Saturday, March 7, 2009

EXAMINATION ALERTS

INTRODUCTION OF IIT

The Indian Institutes of Technology (IIT) are institutions of national importance established through an Act of Parliament. These institutes play a leading role in technological manpower development and have research programmes comparable to the best in the world. The admissions to the Undergraduate Programmes at these institutions for all Indian and Foreign nationals are made through the Joint Entrance Examination (JEE).

Institute of Technology, Banaras Hindu University, Varanasi, is one of the oldest institutions devoted to education in various engineering disciplines. Indian School of Mines University, Dhanbad, is the oldest institution of its kind in India. The admissions to the Undergraduate Programmes at these institutions are also made through JEE.

All these institutions are known for providing quality education in science and technology and for research in frontier areas. The environment at these institutions is highly conducive for
1. building a solid foundation of knowledge,
2. development of personality, confidence building, self-discipline, pursuit of excellence and
3. enhancement of creativity, motivation and drive.
All of the above help to prepare the students admitted to these institutions for successful professional and social lives. Today, alumni of these institutions occupy key positions in industry and academia in India and abroad.

Each institute has well-equipped modern laboratories, state-of-the-art computer network, and well stocked technical library. Teaching methods rely on direct personal contact between the teachers and the students, and the use of traditional and modern instructional techniques. Students live in a pleasant and intellectually stimulating environment with people having similar goals and aspirations, which is an exciting and unique experience.

Friday, March 6, 2009

IIT JEE 2009

NOTE : For any other information ,visit official site http://www.iitg.ernet.in/jee/

TWO NEW IITs

Admissions to IIT Indore & IIT Himachal Pradesh
The academic session in the two new IITs (IIT Indore and IIT Himachal Pradesh) will commence from the academic year 2009-2010 with a total of 120 seats in each of them. The admissions will be through JEE-2009.

IIT Bombay will be the mentor of IIT Indore.
IIT Roorkee will be the mentor of IIT Himachal Pradesh

COUNSELLING PROCEDURE


VERIFICATION OF IDENTITY AND COUNSELLING
Qualified candidates will be informed by post of their All India Ranks (AIR), and will be called for identity verification in the order of their AIR. A candidate can also obtain this information on the website, IVRS, or by calling the JEE office from where he/she received the admit card, on or after May 26, 2009. Individual zones (IITs) will fix their counselling schedule. They will display the counselling schedule on their websites and also inform the qualified candidates by speed post/registered post. In case a qualified candidate does not receive the counselling letter, he/she must still appear for identity verification on any one of the dates specified in the counselling schedule, at the institute from where he/she had received the admit card.

The main purpose of asking the qualified candidates to appear in person for the counselling is to verify their identity. Hence the candidates must bring their admit cards, and various documents for verifying their identity, age, category and mark sheet of qualifying examination, all in original with two photocopies of each. On failing to establish the authenticity of any of the above documents, the candidate will not be considered for admission. The candidate must also bring a physical fitness certificate from a Registered Medical Practitioner in a format that will be made available to him/her at an appropriate time.

After checking their identity and documents, the candidates will be asked to submit their choice sheets of courses and institutes. The counselling brochure will help the candidates to exercise this option judiciously. Some IIT faculty may also be available for consultation. However, the faculty at any one IIT may not have information about all the courses offered by all the institutes, and can only provide whatever information is available with them.

After the qualified candidates have exercised their choices as per the counselling schedule, seat allocation will be done centrally, at a later date on the basis of the AIR-cum-choices exercised by the candidates. There is no provision for instant seat allocation at the time when the candidates submit their choice-sheets. However, the course closures will be announced, starting from the first day of counselling of GE category candidates.

To take care of possible absentees, the number of qualified candidates is kept more than the number of seats available in the IITs, IT-BHU, Varanasi, and ISMU, Dhanbad. The fact that an applicant has qualified in JEE-2009 and has been called for identity verification and counselling, does not guarantee his/her admission. This will depend upon the applicant’s All India Rank, his/her choice of courses/institutes and the number of seats available.

A counselling brochure detailing various branches of study will be mailed along with the counselling letter, and will also be made available on the website.

Counselling dates for candidates of different categories, including those who qualify for Preparatory Course are provided in the counselling schedule.

EXTENDED MERIT LIST (EML)

The results of JEE are being used by other institutions for admissions to their courses/programmes. JEE provides an extended merit list to these institutions for the purpose of admission by making some relaxation in the aggregate cut-off. The candidates declared qualified in the extended merit list, who are desirous of admission to these institutions, must apply to these institutions directly for admission. For all other details including the courses, application procedure, fees, etc., the candidates are advised to contact/visit the respective institutions/websites. The list of institutions who will be using the EML of JEE-2009 will be displayed here time to time.
The list of institutions and their contact details who used the extended merit of JEE-2008 list are given below:

  1. Indian Institute of Space Science and Technology
  2. Indian Institute of Science Education and Research

3. Rajiv Gandhi Institute of Petroleum Technology Society (RGIPT)

4. Indian Institute of Maritime Studies (Merchant Navi)

SYLLABUS

APTITUDE TEST

APTITUDE TEST FOR B.Arch. and B.Des. PROGRAMMES

Freehand drawing: This would comprise of simple drawing depicting the total object in its right form and proportion, surface texture, relative location and details of its component parts in appropriate scale. Common domestic or day-to-day life usable objects like furniture, equipment, etc., from memory.

Geometrical drawing: Exercises in geometrical drawing containing lines, angles, triangles, quadrilaterals, polygons, circles etc. Study of plan (top view), elevation (front or side views) of simple solid objects like prisms, cones, cylinders, cubes, splayed surface holders etc.

Three-dimensional perception: Understanding and appreciation of three-dimensional forms with building elements, colour, volume and orientation. Visualization through structuring objects in memory.

Imagination and aesthetic sensitivity: Composition exercise with given elements. Context mapping. Creativity check through innovative uncommon test with familiar objects. Sense of colour grouping or application.

Architectural awareness: General interest and awareness of famous architectural creations – both national and international, places and personalities (architects, designers etc. ) in the related domain.

Candidates are advised to bring geometry box sets, pencils, erasers and colour pencils or crayons for the Aptitude Test.

PHYSICS

General: Units and dimensions, dimensional analysis; least count, significant figures; Methods of measurement and error analysis for physical quantities pertaining to the following experiments: Experiments based on using Vernier calipers and screw gauge (micrometer), Determination of g using simple pendulum, Young’s modulus by Searle’s method, Specific heat of a liquid using calorimeter, focal length of a concave mirror and a convex lens using u-v method, Speed of sound using resonance column, Verification of Ohm’s law using voltmeter and ammeter, and specific resistance of the material of a wire using meter bridge and post office box.

Mechanics: Kinematics in one and two dimensions (Cartesian coordinates only), projectiles; Uniform Circular motion; Relative velocity.
Newton’s laws of motion; Inertial and uniformly accelerated frames of reference; Static and dynamic friction; Kinetic and potential energy; Work and power; Conservation of linear momentum and mechanical energy.
Systems of particles; Centre of mass and its motion; Impulse; Elastic and inelastic collisions.
Law of gravitation; Gravitational potential and field; Acceleration due to gravity; Motion of planets and satellites in circular orbits; Escape velocity.
Rigid body, moment of inertia, parallel and perpendicular axes theorems, moment of inertia of uniform bodies with simple geometrical shapes; Angular momentum; Torque; Conservation of angular momentum; Dynamics of rigid bodies with fixed axis of rotation; Rolling without slipping of rings, cylinders and spheres; Equilibrium of rigid bodies; Collision of point masses with rigid bodies.
Linear and angular simple harmonic motions.
Hooke’s law, Young’s modulus.
Pressure in a fluid; Pascal’s law; Buoyancy; Surface energy and surface tension, capillary rise; Viscosity (Poiseuille’s equation excluded), Stoke’s law; Terminal velocity, Streamline flow, equation of continuity, Bernoulli’s theorem and its applications.
Wave motion (plane waves only), longitudinal and transverse waves, superposition of waves; Progressive and stationary waves; Vibration of strings and air columns;Resonance; Beats; Speed of sound in gases; Doppler effect (in sound).
Thermal physics: Thermal expansion of solids, liquids and gases; Calorimetry, latent heat; Heat conduction in one dimension; Elementary concepts of convection and radiation; Newton’s law of cooling; Ideal gas laws; Specific heats (Cv and Cp for monoatomic and diatomic gases); Isothermal and adiabatic processes, bulk modulus of gases; Equivalence of heat and work; First law of thermodynamics and its applications (only for ideal gases); Blackbody radiation: absorptive and emissive powers; Kirchhoff’s law; Wien’s displacement law, Stefan’s law.

Electricity and magnetism: Coulomb’s law; Electric field and potential; Electrical potential energy of a system of point charges and of electrical dipoles in a uniform electrostatic field; Electric field lines; Flux of electric field; Gauss’s law and its application in simple cases, such as, to find field due to infinitely long straight wire, uniformly charged infinite plane sheet and uniformly charged thin spherical shell.
Capacitance; Parallel plate capacitor with and without dielectrics; Capacitors in series and parallel; Energy stored in a capacitor.
Electric current; Ohm’s law; Series and parallel arrangements of resistances and cells; Kirchhoff’s laws and simple applications; Heating effect of current.
Biot–Savart’s law and Ampere’s law; Magnetic field near a current-carrying straight wire, along the axis of a circular coil and inside a long straight solenoid; Force on a moving charge and on a current-carrying wire in a uniform magnetic field.
Magnetic moment of a current loop; Effect of a uniform magnetic field on a current loop; Moving coil galvano- meter, voltmeter, ammeter and their conversions.
Electromagnetic induction: Faraday’s law, Lenz’s law; Self and mutual inductance; RC, LR and LC circuits with d.c. and a.c. sources.

