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Find more@learnfatafat 01.21 Empirical Formula and Molecular Formula, 1.21 Empirical Formula and Molecular Formula, Chapter 01 Some Basic Concepts of Chemistry - Test, 02.41 Difference between orbit and orbital, 2.41 Difference Between Orbit and Orbital, 02.42 Quantum Numbers – Principal Quantum Number (n), 2.42 Quantum Numbers - Principal Quantum Number (n), 02.43 Quantum Numbers – Azimuthal Quantum Number (l), 2.43 Quantum Numbers - Azimuthal Quantum Number (l), 02.44 Quantum Numbers – Magnetic Quantum Number (ml), 2.44 Quantum Numbers - Magnetic Quantum Number, 02.45 Quantum Numbers: Spin Quantum Number (ms), 2.45 Quantum Numbers - Spin Quantum Number, 02.46 Significance of |?|2 for finding the Shape of orbitals, 2.46 Significance of Probability Density Function for Finding the Shape of Orbitals, 02.51 Energy level diagram for Multi-Electron Atoms, 2.51 Energy Level Diagram for Multi-Electron Atoms, 02.54 Hund’s Rule of Maximum Multiplicity, 02.56 Stability of Completely Filled and Half Filled Subshells, 2.56 Stability of Completely Filled and Half Filled Subshells, 03 Classification of Elements and Periodicity in Properties, 03.23 Variation of Valence in Periodic Table, 3.23 Variation of Valence in Periodic Table, 03.24 Trends in Chemical Properties: Anomalous properties of second period elements, 3.24 Trends in Chemical Properties - Anomalous Properties of Second Period Elements, 03.25 Periodic Trends and Chemical Reactivity, 3.25 Periodic Trends and Chemical Reactivity, Chapter 3 Classification of Elements and Periodicity in Properties - Test, 04 Chemical Bonding and Molecular Structure, 04.01 Kossel-Lewis approach to Chemical Bonding, 4.01 Kössel-Lewis Approach to Chemical Bonding, 04.03 The Lewis Structures and Formal Charge, 4.03 The Lewis Structures and Formal Charge, 04.06 Bond Length, Bond Angle and Bond Order, 4.06 Bond Length, Bond Angle and Bond Order, 04.10 The Valence Shell Electron Pair Repulsion (VSEPR) Theory, 4.10 The Valence Shell Electron Pair Repulsion (VSEPR) Theory, 04.12 Types of Overlapping and Nature of Covalent Bonds, 4.12 Types of Overlapping and Nature of Covalent Bonds, 04.17 Formation of Molecular Orbitals (LCAO Method), 4.17 Formation of Molecular Orbitals (LCAO Method), 04.18 Types of Molecular Orbitals and Energy Level Diagram, 4.18 Types of Molecular Orbitals and Energy Level Diagram, 04.19 Electronic Configuration and Molecular Behavior, 4.19 Electronic Configuration and Molecular Behaviour, Chapter 4 Chemical Bonding and Molecular Structure - Test, 05.02 Dipole-Dipole Forces And Hydrogen Bond, 5.02 Dipole-Dipole Forces and Hydrogen Bond, 05.03 Dipole-Induced Dipole Forces and Repulsive Intermolecular Forces, 5.03 Dipole-Induced Dipole Forces and Repulsive Intermolecular Forces, 05.04 Thermal Interaction and Intermolecular Forces, 5.04 Thermal Interaction and Intermolecular Forces, 05.08 The Gas Laws : Gay Lussac’s Law and Avogadro’s Law, 5.08 The Gas Laws - Gay Lussac’s Law and Avogadro’s Law, 05.10 Dalton’s Law of Partial Pressure – I, 05.12 Deviation of Real Gases from Ideal Gas Behaviour, 5.12 Deviation of Real Gases from Ideal Gas Behaviour, 05.13 Pressure -Volume Correction and Compressibility Factor, 5.13 Pressure - Volume Correction and Compressibility Factor, 06.02 Internal Energy as a State Function – I, 6.02 Internal Energy as a State Function - I, 06.03 Internal Energy as a State Function – II, 6.03 Internal Energy as a State Function - II, 06.06 Extensive and Intensive properties, Heat Capacity and their Relations, 6.06 Extensive and Intensive Properties, Heat Capacity and their Relations, 06.07 Measurement of ΔU and ΔH : Calorimetry, 6.07 Measurement of ΔU and ΔH - Calorimetry, 06.08 Enthalpy change, ΔrH of Reaction – I, 6.08 Enthalpy change, ΔrH of Reaction - I, 06.09 Enthalpy change, ΔrH of Reaction – II, 6.09 Enthalpy Change, ΔrH of Reaction - II, 06.10 Enthalpy change, ΔrH of Reaction – III, 6.10 Enthalpy Change, ΔrH of Reaction - III. 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