JEE Advanced Syllabus & Exam Pattern 2024: आईआईटी मद्रास की तरफ से जेईई एडवांस 2024 का सिलेबस इसके ऑफिशल वेबसाइट पर ऑनलाइन के माध्यम से जारी कर दिया गया है। जेईई एडवांस्ड 2024 के सिलेबस में विषय बार अध्याय और विशेष जो शामिल किए गए हैं, वह सभी जेईई एडवांस्ड प्रश्न पत्र में शामिल किए जाएंगे। जेईई एडवांस्ड सिलेबस पीडीएफ में बहुत की रसायन विज्ञान और मैथ के विषय शामिल किए गए हैं।
इस सिलेबस के साथ-साथ उम्मीदवारों के लिए जेईई एडवांस परीक्षा पैटर्न की भी विवरण नीचे दिए गए पोस्ट के माध्यम से मैं आपको बताने जा रहा हूं। वैसे विद्यार्थी जो की जेईई एडवांस्ड 2024 की परीक्षा की तैयारी कर रहे हैं, उनके लिए यह पोस्ट काफी महत्वपूर्ण होने वाली है। अगर आप भी जेईई एडवांस के लिए अपना आवेदन किए हैं, तो आपको इसकी तैयारी के लिए इससे सिलेबस से जुड़ी विस्तृत जानकारी हेतु नीचे दिए गए पोस्ट को पूरा पढ़ना होगा ताकि आप आसानी से अपनी परीक्षा की तैयारी इस सिलेबस के अनुसार कर सके और सफल हो सके।
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JEE Advanced Syllabus Exam Pattern 2024
जेईई एडवांस सिलेबस को आईआईटी मद्रास के ऑफिसियल वेबसाइट पर जारी कर दिया गया है। इस वर्ष की एडवांस पाठ्यक्रम को लेकर कोई भी महत्वपूर्ण अपडेट जारी नहीं किया गया है। आईआईटी मद्रास की तरफ से इस परीक्षा को आयोजित करवाया जाएगा। इस परीक्षा के लिए पांच उम्मीदवारों को जेईई एडवांस मेंस परीक्षा के लिए योग्यता प्रदान की जाएगी। अब मैं आपको जेईई एडवांस्ड 2024 परीक्षा का संचालन कौन करेगा? इसके बारे में बताने जा रहा हूं।
पूरे भारत में आईआईटी NIIT, आईआईआईटी जैसे सिर्फ कॉलेज में ग्रेजुएशन सिलेबस में प्रवेश पाने के लिए हर साल बड़ी संख्या में छात्र भाग लेते हैं। परीक्षा में अच्छा स्कूल करने के लिए उम्मीदवारों को जेईई एडवांस सिलेबस और परीक्षा पैटर्न से अच्छी तरह परिचित होना आवश्यक है। नीचे दिए गए पोस्ट के माध्यम से मैं आपको इस सिलेबस से जुड़ी सभी जानकारी विस्तार से बताने जा रहा हूं।
JEE Advanced Exam Pattern 2024
वैसे छात्र जो की जेईई एडवांस परीक्षा में शामिल होना चाहते हैं उन्हें सबसे पहले जेईई एडवांस परीक्षा पैटर्न को जाना आवश्यक है। जो कि इस प्रकार से है-
- जेईई एडवांस्ड 2024 में दो प्रश्न पत्र होंगे, पेपर 1 और पेपर 2
- प्रत्येक पेपर के लिए छात्रों को तीन घंटे का समय दिया जाएगा और दोनों पेपर अनिवार्य है।
- परीक्षा का मोड केवल कंप्यूटर आधारित मोड अर्थात सीबीटी के माध्यम से आयोजित करवाया जाएगा।
- प्रत्येक पेपर के लिए उम्मीदवारों को कुल 6 घंटे यानी 3 घंटे का समय दिया जाएगा।
- जेईई एडवांस परीक्षा अंग्रेजेईई तथा हिंदी दोनों भाषाओं में लिया जाएगा।
- जेईई एडवांस के प्रश्न पत्र में तीन अलग-अलग अनुभव शामिल किए गए हैं यानी गणित, भौतिकी और रसायन विज्ञान को इसमें शामिल किया गया है।
- हर साल जेईई एडवांस्ड परीक्षा योजना में बदलाव किया जाता है।
- कुछ प्रश्नों के लिए उम्मीदवारों को नकारात्मक अंक की प्रदान किए जाते हैं।
JEE Advanced Syllabus 2024 For Physics
Chapters | Units |
General |
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Mechanics |
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Linear and angular simple harmonic motions. | |
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Thermal physics |
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Electricity and magnetism |
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Optics |
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Modern physics |
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JEE Advanced Syllabus 2024 For Mathematics
Chapters | Units |
Algebra | Algebra of complex numbers, multiplication, conjugation, addition, polar representation,
triangle inequality, properties of modulus and principal argument, cube roots of unity, geometric interpretations. |
Quadratic equations with real coefficients, formation of quadratic equations with given roots, symmetric functions of roots relations between roots and coefficients.