Optics: Rectilinear propagation of light; Reflection and refraction at plane and spherical surfaces; Total internal reflection; Deviation and dispersion of light by a prism; Thin lenses; Combinations of mirrors and thin lenses; Magnification.
Wave nature of light: Huygen’s principle, interference limited to Young’s double-slit experiment.

Modern physics: Atomic nucleus; Alpha, beta and gamma radiations; Law of radioactive decay; Decay constant; Half-life and mean life; Binding energy and its calculation; Fission and fusion processes; Energy calculation in these processes.
Photoelectric effect; Bohr’s theory of hydrogen-like atoms; Characteristic and continuous X-rays, Moseley’s law; de Broglie wavelength of matter waves.

MATHEMATICS


Algebra: Algebra of complex numbers, addition, multiplication, conjugation, polar representation, properties of modulus and principal argument, triangle inequality, cube roots of unity, geometric interpretations.
Quadratic equations with real coefficients, relations between roots and coefficients, formation of quadratic equations with given roots, symmetric functions of roots.
Arithmetic, geometric and harmonic progressions, arithmetic, geometric and harmonic means, sums of finite arithmetic and geometric progressions, infinite geometric series, sums of squares and cubes of the first n natural numbers.

Logarithms and their properties.
Permutations and combinations, Binomial theorem for a positive integral index, properties of binomial coefficients.
Matrices as a rectangular array of real numbers, equality of matrices, addition, multiplication by a scalar and product of matrices, transpose of a matrix, determinant of a square matrix of order up to three, inverse of a square matrix of order up to three, properties of these matrix operations, diagonal, symmetric and skew-symmetric matrices and their properties, solutions of simultaneous linear equations in two or three variables.
Addition and multiplication rules of probability, conditional probability, Bayes Theorem, independence of events, computation of probability of events using permutations and combinations.

Trigonometry: Trigonometric functions, their periodicity and graphs, addition and subtraction formulae, formulae involving multiple and sub-multiple angles, general solution of trigonometric equations.
Relations between sides and angles of a triangle, sine rule, cosine rule, half-angle formula and the area of a triangle, inverse trigonometric functions (principal value only).

Analytical geometry:
Two dimensions: Cartesian coordinates, distance between two points, section formulae, shift of origin.
Equation of a straight line in various forms, angle between two lines, distance of a point from a line; Lines through the point of intersection of two given lines, equation of the bisector of the angle between two lines, concurrency of lines; Centroid, orthocentre, incentre and circumcentre of a triangle.
Equation of a circle in various forms, equations of tangent, normal and chord.
Parametric equations of a circle, intersection of a circle with a straight line or a circle, equation of a circle through the points of intersection of two circles and those of a circle and a straight line.
Equations of a parabola, ellipse and hyperbola in standard form, their foci, directrices and eccentricity, parametric equations, equations of tangent and normal.

Locus Problems.
Three dimensions:
Direction cosines and direction ratios, equation of a straight line in space, equation of a plane, distance of a point from a plane.
Differential calculus: Real valued functions of a real variable, into, onto and one-to-one functions, sum, difference, product and quotient of two functions, composite functions, absolute value, polynomial, rational, trigonometric, exponential and logarithmic functions.
Limit and continuity of a function, limit and continuity of the sum, difference, product and quotient of two functions, L’Hospital rule of evaluation of limits of functions.
Even and odd functions, inverse of a function, continuity of composite functions, intermediate value property of continuous functions.
Derivative of a function, derivative of the sum, difference, product and quotient of two functions, chain rule, derivatives of polynomial, rational, trigonometric, inverse trigonometric, exponential and logarithmic functions.
Derivatives of implicit functions, derivatives up to order two, geometrical interpretation of the derivative, tangents and normals, increasing and decreasing functions, 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, indefinite integrals of standard functions, definite integrals and their properties, Fundamental Theorem of Integral Calculus.
Integration by parts, integration by the methods of substitution and partial fractions, application of definite integrals to the determination of areas involving simple curves.
Formation of ordinary differential equations, solution of homogeneous differential equations, separation of variables method, linear first order differential equations.

Vectors: Addition of vectors, scalar multiplication, dot and cross products, scalar triple products and their geometrical interpretations

CHEMISTRY

Physical Chemistry

General topics: Concept of atoms and molecules; Dalton’s atomic theory; Mole concept; Chemical formulae; Balanced chemical equations; Calculations (based on mole concept) involving common oxidation-reduction, neutralisation, and displacement reactions; Concentration in terms of mole fraction, molarity, molality and normality.
Gaseous and liquid states: Absolute scale of temperature, ideal gas equation; Deviation from ideality, van der Waals equation; Kinetic theory of gases, average, root mean square and most probable velocities and their relation with temperature; Law of partial pressures; Vapour pressure; Diffusion of gases.
Atomic structure and chemical bonding: Bohr model, spectrum of hydrogen atom, quantum numbers; Wave-particle duality, de Broglie hypothesis; Uncertainty principle; Qualitative quantum mechanical picture of hydrogen atom, shapes of s, p and d orbitals; Electronic configurations of elements (up to atomic number 36); Aufbau principle; Pauli’s exclusion principle and Hund’s rule; Orbital overlap and covalent bond; Hybridisation involving s, p and d orbitals only; Orbital energy diagrams for homonuclear diatomic species; Hydrogen bond; Polarity in molecules, dipole moment (qualitative aspects only); VSEPR model and shapes of molecules (linear, angular, triangular, square planar, pyramidal, square pyramidal, trigonal bipyramidal, tetrahedral and octahedral).
Energetics: First law of thermodynamics; Internal energy, work and heat, pressure-volume work; Enthalpy, Hess’s law; Heat of reaction, fusion and vapourization; Second law of thermodynamics; Entropy; Free energy; Criterion of spontaneity.
Chemical equilibrium: Law of mass action; Equilibrium constant, Le Chatelier’s principle (effect of concentration, temperature and pressure); Significance of DG and DGo in chemical equilibrium; Solubility product, common ion effect, pH and buffer solutions; Acids and bases (Bronsted and Lewis concepts); Hydrolysis of salts.
Electrochemistry: Electrochemical cells and cell reactions; Standard electrode potentials; Nernst equation and its relation to DG; Electrochemical series, emf of galvanic cells; Faraday’s laws of electrolysis; Electrolytic conductance, specific, equivalent and molar conductivity, Kohlrausch’s law; Concentration cells.
Chemical kinetics: Rates of chemical reactions; Order of reactions; Rate constant; First order reactions; Temperature dependence of rate constant (Arrhenius equation).
Solid state: Classification of solids, crystalline state, seven crystal systems (cell parameters a, b, c, ), close packed structure of solids (cubic), packing in fcc, bcc and hcp lattices; Nearest neighbours, ionic radii, simple ionic compounds, point defects.
Solutions: Raoult’s law; Molecular weight determ- ination from lowering of vapour pressure, elevation of boiling point and depression of freezing point.
Surface chemistry: Elementary concepts of adsorption (excluding adsorption isotherms); Colloids: types, methods of preparation and general properties; Elementary ideas of emulsions, surfactants and micelles (only definitions and examples).
Nuclear chemistry: Radioactivity: isotopes and isobars; Properties of rays; Kinetics of radioactive decay (decay series excluded), carbon dating; Stability of nuclei with respect to proton-neutron ratio; Brief discussion on fission and fusion reactions.

Inorganic Chemistry

Isolation/preparation and properties of the following non-metals: Boron, silicon, nitrogen, phosphorus, oxygen, sulphur and halogens; Properties of allotropes of carbon (only diamond and graphite), phosphorus and sulphur.
Preparation and properties of the following compounds: Oxides, peroxides, hydroxides, carbonates, bicarbonates, chlorides and sulphates of sodium, potassium, magnesium and calcium; Boron: diborane, boric acid 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: ozone and hydrogen peroxide; Sulphur: hydrogen sulphide, oxides, sulphurous acid, sulphuric acid and sodium thiosulphate; 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: nomenclature of mononuclear coordination compounds, cis-trans and ionisation isomerisms, hybridization and geometries of mononuclear coordination compounds (linear, tetrahedral, 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 permanganate, potassium dichromate, silver oxide, silver nitrate, silver thiosulphate.
Ores and minerals: Commonly occurring ores and minerals of iron, copper, tin, lead, magnesium, aluminium, zinc and silver.
Extractive metallurgy: Chemical principles and reactions only (industrial details excluded); Carbon reduction method (iron and tin); Self reduction method (copper and lead); Electrolytic reduction method (magnesium and aluminium); Cyanide process (silver and gold).
Principles of qualitative analysis: Groups I to V (only Ag+, Hg2+, Cu2+, Pb2+, Bi3+, Fe3+, Cr3+, Al3+, Ca2+, Ba2+, Zn2+, Mn2+ and Mg2+); Nitrate, halides (excluding fluoride), sulphate and sulphide.

