Amrita Engineering Entrance Exam – AEEE 2019
Amrita Engineering Entrance Exam – AEEE 2021
Amrita Entrance Examination – Engineering is conducted every year in more than 75 cities across the country for admission to the B.Tech. Programs at its three Schools of Engineering located at Amritapuri, Bengaluru and Coimbatore.
AEEE 2021 Eligibility
- Age : Candidates shall be born on or after 1st July, 1998.
- Educational Qualification : A pass in 10+2 ( class XII ) or its equivalent securing an aggregate of 60% marks in Mathematics, Physics and Chemistry with not less than 55% marks in each of these three subjects.
- A three year Diploma in Engineering with minimum 60% marks, awarded by any State Board of Technical Education.
Those who appear for the above examinations in March / April, 2021 and expect to secure minimum marks as above, may also apply. Seat allotment through Counselling will be based on the eligibility and rank obtained by the Candidate in the Amrita Entrance Examination – Engineering 2019.
AEEE 2019 Campuses & B.Tech Programs
The various B.Tech. programs offered in the three Schools of Engineering are listed below
|Computer Science & Engineering||√||√||√|
|Electrical & Electronics Engineering||√||√||√|
|Electronics & Communication Engineering||√||√||√|
|Electronics & Instrumentation Engineering||√||√||-|
AEEE 2019 Exam Pattern
AEEE will be of 2 ½ hours ( 150 minutes ) duration and there will be one question paper containing 100 objective type ( multiple choice types ) questions in Mathematics, Physics and Chemistry. Each question will be followed by four answers of which one is correct / most appropriate.
|Subject||No. of Questions||Marks|
|Mathematics||40 Questions||120 Marks|
|Physics||30 Questions||90 Marks|
|Chemistry||30 Questions||90 Marks|
|Total||100 Questions||300 Marks|
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AEEE 2019 Application Form
Application Forms of Amrita Entrance Examination – Engineering 2019 can be obtained
- Computer Based Test : Application can be submitted either online or using printed OMR application form.
- Pen & Paper Based Test : Application can be submitted either online or using printed OMR application form.
Candidates have to pay the application fee of [rupee]1000/- for Computer based test as well as Pen & Paper based test. Application fee once paid will not be refunded
AEEE 2019 Online Application
- The Application form will be available from the official website of www.amrita.edu.
Printed Application Form
- From sale outlets ( Post Office, Dhanlaxmi Bank and Federal Bank ) on payment of [rupee] 1000/- ( For details visit the University Website www.amrita.edu ) (or)
- By post, from the Admission Co – ordinators of Amrita Schools of Engineering at Amritapuri,Bengaluru and Coimbatore, on a written request indicating their full communication address together with a Demand Draft for [rupee]1000/- drawn in favour of Amrita School of Engineering payable at Coimbatore. (or)
- Direct from the University counter of Amrita Schools of Engineering at Amritapuri, Bengaluru and Coimbatore on producing a demand draft for [rupee]1000/- as above.
Note : When a demand draft is used, candidate should write on the back of the Demand Draft, “ B.Tech Application”, his / her Name and mobile number. Please keep a photocopy of the filled in application and Demand Draft with you for future reference.
AEEE 2019 Submission of Application Form
Duly filled in application form shall be sent in the pre – addressed cover to the following address Only
The Admissions Co – ordinator,
Amrita School of Engineering,
Amrita Vishwa Vidyapeetham,
( P.O ) Amritanagar, Ettimadai ,
Coimbatore 641 112,
Telephone No : 0422 – 2685169 / 170 .
AEEE 2019 Hall Ticket & Identification
In order to prove their identity candidates should produce any of the following :
- Voter ID Card
- Aadhaar Card
- ID Card issued by the school last attended
- Any other authentic document which proves identity.
No candidate will be allowed to appear for the Entrance Examination without valid hall ticket. In the Examination hall, candidate should produce the hall ticket when demanded by the invigilator.
The Hall Ticket generated by the software will contain the Name and Registration Number of the candidate, Date of Exam, Address of the Exam Centre allotted to the candidate etc.
Hall Ticket can be downloaded from the University website by entering Application Number and Date of Birth. Hall Ticket will not be sent by post.
In the examination hall, each candidate shall sign the attendance sheet. This signature shall be identical with the signatures on the Application Form and the Hall Ticket. During the examination, the candidate’s left hand thumb impression also will be taken for identification. Thumb impression will be taken again at the time of admission for comparison.
Candidates shall retain their hall tickets used in the examination hall having the signature of the invigilator and produce the same at the time of counselling failing which the candidate will not be allowed for counselling.
