JAM Chemistry Syllabus 2023
JAM Chemistry Syllabus 2023
IIT JAM Chemistry Syllabus 2023 comprises topics such as what matter is composed of, the investigation of their properties as well as reactions, and the use of such reactions to form the latest substances.
For this assembly, the significant subjects for the chemistry paper are as follows, Functions, Maxima as well as Minima, Integrals, Ordinary Differential Equations, Vectors and Matrices, Determinants, Elementary Statistics,
Probability Theory, Fundamental Particles, Bohr’s Theory of Hydrogen-such as Atom, Wave-Particle Duality, Uncertainty Principle, Schrödinger’s Wave Equation, Quantum Numbers, Shapes of Orbitals, Hund’s Rule and Pauli’s Exclusion Principle,
Electronic Configuration of Simple Homonuclear Diatomic Molecules, Equation of State for Ideal along with Non-Ideal (Van Der Waals) Gases, Kinetic Theory of Gases, Maxwell-Boltzmann Distribution Law, Equipartition of Energy, Crystals along with Crystal Systems, X-rays, NaCl along with KCl Structures,
Close Packing, Atomic as well as Ionic Radii, Radius Ratio Rules, Lattice Energy, Born-Haber Cycle, Isomorphism, Heat Capacity of Solids Reversible as well as Irreversible Processes, First Law and Its Application to Ideal along with Nonideal Gases,
Thermochemistry, Second Law, Entropy and Free Energy, Criteria for Spontaneity Law of Mass Action, Kp, Kc, Kx and Kn, Effect of Temperature on K, Ionic Equilibria in Solutions, PH and Buffer Solutions, Hydrolysis, Solubility Product, Phase Equilibria–Phase Rule and its Application to One-Component and Two-Component Systems,
Colligative Properties Conductance along with its Applications, Transport Number, Galvanic cells, EMF and Free Energy, Concentration Cells with and without Transport, Polarography,
Concentration cells with as well as without Transport, Debey-Huckel-Onsagar Theory of Strong Electrolytes, Chemical Kinetics, Reactions of Various Order, Arrhenius Equation,
Collision Theory, Transition State Theory, Chain Reactions – Normal as well as Branched, Enzyme Kinetics, Photochemical Processes, Catalysis, Gibbs Adsorption Equation, Adsorption Isotherm, Types of Adsorption, Surface Area of Adsorbents, Surface Films on Liquids, Beer-Lambert Law,
Fundamental Concepts of Rotational, Vibrational, Electronic as well as Magnetic Resonance Spectroscopy, Electronic Effects (Resonance, Inductive, Hyperconjugation) as well as Steric Effects and its Applications (Acid/Base Property),
Optical Isomerism in Compounds with and without any Stereo enters (Allenes, Biphenyls), Conformation of Acyclic Systems (Substituted Ethane/n-Propane/n-Butane) as well as Cyclic Systems (Mono- and Di-Substituted Cyclohexanes) Dozens Reaction, Wittig Reaction and McMurry Reaction,
Pinacol-Pinacolone, Favorskii, Benzilic Acid Rearrangement, Dienone-Phenol Rearrangement, Baeyer-Villeger Reaction, Oxidation as well as Reduction Reactions in Organic Chemistry,
Organometallic Reagents in Organic Synthesis (Grignard, Organolithium and Organocopper), Diels-Alder, Electrocyclic as well as Sigmatropic Reactions, Functional Group Inter-Conversions and Structural Problems using Chemical Reactions, Chemistry of Reactive Intermediates (Carbocations, Carbanions, Free Radicals, Carbenes, Nitrenes, Benzynes etc…),
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Hofmann-Curtius-Lossen Rearrangement, Wolff Rearrangement, Simmons-Smith Reaction, Reimer-Tiemann Reaction, Michael Reaction Identification of Functional Groups by Chemical Tests, Elementary UV, IR and 1H NMR Spectroscopic Techniques as Tools for Structural Elucidation Chemistry of Alkaloids,
steroids, Terpenes, Carbohydrates, Amino Acids, Peptides and Nucleic Acids Monocyclic, Bicyclic as well as Tricyclic Aromatic Hydrocarbons, and Monocyclic Compounds with One Hetero Atom, Synthesis, Reactivity and Properties Periodic Classification of Elements and Periodicity in Properties,
General Methods of Isolation along with Purification of Elements, Chemical Bonding and Shapes of Compounds, Types of Bonding, VSEPR Theory and Shapes of Molecules, Hybridization, Dipole Moment, Ionic Solids, Structure of NaCl, CsCl, Diamond and Graphite,
Lattice Energy General concepts on Group Relationships and Gradation in Properties, Structure of Electron Deficient Compounds involving Main Group Elements Characteristics of 3d Elements, Oxide, Hydroxide and Salts of First Row Metals, Coordination Complexes, Structure, Isomerism,
Reaction Mechanism and Electronic Spectra, VB, MO along with Crystal Field Theoretical Approaches for Structure, Color and Magnetic Properties of Metal Complexes, Organometallic Compounds consuming Ligands with Back Bonding Capabilities such as Metal Carbonyls,
Carbenes, Nitrosyls and Metallocenes, Homogeneous Catalysis, Essentials along with Trace Elements of Life, Basic Reactions in Biological Systems and the Role of Metal Ions, particularly Fe2+, Fe3+, Cu2+ and Zn2+, Structure along with Function of Hemoglobin and Myoglobin as well as Carbonic Anhydrase Essentials and Trace Elements of Life,
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Basic Reactions in Biological Systems and the Role of Metal Ions, particularly Fe2+, Fe3+, Cu2+ and Zn2+, Structure as well as Function of Hemoglobin and Myoglobin along with Carbonic Anhydrase Principles of Qualitative as well as Quantitative Analysis,
Acid-Base, Oxidation-Reduction along with Complexometric Titrations using EDTA, Precipitation Reactions, Use of Indicators, Use of Organic Reagents in Inorganic Analysis, Radioactivity, Nuclear Reactions, Applications of Isotopes.