Organic Chemistry

Concepts: Hybridisation of carbon; Sigma and pi-bonds; Shapes of simple organic molecules; Structural and geometrical isomerism; Optical isomerism of compounds containing up to two asymmetric centres, (R,S and E,Z nomenclature excluded); IUPAC nomenclature of simple organic compounds (only hydrocarbons, mono-functional and bi-functional compounds); Conformations of ethane and butane (Newman projections); Resonance and hyperconjugation; Keto-enol tautomerism; Determination of empirical and molecular formulae of simple compounds (only combustion method); Hydrogen bonds: definition and their effects on physical properties of alcohols and carboxylic acids; Inductive and resonance effects on acidity and basicity of organic acids and bases; Polarity and inductive effects in alkyl halides; Reactive intermediates produced during homolytic and heterolytic bond cleavage; Formation, structure and stability of carbocations, carbanions and free radicals.
Preparation, properties and reactions of alkanes: Homologous series, physical properties of alkanes (melting points, boiling points and density); Combustion and halogenation of alkanes; Preparation of alkanes by Wurtz reaction and decarboxylation reactions.
Preparation, properties and reactions of alkenes and alkynes: Physical properties of alkenes and alkynes (boiling points, density and dipole moments); Acidity of alkynes; Acid catalysed hydration of alkenes and alkynes (excluding the stereochemistry of addition and elimination); Reactions of alkenes with KMnO4 and ozone; Reduction of alkenes and alkynes; Preparation of alkenes and alkynes by elimination reactions; Electrophilic addition reactions of alkenes with X2, HX, HOX and H2O (X=halogen); Addition reactions of alkynes; Metal acetylides.
Reactions of benzene: Structure and aromaticity; Electrophilic substitution reactions: halogenation, nitration, sulphonation, Friedel-Crafts alkylation and acylation; Effect of o-, m- and p-directing groups in monosubstituted benzenes.
Phenols: Acidity, electrophilic substitution reactions (halogenation, nitration and sulphonation); Reimer-Tieman reaction, Kolbe reaction.
Characteristic reactions of the following (including those mentioned above): Alkyl halides: rearrangement reactions of alkyl carbocation, Grignard reactions, nucleophilic substitution reactions; Alcohols: esterification, dehydration and oxidation, reaction with sodium, phosphorus halides, ZnCl2/concentrated HCl, conversion 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 reaction and nucleophilic addition reactions (Grignard addition); Carboxylic acids: formation of esters, acid chlorides and amides, ester hydrolysis; 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; 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); Oxidation, reduction, glycoside formation and hydrolysis of sucrose.
Amino acids and peptides: General structure (only primary structure for peptides) and physical properties.
Properties and uses of some important polymers: Natural rubber, cellulose, nylon, teflon and PVC.
Practical organic chemistry: Detection of elements (N, S, halogens); Detection and identification of the following functional groups: hydroxyl (alcoholic and phenolic), carbonyl (aldehyde and ketone), carboxyl, amino and nitro; Chemical methods of separation of mono-functional organic compounds from binary mixtures

MERIT LIST

Ranking
Only those candidates who attempt both Paper 1 and Paper 2 will be considered for the ranking. Marks in Chemistry in JEE will be equal to marks in Chemistry section of Paper 1 + marks in Chemistry section of Paper 2. Similar procedure will be followed for Mathematics and Physics. The sum of the marks obtained in the individual subjects in JEE will be the aggregate mark for the candidate.
The average of the marks scored by all such candidates will be computed for each of the three subjects. These will be the minimum qualifying mark for ranking (MQMR) in the individual subjects.
Based on the MQMR in the individual subjects as well as the aggregate marks in the Examination, a common merit list (CML) will be prepared, without any relaxed criteria, such that the number of general category (GE) candidates in this list is 1.15 times the number of available unreserved seats. The aggregate marks scored by the last candidate in the CML will be the CML cut-off score (CCS).
Next, the merit list of the OBC candidates will be prepared. If the number of OBC candidates in the CML is equal to or more than 1.4 times the number of available OBC seats, then the OBC merit list will contain all these candidates.
In case the number of OBC candidates qualified in the CML is less than 1.4 times the number of available OBC seats, then relaxation (maximum of 10%) to the individual MQMR as well as to the CCS will be applied, and an OBC merit list will be prepared, in which the number of candidates will be, at the most, 1.4 times the number of available OBC seats.
By applying 50% relaxation to the individual MQMR as well as to the CCS, separate merit lists for SC, ST and PD candidates will be prepared. The number of candidates in each of these lists will be, at the most, 1.4 times the number of available seats in the respective categories.
While preparing these merit lists, if a candidate belongs to more than one category/subcategory of relaxed norms, then he/she for the purpose of ranking shall be considered in all the categories in which he/she qualifies. There will be no separate wait-list of candidates.

Tie-Break
The tie-break criterion in the CML and in the category lists adopted for awarding ranks to the candidates who have scored the same aggregate marks is as follows.
For each subject, the mean (i.e., the average) marks will be calculated on the basis of the marks obtained by those candidates who have scored more than or equal to MQMR in that subject.
Among the candidates having the same aggregate marks, a candidate will be ranked higher than the rest, if he/she has scored higher marks in the subject having the lowest mean mark calculated as above. If there is a tie after this procedure, then the marks obtained by the tied candidates in the subject with the second-lowest mean marks will be considered, and the above procedure repeated. Candidates tied even after this procedure will be given the same rank.

RESERVATION OF SEATS


OBC candidates
For OBC candidates belonging to Non-creamy layer, 18% of total number of seats are reserved in each of the older IITs (Bombay, Delhi, Guwahati, Kanpur, Kharagpur, Madras and Roorkee), IT-BHU, Varanasi and ISMU, Dhanbad and 27% of total number of seats are reserved in each of the new IITs (Bhubaneswar, Gandhinagar, Hyderabad, Patna, Punjab and Rajasthan. Candidates belonging to this category are admitted on the basis of a relaxed criterion as given in the page for ranking.
OBC candidates belonging to Non-creamy layer will be required to produce the original certificate issued on or after January 1, 2009 by a competent authority in the prescribed format. The certificates must be produced at the time of counselling, failing which they will be treated as belonging to the General (GE) category.

ST/SC candidates
For candidates belonging to the SC and ST categories, respectively 15% and 7.5% of the total number of seats are reserved in each IIT, IT-BHU, Varanasi and ISMU, Dhanbad. Candidates belonging to these categories are admitted on the basis of a relaxed criterion as given in the page for ranking. In case all the reserved seats are not filled, a limited number of candidates are admitted to a Preparatory Course of one-year duration on the basis of a further relaxation in JEE performance. This course attempts to prepare the students in Chemistry, Mathematics and Physics. On successful completion of the course, the students will be offered direct admission to the undergraduate programmes in July 2010 against the unfilled SC/ST seats of JEE-2009.
SC and ST candidates will be required to produce the original caste/tribe certificate issued by a competent authority in the prescribed format. The certificates must be produced at the time of counselling, failing which they will not be considered for admission. Seats remaining vacant in these categories shall not be filled by candidates belonging to any other category.


JAB Decision on unfilled SC/ST seats in new IITs
The Joint Admission Board (JAB) in its meeting held on August 13, 2008 decided that the vacant seats in SC/ST categories against JEE-2008 in six new IITs will carried forward and added to the seats in the respective programmes in JEE-2009 as one time measure. The numbers of vacant seats in SC and ST categories are 19 and 47, respectively.


Persons with Physical Disability (PD)
For PD (including leprosy-cured) candidates, who are otherwise fit to pursue the course, and qualify JEE (with relaxed norms as given in the page for ranking), 3% seats are reserved as specified by the Government of India. For any category of disability (viz., locomotor, visual, speech, and/or hearing), benefit would be given to those candidates who have at least 40% permanent physical impairment in relation to a body part / system / extremity / extremities / whole body, etc.
The candidates in this category will be required to be certified by a Medical Board. The Medical Board will decide the following:
1. whether the candidate qualifies for the benefits under this category, and
2. if the disability is likely to interfere in his/her studies.
The Medical Board duly constituted for this purpose shall meet at the time of counselling at a few venues (to be announced in the counselling letter) between June 9 to 11, 2009. Candidates, who are not certified by the Medical Board as belonging to the PD category, will not be counselled under this category. The decision of the Medical Board shall be final.


JAB decisions on PD candidates.
In accordance with the Judgment of the Court of Chief Commissioner for Persons with Disabilities dated 7 August 2008 and the orders of the Hon’ble Supreme Court the Joint Admission Board (JAB) for JEE-2009 decided that the extent of relaxation to the PD candidates in JEE-2009 will be the same as that is available to the candidates belonging to SC/ST categories, irrespective of their vertical categories.
The Chief Commissioner for Persons with Disabilities has given a directive to implement Preparatory Courses for PD students in a similar manner as is done for SC/ST students. A decision on this will be taken in a Joint Admission Board meeting.

ELIGIBLITY CRITERIA

A candidate has to satisfy ALL the eligibility conditions given below:

1. A candidate can attempt JEE only twice, in consecutive years. Those who have appeared in JEE in 2007 or earlier are not eligible for appearing in JEE-2009.
2. Candidates appearing in JEE-2009 should have either passed the qualifying examination in 2008 or should be appearing in 2009. They should also satisfy the specific eligibility criteria in the qualifying examination. Candidates who have passed the qualifying examination before October 1, 2007 are not eligible to write JEE-2009.
3. Candidates should meet the age requirements given below.
4. Candidates should NOT have accepted admission by paying full fees at any of the IITs, IT-BHU, Varanasi or ISMU, Dhanbad, through earlier JEE.