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AEEE 2019 Exam Centres
Examination Cities For Computer Based Test ( CBT ) And Pen & Paper Based Test ( P & P )
- Computer Based Test ( CBT ) – Conducted on 22nd – 26th April, 2019
- Pen and Paper Mode Test ( P&P ) – Conducted on 27th April, 2019
|State||City||City Code||Mode of Exam||State||City||City Code||Mode of Exam|
|Andaman & Nicobar Island||Port Blair||001||CBT||Madhya Pradesh||Bhopal||059||CBT|
|Andhra Pradesh||Anantapur||002||CBT||Madhya Pradesh||Gwalior||060||CBT|
|Andhra Pradesh||Kakinada||003||CBT||Madhya Pradesh||Jabalpur||061||CBT|
|Andhra Pradesh||Kurnool||004||CBT||Madhya Pradesh||Indore||062||CBT|
|Arunachal Pradesh||Ita Nagar||011||CBT||Manipur||Imphal||069||CBT|
|Goa||Goa (Panaji)||024||CBT||Tamil Nadu||Hosur||082||CBT
|Himachal Pradesh||Shimla||032||CBT||Tamil Nadu||Thanjavur||090||CBT|
To know more about Amrita Engineering Exam Centres Click Here
AEEE 2019 Chemistry Syllabus
Atomic and molecular masses, mole concept and molar mass, percentage composition, empirical and molecular formula, chemical reactions, stoichiometry and calculations based on stoichiometry.
Atomic Structure, Chemical Bonding and Molecular Structure
Bohr’s model, de Broglie’s and Heisenberg’s principles, Quantum mechanical model, Orbital concept and filling up of electrons; Bond formation and bond parameters; Valence bond and molecular orbital theory; VSEPR theory; Hybridization involving s, p and d orbital; Hydrogen bond.
Equilibrium and Thermodynamics
Law of chemical equilibrium and Equilibrium Constant; Homogeneous and Heterogeneous equilibria; LeChatelier’s principle, Ionic equilibrium; Acids, Bases, Salts and Buffers; Solubility product;
Thermodynamic state; Enthalpy, Entropy and Gibb’s free energy; Heats of reactions; Spontaneous and nonspontaneous processes.
Electrochemistry, Kinetics and Surface Chemistry
Specific, molar and equivalent conductance of weak and strong electrolytes; Kohlrausch law; Electrochemical cells and Nernst equation; batteries, fuel cells and corrosion
Rate of a reaction and factors affecting the rate: Rate constant, order and molecularity, collision theory.
Physisorption and chemisorptions; colloids and emulsions; homogeneous and heterogeneous catalysis.
Solid State and Solutions
Molecular, ionic, covalent and metallic solids; amorphous and crystalline solids; crystal lattices and Unit cells; packing efficiency and imperfections; electrical and magnetic properties. Normality, molarity and molality of solutions, vapour pressure of liquid solutions; ideal and non-ideal solutions, colligative properties; abnormality.
Position of hydrogen in the periodic table; dihydrogen and hydrides- preparation and properties; water, hydrogen peroxide and heavy water; hydrogen as a fuel.
Group 1 and 2 Alkali and Alkaline earth elements; general characteristics of compounds of the elements; anomalous behavior of the first element; preparation and properties of compounds like sodium and calcium carbonates, sodium chloride, sodium hydroxide; biological importance of sodium, potassium and calcium.
Groups 13 to 17 elements: General aspects like electronic configuration, occurrence, oxidation states, trends in physical and chemical properties of all the families of elements; compounds of boron like borax, boron hydrides and allotropes of carbon; compounds of nitrogen and phosphorus, oxygen and sulphur; oxides and oxyacids of halogens.
D, F-Block Elements
Electronic configuration and general characteristics of transition metals; ionization enthalpy, ionic radii, oxidations states and magnetic properties; interstitial compounds and alloy formation; lanthanides and actinoids and their applications.
Werner’s theory and IUPAC nomenclature of coordination compounds; coordination number and isomerism; Bonding in coordination compounds and metal carbonyls and stability; application in analytical methods, extraction of metals and biological systems.
Basic Organic Chemistry and Techniques
Tetravalence of carbon and shapes or organic compounds; electronic displacement in a covalent bond-inductive and electromeric effects, resonance and hyperconjugation; hemolytic and heterolytic cleavage of covalent bond-free radicals, carbocations, carbanions electrophiles and nucleophiles; methods of purification of organic compounds; qualitative and quantitative analysis.