Arithmetic, geometric and harmonic progressions, geometric and harmonic means, arithmetic, sums of finite arithmetic and geometric progressions, infinite geometric series, sums of squares and cubes of the first n natural numbers. |
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Logarithms and their properties. | |
Permutations and combinations, binomial theorem for a positive integral index, properties of binary coefficients. | |
Matrices | Matrices as a rectangular array of real numbers, addition, multiplication by a scalar and product of matrices, equality of matrices, transpose of a matrix, determinant of a square matrix of order up to three, properties of these matrix operations, diagonal, symmetric and skew-symmetric matrices and their properties, inverse of a square matrix of order up to three, solutions of simultaneous linear equations in two or three variables. |
Probability | Addition and multiplication rules of probability, Bayes Theorem, independence of events, conditional probability, computation of probability of events using permutations and combinations. |
Trigonometry | Trigonometric functions, addition and subtraction formulae, formulae involving multiple and sub-multiple angles, their periodicity and graphs, general solution of trigonometric equations. |
Relations between sides and angles of a triangle, half-angle formula and the area of a triangle, sine rule, cosine rule, inverse trigonometric functions (principal value only). | |
Analytical geometry | Two dimensions: Cartesian coordinates, section formulae, distance between two points, shift of origin. |
Equation of a straight line in various forms, distance of a point from a line; Lines through the point of intersection of two given lines, angle between two lines, equation of the bisector of the angle between two lines, concurrency of lines; orthocentre, Centroid, incentre and circumcentre of a triangle. | |
Equation of a circle in various forms, normal and chord. Parametric equations of a circle, equations of tangent, intersection of a circle with a straight line or a circle, The equation of a circle through the intersection points of two circles and the intersection points of a circle and a direct line. | |
Equations of a parabola, their foci, directrices and eccentricity, ellipse and hyperbola in standard form, parametric equations, equations of tangent and normal. Locus problems. | |
Three dimensions: Direction cosines and direction ratios, equation of a plane, equation of a straight line in space, distance of a point from a plane. | |
Differential calculus | Real valued functions of a real variable, into, sum, difference, product and quotient of two functions, composite functions, onto and one-to-one functions, absolute value, polynomial, rational, trigonometric, exponential and logarithmic functions.
Limit and continuity of a function, difference, product and quotient of two functions, limit and continuity of the sum, L’Hospital rule of evaluation of limits of functions. |
Even and odd functions, continuity of composite functions, inverse of a function, intermediate value property of continuous functions. | |
Derivative of a function, derivative of the sum, product and quotient of two functions, chain rule, difference, derivatives of polynomial, rational, inverse trigonometric, trigonometric, exponential and logarithmic functions. | |
Derivatives of implicit functions, derivatives up to order two, tangents and normals, increasing and decreasing functions, geometrical interpretation of the derivative, maximum and minimum values of a function, Rolle’s theorem and Lagrange’s mean value theorem. | |
Integral calculus | Integration as the inverse process of differentiation, definite integrals and their properties, indefinite integrals of standard functions, fundamental theorem of integral calculus. |
Integration by parts, application of definite integrals to the determination of areas involving simple curves, integration by the methods of substitution and partial fractions. | |
Formation of ordinary differential equations, separation of variables method, solution of homogeneous differential equations, linear first-order differential equations. | |
Vectors | Addition of vectors, dot and cross products, scalar multiplication, scalar triple products and their geometrical interpretations. |
JEE Advanced Syllabus 2024 For Physical Chemistry
General topics | Concept of atoms and molecules; Mole concept; Chemical formulae; Dalton’s atomic theory; Balanced chemical equations;
Calculations (based on mole concept) involving common oxidation-reduction, neutralisation, and displacement reactions; molarity, Concentration in terms of mole fraction, molality and normality. |
Gaseous and liquid states | Absolute scale of temperature, ideal gas equation;
Kinetic theory of gases, average, root mean square and most probable velocities and their relation with temperature; Deviation from ideality, van der Waals equation; Law of partial pressures; Vapour pressure; Diffusion of gases. |
