unit Cell Parameters part – 2
00:00:00
Types of Unit Cell
00:00:00
Density of Cubic Unit Cell
00:00:00
Effective Number of Atoms in a Unit Cell
00:00:00
Packing of Particles in a Solid
00:00:00
Packing of Particles in a Solid Part – 2
00:00:00
Packing Fraction (PF)
00:00:00
Voids
00:00:00
Radius Ratio Rule
00:00:00
Structure of AB Type Ionic Crystal (NaCl)
00:00:00
Structure of AB Type Ionic Crystal (CsCl)
00:00:00
Structure of AB Type Ionic Crystal (ZnS)
00:00:00
Structure of A2B Type Ionic Crystal (Sodium Oxide)
00:00:00
Structure of AB2 Type Ionic Crystal (Calcium Fluoride)
00:00:00
Stoichiometric Defects
00:00:00
Stoichiometric Defects Part – 2
00:00:00
Impurity Defects
00:00:00
Non-stoichiometric Defects
00:00:00
Bragg’s Law
00:00:00
Applications of Bragg’s Law
00:00:00
Electrical Properties of Solids
00:00:00
Band Theory
00:00:00
Extrinsic Semiconductors
00:00:00
Electrical Properties of Solids
00:00:00
Dielectric Properties of Solid
00:00:00
Magnetic Properties of Solids
00:00:00
Classification of Substances Based on Their Magnetic Properties
00:00:00
Spinal Structure
00:00:00
Numerical (Level 1)
00:00:00
Numerical (Level 2)
00:00:00
Numerical (Level 3)
00:00:00
Solutions
Introduction
00:00:00
Abnormal Molecular Weight
00:00:00
Abnormal Colligative Property
00:00:00
Biological Importance of Osmosis and Osmotic Pressure
00:00:00
Concept of Mixing & Dilution of solutions
00:00:00
Conditions for Getting Accurate Value of Molar Mass
00:00:00
Difference between Osmosis and Diffusion
00:00:00
Diffusion
00:00:00
Osmosis
00:00:00
Semipermeable Membranes
00:00:00
Osmotic Pressure
00:00:00
Laws of Osmotic Pressure
00:00:00
Type of Solution (on Basis of Osmotic Pressure)
00:00:00
Relationship between Different Concentration Terms
00:00:00
Van’t Hoff Factor
00:00:00
Van’t Hoff Factor and Degree of Dissociation
00:00:00
Van’t Hoff Factor and Degree of Association
00:00:00
Van’t Hoff Factor and Colligative Properties
00:00:00
Composition of Vapour
00:00:00
Colligative Property
00:00:00
Depression in Freezing Point
00:00:00
Azeotropic Mixture
00:00:00
Relative Lowering of Vapour Pressure
00:00:00
Elevation in Boiling Point
00:00:00
Types of Solutions
00:00:00
Henry’s Law
00:00:00
Non-Ideal Solution
00:00:00
Ideal Solution
00:00:00
Solubility of Solid in Liquid
00:00:00
Solubility of Liquid in Liquid
00:00:00
Solubility of Gases
00:00:00
Reverse Osmosis
00:00:00
Concentration of Solutions part – 1
00:00:00
Concentration of Solutions part – 2
00:00:00
Concentration of Solutions part – 3
00:00:00
Concentration of Solutions part – 4
00:00:00
Raoult’s Law
00:00:00
Raoult’s Law as a Special Case of Henry’s Law
00:00:00
Limitations of Raoult’s Law
00:00:00
Numerical (Level 1)
00:00:00
Numerical (Level 2)
00:00:00
Numerical (Level 3)
00:00:00
Equilibrium
Equilibrium
00:00:00
Types of Reactions Part 1
00:00:00
Types of Reactions Part 2
00:00:00
Types of Equilibrium
00:00:00
Characteristics of Equilibrium
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Graphs for Equilibrium Part 1
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Graphs for Equilibrium Part 2
00:00:00
Active Mass Part 1
00:00:00
Active Mass Part 2
00:00:00
Law of Mass Action Part 1
00:00:00
Law of Mass Action Part 2
00:00:00
Types of Equilibrium Constant
00:00:00
Relationship Between Kc and Kp Part – 1
00:00:00
Relationship Between Kc and Kp Part – 2
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Relationship Between Kc and Kp Part – 3
00:00:00
Homogeneous Reaction Δng=0 part – 1
00:00:00
Homogeneous Reaction Δng=0 part – 2
00:00:00
Homogeneous Reaction Δng=0 part – 3
00:00:00
Homogeneous Reaction Δn Less Than 0 part – 1
00:00:00
Homogeneous Reaction Δn Less Than 0 part – 2
00:00:00
Homogeneous Reaction Δn Less Than 0 Part – 3
00:00:00
Homogeneous Reaction Greater Than Zero Part – 1
00:00:00
Homogeneous Reaction Greater Than Zero Part – 2
00:00:00
Homogeneous Reaction Greater Than Zero Part – 3
00:00:00
Heterogeneous Reaction
00:00:00
Homogeneous Liquid Phase Reaction
00:00:00
Units of Equilibrium Constant
00:00:00
Application of Equilibrium Constant part – 1
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Application of Equilibrium Constant Part – 2
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Application of Equilibrium Constant Part – 3
00:00:00
Degree of Dissociation part – 1
00:00:00
Degree of Dissociation part – 2
00:00:00
Degree of Dissociation part – 3
00:00:00
Degree of Dissociation part – 4
00:00:00
Le-chatelier’s Principle 1
00:00:00
Le-chatelier’s Principle 2
00:00:00
Le-chatelier’s Principle 3
00:00:00
Le-chatelier’s Principle 4
00:00:00
Le-chatelier’s Principle 5
00:00:00
Ionic Equilibria – Introduction
00:00:00
Acids and Bases – Arrhenius Theory
00:00:00
Bronsted – Lowry Acid Base Theory
00:00:00
Acids and Bases – Lewis Theory
00:00:00
Types of Electrolytes
00:00:00
Degree of Dissociation
00:00:00
Ostwald’s Dilution Law
00:00:00
Ionic Product of Water
00:00:00
Types of Salts
00:00:00
pH and pOH
00:00:00
Common Ion Effect
00:00:00
Hydrolysis of Salt
00:00:00
Buffer Solutions
00:00:00
Buffer Action -1
00:00:00
Buffer Action -2
00:00:00
Applications of Buffer Solution
00:00:00
Solubility Product
00:00:00
Chemical Equilibrium Level – 1
00:00:00
Chemical Equilibrium Level – 2
00:00:00
Chemical Equilibrium Level – 3
00:00:00
Ionic Equilibria Level – 1
00:00:00
Ionic Equilibria Level – 2
00:00:00
Ionic Equilibria Level – 3
00:00:00
Redox Reactions
Introduction
00:00:00