Hydrocarbons, Haloalkanes and Haloarenes
Alkanes, alkenes,alkynes and aromatic hydrocarbons; IUPAC nomenclature, isomerism; conformation of ethane, geometric isomerism, general methods of preparation and properties, free radical mechanism of halogenations, Markownikoff’s addition and peroxide effect; benzene, resonance and aromaticity, substitution reactions; Nature of C-X bond in haloalkanes and haloarenes; mechanism of substitution reactions.
Alcohols, Phenols and Ethers
IUPAC nomenclature, general methods of preparation, physical and chemical properties, identification of primary, secondary and tertiary alcohols, mechanism of dehydration; electrophillic substitution reactions.
Aldehydes, Ketones, Carboxylic Acids and Amines
Nomenclature, general methods of preparation, physical and chemical properties of the group members; nucleophilic addition and its mechanism; reactivity of alpha hydrogen in aldehydes; mono and dicarboxylic acids – preparation and reactions; identification of primary, secondary and tertiary amines; preparation and reactions of diazonium salts and their importance in synthesis.
Polymers and Biomolecules
Natural and synthetic polymers, methods of polymerization, copolymerization, molecular weight of polymers, Polymers of commercial importance, Carbohydrates: mono, oligo and polysaccharides; Proteins Alpha amino acid, peptide linkage and polypeptides : Enzymes, Vitamins and Nucleic acids ( DNA and RNA ).
Air, water and soil pollution, chemical reactions in atmosphere, acid rain; ozone and its depletion; green house effect and global warming; pollution control.
Chemistry in Everyday Life
Drugs and their interaction; chemicals as analgesics, tranquilizers, antiseptics, antibiotics, antacids and antihistamines; Chemicals in food-preservatives, artificial sweetening agents; cleansing agents – soaps and detergents.
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AEEE 2019 Mathematics Syllabus
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. Cube roots of unity, triangle inequality.
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.
Binomial theorem for positive integral indices. Pascal’s triangle. General and middle terms in binomial expansions, simple applications.
Sequences and Series
Arithmetic, Geometric and Harmonic progressions. Insertion of Arithmetic, Geometric and Harmonic means between two given numbers. Relation between A.M., G.M. and H.M. Special series Σn, Σn2, Σn3. Arithmetico – Geometric Series, Exponential and Logarithmic Series.
Matrices and Determinants
Determinants and matrices of order two and three, Properties of determinants. Evaluation of determinants. Addition and multiplication of matrices, adjoint and inverse of matrix. Solution of simultaneous linear equations using determinants.
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;
Trigonometrical identities and equations. Inverse trigonometric functions and their properties. Properties of triangles, including centroid, incentre, circumcentre and orthocentre, solution of triangles. Heights and distances.
Measures of Central Tendency and Dispersion
Calculation of Mean, Median and Mode of grouped and ungrouped data. Calculation of standard deviation, variance and mean deviation for grouped and ungrouped data.
Probability of an event, addition and multiplication theorems of probability and their applications; Conditional probability; Bayes’ theorem, Probability distribution of a random variate; Binomial and Poisson distributions and their properties.
Polynomials, rational, trigonometric, logarithmic and exponential functions. Graphs of simple functions. Limits, Continuity; 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. Applications of derivatives: Maxima and Minima of functions one variable, tangents and normals, Rolle’s and Langrage’s Mean Value Theorems.
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. Integral as a limit of sum. Properties of definite integrals. Evaluation of definite integral; Determining areas of the regions bounded by simple curves.
Ordinary differential equations, their order and degree. Formation of differential equation. Solutions of differential equations by the method of separation of variables. Solution of Homogeneous and linear differential equations, and those of type d2y/dx2= f(x).
Two Dimensional Geometry
Review of Cartesian system of rectangular co-ordinates in a plane, distance formula, area of triangle, condition for the collinearity of three points, slope of a line, parallel and perpendicular lines, intercepts of a line on the coordinate axes.
The straight line and pair of straight lines
Various 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, equation of family lines passing through the point of intersection of two lines, homogeneous equation of second degree in x and y, angle between pair of lines through the origin, combined equation of the bisectors of the angles between a pair of lines, condition for the general second degree equation to represent a pair of lines, point of intersections and angles between two lines.
Circles and Family of Circles
Standard form of equation of a circle, general form of the equation of a circle, its radius and centre, equation of a circle in the parametric form, equation of a circle when the end points of a diameter are given, points of intersection of a line and circle with the centre at the origin and condition for a line to be tangent, equation of a family of circles through the intersection of two circles, condition for two intersecting circles to be orthogonal.
Sections of cones, equations of conic sections ( parabola, ellipse and hyperbola ) in standard forms, conditions for y = mx+c to be a tangent and point(s) of tangency.