Qualifying Examination
Candidates applying for JEE-2009 should have either passed after October 1, 2007, or should be appearing in 2009 in any one of the following qualifying examinations.
1. The final examination of the 10+2 system, conducted by any recognized Central/State Board, such as Central Board of Secondary Education, New Delhi; Council for Indian School Certificate Examination, New Delhi; etc.
2. Intermediate or two-year Pre-University Examination conducted by a recognized Board/ University.
3. Final Examination of the two-year course of the Joint Services Wing of the National Defence Academy.
4. General Certificate Education (GCE) Examination (London/Cambridge/Sri Lanka) at the Advanced (A) level.
5. High School Certificate Examination of the Cambridge University.
6. Any Public School/Board/University Examination in India or in any foreign country recognized by the Association of Indian Universities as equivalent to the 10+2 system.
7. H.S.C. Vocational Examination.
8. Senior Secondary School Examination conducted by the National Open School with a minimum of five subjects.
9. 3 or 4-year Diploma recognized by AICTE or a State Board of Technical Education.

In case the relevant qualifying examination is not a public examination, the candidate must have passed at least one public (Board or Pre-University) examination at an earlier level.

Eligibility Criteria in Qualifying Examination
Candidates belonging to General (GE), Other Backward Classes (OBC) and DS categories must secure at least 60% marks in aggregate in their Qualifying Examination. Candidates belonging to Scheduled Caste (SC), Scheduled Tribe (ST) and Physically Disabled (PD) categories must secure at least 55% marks in aggregate in the Qualifying Examination. The percentage of marks awarded by the Board will be treated as final. If the Board does not award the percentage of marks, it will be calculated based on the marks obtained in all subjects listed in the mark sheet. If any Board awards only letter grades without providing an equivalent percentage of marks on the grade sheet, the candidate should obtain a certificate from the Board specifying the equivalent marks, and submit it at the time of counselling. In case such a certificate is not provided by the candidate, then the decision of the Joint Implementation Committee of JEE-2009 regarding his/her eligibility shall be final.

Important Notes
1. Those candidates who will be appearing in the qualifying examination in 2010 or later are not eligible to apply for JEE-2009.
2. All provisional admissions to candidates who are appearing in the qualifying examination in the year 2009 will stand cancelled, if the proof of having passed the Qualifying Examination, as per the eligibility criteria specified above is not submitted to the concerned Institute latest by September 30, 2009. If a Board normally declares the results of the qualifying examination after 30th September of each year, students of such Boards are advised to attempt JEE in the following year.
3. All admissions are subject to verification of facts from the original certificates/documents of the candidates. If an applicant is found ineligible at a later date even after admission to an Institute, his/her admission will be cancelled. The decision of the Joint Admission Board of JEE-2009 regarding the eligibility of any applicant shall be final.

Age Requirements
For GE and OBC categories, only those candidates whose date of birth falls on or after October 01, 1984, are eligible to appear in JEE-2009. For SC, ST, and PD categories, candidates who were born on or after October 01, 1979, are eligible. Date of birth as recorded in the High School/first Board/Pre-University Certificate will be taken as authentic. If the high school certificate does not mention the date of birth, provide a suitable document indicating the date of birth along with the application. Candidates must produce this certificate in original as a proof of their age at the time of counselling, failing which they will be disqualified.

Physical Fitness
All qualified candidates will have to submit a Physical Fitness certificate from a Registered Medical Practitioner in the prescribed format that will be made available to them at an appropriate time. They will be admitted only if they are physically fit for pursuing a course of study at the participating institutes.

Special Requirements for Mining Engineering and Mining Machinery Courses
Candidates opting for these courses should make sure that they do not have any form of colour blindness. They will be required to submit a certificate from a Registered Medical Practitioner to this effect at the time of counselling. The standard of visual acuity with or without glasses will be adhered to strictly for candidates seeking admission to Mining Engineering as per DGMS Circular 14 of 1972. Persons with one-eyed vision are not permitted to work underground. Candidates with above limitations are not allowed to opt for admission to Mining Engineering or Mining Machinery Engineering.

Female Candidates for Mining Courses
Section 46 (1) of the Mines Act, 1952 states that “No woman shall, notwithstanding anything contained in any other law, be employed (a) in any part of a mine which is below ground, (b) in any mine above ground except between the hours 6 a.m. and 7 p.m.”. Female candidates are not admitted to Mining Engineering and Mining Machinery Engineering at ISMU, Dhanbad, whereas the corresponding programmes at IIT Kharagpur and IT-BHU, Varanasi, have no such restriction.

DATE AND PATTERN OF EXAMINATION

SCHEDULE & PATTERN of JEE-2009
Schedule

The date and the schedule of JEE-2009: April 12, 2009 (Sunday)
Paper- 1: 09.00 AM – 12.00 NOON (IST)
Paper- 2 : 02.00 PM – 05.00 PM (IST)

The schedule will remain unaltered even if the above date is declared a public holiday.

Pattern

Question Papers
There will be two question papers, each of three hours duration. Both the question papers would consist of three separate sections on Chemistry, Mathematics and Physics. Questions in these papers will be of objective type, which are to be answered on a specially designed machine-gradable sheet (ORS – Optical Response Sheet) using HB pencils only. Incorrect answers will be awarded negative marks.

Language and Font of Question Papers
Candidates can opt for Question Papers either in English or in Hindi. This option should be exercised while filling the application form. It cannot be changed at any later stage.

Visually impaired candidates, on request, will be provided with question papers with 20% enlarged font.

Calculating Aids
Use of log tables and any electronic calculating aids are NOT permitted in JEE-2009.

Aptitude Test for B.Arch. and B.Des.
Candidates called for counselling and desirous of joining the B.Arch. and B.Des. courses will be required to qualify in an Aptitude Test to be conducted at each counselling institute on June 11 and June 15, 2009. The test will consist of one paper of three hours duration – from 10:00 to 13:00 hrs. Candidates who fail to qualify in the Aptitude Test will not be eligible for admission to either B.Arch. or B.Des. courses. Question papers for aptitude test for B.Arch and B.Des will be in English only. The candidate should write the test only once, either on June 11 or June 15, 2009.

SYLLABUS

AIEEE 2009

NOTE : For any other information ,visit official site http://www.aieee.nic.in/

CHEMISTRY


SECTION-A

PHYSICAL CHEMISTRY
UNIT 1:
Some Basic conceptS IN CHEMISTRY
Matter and its nature, Dalton’s atomic theory; Concept of atom, molecule, element and compound; Physical quantities and their measurements in Chemistry, precision and accuracy, significant figures, S.I. Units, dimensional analysis; Laws of chemical combination; Atomic and molecular masses, mole concept, molar mass, percentage composition, empirical and molecular formulae; Chemical equations and stoichiometry.
UNIT 2:
States of Matter

