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LEET Syallbus Covered In GCC During Coaching

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BASIC SCIENCE

1) MATHEMATICS FOR DIPLOMA HOLDER(ALL OVER INDIA LEET COVERED)

1.Algebra

1.1 Determinate and Matrix

(i) Definition Evaluation of a determinant of order two and three. Minor and cofactors.

Properties of determinants.

(ii) Concept of a matrix, definition, Transpose of matrix, Symmetric and Skew symmetric

matrix, Diagonal matrix, solving simultaneous equations by matrix methods.

1.2 Progression

(i)Arithmetic Progression (A.P.) – its nth term, sum to n terms. Geometric Progression (G.P.),

(H.P) Harmonic Progression.–Its nth term, sum to n terms and infinite, Geometric series.

1.3 Binomial Theorem

(i)Binomial theorem for positive integral index (without proof), Binomial theorem for any

Index, Expansions.

1.4 Quadratic Equation

(i) Quadratic Equation, equations reducible to quadratic form

1.5 Complex numbers

1.6 Permutation & Combination

1.7 Probability

2. Vector Algebra

2.1 Concept of vector, Position vector by a point. Addition and subtraction of vectors.

2.2 Multiplication of a vector by a scalar product and vector product of two vectors.

3. Coordinate Geometry

3.1 Straight Line

(i) Equation of straight line in various standard forms. Intersection of two straight lines and

Angle between them. Concurrent lines, perpendicular distance formula.

3.2 The Circle

(i) General equation of a circle and its characteristics. Equation of a circle given center and

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Radius, three point form and diametrical form.

3.3 Conic Section (Parabola, Hyperbola, Ellipse)

(i) Definition of a conic section, standard equation of a parabola equation of parabola given

Its focus and directrix. Given the equation of parabola finding its focus axis, vertex

Directrix and latus section.

(ii) Ellipse and Hyperbola (standard equation, without derivation) determining the equation

of ellipse and hyperbola given the Directrix, focus and eccentricity. Given the equation of

the ellipse and hyperbola finding the foci, Directrixes, Axes, Latus rectum, vertex and

eccentricity.

4. Trigonometry

4.1 Trigonometric Ratio & Identities

(i) Sum and difference formulas for trigonometric rations of angles and their application

(Without proof). Formula from product to sum, difference and vice-versa. Ratio of

Multiple angles, sub multiple angles (like 2A, 3A,A/2).

4.2 Trigonometrical Equation

(i) In a triangle sine formulas, cosine formulas, Napier’s analogy. Solution of triangle.

4.3 Height & Distances

(i) Simple problems on height and distance.

4.4 Trigonometric Functions

(i) Plotting of curves y = f(x), f(x) being algebraic function (maximum up to degree) or

Trigonometric functions (Sine, Cosine, Tangent).

5. Integral Calculus (i) Indefinite Integrals

(ii) Physical meaning of integration

(iii) Integration as inverse process of differentiation

(iv) Integration by substitution, by parts and by partial fractions

(v) Integration of rational and irrational quadratic expressions viz

dx dx

----------------------- , ------------------- , ax² +bx +cdx

ax² + bx +c ax² + bx +c

(vi) Definite Integrals

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1.6.1 Evaluation of Definite Integrals

1.6.2 Simple problems of Integration

Sinn X dx, Cos X dx

Sin X cos dx (without proof)

1.6.3 Numerical Integration by Simpson’s Rule

6. Differential Calculus

6.1 Limit Function Continity

(i) Limits: Concept of da function, its value and limit, Evaluation of limits, four

standard limits only, namely

6.2 Differentiation: i) Definition, its physical meaning as rate measure and its geometrical meaning.

ii) Differentiation from first principles of xn,ax, logx sin x, cos x, tan x only.

iii) Differentiation of cot x, sec x and of inverse t-ratios.

iv) Differentiation of sum, product and quotient of functions.

v) Differentiation of function of a function.

vi) Differentiation of implicit functions and parametric equations. Logarithmic

differentiation

7.Partial Differentiation

(i)First order and second order partial derivatives of function of two variables.

(ii)Euler’s theorem on partial differentiation of homogenous functions, Total differentiation .

8. Solution For Ordinary Differential Equations

(i) Orderand degree of a differential equation a solving first order degree equation-variable

separable from Homogenous form and linear differential equation.

(ii)Solving second order differential equation – complementary functions, particular integral with

functions of the form ex, Sin ax, Cos ax, xn, on the [right hand side of the equation.

2)APPLIED MECHANICS FOR DIPLOMA HOLDERS (ALL OVER INDIA LEET

COVERED)

1.Introduction

Concept of mechanics and Applied machines – Explanation of machines and Applied Machines,

its Importance and necessity, giving suitable example on bodies at rest and in motion,

explanation of branches of this subject.

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2.Laws of Forces

Force and its effects, Units and measurement of force. Characteristics of force vector

representation ,Bow’s notation ,Types of forces, action and reaction, tension, thrust & Shear

Force.

2.1 Force systems

Coplanar and space force systems. Coplanar, concurrent and non-concurrent force. Free body

diagrams. Resultant and components of force, concept of equilibrium, parallelogram law of

force. Equilibrium of forces, super-position and transmissibility of forces, Newton’s third law,

Triangle law of forces, different cases of concurrent coplanar, two forces system, extension of

parallelogram law and triangle law to many forces acting at one point-polygon law of forces,

method of resolution into orthogonal components for finding the resultant, graphical methods,

special case of three concurrent, coplanar forces, Lami’s theorem.

