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[ PDF ] DOWNLOAD NCERT CHEMISTRY BOOK CLASS XII PART 1

 

NCERT PHYSICS BOOKS

 CLASS XI 

PART 1




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TABLE OF CONTENTS


  • C H A P T E R-1
    Unit 1 The Solid State
  • 1.1 General Characteristics of Solid State 2
  • 1.2 Amorphous and Crystalline Solids 2
  • 1.3 Classification of Crystalline Solids 4
  • 1.4 Crystal Lattices and Unit Cells 7
  • 1.5 Number of Atoms in a Unit Cell 12
  • 1.6 Close Packed Structures 14
  • 1.7 Packing Efficiency 20
  • 1.8 Calculations Involving Unit Cell Dimensions 22
  • 1.9 Imperfections in Solids 24
  • 1.10 Electrical Properties 26
  • 1.11 Magnetic Properties

  • C H A P T E R-2
    Unit 2 Solutions
  • 2.1 Types of Solutions 35
  • 2.2 Expressing Concentration of Solutions 36
  • 2.3 Solubility 39
  • 2.4 Vapour Pressure of Liquid Solutions 43
  • 2.5 Ideal and Non-ideal Solutions 47
  • 2.6 Colligative Properties and Determination of Molar Mass 49
  • 2.7 Abnormal Molar Masses 57

  • C H A P T E R-3
    Unit 3 Electrochemistry
  • 3.1 Electrochemical Cells 66
  • 3.2 Galvanic Cells 67
  • 3.3 Nernst Equation 70
  • 3.4 Conductance of Electrolytic Solutions 75
  • 3.5 Electrolytic Cells and Electrolysis 85
  • 3.6 Batteries 88
  • 3.7 Fuel Cells 90
  • 3.8 Corrosion 91
  • C H A P T E R-4
    Unit 4 Chemical Kinetics
  • 4.1 Rate of a Chemical Reaction 96
  • 4.2 Factors Influencing Rate of a Reaction 100
  • 4.3 Integrated Rate Equations 105
  • 4.4 Temperature Dependence of the Rate of a Reaction 112
  • 4.5 Collision Theory of Chemical Reactions 116

  • C H A P T E R-5
    Unit 5 Surface Chemistry
  • 5.1 Adsorption 124
  • 5.2 Catalysis 129
  • 5.3 Colloids 136
  • 5.4 Classification of Colloids 136
  • 5.5 Emulsions 145
  • 5.6 Colloids Around Us 145
  • C H A P T E R-6
  • Unit 6 General Principles and Processes of Isolation of Elements
  • 6.1 Occurrence of Metals 152
  • 6.2 Concentration of Ores 153
  • 6.3 Extraction of Crude Metal from Concentrated Ore 155
  • 6.4 Thermodynamic Principles of Metallurgy 156
  • 6.5 Electrochemical Principles of Metallurgy 162
  • 6.6 Oxidation Reduction 163
  • 6.7 Refining 164
  • 6.8 Uses of Aluminium, Copper, Zinc and Iron 166

  • C H A P T E R-7
    Unit 7 The p-Block Elements
  • 7.1 Group 15 Elements 170
  • 7.2 Dinitrogen 174
  • 7.3 Ammonia 175
  • 7.4 Oxides of Nitrogen 177
  • 7.5 Nitric Acid 179
  • 7.6 Phosphorus – Allotropic Forms 180
  • 7.7 Phosphine 181
  • 7.8 Phosphorus Halides 182
  • 7.9 Oxoacids of Phosphorus 184
  • 7.10 Group 16 Elements 185
  • 7.11 Dioxygen 189
  • 7.12 Simple Oxides 190
  • 7.13 Ozone 191
  • 7.14 Sulphur – Allotropic Forms 192
  • 7.15 Sulphur Dioxide 193
  • 7.16 Oxoacids of Sulphur 194
  • 7.17 Sulphuric Acid 195
  • 7.18 Group 17 Elements 197
  • 7.19 Chlorine 202
  • 7.20 Hydrogen Chloride 204
  • 7.21 Oxoacids of Halogens 205
  • 7.22 Interhalogen Compounds 206
  • 7.23 Group 18 Elements 208

  • C H A P T E R-8
    Unit 8 The d-and f-Block Elements
  • 8.1 Position in the Periodic Table 216
  • 8.2 Electronic Configurations of the d-Block Elements 216
  • 8.3 General Properties of the Transition Elements (d-Block) 218
  • 8.4 Some Important Compounds of Transition Elements 231
  • 8.5 The Lanthanoids 234
  • 8.6 The Actinoids 237
  • 8.7 Some Applications of d- and f-Block Elements 239  

  • C H A P T E R 9
  • Unit 9 Coordination Compounds
  • 9.1 Werner's Theory of Coordination Compounds 244
  • 9.2 Definitions of Some Important Terms Pertaining to 247
  • Coordination Compounds
  • 9.3 Nomenclature of Coordination Compounds 248
  • 9.4 Isomerism in Coordination Compounds 251
  • 9.5 Bonding in Coordination Compounds 254
  • 9.6 Bonding in Metal Carbonyls 261
  • 9.7 Importance and Applications of Coordination 262







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