Classification of matter into solid, liquid and gaseous states.Gaseous State:Measurable properties of gases; Gas laws - Boyle’s law, Charle’s law, Graham’s law of diffusion, Avogadro’s law, Dalton’s law of partial pressure; Concept of Absolute scale of temperature; Ideal gas equation, Kinetic theory of gases (only postulates); Concept of average, root mean square and most probable velocities; Real gases, deviation from Ideal behaviour, compressibility factor, van der Waals equation, liquefaction of gases, critical constants.Liquid State:Properties of liquids - vapour pressure, viscosity and surface tension and effect of temperature on them (qualitative treatment only).Solid State:Classification of solids: molecular, ionic, covalent and metallic solids, amorphous and crystalline solids (elementary idea); Bragg’s Law and its applications; Unit cell and lattices, packing in solids (fcc, bcc and hcp lattices), voids, calculations involving unit cell parameters, imperfection in solids; Electrical, magnetic and dielectric properties.
UNIT 3:
Atomic Structure
Discovery of sub-atomic particles (electron, proton and neutron); Thomson and Rutherford atomic models and their limitations; Nature of electromagnetic radiation, photoelectric effect; Spectrum of hydrogen atom, Bohr model of hydrogen atom - its postulates, derivation of the relations for energy of the electron and radii of the different orbits, limitations of Bohr’s model; Dual nature of matter, de-Broglie’s relationship, Heisenberg uncertainty principle. Elementary ideas of quantum mechanics, quantum mechanical model of atom, its important features, * and *2, concept of atomic orbitals as one electron wave functions; Variation of * and * 2 with r for 1s and 2s orbitals; various quantum numbers (principal, angular momentum and magnetic quantum numbers) and their significance; shapes of s, p and d - orbitals, electron spin and spin quantum number; Rules for filling electrons in orbitals – aufbau principle, Pauli’s exclusion principle and Hund’s rule, electronic configuration of elements, extra stability of half-filled and completely filled orbitals.
UNIT 4:
Chemical Bonding and Molecular Structure
Kossel - Lewis approach to chemical bond formation, concept of ionic and covalent bonds.Ionic Bonding: Formation of ionic bonds, factors affecting the formation of ionic bonds; calculation of lattice enthalpy.Covalent Bonding: Concept of electronegativity, Fajan’s rule, dipole moment; Valence Shell Electron Pair Repulsion (VSEPR) theory and shapes of simple molecules.Quantum mechanical approach to covalent bonding: Valence bond theory - Its important features, concept of hybridization involving s, p and d orbitals; Resonance.Molecular Orbital Theory - Its important features, LCAOs, types of molecular orbitals (bonding, antibonding), sigma and pi-bonds, molecular orbital electronic configurations of homonuclear diatomic molecules, concept of bond order, bond length and bond energy.Elementary idea of metallic bonding. Hydrogen bonding and its applications.
UNIT 5:
CHEMICAL THERMODYNAMICS
Fundamentals of thermodynamics: System and surroundings, extensive and intensive properties, state functions, types of processes.First law of thermodynamics - Concept of work, heat internal energy and enthalpy, heat capacity, molar heat capacity; Hess’s law of constant heat summation; Enthalpies of bond dissociation, combustion, formation, atomization, sublimation, phase transition, hydration, ionization and solution.Second law of thermodynamics- Spontaneity of processes; DS of the universe and DG of the system as criteria for spontaneity, DGo (Standard Gibbs energy change) and equilibrium constant.
UNIT 6:
SOLUTIONS
Different methods for expressing concentration of solution - molality, molarity, mole fraction, percentage (by volume and mass both), vapour pressure of solutions and Raoult’s Law - Ideal and non-ideal solutions, vapour pressure - composition, plots for ideal and non-ideal solutions; Colligative properties of dilute solutions - relative lowering of vapour pressure, depression of freezing point, elevation of boiling point and osmotic pressure; Determination of molecular mass using colligative properties; Abnormal value of molar mass, van’t Hoff factor and its significance.
UNIT 7:
EQUILIBRIUM
Meaning of equilibrium, concept of dynamic equilibrium.Equilibria involving physical processes: Solid -liquid, liquid - gas and solid - gas equilibria, Henry’s law, general characterics of equilibrium involving physical processes.Equilibria involving chemical processes: Law of chemical equilibrium, equilibrium constants (Kp and Kc) and their significance, significance of DG and DGo in chemical equilibria, factors affecting equilibrium concentration, pressure, temperature, effect of catalyst; Le Chatelier’s principle.Ionic equilibrium: Weak and strong electrolytes, ionization of electrolytes, various concepts of acids and bases (Arrhenius, Br?nsted - Lowry and Lewis) and their ionization, acid - base equilibria (including multistage ionization) and ionization constants, ionization of water, pH scale, common ion effect, hydrolysis of salts and pH of their solutions, solubility of sparingly soluble salts and solubility products, buffer solutions.
UNIT 8:
REDOX REACTIONS AND ELECTROCHEMISTRY
Electronic concepts of oxidation and reduction, redox reactions, oxidation number, rules for assigning oxidation number, balancing of redox reactions.Eectrolytic and metallic conduction, conductance in electrolytic solutions, specific and molar conductivities and their variation with concentration: Kohlrausch’s law and its applications.Electrochemical cells - Electrolytic and Galvanic cells, different types of electrodes, electrode potentials including standard electrode potential, half - cell and cell reactions, emf of a Galvanic cell and its measurement; Nernst equation and its applications; Relationship between cell potential and Gibbs’ energy change; Dry cell and lead accumulator; Fuel cells; Corrosion and its prevention.
UNIT 9:
CHEMICAL KINETICS
Rate of a chemical reaction, factors affecting the rate of reactions: concentration, temperature, pressure and catalyst; elementary and complex reactions, order and molecularity of reactions, rate law, rate constant and its units, differential and integral forms of zero and first order reactions, their characteristics and half - lives, effect of temperature on rate of reactions - Arrhenius theory, activation energy and its calculation, collision theory of bimolecular gaseous reactions (no derivation).
UNIT 10:
SURFACE CHEMISTRY
Adsorption- Physisorption and chemisorption and their characteristics, factors affecting adsorption of gases on solids - Freundlich and Langmuir adsorption isotherms, adsorption from solutions.Catalysis - Homogeneous and heterogeneous, activity and selectivity of solid catalysts, enzyme catalysis and its mechanism.Colloidal state - distinction among true solutions, colloids and suspensions, classification of colloids - lyophilic, lyophobic; multi molecular, macromolecular and associated colloids (micelles), preparation and properties of colloids - Tyndall effect, Brownian movement, electrophoresis, dialysis, coagulation and flocculation; Emulsions and their characteristics.
SECTION-B
INORGANIC CHEMISTRY


UNIT 11:
CLASSIFICATON OF ELEMENTS AND PERIODICITY IN PROPERTIES
Modem periodic law and present form of the periodic table, s, p, d and f block elements, periodic trends in properties of elements­atomic and ionic radii, ionization enthalpy, electron gain enthalpy, valence, oxidation states and chemical reactivity.
UNIT 12:
GENERAL PRINCIPLES AND PROCESSES OF ISOLATION OF METALS
Modes of occurrence of elements in nature, minerals, ores; steps involved in the extraction of metals - concentration, reduction (chemical. and electrolytic methods) and refining with special reference to the extraction of Al, Cu, Zn and Fe; Thermodynamic and electrochemical principles involved in the extraction of metals.
UNIT 13:
HYDROGEN
Position of hydrogen in periodic table, isotopes, preparation, properties and uses of hydrogen; Physical and chemical properties of water and heavy water; Structure, preparation, reactions and uses of hydrogen peroxide; Classification of hydrides - ionic, covalent and interstitial; Hydrogen as a fuel.
UNIT 14:
S - BLOCK ELEMENTS (ALKALI AND ALKALINE EARTH METALS)
Group - 1 and 2 ElementsGeneral introduction, electronic configuration and general trends in physical and chemical properties of elements, anomalous properties of the first element of each group, diagonal relationships. Preparation and properties of some important compounds - sodium carbonate, sodium chloride, sodium hydroxide and sodium hydrogen carbonate; Industrial uses of lime, limestone, Plaster of Paris and cement; Biological significance of Na, K, Mg and Ca.
UNIT 15:
P - BLOCK ELEMENTS
Group - 13 to Group 18 Elements
General Introduction: Electronic configuration and general trends in physical and chemical properties of elements across the periods and down the groups; unique behaviour of the first element in each group.
Groupwise study of the p – block elements Group - 13
Preparation, properties and uses of boron and aluminium; Structure, properties and uses of borax, boric acid, diborane, boron trifluoride, aluminium chloride and alums.
Group - 14
Tendency for catenation; Structure, properties and uses of allotropes and oxides of carbon, silicon tetrachloride, silicates, zeolites and silicones.
Group - 15
Properties and uses of nitrogen and phosphorus; Allotrophic forms of phosphorus; Preparation, properties, structure and uses of ammonia, nitric acid, phosphine and phosphorus halides, (PCl3, PCl5); Structures of oxides and oxoacids of nitrogen and phosphorus.
Group - 16
Preparation, properties, structures and uses of dioxygen and ozone; Allotropic forms of sulphur; Preparation, properties, structures and uses of sulphur dioxide, sulphuric acid (including its industrial preparation); Structures of oxoacids of sulphur.
Group - 17
Preparation, properties and uses of chlorine and hydrochloric acid; Trends in the acidic nature of hydrogen halides; Structures of Interhalogen compounds and oxides and oxoacids of halogens.
Group -18
Occurrence and uses of noble gases; Structures of fluorides and oxides of xenon.
UNIT 16:
d – and f – BLOCK ELEMENTS
Transition ElementsGeneral introduction, electronic configuration, occurrence and characteristics, general trends in properties of the first row transition elements - physical properties, ionization enthalpy, oxidation states, atomic radii, colour, catalytic behaviour, magnetic properties, complex formation, interstitial compounds, alloy formation; Preparation, properties and uses of K2Cr2O7 and KMnO4.Inner Transition ElementsLanthanoids - Electronic configuration, oxidation states, chemical reactivity and lanthanoid contraction.Actinoids - Electronic configuration and oxidation states.
UNIT 17:
CO-ORDINATION COMPOUNDS
Introduction to co-ordination compounds, Werner’s theory; ligands, co-ordination number, denticity, chelation; IUPAC nomenclature of mononuclear co-ordination compounds, isomerism; Bonding-Valence bond approach and basic ideas of Crystal field theory, colour and magnetic properties; Importance of co-ordination compounds (in qualitative analysis, extraction of metals and in biological systems).
UNIT 18:
ENVIRONMENTAL CHEMISTRY
Environmental pollution - Atmospheric, water and soil. Atmospheric pollution - Tropospheric and stratospheric Tropospheric pollutants - Gaseous pollutants: Oxides of carbon, nitrogen and sulphur, hydrocarbons; their sources, harmful effects and prevention; Green house effect and Global warming; Acid rain;Particulate pollutants: Smoke, dust, smog, fumes, mist; their sources, harmful effects and prevention.Stratospheric pollution- Formation and breakdown of ozone, depletion of ozone layer - its mechanism and effects. Water Pollution - Major pollutants such as, pathogens, organic wastes and chemical pollutants; their harmful effects and prevention.Soil pollution - Major pollutants such as: Pesticides (insecticides,. herbicides and fungicides), their harmful effects and prevention.Strategies to control environmental pollution.