Electronic Concept of Oxidation-Reduction
00:00:00
Oxidizing and Reducing Agents (Oxidants and Reductant)
00:00:00
Oxidation Number
00:00:00
Oxidation State as a Periodic Property
00:00:00
Rules for the Determination of Oxidation Number or Oxidation State 1
00:00:00
Rules for the Determination of Oxidation Number or Oxidation State 2
00:00:00
Types of Redox Reactions
00:00:00
Displacement Reactions
00:00:00
Disproportionation Reactions
00:00:00
Balancing of Oxidation-Reduction Reactions 1
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Balancing of Oxidation-Reduction Reactions 2
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Balancing of Oxidation-Reduction Reactions 3
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Balancing of Oxidation-Reduction Reactions 4
00:00:00
Numerical (Level 1)
00:00:00
Numerical (Level 2)
00:00:00
Numerical (Level 3)
00:00:00
Electrochemistry
Introduction
00:00:00
Electrochemical Series
00:00:00
Characteristics of Electrochemical Series
00:00:00
Application of Electrochemical Series
00:00:00
Electrolytes and Non Electrolytes
00:00:00
Electrochemical Cell or Galvanic Cell
00:00:00
Representation of an Electrochemical Cell
00:00:00
Types of Electrochemical Cell
00:00:00
Salt Bridge
00:00:00
Current Efficiency
00:00:00
EMF of a Cell and Its Variation with Temperature
00:00:00
Electrode Potential and Factors Affecting Magnitude of Electrode Potential
00:00:00
Reference Electrode
00:00:00
Primary Reference Electrode
00:00:00
Secondary Reference Electrode
00:00:00
Nernst Equation
00:00:00
Application of Nernst Equation in Chemical Cells Part – 1
00:00:00
Application of Nernst Equation in Chemical Cells Part – 2
00:00:00
Characteristics of Electrochemical Cell
00:00:00
Electrical Conductance of Solution
00:00:00
Experimental Measurement of Electrical Conductivity
00:00:00
Molar Conductivity
00:00:00
Variation of Molar Conductivity with Concentration
00:00:00
Factors Affecting the Conductivity of Electrolyte
00:00:00
Kohlrausch Law of Independent Migration of Ions and Its Application
00:00:00
Calculate Degree of Dissociation and Dissociation Constant of Weak Electrolyte
00:00:00
To Calculate Molar Conductance of Weak Electrolyte & Solubility (S) and Ksp of any Sparingly Soluble Salt
00:00:00
Electrolysis
00:00:00
Faraday’s First Law of Electrolysis
00:00:00
Faraday’s Second Law of Electrolysis
00:00:00
Products of Electrolysis of Some Important Electrolytes
00:00:00
Primary Voltaic Cells – Dry Cell (Leclanche Cell)
00:00:00
Mercury Cell
00:00:00
Electrolysis of Molten NaCl
00:00:00
Electrolysis of Aqueous NaCl
00:00:00
Lead Storage Battery
00:00:00
Nickel Cadmium Cell
00:00:00
Fuel Cells
00:00:00
Corrosion
00:00:00
Protection of Metals from Corrosion
00:00:00
Numerical (Level 1)
00:00:00
Numerical (Level 2)
00:00:00
Numerical (Level 3)
00:00:00
Chemical Kinetics
Introduction
00:00:00
Rate of Reaction
00:00:00
Type of Rate of Reaction
00:00:00
Rate Law and Rate Constant
00:00:00
Writing the Equation for Rate of Reaction
00:00:00
Units of Rate Constant
00:00:00
Law of Mass Action (Guldberg and Wage 1864)
00:00:00
Order of a Reaction
00:00:00
Zero Order Reactions
00:00:00
First Order Reactions
00:00:00
Graphical Representation for First Order Reactions
00:00:00
Pseudo First Order Reactions
00:00:00
Second Order Reactions
00:00:00
Third Order Reactions
00:00:00
n-Order Reactions
00:00:00
Half-life of Reaction
00:00:00
Molecularity of Reaction
00:00:00
Activation Energy and Threshold Energy
00:00:00
Collision Theory of Chemical Reaction
00:00:00
Transition State Theory
00:00:00
Factors Affecting Rate of Reaction
00:00:00
Effect of Catalyst on the Rate of Reaction
00:00:00
Effect of Temperature on Rate of Reaction
00:00:00
Arrhenius Equation
00:00:00
Use of Arrhenius Equation to Calculate Activation Energy
00:00:00
Graphical Representation of Arrhenius Equation
00:00:00
RDS (Rate Determine Step)
00:00:00
Methods for Determination of Order of Reaction (Integration Method)
00:00:00
Methods for Determination of Order of Reaction (Half-life Method)
00:00:00
Methods for Determination of Order of Reaction (Ostwald Isolation Method)
00:00:00
Methods for Determination of Order of Reaction (Initial Rate Method)
00:00:00
Methods for Determination of Order of Reaction (Van’t Hoff Differential Method)
00:00:00
Methods for Determination of Order of Reaction (Graphical Method)
00:00:00
Parallel Reactions
00:00:00
Negative Order Reactions
00:00:00
Photo Chemical Reaction
00:00:00
Average Life Time
00:00:00
Radioactivity
00:00:00
Radioactivity – Rate Law
00:00:00
Half Life of Radioactive Element
00:00:00
Graphical Representation of Radioactive Decay
00:00:00
Nuclear Fission 1
00:00:00
Numerical (Level 1)
00:00:00
Numerical (Level 3)
00:00:00
Classification of Elements and Periodicity in Properties
Introduction
00:00:00
Prout’s Hypothesis
00:00:00
Dobereiner’s Triads
00:00:00
Newland’s Law of Octaves
00:00:00
Lothar Meyer’s Atomic Volume Curve
00:00:00
Mendeleev Periodic Table
00:00:00
Mendeleev Periodic Law
00:00:00
Moseley’s Periodic Law
00:00:00
Long Form / Present Form of Modern Periodic Table
00:00:00
Electronic Configuration of Elements
00:00:00
Determination of Period, Block and Group of an Element
00:00:00
Melting and Boiling Point
00:00:00
Anomalous Properties of Second Period Elements
00:00:00
Electronic Configuration of 3d Series Elements
00:00:00
Slater’s Rules – To calculate Effective Nuclear Charge
00:00:00
