Numerical Physical Chemistry for JEE Main & Advanced

Numerical Physical Chemistry for JEE Main & Advanced

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Product Name : Numerical Physical Chemistry for JEE Main & Advanced
Code : B073
Author : Neeraj Kumar
ISBN : 9789350943984
Pages : 999
Stock : In Stock
 

 

 
Key Features 

• Detailed “theory” is given with figures and chemical reactions to understand the topic well. 

• Sample examples are given after each topic for subject understanding. 

• 3 leveled exercise are covered at the end of every chapter , Exercise 1 includes Subjective Questions. 

• Exercise 2 consist Only One Correct option, One or More Than One Correct Option, Comprehension Based Questions Assertion and Reason, Match the Column, Subjective Questions. 

• Exercise 3 includes previous years’ IIT JEE questions. 

• Solutions for all problems are given at the end of every chapter. 

• More than 3,600 problems of different formats and types are covered for the students help. 


Table of Contents 

• 1. Mole Concept 

• Laws of Chemical Combinations 
• Atoms and Molecules 
• Atomic Weight 
• Molecular Weight 
• Mole 
• Percentage Composition of Compounds 
• Molecular and Empirical Formula of Compounds 

• 2. Stoichiometry 

• Introduction 
• Methods of Solving Problems 
• Types of Problems 

• 3. Eudiometry 

• Introduction 
• Amount Determination 
• Molecular Formula Determination 

• 4. Oxidation – Reduction 

• Old Concept 
• Modern Concept 
• Types of Reactions 
• Oxidizing and Reducing Agents 
• Methods of Balancing Chemical Reactions 

• 5. Equivalent Weight 

• Introduction 
• Equivalent Weight 
• Equivalent Volume of Gas 
• Number of g-Equivalent 
• Principle of g-Equivalence 
• Experimental Methods to Determine Atomic Weight of Elements 

• 6. Concentration Terms 

• Solution 
• Concentration or Strength of Solution 

• 7. Volumetric Analysis 

• Volumetric Analysis or Titration 
• Principle of Titration 

• 8. Gaseous State 

• Gaseous Parameters 
• Gas Laws 
• Combined Gas Equation 
• Dalton’s Law 
• Graham’s Law 
• Kinetic Theory of gases 
• Real Gases 

• 9. Solid State 

• Introduction 
• Crystallography 
• Crystal System 
• Analysis of Cubic System 
• Packing in Solids 
• Packing in Ionic Solids 
• Atomic Imperfection or Point Defects 

• 10 Thermodynamics – I 

• Thermodynamics 
• Basic Definitions 
• First Law of Thermodynamics 
• Enthalpy or Heat Content, H 
• Latent Heat, L 
• Specific Heat, S 
• Molar Heat, C 
• Thermodynamics Equations of State 
• Relation between gaseous Parameters in Adiabatic Process 
• Theoretical Determination of CV and CP 

• 11. Thermochemistry 

• Introduction 
• Types of Reactions 
• Thermochemical Equation 
• Heat or Enthalpy Change or Enthalpy of Reaction, ΔH 
• Some Thermochemical Laws 
• Bond Energy Concept 

• 12. Thermodynamics – II 

• Limitations to the First Law of Thermodynamics 
• Second Law of Thermodynamics 
• Entropy, S 
• Carnot Cycle 
• Gibb’s Free Energy Change, ΔG 
• Clausius – Clapeyron Equations 

• 13. Liquid Solutions 

• Introduction 
• Solubility of Gas in Liquid 
• Solubility in Liquid in Liquid 
• Colligative Properties 
• Colligative Properties of Electrolytes 

• 14. Chemical Kinetics 

• Introduction 
• Rate of Reaction 
• Rate Law 
• Order of Reaction 
• Molecularity of Reaction 
• Types of Reactions 
• Integrated Rate Law 
• Experimental Methods of Determination of Order of Reactions 
• Some Complex Reactions 
• Theories of Chemical Reactions 

• 15. Surface Chemistry 

• Adsorption 
• Adsorbent 
• Adsorbate 
• Absorption 
• Sorption 
• Difference between Adsorption and Absorption 
• Types of Adsorption 
• Comparison between Physisorption and Chemisorption 
• Effect of Various Factors on Adsorption 
• Adsorption Isotherms 
• Adsorption Isobars 
• Applications of Adsorption 
• Catalyst 
• Colloids 
• Electrophoresis 
• Electro Osmosis 
• Coagulation or Precipitation 
• Coagulation of lyophilic Sols 
• Protection or Protective Action 
• Emulsions 
• Associated Colloids (Micelles) 
• Gels 
• Reversible Colloids 
• Applications of Colloids 

• 16. Chemical Equiilibrium 

• Introduction 
• Types of Chemical Reactions 
• State of Equilibrium 
• Types of Equilibrium 
• Law of Mass Action 
• Reaction Quotient and Equilibrium Constant 
• Thermodynamics of Equilibrium 
• Characteristics of Equilibrium 
• Le-Chatelier’s Principle 

• 17. Ionic Equilibrium 

• Introduction 
• Ionic Product of Water 
• pH Value 
• Common Ion Effect 
• Buffer Solution 
• Salt Hydrolysis 
• Theory of Indicators 
• Solubility, S 
• Solubility Product, Ksp 
• Precipitation 

• 18. Electrochemistry 

• Introduction 
• Electrochemical or Galvanic Cells 
• Electrode Potential 
• Electrochemical Series 
• Cell Diagram 
• Electromotive Force or EMF of the Cell 
• Commercial Cells 
• Electrolysis 
• Faraday’s Laws of Electrolysis 
• Electrolytic Conduction 

• 19. Atomic Structure 

• Introduction 
• Dalton’s Atomic Theory 
• Electrical Nature of Atom 
• Atomic Models 
• Atomic Number (Z) and Mass Number (A) 
• Electromagnetic Radiations 
• Planck’s Quantum Theory 
• Photoelectric Effect 
• Bohr’s Atomic Model 
• Hydrogen Spectrum 
• Sommerfeld’s Extension of Bohr’s Model 
• Dual Nature of Electron 
• Heisenberg’s Uncertainty Principle 
• Schrodinger’s Equation 
• Quantum Numbers 
• Pauli’s Exclusion Principle 
• Electronic Configuration 

• 20. Nuclear Chemistry 

• Introduction 
• Nuclear Stability 
• Radioactivity 
• Mechanism and Effects of Emission of Radioactive of Radioactive Rays 
• Group Displacement Law 
• Radioactive Disintegration Series 
• Rate Law 
• Nuclear Reactions 
• Uses of Radioactivity 

 

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