Vector and scalars, addition of two vectors, components of a vector in two dimensions and three dimen -sional space, scalar and vector products, scalar and vector triple product. Application of vectors to plane geometry.
Three Dimensional Geometry
Distance between two points. Direction cosines of a line joining two points. Cartesian and vector equation of a line. Coplanar and skew lines. Shortest distance between two lines.Cartesian and vector equation of a plane. Angle between ( i ) two lines ( ii ) two planes ( iii ) a line and a plane Distance of a point from a plane.
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AEEE 2019 Physics Syllabus
Units and Dimensions
Units for measurement, system of units, SI, fundamental and derived units, dimensions and their applications.
Motion in straight line, uniform and non-uniform motion, uniformly accelerated motion and its applications Scalars and Vectors, and their properties; resolution of vectors, scalar and vector products; uniform circular motion and its applications, projectile motion Newton’s Laws of motion; conservation of linear momentum and its applications, laws of friction, Concept of work, energy and power; energy-kinetic and potential; conservation of energy; different forms of energy. Elastic collisions in one and two dimensions.
Center of mass of a many particle system; center of mass of a rigid body, rotational motion and torque. Angular momentum and its conservation. Moments of inertia, parallel and perpendicular axes theorem, moment of inertia for a thin rod, ring, disc and sphere.
Gravitation : Acceleration due to gravity and its properties. One and two dimensional motion under gravity. Universal law of gravitation, planetary motion, Kepler’s laws, artificial satellite-geostationary satellite, gravitational potential energy near the surface of earth, gravitational potential and escape velocity.
Solids and Fluids
Solids : Elastic properties, Hooke’s law, Young’s modulus, bulk modulus, modulus of rigidity. Liquids: Cohesion and adhesion; surface energy and surface tension; flow of fluids, Bernoulli’s theorem and its applications; viscosity, Stoke’s Law, terminal velocity.
Oscillations and Waves
Periodic motion, simple harmonic motion and its equation, oscillations of a spring and simple pendulum. Wave motion, properties of waves, longitudinal and transverse waves, superposition of waves, Progressive and standing waves. Free and forced oscillations, resonance, vibration of strings and air columns, beats, Doppler effect.
Heat and Thermodynamics
Thermal expansion of solids, liquids and gases and their specific heats, relationship between Cp and Cv for gases, first and second laws of thermodynamics, Carnot cycle, efficiency of heat engines. Transference of heat; thermal conductivity; black body radiations, Kirchoff’s law, Wein’s Law, Stefan’s law of radiation and Newton’s law of cooling.
Electrostatics, Current Electricity and Magnetostatics
Coloumb’s law, dielectric constant, electric field, lines of force, field due to dipole, electric flux, Gauss’s theorem and its applications; electric potential, potential due to a point charge; conductors and insulators, distribution of charge on conductors; capacitance, parallel plate capacitor, combination of capacitors, energy stored in a capacitor.
Electric current : Cells-primary and secondary, grouping of cells; resistance and specific resistivity and its temperature dependence. Ohm’s law, Kirchoff’s Law. Series and parallel circuits; Wheatstone’s Bridge and potentiometer with their applications.
Heating effects of current, electric power, concept of thermoelectricity-Seebeck effect and thermocouple; chemical effect of current- Faraday’s laws of electrolysis.
Magnetic Effects : Oersted’s experiment, Biot Savert’s law, magnetic field due to straight wire, circular loop and solenoid, force on a moving charge in a uniform magnetic field ( Lorentz force ), forces and torques on a current carrying conductor in a magnetic field, force between current carrying wires, moving coil galvanometer and conversion to ammeter and voltmeter
Magnetostatics : Bar magnet, magnetic field, lines of force, torque on a bar magnet in a magnetic field, earth’s magnetic field; para, dia and ferro magnetism, magnetic induction, magnetic susceptibility.
Electromagnetic Induction and Electromagnetic Waves
Induced e.m.f., Faraday’s law, Lenz’s law, self and mutual inductance; alternating currents, impedance and reactance, power in ac; circuits with L C and R series combination, resonant circuits, transformer and AC generator. Electromagnetic waves and their characteristics; electromagnetic spectrum from gamma to radio waves.
Ray and Wave Optics
Reflection and refraction of light at plane and curved surfaces, total internal reflection; optical fiber; deviation and dispersion of light by a prism; lens formula, magnification and resolving power; microscope and telescope Wave nature of light, interference, Young’s double experiment; thin films, Newton’s rings. Diffraction: diffraction due to a single slit; diffraction grating, polarization and applications.