Atomic Radius and Ionic Radius
00:00:00
Factors Affecting Atomic Radius
00:00:00
Periodicity in Atomic Radius
00:00:00
Periodicity in Ionic Radius
00:00:00
Ionization Energy
00:00:00
Factors which Influence Ionization Energy
00:00:00
Applications of Ionization Energy
00:00:00
Electronegativity
00:00:00
Measurement of Electronegativity
00:00:00
Factors Affecting the Magnitude of Electronegativity
00:00:00
Variation of EN in Periodic Table
00:00:00
Diagonal Relationship and Electronegativity
00:00:00
Application of Electronegativity
00:00:00
Electron Gain Enthalpy and Electron Affinity
00:00:00
Trends in Electron Gain Enthalpy
00:00:00
Periodicity of Valency of an Element
00:00:00
Oxidation State of an Element
00:00:00
Trends of Oxides
00:00:00
Reducing and Oxidising Property
00:00:00
General Principles and Processes of Isolation of Elements
Introduction
00:00:00
Occurrence of Metal
00:00:00
Terms Involved in Extraction Process
00:00:00
Concentration of Ores – Hydraulic Washing
00:00:00
Concentration of Ores – Magnetic Separation
00:00:00
Concentration of Ores – Froth Floatation
00:00:00
Concentration of Ores – Leaching
00:00:00
Conversion of Ores into Oxide
00:00:00
Reduction of The Oxide into Metal
00:00:00
Electrochemical Principles Applied to Metallurgy
00:00:00
Thermodynamics Principles Applied to Metallurgy
00:00:00
Ellingham Diagram
00:00:00
Refining (Liquation & Distillation)
00:00:00
Refining (Electrolytic Refining & Zone Refining)
00:00:00
Refining (Vapour Phase Refining and Chromatographic methods)
00:00:00
Extraction of Iron (Ores-Process-Reactions)
00:00:00
Extraction of Zinc (Ores-Process-Reactions)
00:00:00
Extraction of Copper (Ores-Process-Reactions)
00:00:00
Extraction of Aluminium (Ores-Process-Reactions)
00:00:00
Hydrogen
Isotopes, Allotropes & Molecular Forms of Hydrogen
00:00:00
Physical and Chemical Properties of Hydrogen
00:00:00
Uses of Dihydrogen
00:00:00
Hydrides
00:00:00
Water – Introduction
00:00:00
Structure of Water
00:00:00
Chemical Properties of Water
00:00:00
Hard & Soft Water
00:00:00
Heavy Water
00:00:00
Removal of Hardness of Water
00:00:00
Effects and Uses of Heavy Water
00:00:00
Preparation of Hydrogen Peroxide
00:00:00
Physical Properties of Hydrogen Peroxide
00:00:00
Strength of Hydrogen Peroxide
00:00:00
Concentration of Hydrogen Peroxide and Its Storage
00:00:00
Uses of Hydrogen Peroxide
00:00:00
Resemblance with Alkali Metals and Halogens
00:00:00
Dissimilarities of Hydrogen with Halogens
00:00:00
The S-Block Element
Anomalous Behaviour of Lithium
00:00:00
Anomalous Behaviour of Beryllium
00:00:00
Diagonal Relationship Shown by S Block Elements
00:00:00
Compounds of Sodium – Sodium Hydrogen Carbonate
00:00:00
Chemical Properties of Sodium Hydroxide
00:00:00
Compounds of Sodium – Sodium Chloride
00:00:00
Compounds of Sodium – Sodium Carbonate
00:00:00
Biological Importance of Sodium and Potassium
00:00:00
Chemical Properties of s Block Elements – Alkaline Earth Metals
00:00:00
Compounds of Calcium – Calcium Oxide
00:00:00
Compounds of Calcium – Calcium Hydroxide
00:00:00
Compounds of Calcium – Calcium Carbonate
00:00:00
Compounds of Calcium – Calcium Sulphate
00:00:00
Biological Importance of Mg & Ca
00:00:00
Physical Properties of Group 18 Elements
00:00:00
Uses of Group 18 Elements
00:00:00
The P-block Elements
Anomalous Behavior of Boron
00:00:00
Anomalous Behavior of Nitrogen
00:00:00
Anomalous Behaviour of Carbon
00:00:00
Anomalous Behavior of Oxygen
00:00:00
Anomalous Behavior of Fluorine
00:00:00
Allotropic Forms of Carbon
00:00:00
Allotropy of Phosphorus
00:00:00
Uses of Diborane
00:00:00
Preparation of Chlorine
00:00:00
Chemical Properties of Chlorine
00:00:00
Compound of Phosphorous (PCl3 and PCl5 )
00:00:00
Chemical Properties of PCl3
00:00:00
Chemical Properties of PCl5
00:00:00
Classification of Oxides
00:00:00
Preparation of Dioxygen
00:00:00
Chemical Properties of Dioxygen
00:00:00
Componds of Oxygen – Ozone
00:00:00
Zeolites
00:00:00
Compounds of Nitrogen – Ammonia Preparation
00:00:00
Preparation of Dinitrogen
00:00:00
Chemical Properties of Dinitrogen
00:00:00
Preparation of Nitric Acid
00:00:00
Chemical Properties of Nitric Acid
00:00:00
Uses of Nitrogen
00:00:00
Compounds of Sulphur – Sulphur Dioxide (Preparation)
00:00:00
Preparation of Sulphuric Acid
00:00:00
Clathrates
00:00:00
Compounds of Phosphorous – Phosphine (Preparation)
00:00:00
Compounds of Phosphorus – Phosphine (Chemical Properties)
00:00:00
Uses of Aluminium
00:00:00
Physical Properties of Group 15th Elements
00:00:00
Inter Halogen Compounds
00:00:00
Compounds of Elements of Group 18 – Xenon Oxides
00:00:00
Compounds of Elements of Group 18 – Xenon Fluorides part – 1
00:00:00
Compounds of Elements of Group 18 – Xenon Fluorides part – 2
00:00:00
Uses of Noble Gases
00:00:00
The D and F-Block Elements
Electronic Configuration of 3d Series Elements
00:00:00
Electronic Configuration of 4d Series Elements
00:00:00
Electronic Configuration of 5d Series Elements
00:00:00
Electronic Configuration of 6d Series elements
00:00:00
General Properties of d-Block Elements
00:00:00
Metallic Character
00:00:00
Melting and Boiling Point
00:00:00
Atomic Radius
00:00:00
Standard Electrode Potentials
00:00:00
Ionisation Enthalpy
00:00:00
Variable Valency or Oxidation States of d-Block Elements
00:00:00
Magnetic Properties
00:00:00
Colour Properties of Transition Elements
00:00:00
Ferric Chloride
00:00:00
Ferric Oxide
00:00:00
Green Vitriol
00:00:00
Blue Vitriol