Section-C
Organic Chemistry

UNIT 19:
Purification and Characterisation of Organic Compounds
Purification - Crystallization, sublimation, distillation, differential extraction and chromatography - principles and their applications.Qualitative analysis - Detection of nitrogen, sulphur, phosphorus and halogens.Quantitative analysis (basic principles only) - Estimation of carbon, hydrogen, nitrogen, halogens, sulphur, phosphorus.Calculations of empirical formulae and molecular formulae; Numerical problems in organic quantitative analysis.
UNIT 20:
SOME BASIC PRINCIPLES OF ORGANIC CHEMISTRY
Tetravalency of carbon; Shapes of simple molecules - hybridization (s and p); Classification of organic compounds based on functional groups: - C = C - , - C ? C - and those containing halogens, oxygen, nitrogen and sulphur; Homologous series; Isomerism - structural and stereoisomerism.Nomenclature (Trivial and IUPAC)Covalent bond fission - Homolytic and heterolytic: free radicals, carbocations and carbanions; stability of carbocations and free radicals, electrophiles and nucleophiles.Electronic displacement in a covalent bond - Inductive effect, electromeric effect, resonance and hyperconjugation.Common types of organic reactions - Substitution, addition, elimination and rearrangement.
UNIT 21:
Hydrocarbons
Classification, isomerism, IUPAC nomenclature, general methods of preparation, properties and reactions.Alkanes - Conformations: Sawhorse and Newman projections (of ethane); Mechanism of halogenation of alkanes.Alkenes - Geometrical isomerism; Mechanism of electrophilic addition: addition of hydrogen, halogens, water, hydrogen halides (Markownikoff’s and peroxide effect); Ozonolysis, oxidation, and polymerization.Alkynes - Acidic character; Addition of hydrogen, halogens, water and hydrogen halides; Polymerization. Aromatic hydrocarbons - Nomenclature, benzene - structure and aromaticity; Mechanism of electrophilic substitution: halogenation, nitration, Friedel – Craft’s alkylation and acylation, directive influence of functional group in mono-substituted benzene.
UNIT 22:
Organic Compounds Containing Halogens
General methods of preparation, properties and reactions; Nature of C-X bond; Mechanisms of substitution reactions.Uses; Environmental effects of chloroform, iodoform, freons and DDT.
UNIT 23:
Organic compounds containing Oxygen
General methods of preparation, properties, reactions and uses. ALCOHOLS, PHENOLS AND ETHERSAlcohols: Identification of primary, secondary and tertiary alcohols; mechanism of dehydration.Phenols: Acidic nature, electrophilic substitution reactions: halogenation, nitration and sulphonation, Reimer - Tiemann reaction.Ethers: Structure.Aldehyde and Ketones: Nature of carbonyl group;Nucleophilic addition to >C=O group, relative reactivities of aldehydes and ketones; Important reactions such as - Nucleophilic addition reactions (addition of HCN, NH3 and its derivatives), Grignard reagent; oxidation; reduction (Wolff Kishner and Clemmensen); acidity of ? - hydrogen, aldol condensation, Cannizzaro reaction, Haloform reaction; Chemical tests to distinguish between aldehydes and Ketones.CARBOXYLIC ACIDSAcidic strength and factors affecting it.
UNIT 24:
Organic Compounds Containing Nitrogen
General methods of preparation, properties, reactions and uses.Amines: Nomenclature, classification, structure, basic character and identification of primary, secondary and tertiary amines and their basic character.Diazonium Salts: Importance in synthetic organic chemistry.
UNIT 25:
Polymers
General introduction and classification of polymers, general methods of polymerization - addition and condensation, copolymerization; Natural and synthetic rubber and vulcanization; some important polymers with emphasis on their monomers and uses - polythene, nylon, polyester and bakelite.
UNIT 26:
Bio Molecules
General introduction and importance of biomolecules.CARBOHYDRATES - Classification: aldoses and ketoses; monosaccharides (glucose and fructose), constituent monosaccharides of oligosacchorides (sucrose, lactose, maltose) and polysaccharides (starch, cellulose, glycogen).PROTEINS - Elementary Idea of ? - amino acids, peptide bond, polypeptides; Proteins: primary, secondary, tertiary and quaternary structure (qualitative idea only), denaturation of proteins, enzymes.VITAMINS - Classification and functions.NUCLEIC ACIDS - Chemical constitution of DNA and RNA.Biological functions of nucleic acids.
UNIT 27:
Chemistry in everyday life
Chemicals in medicines - Analgesics, tranquilizers, antiseptics, disinfectants, antimicrobials, antifertility drugs, antibiotics, antacids, antihistamins - their meaning and common examples. Chemicals in food - Preservatives, artificial sweetening agents - common examples.Cleansing agents - Soaps and detergents, cleansing action.
UNIT 28:
principles related to practical Chemistry
• Detection of extra elements (N,S, halogens) in organic compounds; Detection of the following functional groups: hydroxyl (alcoholic and phenolic), carbonyl (aldehyde and ketone), carboxyl and amino groups in organic compounds • Chemistry involved in the preparation of the following:Inorganic compounds: Mohr’s salt, potash alum.Organic compounds: Acetanilide, p-nitroacetanilide, aniline yellow, iodoform. • Chemistry involved in the titrimetric excercises - Acids bases and the use of indicators, oxalic-acid vs KMnO4, Mohr’s salt vs KMnO4. • Chemical principles involved in the qualitative salt analysis:Cations - Pb2+ , Cu2+, AI3+, Fe3+, Zn2+, Ni2+, Ca2+, Ba2+, Mg2+, NH4+.Anions- CO32-, S2-, SO42-, NO2-, NO3-, CI-, Br, I. (Insoluble salts excluded). • Chemical principles involved in the following experiments: 1. Enthalpy of solution of CuSO4 2. Enthalpy of neutralization of strong acid and strong base. . 3. Preparation of lyophilic and lyophobic sols. 4. Kinetic study of reaction of iodide ion with hydrogen peroxide at room temperature.

SYLLABUS FOR APTITUDE TEST B.ARCH./B.PLANNING

Part I
Awareness of persons, places, Buildings, Materials.) Objects, Texture related to Architecture and build~environment. Visualising three dimensional objects from two dimensional drawings. Visualising. different sides of three dimensional objects. Analytical Reasoning Mental Ability (Visual, Numerical and Verbal).
Part II
Three dimensional - perception: Understanding and appreciation of scale and proportion of objects, building forms and elements, colour texture, harmony and contrast. Design and drawing of geometrical or abstract shapes and patterns in pencil. Transformation of forms both 2 D and 3 D union, substraction, rotation, development of surfaces and volumes, Generation of Plan, elevations and 3 D views of objects. Creating two dimensional and three dimensional compositions using given shapes and forms. Sketching of scenes and activities from memory of urbanscape (public space, market, festivals, street scenes, monuments, recreational spaces etc.), landscape (river fronts, jungles. gardens, tre es, plants etc.) and rural life.

Note: Candidates are advised to bring pencils, own geometry box set, erasers and colour pencils and crayons for the Aptitude Test.

PHYSICS


The syllabus contains two Sections - A and B. Section - A pertains to the Theory Part having 80% weightage, while Section - B contains Practical Component (Experimental Skills) having 20% weightage.