Atomic structure and chemical bonding | Bohr model, quantum numbers, spectrum of hydrogen atom; Wave-particle duality, de Broglie hypothesis;
Qualitative quantum mechanical picture of hydrogen atom, shapes of s, p and d orbitals; Uncertainty principle; Electronic configurations of elements (up to atomic number 36); Aufbau principle; Orbital overlap and covalent bond; Hybridisation involving s, p and d orbitals only; Pauli’s exclusion principle and Hund’s rule; Orbital energy diagrams for homonuclear diatomic species; Polarity in molecules, dipole moment (qualitative aspects only); Hydrogen bond; VSEPR model and shapes of molecules (linear, triangular, angular, square planar, pyramidal, trigonal bipyramidal, square pyramidal, tetrahedral and octahedral). |
Energetics | First law of thermodynamics; Enthalpy, Hess’s law; Internal energy, work and heat, pressure-volume work; Heat of reaction, fusion and vapourization; Second law of thermodynamics;
Free energy; Criterion of spontaneity. |
Chemical equilibrium | Law of the mass action; Significance of ?G and ?G0 in chemical equilibrium; Solubility product, common ion effect, pH and buffer solutions; Equilibrium constant, Le Chatelier’s principle (effect of concentration, temperature and pressure); Acids and bases (Bronsted and Lewis concepts); Hydrolysis of salts. |
Electrochemistry | Electrochemical cells and cell reactions; Nernst equation and its relation; Electrochemical series, emf of galvanic cells; Standard electrode potentials;Faraday’s laws of electrolysis; Electrolytic conductance, equivalent and molar conductivity, specific, Kohlrausch’s law; Concentration cells. |
Chemical kinetics | Rates of chemical reactions; Rate constant; Order of reactions; First order reactions; Temperature dependence of rate constant (Arrhenius equation). |
Solid state | Classification of solids, seven crystal systems (cell parameters a, b, c, alpha, beta, gamma), crystalline state, close packed structure of solids (cubic), packing in fcc, bcc and hcp lattices;
Nearest neighbours, simple ionic compounds, ionic radii, point defects. |
Solutions | Raoult’s law; elevation of boiling point and depression of freezing point, Molecular weight determination from lowering of vapour pressure. |
Surface chemistry | Elementary concepts of adsorption (excluding adsorption isotherms); Colloids: types, methods of preparation and general properties; surfactants and micelles (only definitions and examples), Elementary ideas of emulsions. |
Nuclear chemistry | Radioactivity: isotopes and isobars; Kinetics of radioactive decay (decay series excluded), carbon dating; Properties of alpha, Beta and Gamma rays; Stability of nuclei with respect to proton-neutron ratio; Brief discussion on fission and fusion reactions. |
JEE Advanced Syllabus 2024 For Inorganic Chemistry
Isolation/preparation and properties of the following non-metals | Boron, silicon, nitrogen, oxygen, phosphorus, sulphur and halogens;
Properties of allotropes of carbon (only diamond and graphite), phosphorus and sulphur. |
Preparation and properties of the following compounds | Oxides, peroxides, carbonates, bicarbonates, hydroxides, chlorides and sulphates of sodium, magnesium and calcium, potassium;
Boron: diborane, boric acid and borax; Carbon: oxides and oxyacid (carbonic acid); Aluminium: alumina, aluminium chloride and alums; Silicon: silicones, silicates and silicon carbide; Nitrogen: oxides, oxyacids and ammonia; Phosphorus: oxides, oxyacids (phosphorus acid, phosphoric acid) and phosphine; Sulphur: hydrogen sulphide, oxides, sulphurous acid, sulphuric acid and sodium thiosulphate; Oxygen: ozone and hydrogen peroxide; Halogens: hydrohalic acids, oxides and oxyacids of chlorine, bleaching powder; Xenon fluorides. |
Transition elements (3d series) | Definition, general characteristics, oxidation states and their stabilities, colour (excluding the details of electronic transitions) and calculation of spin-only magnetic moment;
Coordination compounds: cis-trans and ionisation isomerisms, nomenclature of mononuclear coordination compounds, hybridization and geometries of mononuclear coordination compounds (tetrahedral, linear, square planar and octahedral). |
Preparation and properties of the following compounds | Oxides and chlorides of tin and lead; Oxides, chlorides and sulphates of Fe2+, Cu2+ and Zn2+; potassium dichromate, Potassium permanganate, silver oxide, silver nitrate, silver thiosulphate. |
Ores and minerals | Commonly occurring ores and minerals of iron, tin, lead, copper, magnesium, aluminium, zinc and silver. |
Extractive metallurgy | Chemical principles and reactions only (industrial details excluded); Self reduction method (copper and lead);
Carbon reduction method (iron and tin); |
Electrolytic reduction method (magnesium and aluminium);
Cyanide process (silver and gold). |