00:00:00
Catalyst
00:00:00
Interstitial Compounds
00:00:00
Alloy Formation
00:00:00
Nature of Oxides and Hydroxides of 3d Series
00:00:00
Methods of Preparation of Potassium Dichromate
00:00:00
Structures of Chromate and Dichromate Ions
00:00:00
Interconversion of Potassium Chromate and Potassium Dichromate
00:00:00
Physical and Chemical Properties of Potassium Dichromate
00:00:00
Methods of Preparation of Potassium Permanganate
00:00:00
Physical and Chemical Properties of Potassium Permanganate
00:00:00
Oxidising Nature of Potassium Permanganate
00:00:00
Silver Nitrate
00:00:00
Mercury (II) Iodide
00:00:00
Halides of 3d Series of Transition Elements
00:00:00
The Inner Transition Elements (f Block)
00:00:00
Electronic Configuration of Lanthanides
00:00:00
Electronic Configuration of Actinides
00:00:00
Lanthanides Contraction
00:00:00
Magnetic Properties
00:00:00
Colour Property
00:00:00
Reactivity of Lanthanides
00:00:00
Application of Lanthanides
00:00:00
Actinide Contraction
00:00:00
Oxidation State of Actinide
00:00:00
Similarities between Lanthanides & Actinides
00:00:00
Distinguish between Lanthanides & Actinides
00:00:00
Coordination Compounds
Werner’s theory
00:00:00
Double Salts and Co-ordination Compound
00:00:00
Ligands and Classification of Ligands Part – 1
00:00:00
Ligands and Classification of Ligands Part – 2
00:00:00
Chelating Ligands
00:00:00
Coordination Number
00:00:00
Types of Complex
00:00:00
Effective Atomic Number
00:00:00
Ionization Energy
00:00:00
Isomerism in Co-ordination Complexes Introduction
00:00:00
Structural Isomerism
00:00:00
Geometrical Isomerism Part -1
00:00:00
Geometrical Isomerism Part – 2
00:00:00
Optical Isomerism
00:00:00
Valence Bond Theory part – 1
00:00:00
Valence Bond Theory part – 2
00:00:00
Valence Bond Theory part – 3
00:00:00
Limitations of VBT
00:00:00
Crystal Field Theory Part – 1
00:00:00
Crystal Field Theory Part – 2
00:00:00
Crystal Field Theory part – 3
00:00:00
Limitations of CFT
00:00:00
Stability of Co-ordination Complexes
00:00:00
Application of Co-ordination Compounds
00:00:00
IUPAC Nomenclature Part – 1
00:00:00
IUPAC Nomenclature Part – 2
00:00:00
Distribution of Electrons in Splitted d-Orbitals
00:00:00
Bonding in Metal Carbonyls
00:00:00
Colour of Co-ordination Complexes
00:00:00
Magnetic Nature of Co-ordination Complexes
00:00:00
Organic Chemistry – Some Basic Principles and Techniques
Nomenclature of Aromatic Compounds part – 1
00:00:00
Nomenclature of Aromatic Compounds part – 2
00:00:00
Nomenclature of Aromatic Compounds part – 3
00:00:00
Nomenclature of Aromatic Compounds part – 4
00:00:00
Nomenclature of Aromatic Compounds part – 5
00:00:00
Nomenclature of Aromatic Compounds part – 6
00:00:00
Bond Fission part – 1
00:00:00
Bond Fission part – 2
00:00:00
Types of Reagent
00:00:00
Distinction Between Nucleophile and Base
00:00:00
Hydrocarbon Group part – 1
00:00:00
Hydrocarbon Group part – 2
00:00:00
Hydrocarbon Group part – 3
00:00:00
Classification of Organic Compound on the Basis of Structure
00:00:00
Representation of Organic Compound
00:00:00
Nomenclature Part – 1
00:00:00
Nomenclature Part – 2
00:00:00
Nomenclature Part – 3
00:00:00
Nomenclature Part – 4
00:00:00
Nomenclature Part – 5
00:00:00
Nomenclature of Alicyclic Compounds
00:00:00
Nomenclature of Complex Substituents
00:00:00
Types of Organic Reaction
00:00:00
Reaction Intermediate part – 1
00:00:00
Reaction Intermediate part – 2
00:00:00
Reaction Intermediate part – 3
00:00:00
Reaction Intermediate part – 4
00:00:00
Reaction Intermediate part – 5
00:00:00
Classification of Organic Compounds (On the Basis of F.G.) part 1
00:00:00
Classification of Organic Compounds (On the Basis of F.G.) part 2
00:00:00
Classification of Organic Compounds (On the Basis of F.G.) part 3
00:00:00
Classification of Organic Compounds (On the Basis of F.G.) part 4
00:00:00
Classification of Organic Compounds (On the Basis of F.G.) part 5
00:00:00
Homologous Series
00:00:00
Homologous Series
00:00:00
Types of Carbon Atoms
00:00:00
Hyperconjugation part – 1
00:00:00
Hyperconjugation part – 2
00:00:00
Application of Hyperconjugation
00:00:00
Characteristics of Organic Compounds
00:00:00
Electromeric Effect
00:00:00
Inductive Effect
00:00:00
Resonance
00:00:00
Rules of Resonance
00:00:00
Relative Stability of Canonical Forms
00:00:00
Resonance Effect
00:00:00
Nomenclature of Ether
00:00:00
Nomenclature of Amines
00:00:00
Nomenclature of Organic Compounds having Functional Groups part – 1
00:00:00
Nomenclature of Organic Compounds having Functional Groups Part – 2
00:00:00
Nomenclature – 1
00:00:00
Nomenclature – 2
00:00:00
Nomenclature – 3
00:00:00
Nomenclature – 4
00:00:00
Nomenclature – 5
00:00:00
Isomerism
00:00:00
Isomerism 2
00:00:00
Methods of Purification
00:00:00
Methods of Purification of Organic Compounds (Introduction)
00:00:00
Sublimation
00:00:00
Simple Distillation
00:00:00
Steam Distillation
00:00:00
Distillation Under Reduced Pressure
00:00:00
Fractional Distillation use of Fractionating-Column
00:00:00
Crystallization
00:00:00
Fractional Crystallization
00:00:00
Solvent Extraction
00:00:00
Chromatography Introduction
00:00:00
Types of Chromatography
00:00:00
Thin Layer Chromatography
00:00:00
Partition Chromatography
00:00:00
Column Chromatography
00:00:00
Quantitative Analysis
00:00:00
Quantitative Analysis Part – 1
00:00:00
Quantitative Analysis Part – 2
00:00:00
Crystalline and Amorphous
00:00:00
Quantitative Analysis of Sulphur