Dual nature of Radiation – De Broglie relation, photoelectric effect, Alpha particle scattering experiment, atomic masses, size of the nucleus; radioactivity, alpha, beta and gamma particles / rays. Radioactive decay law, half life and mean life of radio active nuclei; Nuclear binding energy, mass energy relationship, nuclear fission and nuclear fusion.
Energy bands in solids, conductors, insulators and semiconductors, pn junction, diode, diode as a rectifier, transistor action, transistor as an amplifier.
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AEEE 2019 Results
AEEE 2019 Exam Date
AEEE 2019 Exam was conducted as per the following schedule
- Computer Based Test : 22nd – 26th April, 2019
- Paper & Pencil Based Test : 27th April, 2019
AEEE 2019 Result Date
AEEE 2019 Exam results will be declared on 05th May, 2019
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AEEE 2019 Counselling and Admission
Candidates shall download the counselling call letter from the website. Candidate’s rank as well as counselling call letter will not be sent by post.
AEEE 2019 Counselling Schedule
|1||May, 2019||1 - 15000||15001 - 25000||-||-|
|2||June, 2019||1 – 750||751 – 1500||1501 – 2000||2001 - 2500|
|3||June, 2019||2501 – 3250||3251 – 4000||4001 – 4500||4001 – 5000|
|4||June, 2019||5001 – 5750||5751 – 6500||6501 – 7000||7001 – 7500|
|5||June, 2019||7501 – 8250||8251 – 9000||9001 – 9500||9501 – 10000|
|6||June, 2019||10001 – 12500||12501 – 15000||15001 – 17500||17501 - 20000|
Before attending the counselling candidate shall ascertain his / her eligibility for admission with respect to age and Plus Two marks. The seat allotment is based on rank in AEEE 2019 and eligibility. If any candidate admitted is found to be ineligible at a later date, his / her admission will be cancelled.
Counselling will be arranged simultaneously in the three campuses. Candidate can appear for counselling in any one of the three campuses and opt a branch in any campus according to his / her preference and availability of seat.
A certain percentage of seats in each campus will be earmarked for the candidates who passed 12th class from the respective States in which the University campus is situated. In order to ensure admission to candidates from all States, the maximum intake from any state will be suitably restricted. State from where the candidate studied and passed Plus Two / Higher Secondary will be the criterion for allotment of State based quota of seats and scholarship.
Candidate must be physically present for counselling. Parent / Guardian shall accompany the candidate.
- At the time of Counselling, candidates shall produce originals of the following
- 10th class certificate to prove Date of Birth,
- Marks statement of class XII to prove eligibility regarding marks,
- Hall tickets of class XII Examination & Amrita Entrance Examination – Engg. 2019,
- Transfer Certificate from the school last attended to prove the ‘State’ where he / she studied ’Plus Two’.
- Community certificate in case of SC / ST,
- Other testimonials as specified in the call letter
If the original certificates are not produced by a candidate, he / she will not be permitted to attend the counselling. When a candidate accepts the seat allotment, his / her original certificates will be retained by the University, unless otherwise decided by competent authority.
Each candidate shall pay [rupee]5000/- by Demand Draft as counselling charges which is non – refundable.
Before seat allotment, each candidate has to pay [rupee] 50,000/- by demand draft as part of tuition fees. Candidates are required to pay the balance fees and complete all other formalities within the time limit prescribed in the Seat Allotment Order. Request for extension of time for payment of fees will not be entertained. If a candidate fails to remit the fees on or before the stipulated date his / her seat allotment will get automatically cancelled without notice.
The candidate shall attend the counselling in neat formal dress.
Counselling does not guarantee admission to the B.Tech. programme. Candidates are advised to note the seat availability from our website before coming to attend the counselling.
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AEEE 2019 Important Dates
|1||Commencement of Online Application Submission||19th October, 2018|
|2||Commencement of slot booking for CBT||05th April, 2019|
|3||Application submission, slot booking closes for CBT||10th April, 2019|
|4||Application submission closes for PPT||25th April, 2019|
|5||CBT – 3 slots each of 2.5 hrs duration||22nd - 26th April, 2019|
|6||Pen & Paper Test – one slot of 2.5 hrs duration ( 10:00 to 12:30 hrs )||27th April, 2019|
|7||Publication of AEEE Results||05th May, 2019|
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Amrita School of Engineering,
Amrita Vishwa Vidyapeetham,
( P.O ) Amritanagar, Ettimadai ,
Coimbatore 641 112,
Telephone No : 0422 – 2685169 / 170,
Fax : +91(422) 2656274,
Email : email@example.com,
Website : www.amrita.edu