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Tuesday, 13-Sep-2011 05:42 Email | Share | | Bookmark
Coaching Institute For Aieee

Coaching Convention for IIT-JEE and AIEEE in India

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Monday, 12-Sep-2011 04:09 Email | Share | | Bookmark
Chemistry syllabus for IIT JEE

General topics: Abstraction of atoms and molecules; Dalton's diminutive theory; Birthmark concept; Actinic formulae; Balanced actinic equations; Calculations (based on birthmark concept) involving accepted oxidation-reduction, neutralisation, and displacement reactions; Absorption in agreement of birthmark fraction, molarity, molality and normality.Gaseous and aqueous states: Absolute calibration of temperature, ideal gas equation; Deviation from ideality, van der Waals equation; Kinetic approach of gases, average, basis beggarly aboveboard and a lot of apparent velocities and their affiliation with temperature; Law of fractional pressures; Vapour pressure; Diffusion of gases.Atomic anatomy and actinic bonding: Bohr model, spectrum of hydrogen atom, breakthrough numbers; Wave-particle duality, de Broglie hypothesis; Uncertainty principle; Qualitative breakthrough automated account of hydrogen atom, shapes of s, p and d orbitals; Cyberbanking configurations of elements (up to diminutive amount 36); Aufbau principle; Pauli's exclusion assumption and Hund's rule; Orbital overlap and covalent bond; Hybridisation involving s, p and d orbitals only; Orbital activity diagrams for homonuclear diatomic species; Hydrogen bond; Polarity in molecules, dipole moment (qualitative aspects only); VSEPR archetypal and shapes of molecules (linear, angular, triangular, aboveboard planar, pyramidal, aboveboard pyramidal, trigonal bipyramidal, tetrahedral and octahedral).Energetics: First law of thermodynamics; Internal energy, plan and heat, pressure-volume work; Enthalpy, Hess's law; Calefaction of reaction, admixture and vapourization; Second law of thermodynamics; Entropy; Chargeless energy; Criterion of spontaneity.Chemical equilibrium: Law of accumulation action; Equilibrium constant, Le Chatelier's assumption (effect of concentration, temperature and pressure); Significance of DG and DGo in actinic equilibrium; Solubility product, accepted ion effect, pH and absorber solutions; Acids and bases (Bronsted and Lewis concepts); Hydrolysis of salts. Electrochemistry: Electrochemical beef and corpuscle reactions; Standard electrode potentials; Nernst blueprint and its affiliation to DG; Electrochemical series, emf of active cells; Faraday's laws of electrolysis; Electrolytic conductance, specific, agnate and molar conductivity, Kohlrausch's law; Absorption cells.Chemical kinetics: Rates of actinic reactions; Adjustment of reactions; Amount constant; First adjustment reactions; Temperature assurance of amount connected (Arrhenius equation).Solid state: Classification of solids, apparent state, seven clear systems (cell ambit a, b, c, alpha, beta, gamma), abutting arranged anatomy of debris (cubic), packing in fcc, bcc and hcp lattices; Nearest neighbours, ionic radii,Solutions: Raoult's law; Atomic weight assurance from blurred of vapour pressure, acclivity of baking point and abasement of freezing point.Surface chemistry: Elementary concepts of adsorption (excluding adsorption isotherms); Colloids: types, methods of alertness and accepted properties; Elementary account of emulsions, surfactants and micelles (only definitions and examples). Nuclear chemistry: Radioactivity: isotopes and isobars; Backdrop of alpha, beta and gamma rays; Kinetics of radioactive adulteration (decay alternation excluded), carbon dating; Adherence of nuclei with account to proton-neutron ratio; Brief altercation on fission and admixture reactions. Inorganic Chemistry: Isolation/preparation and backdrop of the afterward non-metals: Boron, silicon, nitrogen, phosphorus, oxygen, sulphur and halogens; Backdrop of allotropes of carbon (only design and graphite), phosphorus and sulphur. Alertness and backdrop of the afterward compounds: Oxides, peroxides, hydroxides, carbonates, bicarbonates, chlorides and sulphates of sodium, potassium, magnesium and calcium; Boron: diborane, boric acerbic and borax; Aluminium: alumina, aluminium chloride and alums; Carbon: oxides and oxyacid (carbonic acid); Silicon: silicones, silicates and silicon carbide; Nitrogen: oxides, oxyacids and ammonia; Phosphorus: oxides, oxyacids (phosphorus acid, phosphoric acid) and phosphine; Oxygen: blast and hydrogen peroxide; Sulphur: hydrogen sulphide, oxides, accursed acid, sulphuric acerbic and sodium thiosulphate; Halogens: hydrohalic acids, oxides and oxyacids of chlorine, acerbic powder; Xenon fluorides.Transition elements (3d series): Definition, accepted characteristics, blaze states and their stabilities, colour (excluding the data of cyberbanking transitions) and adding of spin-only alluring moment; Allocation compounds: classification of mononuclear allocation compounds, cis-trans and ionisation isomerisms, admixture and geometries of mononuclear allocation compounds (linear, tetrahedral, aboveboard collapsed and octahedral).Preparation and backdrop of the afterward compounds: Oxides and chlorides of tin and lead; Oxides, chlorides and sulphates of Fe2+, Cu2+ and Zn2+; Potassium permanganate, potassium dichromate, argent oxide, argent nitrate, argent thiosulphate. Ores and minerals: Commonly occurring ores and minerals of iron, copper, tin, lead, magnesium, aluminium, zinc and silver. Extractive metallurgy: Actinic attempt and reactions alone (industrial data excluded); Carbon abridgement adjustment (iron and tin); Self abridgement adjustment (copper and lead); Electrolytic abridgement adjustment (magnesium and aluminium); Cyanide action (silver and gold).Organic ChemistryConcepts: Hybridisation of carbon; Sigma and pi-bonds; Shapes of simple amoebic molecules; Structural and geometrical isomerism; Optical isomerism of compounds absolute up to two agee centres, (R,S and E,Z classification excluded); IUPAC classification of simple amoebic compounds (only hydrocarbons, mono-functional and bi-functional compounds); Conformations of ethane and butane (Newman projections); Resonance and hyperconjugation; Keto-enol tautomerism; Assurance of empiric and atomic formulae of simple compounds (only agitation method); Hydrogen bonds: analogue and their furnishings on concrete backdrop of alcohols and carboxylic acids; Anterior and resonance furnishings on acidity and basicity of amoebic acids and bases; Polarity and anterior furnishings in alkyl halides; Reactive intermediates produced during homolytic and heterolytic band cleavage; Formation, anatomy and adherence of carbocations, carbanions and chargeless radicals. Preparation, backdrop and reactions of alkanes: Homologous series, concrete backdrop of alkanes (melting points, baking credibility and density); Agitation and halogenation of alkanes; Alertness of alkanes by Wurtz acknowledgment and decarboxylation reactions.Preparation, backdrop and reactions of alkenes and alkynes: Concrete backdrop of alkenes and alkynes (boiling points, body and dipole moments); Acidity of alkynes; Acerbic catalysed hydration of alkenes and alkynes (excluding the stereochemistry of accession and elimination); Reactions of alkenes with KMnO4 and ozone; Abridgement of alkenes and alkynes; Alertness of alkenes and alkynes by abolishment reactions; Electrophilic accession reactions of alkenes with X2, HX, HOX and H2O (X=halogen); Accession reactions of alkynes; Metal acetylides. Reactions of benzene: Anatomy and aromaticity; Electrophilic barter reactions: halogenation, nitration, sulphonation, Friedel-Crafts alkylation and acylation; Aftereffect of o-, m- and p-directing groups in monosubstituted benzenes. Phenols: Acidity, electrophilic barter reactions (halogenation, nitration and sulphonation); Reimer-Tieman reaction, Kolbe reaction. Characteristic reactions of the afterward (including those mentioned above): Alkyl halides: barter reactions of alkyl carbocation, Grignard reactions, nucleophilic barter reactions; Alcohols: esterification, aridity and oxidation, acknowledgment with sodium, phosphorus halides, ZnCl2/concentrated HCl, about-face of alcohols into aldehydes and ketones;Characteristic reactions of the afterward (including those mentioned above): Alkyl halides: barter reactions of alkyl carbocation, Grignard reactions, nucleophilic barter reactions; Alcohols: esterification, aridity and oxidation, acknowledgment with sodium, phosphorus halides, ZnCl2/concentrated HCl, about-face of alcohols into aldehydes and ketones; Ethers:Preparation by Williamson's Synthesis; Aldehydes and Ketones: oxidation, reduction, oxime and hydrazone formation; aldol condensation, Perkin reaction; Cannizzaro reaction; haloform acknowledgment and nucleophilic accession reactions (Grignard addition); Carboxylic acids: accumulation of esters, acerbic chlorides and amides, ester hydrolysis; Amines: basicity of commissioned anilines and aliphatic amines, alertness from nitro compounds, acknowledgment with nitrous acid, azo coupling acknowledgment of diazonium salts of ambrosial amines, Sandmeyer and accompanying reactions of diazonium salts; carbylamine reaction; Haloarenes: nucleophilic ambrosial barter in haloarenes and commissioned haloarenes (excluding Benzyne apparatus and Cine substitution).Carbohydrates: Classification; mono- and di-saccharides (glucose and sucrose); Oxidation, reduction, glycoside accumulation and hydrolysis of sucrose.Amino acids and peptides: Accepted anatomy (only primary anatomy for peptides) and concrete properties. Backdrop and uses of some important polymers: Natural rubber, cellulose, nylon, teflon and PVC. Practical amoebic chemistry: Detection of elements (N, S, halogens); Detection and identification of the afterward anatomic groups: hydroxyl (alcoholic and phenolic), carbonyl (aldehyde and ketone), carboxyl, amino and nitro; Actinic methods of break of mono-functional amoebic compounds from bifold mixtures.There are abounding online forums area you can get added data on IIT JEE assay syllabus.


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