00:00:00
Quantitative Analysis of Oxygen
00:00:00
Quantitative Analysis of Phosphorus Part – 1
00:00:00
Quantitative Analysis of Phosphorus Part – 2
00:00:00
Quantitative Analysis of Nitrogen
00:00:00
Detection of Carbon and Hydrogen
00:00:00
Detection of Halogen
00:00:00
Molecular Formula from Empirical Formula
00:00:00
Detection of Nitrogen
00:00:00
Detection of Sulphur
00:00:00
Detection of Both Nitrogen and Sulphur
00:00:00
Detection of Phosphorous
00:00:00
IUPAC Name
00:00:00
Determination of Melting Point
00:00:00
Boiling Point
00:00:00
Numericals Level – 1
00:00:00
Hydrocarbons
Introduction
00:00:00
Introduction (Occurrence in Nature) Part – 1
00:00:00
Introduction (Occurrence in Nature) Part – 2
00:00:00
Alkanes
00:00:00
Alkanes (Isomerism)
00:00:00
Alkanes Preparation from Unsaturated Hydrocarbons
00:00:00
Alkanes (Preparation) 2 from Sodium Salt of Carboxylic Acid
00:00:00
Alkanes (Preparation) 3 by Reduction of Alkyl Halides
00:00:00
Alkanes (Preparation) 4 By Using Reactive Metal
00:00:00
Alkanes (Preparation) 5 Wurtz Reaction
00:00:00
Alkanes (Preparation) 6 from Alkyl Magnesium Halides (Grignard Reagent)
00:00:00
Alkanes (Preparation) from Organometellic Compound Part – 1
00:00:00
Alkanes (Preparation) from Organometellic Compound Part – 2
00:00:00
Alkanes (Preparation) by Kolbe’s Electrolysis
00:00:00
Alkanes (Preparation) by Reduction
00:00:00
Alkanes (Preparation) by Red Phosphorus and HI
00:00:00
Halogenation of Alkane Part – 1
00:00:00
Halogenation of Alkane Part – 2
00:00:00
Mechanism of Halogenation of Alkane
00:00:00
Nitration of Alkane
00:00:00
Pyrolysis of Alkane
00:00:00
Aromatization (Reforming)
00:00:00
Combustion of Alkane
00:00:00
Physical Properties of Alkanes
00:00:00
Conformations of Alkanes Part – 1
00:00:00
Conformations of Alkanes Part – 2
00:00:00
Uses of Alkanes
00:00:00
Alkenes Introduction
00:00:00
Alkenes Isomerism
00:00:00
Methods of Preparation 1 by Dehydrohalogenation Elimination Reactions
00:00:00
Methods of Preparation 2 by Dehydrohalogenation Saytzeff Rule
00:00:00
Methods of Preparation 3 from Alkyl Halide by Dehydrohalogenation
00:00:00
Methods of Preparation 4 from Vicinal Halide by Dehalogenation
00:00:00
Methods of Preparation 5 from Alcohol by Dehydration
00:00:00
Methods of Preparation 6 from Alkyne by Partial Reduction
00:00:00
Chemical Reactions of Alkenes (Hydrogenation) Addition of Hydrogen
00:00:00
Chemical Reactions of Alkenes (Hydrohalogenation) part – 1 Addition Reaction of HBr
00:00:00
Chemical Reactions of Alkenes (Hydrohalogenation) part – 2
00:00:00
Chemical Reactions of Alkenes (Hydrohalogenation) part – 3
00:00:00
Chemical Reactions of Alkenes (Addition of H2SO4)
00:00:00
Chemical Reactions of Alkenes (Baeyer’s Test)
00:00:00
Chemical Reactions of Alkenes Ozonolysis
00:00:00
Uses of Acetylene
00:00:00
Uses of Alkenes
00:00:00
Alkynes (Introduction) Part – 1
00:00:00
Alkynes (Introduction) Part – 2
00:00:00
Alkynes (Isomerism)
00:00:00
Alkynes (Preparation) from Calcium Carbide
00:00:00
Alkynes (Preparation) from Dihalide by Dehydrogenation
00:00:00
Alkynes (Preparation) from Tetrahalides by Dehalogenation
00:00:00
Alkynes (Chemical Reactions) Acidic Character of Alkynes
00:00:00
Alkynes (Chemical Reactions) Hydrogenation
00:00:00
Alkynes (Chemical Reactions) Halogenation
00:00:00
Alkynes (Chemical Reactions) Hydrohalogenation
00:00:00
Alkynes (Chemical Reactions) Addition of Sulphuric Acid
00:00:00
Alkynes (Chemical Reactions) Hydration
00:00:00
Alkynes (Chemical Reactions) Ozonolysis
00:00:00
Alkynes (Polymerization)
00:00:00
Aromatic Compounds (Introduction)
00:00:00
Aromatic Compounds (Classification)
00:00:00
Aromatic Compounds (Preparation)
00:00:00
Delocalised Electrons of Benzene
00:00:00
Aromatic Compounds (Chemical Reaction)
00:00:00
Aromatic Compounds (Chemical Reaction) Ozonolysis
00:00:00
Aromatic Compounds (Chemical Reaction) Substitution
00:00:00
Aromatic Compounds (Chemical Reaction) Nitration
00:00:00
Aromatic Compound (Sulphonation)
00:00:00
Aromatic Compound (Friedel Craft’s Alkylation)
00:00:00
Aromatic Compound (Friedel Craft’s Acylation)
00:00:00
Aromatic Compound (Mechanism of Electrophilic Substitution)
00:00:00
Aromatic Compound (Activating and Ortho-Para Directing Group)
00:00:00
Aromatic Compound (Deactivating and Meta Directing Group)
00:00:00
Haloalkanes and Haloarenes
Introduction
00:00:00
Classification of Halogen Derivatives
00:00:00
Classification of Monohalogen Derivatives of Alkanes
00:00:00
Classification of Monohalogen Derivatives of Alkanes (Part II)
00:00:00
Nomenclature of Alkyl Halides
00:00:00
Nomenclature of Poly Halogen Derivatives of Alkane
00:00:00
Nomenclature of Halogen Derivatives (Cyclic) – Part – 1
00:00:00
Nomenclature of Halogen Derivatives (Cyclic) – Part – 2
00:00:00
Haloarenes (Classification & Nomenclature)
00:00:00
Haloarenes (Nomenclature)
00:00:00
Nature of C-X Bond in Haloarenes
00:00:00
Methods of Preparation
00:00:00
Methods of Preparation (Part II)
00:00:00
Methods of Preparation (Part III)
00:00:00
Haloarenes (Methods of Preparation)
00:00:00
Haloarenes (Methods of Preparation Sandmeyer’s Reaction)
00:00:00
Methods of Preparation (from Alkene)
00:00:00
Markovnikov’s Rule
00:00:00
Mechanism of Markovnikov’s Rule
00:00:00
Anti Markovnikov’s Rule
00:00:00
Mechanism of Anti-Markovnikov’s Rule
00:00:00
Methods of Preparation of Dihalides (Vicinal Halides)
00:00:00
Methods of Preparation of Dihalides (Geminal Halides)
00:00:00