SECTION A

UNIT 1:
PHYSICS AND MEASUREMENT
Physics, technology and society, S I units, Fundamental and derived units. Least count, accuracy and precision of measuring instruments, Errors in measurement, Significant figures. Dimensions of Physical quantities, dimensional analysis and its applications.
UNIT 2:
KINEMATICS
Frame of reference. Motion in a straight line: Position-time graph, speed and velocity. Uniform and non-uniform motion, average speed and instantaneous velocity Uniformly accelerated motion, velocity-time, position- time graphs, relations for uniformly accelerated motion. Scalars and Vectors, Vector addition and Subtraction, Zero Vector, Scalar and Vector products, Unit Vector, Resolution of a Vector. Relative Velocity, Motion in a plane, Projectile Motion, Uniform Circular Motion.
UNIT 3:
LAWS OF MOTION
Force and Inertia, Newton’s First Law of motion; Momentum, Newton’s Second Law of motion; Impulse; Newton’s Third Law of motion. Law of conservation of linear momentum and its applications, Equilibrium of concurrent forces.Static and Kinetic friction, laws of friction, rolling friction.Dynamics of uniform circular motion: Centripetal force and its applications.
UNIT 4:
WORK, ENERGY AND POWER
Work done by a constant force and a variable force; kinetic and potential energies, workenergy theorem, power. Potential energy of a spring, conservation of mechanical energy, conservative and nonconservative forces; Elastic and inelastic collisions in one and two dimensions.
UNIT 5:
ROTATIONAL MOTION
Centre of mass of a two-particle system, Centre of mass of a rigid body; Basic concepts of rotational motion; moment of a force, torque, angular momentum, conservation of angular momentum and its applications; moment of inertia, radius of gyration. Values of moments of inertia for simple geometrical objects, parallel and perpendicular axes theorems and their applications. Rigid body rotation, equations of rotational motion.
UNIT 6:
GRAVITATION
The universal law of gravitation. Acceleration due to gravity and its variation with altitude and depth. Kepler’s laws of planetary motion. Gravitational potential energy; gravitational potential. Escape velocity. Orbital velocity of a satellite. Geo-stationary satellites.
UNIT 7:
PROPERTIES OF SOLIDS AND LIQUIDS
Elastic behaviour, Stress-strain relationship, Hooke’s Law, Young’s modulus, bulk modulus, modulus of rigidity. Pressure due to a fluid column; Pascal’s law and its applications. Viscosity, Stokes’ law, terminal velocity, streamline and turbulent flow, Reynolds number. Bernoulli’s principle and its applications. Surface energy and surface tension, angle of contact, application of surface tension - drops, bubbles and capillary rise. Heat, temperature, thermal expansion; specific heat capacity, calorimetry; change of state, latent heat. Heat transfer- conduction, convection and radiation, Newton’s law of cooling.
UNIT 8:
THERMODYNAMICS
Thermal equilibrium, zeroth law of thermodynamics, concept of temperature. Heat, work and internal energy. First law of thermodynamics. Second law of thermodynamics: reversible and irreversible processes. Carnot engine and its efficiency.
UNIT 9:
KINETIC THEORY OF GASES
Equation of state of a perfect gas, work doneon compressing a gas.Kinetic theory of gases - assumptions, concept of pressure. Kinetic energy and temperature: rms speed of gas molecules; Degrees of freedom, Law of equipartition of energy,applications to specific heat capacities of gases; Mean free path, Avogadro’s number.
UNIT 10:
OSCILLATIONS AND WAVES
Periodic motion - period, frequency, displacement as a function of time. Periodic functions. Simple harmonic motion (S.H.M.) and its equation; phase; oscillations of a spring -restoring force and force constant; energy in S.H.M. - kinetic and potential energies; Simple pendulum - derivation of expression for its time period; Free, forced and damped oscillations, resonance.Wave motion. Longitudinal and transverse waves, speed of a wave. Displacement relation for a progressive wave. Principle of superposition of waves, reflection of waves, Standing waves in strings and organ pipes, fundamental mode and harmonics, Beats, Doppler effect in sound
UNIT 11:
ELECTROSTATICS
Electric charges: Conservation of charge, Coulomb’s law-forces between two point charges, forces between multiple charges; superposition principle and continuous charge distribution.Electric field: Electric field due to a point charge, Electric field lines, Electric dipole, Electric field due to a dipole, Torque on a dipole in a uniform electric field.Electric flux, Gauss’s law and its applications to find field due to infinitely long uniformly charged straight wire, uniformly charged infinite plane sheet and uniformly charged thin spherical shell. Electric potential and its calculation for a point charge, electric dipole and system of charges; Equipotential surfaces, Electrical potential energy of a system of two point charges in an electrostatic field.Conductors and insulators, Dielectrics and electric polarization, capacitor, combination of capacitors in series and in parallel, capacitance of a parallel plate capacitor with and without dielectric medium between the plates, Energy stored in a capacitor.
UNIT 12:
CURRENT ELECTRICITY
Electric current, Drift velocity, Ohm’s law, Electrical resistance, Resistances of different materials, V-I characteristics of Ohmic and nonohmic conductors, Electrical energy and power, Electrical resistivity, Colour code for resistors; Series and parallel combinations of resistors; Temperature dependence of resistance.Electric Cell and its Internal resistance, potential difference and emf of a cell, combination of cells in series and in parallel. Kirchhoff’s laws and their applications. Wheatstone bridge, Metre bridge. Potentiometer - principle and its applications.
UNIT 13:
MAGNETIC EFFECTS OF CURRENT AND MAGNETISM
Biot - Savart law and its application to current carrying circular loop. Ampere’s law and its applications to infinitely long current carrying straight wire and solenoid. Force on a moving charge in uniform magnetic and electric fields. Cyclotron.Force on a current-carrying conductor in a uniform magnetic field. Force between two parallel current-carrying conductors-definition of ampere. Torque experienced by a current loop in uniform magnetic field; Moving coil galvanometer, its current sensitivity and conversion to ammeter and voltmeter.Current loop as a magnetic dipole and its magnetic dipole moment. Bar magnet as an equivalent solenoid, magnetic field lines; Earth’s magnetic field and magnetic elements. Para-, dia- and ferro- magnetic substances. Magnetic susceptibility and permeability, Hysteresis, Electromagnets and permanent magnets.
UNIT 14:
ELECTROMAGNETIC INDUCTION AND ALTERNATING CURRENTS
Electromagnetic induction; Faraday’s law, induced emf and current; Lenz’s Law, Eddy currents. Self and mutual inductance. Alternating currents, peak and rms value of alternating current/ voltage; reactance and impedance; LCR series circuit, resonance; Quality factor, power in AC circuits, wattless current. AC generator and transformer.
UNIT 15:
ELECTROMAGNETIC WAVES
Electromagnetic waves and their characteristics. Transverse nature of electromagnetic waves.Electromagnetic spectrum (radio waves, microwaves, infrared, visible, ultraviolet, Xrays, gamma rays). Applications of e.m. waves.
UNIT 16:
OPTICS
Reflection and refraction of light at plane and spherical surfaces, mirror formula, Total internal reflection and its applications, Deviation and Dispersion of light by a prism, Lens Formula, Magnification, Power of a Lens, Combination of thin lenses in contact, Microscope and Astronomical Telescope (reflecting and refracting) and their magnifyingpowers.Wave optics: wavefront and Huygens’ principle, Laws of reflection and refraction using Huygen’s principle. Interference, Young’s double slit experiment and expression for fringe width, coherent sources and sustained interference of light. Diffraction due to a single slit, width of central maximum. Resolving power of microscopes and astronomical telescopes, Polarisation, plane polarized light; Brewster’s law, uses of plane polarized light and Polaroids.
UNIT 17:
DUAL NATURE OF MATTER AND RADIATION
Dual nature of radiation. Photoelectric effect, Hertz and Lenard’s observations; Einstein’s photoelectric equation; particle nature of light. Matter waves-wave nature of particle, de Broglie relation. Davisson-Germer experiment.
UNIT 18:
ATOMS AND NUCLEI
Alpha-particle scattering experiment; Rutherford’s model of atom; Bohr model, energy levels, hydrogen spectrum. Composition and size of nucleus, atomic masses, isotopes, isobars; isotones. Radioactivity-alpha, beta and gamma particles/rays and their properties; radioactive decay law. Mass-energy relation, mass defect; binding energy per nucleon and its variation with mass number, nuclear fission and fusion.
UNIT 19:
ELECTRONIC DEVICES
Semiconductors; semiconductor diode: I-V characteristics in forward and reverse bias; diode as a rectifier; I-V characteristics of LED, photodiode, solar cell and Zener diode; Zener diode as a voltage regulator. Junction transistor, transistor action, characteristics of a transistor; transistor as an amplifier (common emitter configuration) and oscillator. Logic gates (OR, AND, NOT, NAND and NOR). Transistor as a switch.
UNIT 20:
COMMUNICATION SYSTEMS
Propagation of electromagnetic waves in the atmosphere; Sky and space wave propagation, Need for modulation, Amplitude and Frequency Modulation, Bandwidth of signals, Bandwidth of Transmission medium, Basic Elements of a Communication System (Block Diagram only)

SECTION-B
UNIT 21:
EXPERIMENTAL SKILLS
Familiarity with the basic approach and observations of the experiments and activities: 1. Vernier callipers-its use to measure internal and external diameter and depth of a vessel. 2. Screw gauge-its use to determine thickness/diameter of thin sheet/wire. 3. Simple Pendulum-dissipation of energy by plotting a graph between square of amplitude and time. 4. Metre Scale - mass of a given object by principle of moments. 5. Young’s modulus of elasticity of the material of a metallic wire. 6. Surface tension of water by capillary rise and effect of detergents. 7. Co-efficient of Viscosity of a given viscous liquid by measuring terminal velocity of a given spherical body. 8. Plotting a cooling curve for the relationship between the temperature of a hot body and time. 9. Speed of sound in air at room temperature using a resonance tube. 10. Specific heat capacity of a given (i) solid and (ii) liquid by method of mixtures. 11. Resistivity of the material of a given wire using metre bridge. 12. Resistance of a given wire using Ohm’s law. 13. Potentiometer – (i) Comparison of emf of two primary cells. (ii) Determination of internal resistance of a cell. 14. Resistance and figure of merit of a galvanometer by half deflection method. 15. Focal length of: (i) Convex mirror(ii) Concave mirror, and (iii) Convex lens using parallax method. 16. Plot of angle of deviation vs angle of incidence for a triangular prism. 17. Refractive index of a glass slab using a travelling microscope. 18. Characteristic curves of a p-n junction diode in forward and reverse bias. 19. Characteristic curves of a Zener diode and finding reverse break down voltage. 20. Characteristic curves of a transistor and finding current gain and voltage gain. 21. Identification of Diode, LED, Transistor, IC, Resistor, Capacitor from mixed collection of such items. 22. Using multimeter to: (i) Identify base of a transistor (ii) Distinguish between npn and pnp type transistor (iii) See the unidirectional flow of current in case of a diode and an LED. (iv) Check the correctness or otherwise of a given electronic component (diode, transistor or IC).

MATHEMATICS


UNIT 1:
SETS, RELATIONS AND FUNCTIONS:
Sets and their representation; Union, intersection and complement of sets and their algebraic properties; Power set; Relation, Types of relations, equivalence relations, functions;. one-one, into and onto functions, composition of functions.
UNIT 2:
COMPLEX NUMBERS AND QUADRATIC EQUATIONS:
Complex numbers as ordered pairs of reals, Representation of complex numbers in the form a+ib and their representation in a plane, Argand diagram, algebra of complex numbers, modulus and argument (or amplitude) of a complex number, square root of a complex number, triangle inequality, Quadratic equations in real and complex number system and their solutions. Relation between roots and co-efficients, nature of roots, formation of quadratic equations with given roots.
UNIT 3:
MATRICES AND DETERMINANTS:
Matrices, algebra of matrices, types of matrices, determinants and matrices of order two and three. Properties of determinants, evaluation of determinants, area of triangles using determinants. Adjoint and evaluation of inverse of a square matrix using determinants and elementary transformations, Test of consistency and solution of simultaneous linear equations in two or three variables using determinants and matrices.
UNIT 4:
PERMUTATIONS AND COMBINATIONS:
Fundamental principle of counting, permutation as an arrangement and combination as selection, Meaning of P (n,r) and C (n,r), simple applications.
UNIT 5:
MATHEMATICAL INDUCTION:
Principle of Mathematical Induction and its simple applications.
UNIT 6:
BINOMIAL THEOREM AND ITS SIMPLE APPLICATIONS:
Binomial theorem for a positive integral index, general term and middle term, properties of Binomial coefficients and simple applications.
UNIT 7:
SEQUENCES AND SERIES:
Arithmetic and Geometric progressions, insertion of arithmetic, geometric means between two given numbers. Relation between A.M. and G.M. Sum upto n terms of special series: Sn, Sn2, Sn3. Arithmetico - Geometric progression.
UNIT 8:
LIMIT, CONTINUITY AND DIFFERENTIABILITY:
Real - valued functions, algebra of functions, polynomials, rational, trigonometric, logarithmic and exponential functions, inverse functions. Graphs of simple functions. Limits, continuity and differentiability. Differentiation of the sum, difference, product and quotient of two functions. Differentiation of trigonometric, inverse trigonometric, logarithmic, exponential, composite and implicit functions; derivatives of order upto two. Rolle’s and Lagrange’s Mean Value Theorems. Applications of derivatives: Rate of change of quantities, monotonic - increasing and decreasing functions, Maxima and minima of functions of one variable, tangents and normals.
UNIT 9:
INTEGRAL CALCULUS:

Integral as an anti - derivative. Fundamental integrals involving algebraic, trigonometric, exponential and logarithmic functions. Integration by substitution, by parts and by partial fractions. Integration using trigonometric identities.Evaluation of simple integrals of the typeIntegral as limit of a sum. Fundamental Theorem of Calculus. Properties of definite integrals. Evaluation of definite integrals, determining areas of the regions bounded by simple curves in standard form.
UNIT 10:
Differential Equations:
Ordinary differential equations, their order and degree. Formation of differential equations. Solution of differential equations by the method of separation of variables, solution of homogeneous and linear differential equations of the type:dy-- + p (x) y = q (x) dx

UNIT 11:
CO-ORDINATE GEOMETRY:
Cartesian system of rectangular co-ordinates in a plane, distance formula, section formula, locus and its equation, translation of axes, slope of a line, parallel and perpendicular lines, intercepts of a line on the coordinate axes.Straight linesVarious forms of equations of a line, intersection of lines, angles between two lines, conditions for concurrence of three lines, distance of a point from a line, equations of internal and external bisectors of angles between two lines, coordinates of centroid, orthocentre and circumcentre of a triangle, equation of family of lines passing through the point of intersection of two lines.Circles, conic sectionsStandard form of equation of a circle, general form of the equation of a circle, its radius and centre, equation of a circle when the end points of a diameter are given, points of intersection of a line and a circle with the centre at the origin and condition for a line to be tangent to a circle, equation of the tangent. Sections of cones, equations of conic sections (parabola, ellipse and hyperbola) in standard forms, condition for y = mx + c to be a tangent and point (s) of tangency.
UNIT 12:
Three Dimensional Geometry:
Coordinates of a point in space, distance between two points, section formula, direction ratios and direction cosines, angle between two intersecting lines. Skew lines, the shortest distance between them and its equation. Equations of a line and a plane in different forms, intersection of a line and a plane, coplanar lines.
UNIT 13:
Vector Algebra:
Vectors and scalars, addition of vectors, components of a vector in two dimensions and three dimensional space, scalar and vector products, scalar and vector triple product.
UNIT 14:
STATISTICS AND PROBABILITY:
Measures of Dispersion: Calculation of mean, median, mode of grouped and ungrouped data. Calculation of standard deviation, variance and mean deviation for grouped and ungrouped data.Probability: Probability of an event, addition and multiplication theorems of probability, Baye’s theorem, probability distribution of a random variate, Bernoulli trials and Binomial distribution.
UNIT 15:
Trigonometry:
Trigonometrical identities and equations. Trigonometrical functions. Inverse trigonometrical functions and their properties. Heights and Distances.
UNIT 16: MATHEMATICAL REASONING:
Statements, logical operations and, or, implies, implied by, if and only if. Understanding of tautology, contradiction, converse and contrapositive.

LIST OF PARTICIPATING INSTITUTES

Tentative List of Participating Institutions in AIEEE 2009

National Institutes of Technology(NIT)
1. Motilal Nehru National Institute of Technology, Allahabad (Uttar Pradesh)
2. Maulana Azad National Institute of Technology, Bhopal (Madhya Pradesh)
3. National Institute of Technology, Calicut (Kerela)
4. National Institute of Technology, Durgapur (West Bengal)
5. National Institute of Technology, Hamirpur (Himachal Pradesh)
6. Malviya National Institute of Technology, Jaipur (Rajasthan)
7. Dr. B R Ambedkar National Institute of Technology, Jalandhar (Punjab)
8. National Institute of Technology, Jamshedpur (Jharkhand)
9. National Institute of Technology, Kurukshetra (Haryana)
10.Visvesvaraya National Institute of Technology, Nagpur (Maharashtra)
11.National Institute of Technology, Patna (Bihar)
12.National Institute of Technology, Rourkela (Orissa)
13.National Institute of Technology, Silchar (Assam)
14.National Institute of Technology, Hazartbal, Srinagar (J & K)
15.National Institute of Technology, Surathkal, Manglore (Karnataka)
16.Sardar Vallabhbhai National Institute of Technology, Surat (Gujarat)
17.National Institute of Technology, Tiruchirapalli (Tamil Nadu)
18.National Institute of Technology, Warangal (Andhra Pradesh)
19.National Institute of Technology(NIT),Raipur,Chhatisgarh
20.National Institute of Technology(NIT),Tripura,Agartala

Indian Institutes of Information Technology (IIITs, IIITM & IIITDM)
1. Indian Institute of Information Technology, Amethi, Allahabad (U.P.)
2. Atal Bihari Vajpayee Indian Institute of Information Technology & Management, Gwalior (M.P.)
3. Pandit Dwarka Prasad Mishra Indian Institute of Information Technology, Design & Manufacturing, Jabalpur (M.P.)
4. Indian Institute of Information Technology Design & Manufacturing, Kanchipuram, Tamil Nadu.
5. Indian Institute of Information Technology, Jhalwa, Allahabad (U.P.).

Self Financed Deemed Universities/Universities/Other Institutions
(Subject to the final approval from MHRD, Govt. of India and Central Councilling Board)
1. International Institute of Information Technology, Hyderabad (A.P.)
2. Birla Institute of Technology (Mesra Centre), Mesra, Ranchi (Jharkhand)
3. Birla Institute of Technology (Patna Centre), Mesra, Ranchi
4. Birla Institute of Technology (Deogarh Centre), Mesra, Ranchi
5. Shri Mata Vaishno Devi University, Gandhinagar, Jammu Tawi (J & K)
6. Kalinga Institute of Industrial Technology, Bhubhaneswar (Orissa)
7. Shanmugha Arts, Science, Technology & Research Academy (Sastra), Thanjavur-613402 (Tamil Nadu)
8. LNM Institute of Information Technology, Jaipur, Rajasthan
9. Sri. Chandrasekharendra Saraswathi Viswa Mahavidyalaya, Kanchipuram (Tamil Nadu)
10. Dr.M.G.R. Educational And Research Institute, Chennai (Tamil Nadu)
11. Faculty of Engineering & Technology, Gurukul Kangri Vishwavidyalaya, Haridwar (Uttarakhand)
12. Jaipur National University, Jagatpura, Jaipur (Rajasthan)
13. Lovely Professional University, Phagwara, Distt. Kapurthala (Punjab)
14. Kalasalingam University, Anand Nagar, Krishnan Koil (TN)
15. Sir Padampat Singhania University, Udaipur (Rajasthan)
16. Siksha ‘O’ Anusandhan University, Bhubaneswar (Orissa)

Other Central Government/State Government Funded Institutions
1. Indian Institute of Carpet Technology, Bhadohi (U.P.)(IICT, Bhadohi)
2. School of Planning and Architecture, I.P. Estate, New Delhi (SPA, Delhi).
3. National Insitute of Foundary & Forge Technology, P.O. Hatia, Ranchi (Jharkhand), (NIFFT, Ranchi)
4. Assam University, Silchar (Assam)
5. J.K. Institute of Applied Physics & Technology, University of allahabad, Allahabad-211002(U.P.)
6. Tezpur University, NAPAAM, Tezpur (Assam)
7. M.J.P. Rohilkhand University, Bareilly (UP)
8. School of Planning and Architecture, Bhopal
9. School of Planning and Architecture, Vijayawada

States/UTs
The States/Institutes listed below are likely to use AIEEE-2009 ranks to fill seats through their own counselling.
1. Haryana
2. Uttrakhand
3. Himachal Pradesh (All India Quota will be filled through Central Counselling Board)
4. Army Institute of Technology, Pune, Maharashtra
5. 15% All India Quata in Delhi College of Engineering and N.S.I.T.,Delhi under Delhi University will be filled through central counselling board

RULE OF CENTRAL COUNSELLING BOARD FOR AIEEE 2009
As per the direction of the MHRD 50% of the seats in NITs will be filled from AIEEE eligible candidates of States where NITs are located and rest 50% will be filled on All India Merit basis. MHRD will make efforts to establish NITs for those States/UTs which do not have NITs as of now. In case, the new NITs are not established before the start of admission based on AIEEE 2009, seats will be made available for the eligible students of such States/UTs which do not have any NIT, so as to keep the number of seats for such States/UTs at the level of 2007, after making due adjustment for the number of seats filled by eligible candidates of these States/UTs.

A list of the participated institutions will be furnished by Central Counseling Board 2009 at appropriate time which will be available on CCB website at http://www.ccb.nic.in/.

Final List of Institutions admitting students (with intake in each discipline and category as per reservation) through AIEEE-2009 for Counselling shall also be released on CCB website in the month of May/June 2009.