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Principles of qualitative analysis | Groups I to V (only Ag+, Cu2+, Pb2+, Bi3+, Hg2+, Fe3+, Cr3+, Al3+, Ca2+, Zn2+, Ba2+, Mn2+ and Mg2+); Nitrate, halides (excluding fluoride), sulphate and sulphide. |
JEE Advanced Syllabus 2024 For Organic Chemistry
Concepts | Hybridisation of carbon; ? and ?-bonds; Structural and geometrical isomerism; Shapes of simple organic molecules; Optical isomerism of compounds containing up to two asymmetric centres, (R, S and E, Z nomenclature excluded); Conformations of ethane and butane (Newman projections); Resonance and hyperconjugation; IUPAC nomenclature of simple organic compounds (only hydrocarbons, mono-functional and bi-functional compounds); Keto-enoltautomerism; Hydrogen bonds: definition and their effects on physical properties of alcohols and carboxylic acids; Determination of empirical and molecular formulae of simple compounds (only combustion method); Inductive and resonance effects on acidity and basicity of organic acids and bases; Reactive intermediates produced during homolytic and heterolytic bond cleavage; Polarity and inductive effects in alkyl halides; Formation, structure and stability of carbocations, carbanions and free radicals. |
Preparation, properties and reactions of alkanes | Homogeneous series of alkanes, emphasizing their physical properties such as boiling point, density and melting point. Additionally, candidates will explore the combustion and halogenation reactions of alkenes, as well as methods for preparing alkenes through the Wurtz reaction and decarboxylation reactions. This broad coverage provides candidates with a solid understanding of the chemical properties and reactions of these hydrocarbons |
Preparation, properties and reactions of alkenes and alkynes | Physical properties of alkenes and alkynes, including boiling point, density, and dipole moment. It also explores the acidity of alkynes, as well as acid-catalyzed hydration of alkynes and alkynes, leaving aside stereochemistry aspects. Additionally, candidates will study the reactions of alkenes with KMnO4 and ozone, the reduction of alkenes and alkynes, and electrophilic addition reactions with X2, HX, HOX and H2O (where X = halogen). Additionally, the course covers the preparation of alkynes and alkynes via elimination reactions, addition reactions of alkynes, and properties of metal acetylides. This broad coverage provides candidates with a thorough understanding of the chemical properties and reactions of these compounds |
Reactions of benzene | aromaticity and structure, electrophilic substitution reactions like halogenation and nitration, and the effects of directing groups in monosubstituted benzenes. |
Phenols | Acidification, electrophilic substitution reactions (halogenation, nitration and sulfonation); Riemer-Tieman reaction, Kolbe reaction. |
Characteristic reactions of the following (including those mentioned above) | Alkyl halides: rearrangement reactions of alkyl carbocation, nucleophilic substitution reactions, Grignard reactions;Alcohols: esterification, dehydration and oxidation, phosphorus halides, reaction with sodium, ZnCl2/concentrated HCl, conversion of alcohols into aldehydes and ketones;
Aldehydes and Ketones: oxidation, reduction, oxime and hydrazone formation; Ethers: Preparation by Williamson’s Synthesis; aldol condensation, Perkin reaction; haloform reaction and nucleophilic addition reactions (Grignard addition); Cannizzaro reaction; Amines: basicity of substituted anilines and aliphatic amines, preparation from nitro compounds, reaction with nitrous acid, azo coupling reaction of diazonium salts of aromatic amines, Sandmeyer and related reactions of diazonium salts; Carboxylic acids: formation of esters, acid chlorides and amides, ester hydrolysis; carbylamine reaction; Haloarenes: nucleophilic aromatic substitution in haloarenes and substituted haloarenes (excluding Benzyne mechanism and Cine substitution). |
Carbohydrates | Classification; Mono- and Di-saccharides (glucose and sucrose);
Oxygenation, reduction, glycoside formation and hydrolysis of sucrose. |
Amino acids and peptides | General structure (for peptides only primary structure) and physical properties |
Properties and uses of some important polymers | Natural rubber, nylon, cellulose, teflon and PVC. |
Practical organic chemistry | trace elements (N, S, halogen); Detection and identification of the following functional groups: hydroxyl (alcohol and phenolic), carboxyl, carbonyl (aldehyde and ketone), amino and nitro; Chemical methods for separation of monofunctional organic compounds from binary mixtures. |
सारांश
मैं आशा करता हूँ की आपको मेरी यह जानकारी JEE Advanced Syllabus & Exam Pattern 2024 पसंद आई होगी | अगर आपको मेरी यह जानकारी JEE Advanced Syllabus & Exam Pattern 2024 पसंद आई हैं तो आप इसे लाइक करे और अपने दोस्तों, फॅमिली और ग्रुप में जरुर शेयर करे ताकि उन्हें भी इसकी जानकारी मिल सके |
धन्यवाद !!!