Chemical Properties (Dihalides) Part – 1
00:00:00
Chemical Properties (Dihalides) Part – 2
00:00:00
Methods of Preparation (from Halogen Exchange)
00:00:00
Nucleophilic Substitution Reaction
00:00:00
Chemical Properties of Alkyl Halides (Aq. Alkali)
00:00:00
Chemical Properties of Alkyl Halides (Williamson’s Synthesis)
00:00:00
Chemical Properties of Alkyl Halides (KCN & AgCN)
00:00:00
Chemical Properties of Alkyl Halides (Ammonia)
00:00:00
Chemical Properties of Alkyl Halides (Silver Carboxylate & Nitro Group)
00:00:00
Preparation of Alkyl Halides (Pnemonic)
00:00:00
SN2 Reaction Part – 1
00:00:00
SN2 Reaction Part – 2
00:00:00
SN2 Reaction (Energy Profile Diagram)
00:00:00
SN1 Reaction Part – 1
00:00:00
SN1 Reaction Part – 2
00:00:00
SN1 Reaction (Energy Profile Diagram)
00:00:00
Optical Activity
00:00:00
Optical Activity -1 (Explanation)
00:00:00
Chemical Properties of Alkyl Halides (Dehydrohalogenation Part – 1)
00:00:00
Chemical Properties of Alkyl Halides (Dehydrohalogenation Part – 2)
00:00:00
Chemical Properties (Action of Metals)
00:00:00
Chemical Properties (Wurtz Reaction)
00:00:00
Chemical Properties (Reduction and Summary)
00:00:00
Haloarenes (Chemical Properties) Part – 1
00:00:00
Haloarenes (Chemical Properties) Part – 2
00:00:00
Haloarenes (Chemical Properties) Part – 3
00:00:00
Chemical Properties (Haloform)
00:00:00
Methods of Preparation Trihalides
00:00:00
Methods of Preparation (Iodoform)
00:00:00
Preparation of Tetrahalogen Derivatives
00:00:00
Compounds Containing Oxygen (Alcohols, Phenols and Ethers)
Alcohols Introduction
00:00:00
Classification of Alcohols on the Basis of Hydroxyl Group
00:00:00
Classification of Alcohols on The Basis of Carbon Atom
00:00:00
To Identify the Number of Type of Alcohol
00:00:00
Classification of Alcohol (on the Basis of Type Hybridisation of Carbon Attached)
00:00:00
Nomenclature of Alcohol
00:00:00
Isomerism in Alcohol
00:00:00
Formula to Calculate the Total No. of Isomeric Alcohols & Ethers
00:00:00
Methods of Preparation
00:00:00
Methods of Preparation – from Alkylhalide part 1
00:00:00
Methods of Preparation – from Alkylhalide part 2
00:00:00
Methods of Preparation – from Alkene (by Hydration)
00:00:00
Mechanism for Hydration of Alkene
00:00:00
Hydroboration Oxidation
00:00:00
Example of Hydroboration Oxidation
00:00:00
From Carbonyl Compound by Action of Grignard Reagent part 1
00:00:00
From Carbonyl Compound by Action of Grignard Reagent part 2
00:00:00
From Carbonyl Compound (by Reduction) part 1
00:00:00
From Carbonyl Compound (by Reduction) part 2
00:00:00
From Carbonyl Compound (by Reduction) part 3
00:00:00
Structure of Functional Group (Alcohol)
00:00:00
Chemical Reactions of Alcohol part – 1
00:00:00
Chemical Reactions of Alcohol part – 2
00:00:00
Chemical Reactions of Alcohol part – 3
00:00:00
Alcohols in Everyday Life
00:00:00
Chemical Reactions (Reaction with HI)
00:00:00
Chemical Reactions (Reaction with Phosphorus Halide)
00:00:00
Chemical Reactions (Reaction with Thionyl Chloride)
00:00:00
Chemical Reactions (Dehydration of Alcohol) Part – 1
00:00:00
Chemical Reactions (Dehydration of Alcohol) Part – 2
00:00:00
Chemical Reactions (Mechanism of Dehydration of Alcohol)
00:00:00
Chemical Reactions (Dehydration along with Alumina)
00:00:00
Chemical Reactions (Dehydrogenation of Alcohol)
00:00:00
Chemical Reactions (Esterification)
00:00:00
Oxidation of Alcohol part – 1
00:00:00
Oxidation of Alcohol part – 2
00:00:00
Oxidation of Alcohol part – 3
00:00:00
Oxidation of Alcohol part – 4
00:00:00
Reaction of Alcohol with Metals
00:00:00
Structure of Alcohols
00:00:00
Physical Properties of Alcohols
00:00:00
Different Types of Industrial Alcohols
00:00:00
Uses of Alcohols
00:00:00
Phenol Introduction
00:00:00
Classification of Phenols Part – 1
00:00:00
Classification of Phenols Part – 2
00:00:00
Structure of Functional Group (Phenols)
00:00:00
Preparation of Phenols from Chlorobenzene
00:00:00
Preparation of Phenols from Benzene Sulfonic Acid
00:00:00
Preparation of Phenols from Cumene
00:00:00
Preparation of Phenols from Aniline
00:00:00
Reactions of Phenols
00:00:00
Reactions of Phenols Kolbe’s Reactions
00:00:00
Reactions of Phenols Reimer -Tiemann Reactions
00:00:00
Chemical Reactions
00:00:00
Chemical Reactions Bromination part – 1
00:00:00
Chemical Reactions Bromination part – 2
00:00:00
Chemical Reactions Nitration of Phenol part – 1
00:00:00
Chemical Reactions Nitration of Phenol part – 2
00:00:00
Chemical Reactions Sulfonation
00:00:00
Distinguishing Test
00:00:00
Uses of Phenols
00:00:00
Ethers Introduction
00:00:00
Ether Definition part – 1
00:00:00
Ether Definition part – 2
00:00:00
Classification of Ethers
00:00:00
Nomenclature of Ethers
00:00:00
Example of Nomenclature
00:00:00
Metamerism
00:00:00
Methods of Preparation (Williamsons Synthesis)
00:00:00
Ethers Example – Part 1
00:00:00
Ethers Example – Part 2
00:00:00
Form Diazomethane
00:00:00
From Alkylhalide (Action of Dry Silver Oxide)
00:00:00
Mnemonics for Preparation of User Ethers
00:00:00
Continuous Etherfication
00:00:00
Mechanism of Dehydration
00:00:00
Limitations of Continuous Etherfication
00:00:00
Chemical Reaction of Ethers (Hydrolysis)
00:00:00
Action of Hot HI on Simple & Mixed Ethers
00:00:00
Action of Cold HI on simple & Mixed Ethers
00:00:00
Mechanism of Cold HI on Ethers
00:00:00
Action of PCl5 on Simple & Mixed Ethers
00:00:00
Action of Acetylchloride & Acetic Anhydride -1
00:00:00
Action of Carbon Monoxide
00:00:00
Formation of Oxonium Salt
00:00:00
Application of Ethers in Daily Life
00:00:00
Electrophilic Substitution
00:00:00
Electrophilic Substitution Reaction
00:00:00
Mnemonics for User Ethers
00:00:00
Uses of Ether in Daily Life
00:00:00
Aldehydes, Ketones & Carboxylic Acids
Preparation from Carboxylic Acid
00:00:00
Preparation from Carboxylic Acid for Ketone
00:00:00
Preparation of Aldehyde by Catalytic Dehydrogenation of Alcohol
00:00:00
Preparation of Aldehydes by Unsaturated Hydrocarbon
00:00:00
Preparation from Dihalides
00:00:00
Preparation of Aldehyde and Ketones from Alcohol
00:00:00
Preparation of Ketone from Unsaturated Hydrocarbon
00:00:00
Hydration of Alkyne
00:00:00
Indirect Hydration of Alkyne
00:00:00
Preparation of Aldehydes
00:00:00
By Using DIBAL-H
00:00:00
Ester
00:00:00
From Grignard Reagent Nitrile
00:00:00
Chlorination of Alkylside Chain of Aromatic Hydrocarbon
00:00:00
From Aromatic Hydrocarbon
00:00:00
Etard Reaction
00:00:00
Gattermann’s Koch Reaction
00:00:00
Gattermann’s Koch Reaction Example
00:00:00
Rosenmund Reduction
00:00:00
From Acylchloride
00:00:00
Friedel Craft Acylation
00:00:00
Examples of Aldehydes and Ketones
00:00:00
Pinacol – Pinacolone Reaction
00:00:00
Chemical Reaction of Aldehydes and Ketones
00:00:00
Formation of Cyanohydrin
00:00:00
Addition of Alcohol
00:00:00
Mechanism of Acetal Formation
00:00:00
Addition of Sodium Bisulphite
00:00:00
Addition of Ammonia to Formaldehyde
00:00:00
Addition of Ammonia to Acetaldehyde
00:00:00
Addition of Ammonia to Acetone
00:00:00
Addition of Ammonia to Acetone and Its Uses
00:00:00
Addition of Grignard Reagent
00:00:00
Addition of Ammonia Derivatives to Carbonyl Compound
00:00:00
Addition of Ammonia Derivatives Part – 1
00:00:00
Addition of Ammonia Derivatives Part – 2
00:00:00
Addition of Water
00:00:00
Reaction of Formaldehyde with Ammonia and Uses
00:00:00
Haloform Reaction
00:00:00
Reduction of Carbonyl Compound
00:00:00
Reduction to Pinacol
00:00:00
Reduction with Hydrazine under Different Condition
00:00:00
Conversion of Alkyl Ketones into Alkyl Benzene
00:00:00
Aldol Condensation
00:00:00
Aldol Condensation II
00:00:00
Wolff Kishner’s Reduction
00:00:00
Mechanism Aldol Condensation Part – 1
00:00:00
Mechanism Aldol Condensation Part – 2
00:00:00
To Get Carbonyl Compound from Alpha Beta Unsaturated Compounds
00:00:00
Question on the Basis on Aldol
00:00:00
Cross or Mixed Aldol Condensation
00:00:00
Question on Cross Aldol Condensation
00:00:00
Intramolecular Aldol Condensation
00:00:00
Cannizzaro’s Reaction
00:00:00
Mechanism of Cannizzaro’s Reaction
00:00:00
Intramolecular Cannizzaro’s
00:00:00
Cross Cannizzaro’s
00:00:00
Mechanism of Intramolecular Cannizzaro’s
00:00:00
Ex of Aldol and Cannizzaro’s
00:00:00
Claisen Condensation
00:00:00
Oxidation
00:00:00
Oxidation of Ketones
00:00:00
Fehling Solution
00:00:00
Schiff’s Reagent
00:00:00
Tollen’s Reagent
00:00:00
Laboratory Test for Ketonic Group
00:00:00
Summary of Reaction of Aldehydes and Ketones
00:00:00
Uses of Aldehydes and Ketones
00:00:00
Aldehydes and Ketones Used in Daily Life
00:00:00
Carboxylic Acid Intro
00:00:00
Monocarboxylic Acid
00:00:00
Some Important Carboxylic Acid
00:00:00
Comparison of Formic Acid and Acetic Acid
00:00:00
Nomenclature of Acids Part -1
00:00:00
Nomenclature of Acids Part -2
00:00:00
IUPAC Names Part -1
00:00:00
IUPAC Names Part -2
00:00:00
Structure of Carboxylic Group
00:00:00
From Primary Alcohol and Aldehyde
00:00:00
From Alkylbenzene by Oxidation
00:00:00
Preparation of carboxylic acids From Nitrile and Amide
00:00:00
From Dry Ice by Action of Grignard Reagent
00:00:00
From Acylhalide and Acid Anhydride
00:00:00
From Ester by Hydrolysis
00:00:00
Summary of Preparation of Carboxylic Acid
00:00:00
Physical Properties of Carboxylic Acid
00:00:00
Chemical Reaction of Carboxylic Acid Reaction Involving Breaking of OH bond of Carboxyl Group (Acidic Nature)
00:00:00
Chemical Reaction of Carboxylic Acid Reaction Involving Breaking of C-OH Bond of Carboxyl Group Formation of Anhydride
00:00:00
Chemical Reaction of Carboxylic Acid Reaction Involving Breaking of C-OH Bond of Carboxyl Group Alternative Formation of Anhydride
00:00:00
Chemical Reaction of Carboxylic Acid Reaction Involving Breaking of C-OH Bond of Carboxyl Group Formation of Ester
00:00:00
Order in Reactivity of Acids and Alcohol in Esterification
00:00:00
Mechanism of Esterification
00:00:00
Chemical Reaction of Carboxylic Acid Reaction involving breaking of C-OH bond of Carbonyl Group Formation of Acyl Chloride
00:00:00
Reaction Involving Carbonyl Group (Reduction)
00:00:00
Chemical Reaction of Carboxylic Acid Reaction involving breaking of C-OH bond of Carboxyl Group Formation of Amide
00:00:00
Chemical Reaction of Carboxylic Acid Reaction involving breaking of C-OH bond of Carboxyl Group Formation phthalimide
00:00:00
Chemical Reaction of Carboxylic Acid Reaction involving Carboxyl Group (Decarboxylation)
00:00:00
Reaction Involving Hydrocarbon Part of Carboxylic Acid (Halogenation)
00:00:00
Ring Substitution
00:00:00
Use of Carboxylic Acid
00:00:00
Acidic Character of Carboxylic Acid
00:00:00
Expressing Strength of Carboxylic Acid
00:00:00
Effect of Substituents on Acidic Strength Part – 1
00:00:00
Effect of Substituents on Acidic Strength Part – 2
00:00:00
Effect of Substituents on Acidic Strength Part – 3
00:00:00
Effect of Substituents on Acidic Strength Part – 4
00:00:00
Comparison of Relative Acidic Strength
00:00:00
Organic Compounds Containing Nitrogen
Introduction
00:00:00
Classification of Amines
00:00:00
Examples of Amines
00:00:00
Isomerism
00:00:00
Nomenclature of Amines Part – 1
00:00:00
Nomenclature of Amines Part – 2
00:00:00
Nomenclature of Amines Part – 3
00:00:00
Preparation of Amines Part – 1 (from Cyanide)
00:00:00
Preparation of Amines Part – 2 (from Nitroalkane)
00:00:00
Preparation of Amines Part – 3 (from Oxime)
00:00:00
Preparation of Amines Part – 4 (from Amides)
00:00:00
Preparation of Amines Part – 5 (from Alkylhalide)
00:00:00
Preparation of Amines Part – 6 (from Alkylhalide)
00:00:00
Preparation of Amines Part – 7 (from Pthalimide)
00:00:00
Chemical Reactions Part – 1 (Action of Nitrous Acid on Primary, Sec., Tertiary Amine)
00:00:00
Chemical Reactions Part – 2 (Reaction of Amines with Nitrous Acid)
00:00:00
Chemical Reactions Part – 3 (Reaction of Amines with Nitrous Acid)
00:00:00
Chemical Reactions Part – 4 (Carbylamine Test)
00:00:00
Chemical Reaction (Alkylation of Amines) Part – 1
00:00:00
Chemical Reaction (Alkylation of Amines) Part – 2
00:00:00
Chemical Reaction (Hoffmann’s Elimination Reaction)
00:00:00
Reaction with Hinsberg’s Reagent
00:00:00
Chemical Reaction Acetylation of Amines Part – 1
00:00:00
Chemical Reaction Acetylation of Amines Part – 2
00:00:00
Chemical Reaction Acetylation of Amines Part – 3
00:00:00
Electrophilic Aromatic Substitution
00:00:00
Electrophilic Aromatic Substitution (Bromination)
00:00:00
Electrophilic Aromatic Substitution (Nitration)
00:00:00
Electrophilic Aromatic Substitution (Sulphonation)
00:00:00
Diazonium Salts
00:00:00
Reactions of Diazonium Salts
00:00:00
Reactions of Diazonium Salts (Part II)
00:00:00
Reactions of Diazonium Salts (Part III)
00:00:00
Reactions of Diazonium Salts IV
00:00:00
Reactions of Diazonium Salts V
00:00:00
Reactions of Diazonium Salts VI
00:00:00
Basic Nature of Amines
00:00:00
Basic Character of Amines
00:00:00
Expressing Basic Strength of Amines
00:00:00
Effect of Substituents on the Basicity of Aryl Amine
00:00:00
Effect of Substituents on the Nitrogen Atom
00:00:00
Comparison of Basic Strength of Aralkyl Amines
00:00:00
Comparison of Basic Strength of Amines Part – 1
00:00:00
Comparison of Basic Strength of Amines Part – 2
00:00:00
Comparison of Basic Strength of Amines Part – 3
00:00:00
Uses of Amines
00:00:00
Introduction and Preparation of Nitroalkanes
00:00:00
Methods of Preparation (from Alkyl Halide)
00:00:00
Methods of Preparation (from 1 Degree Amine)
00:00:00
Chemical Reactions of Nitroalkane
00:00:00
Nitroalkane’s (Reaction with Nitrous Acid)
00:00:00
Condensation with Aldehydes and Ketones
00:00:00
Hydrolysis Part – 1
00:00:00
Hydrolysis Part – 2
00:00:00
Polymers
Introduction
00:00:00
Various Terms Related to Polymers Part – 1
00:00:00
Various Terms Related to Polymers part – 2
00:00:00
Classification of Polymers
00:00:00
Classification Based on Source of Availability
00:00:00
Classification Based on Structure
00:00:00
Classification Based on Mode of Polymerisation
00:00:00
Classification Based on Molecular Forces
00:00:00
Classification Based on Biodegradability
00:00:00
Classification Based on Monomer
00:00:00
Addition Polymerisation
00:00:00
Polyvinyl Chloride (PVC)
00:00:00
Free Radical Addition Polymerization
00:00:00
Steps Involved in Free Radical Addition Polymerization
00:00:00
Ionic Addition Polymerisation
00:00:00
Mechanism of Anionic Addition Polymerisation
00:00:00
Mechanism of Cationic Addition Polymerisation
00:00:00
Polyethylene or Polythene
00:00:00
Condensation Polymerisation
00:00:00
Polyesters (Terylene or Dacron)
00:00:00
Polyamides (Nylon-6,6)
00:00:00
Polyamides (Nylon-6,10)
00:00:00
Polyamides (Nylon-6)
00:00:00
Phenol – Formaldehyde Polymer (Bakelite)
00:00:00
Melamine – Formaldehyde Polymer
00:00:00
Polyesters (Glyptal or Alkyd Resin)
00:00:00
Copolymerization Part – 1
00:00:00
Copolymerization part – 2
00:00:00
Rubber
00:00:00
Natural Rubber
00:00:00
Vulcanization of Rubber
00:00:00
Synthetic Rubbers
00:00:00
Synthetic Rubbers (Buna-N)
00:00:00
Synthetic Rubbers (Buna-S)
00:00:00
Molecular Mass of Polymers
00:00:00
Biodegradable Polymers (PHBV)
00:00:00
Coordinate Polymerisation
00:00:00
Polydispersity Index
00:00:00
Plasticizers
00:00:00
Biomolecules
Crbohydrates
00:00:00
Carbohydrates (Classification)
00:00:00
Classification of Carbohydrates (Based on Solubility Reducing Property)
00:00:00
Preparation of Glucose
00:00:00
Chemical Properties (HI NH2OH HCN)
00:00:00
Bromine Water & Nitric Acid
00:00:00
Fischer Projection Formula
00:00:00
Haworth Projection Formula
00:00:00
Haworth Projection Formula (Fructose)
00:00:00
Structure of Disaccharides
00:00:00
Structure of Polysaccharides
00:00:00
Classification of Proteins
00:00:00
Amino Acid
00:00:00
Peptide Bond
00:00:00
Structure of Protein part – 1
00:00:00
Structure of Protein part – 2
00:00:00
Denaturation of Proteins
00:00:00
Enzymes
00:00:00
Nucleic Acid
00:00:00
DNA Double Helix
00:00:00
Chemistry in Everyday Life
Introduction
00:00:00
Detergents
00:00:00
Soaps
00:00:00
Antifertility Drugs
00:00:00
Antiseptics & Disinfectants
00:00:00
Chemicals in Food part – 1
00:00:00
Chemicals in Food part – 2
00:00:00
Antibiotics
00:00:00
Antimicrobials
00:00:00
Antacids and Antihistamines
00:00:00
Analgesics
00:00:00
Tranquilizers
00:00:00
Go to Course Home
Measurable Properties of Gases (Mass and Temperature)
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