3.Moments

Concepts of moment, Varignon’s theorem-statement only. Principle of moments- application of

moments to simple mechanism. Parallel force like and unlike parallel forces, calculation of their

resultant, concept of couple, moving a force parallel to its line of action, general cases of

coplanar force system, general conditions of equilibrium of bodies under coplanar parallel forces.

4.Friction

Concept of friction, laws of friction, limiting friction coefficient of friction, sliding friction and

rolling friction , inclined plane.

5.Centre of Gravity and centroid

Concept of gravity, gravitational force, centroid and Centre of gravity. Centroid for regular

lamina and center of gravity for regular solids. Position of canter of gravity of compound bodies

and centroid of composite area. CG of bodies and areas with portions removed.

6.Moment of Inertia of Plane Areas

Concept of Moment of Inertia and second moment of area and Radius of gyration, theorems of

parallel and perpendicular axes, second moment of area of common geometrical section:

rectangle, triangle, circle(without derivations). Second moment of area for L, T and I sections.

Section modulus without derivation.

7.Laws of Motion

Concept of momentum ,Newton’s laws of motion , their application, derivation of force eqution

from second law of motion,numerical problems on second law of motion ,piles ,lifts, momentum,

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impulse and impulsive force (definition only).

8. Simple Lifting Machines

Concept of machine , mechanical advantage, velocity ratio and efficiency of machine, their

relationship. Law of machine , simple machines (lever, wheel and axle, pulleys, jacks winch

crabs only).

3)APPLIED CHEMISTRY FOR DIPLOMA HOLDERS (ALL OVER INDIA LEET

COVERED)

1. Structure of Atom (4 hrs)

Rutherford model of the structure of atom, Boher’s theory of H atom and equation

deduced.Quantum numbers and their significance, De-Broglie equation and uncertainty

principle.Electronic configuration of 1 to 30 elements.

2. Periodic Properties of Elements (3 hrs)

Periodic law, Periodic table, Periodicity in properties like atomic radii and volume, ionic

radii,ionization energy and electron affinity. Division of elements into S.P.D. and F block.

3. Chemical Bonding (4 hrs)

Electrovalent, covalent and coordinate bond and their properties, Metallic bonding

(electroncloud model) and properties (like texture, conductance, lusture, ductility and

malleability). Orbitalconcept of covalence, hybridization (simple treatment).

4. Fuel and their Classification(2hrs)

Definition characteristics, classification, into solid, liquid and gaseous fuel, Petroleum and

briefidea of its refining into various fraction and their characteristics and uses.

5. Water (2hrs)

Impurities in water, method of their removal, hardness of water, its types, causes and

removal,disadvantage of hard water in boilers pH value and its determination by calorimetric

method.

6. Chemical Equilibrium Law (3 hrs)

Chemical Equilibrium Law of mass action, equilibrium constant expression, relation between

Kp&Kc. Calculation of Equilibrium

7. Metals (2 hrs)

Cast iron and properties, effect of sulphur, silicon and phosphorous as impurities in iron.

Elementary Knowledge of heat treatment of steels-hardening, tempering, annealing,

normalizingand case hardening.

8. Alloys (1 hrs)

Definition, Classification and necessity for making alloys. Composition, Properties and uses

offollowing alloys: Brass, Bronze, Gun-metal and Duralumin. Effect of carbon, Nickel,

Chromium,manganese on steel.

9. Corrosion(1 hrs)

Its meaning, theory of corrosion, prevention of corrosion by various using metallic and

nonmetalliccoatings.

10. Acids and Bases (2 hrs)

Various concepts of acids and bases(Arhenius concept , Bronsted Lowry, Lewis concept)

calculation of ph value .

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11. Plastics and Polymers (1 hrs)

Plastics-Thermo-Plastic and thermo setting, Introduction of Polythene, P.V.C. Nylon,

syntheticrubber and phenol-formaldehyde resin. Their application in industry.

12. Electrochemistry(2 hrs)

Electrochemical cell, salt bridge, applications of electrochemical cell, standard hydrogen

electrode, conductivity , calculation of emf.

13.Chemical Kinetics(2 hrs)

Rate of reaction, Rate constant ,Rate law, order of reaction,catalysis,activation energy , enzyme

catalysis.

4)APPLIED PHYSICS FOR DIPLOMA HOLDERS (ALL OVER INDIA LEET

COVERED)

1. Measurement(Units and Dimensions)

1.1 Fundamental and Derived Units:

S.I. Units. Dimensions of Physical quantities. Dimensional formula and Dimensional equation.

Principle of homogeneity of dimensions and applications of homogeneity principle in:

(i) Checking the correctness of physical equation,

(ii) Deriving relations among various physical quantities, and

(iii) Conversion of numerical values of physical quantities from one system of units into

others,

(iv) Limitations of dimensional analysis.

2.Basic Mechanics(Coverd in Applied Mechanics )

Newton's laws of motiona and their applications conservation of linear momentum. Circular

motion,Concept of work, power and energy, different firms of energy. Mass Energy

relationangular velocity, angular acceleration and centripetal force. Conservation of angular

momentum. (only conceptual explanations of the physical parameters) Vector and scalar

quantities addition, subtraction and multiplication of vectors (Physical examples).

3.Properties of Materials

3.1 Elasticity

Elasticity, stress and strain, Hook’s law, elastic limit, Yielding point and breaking point.

Modulus of elasticity, Youn’s modulus, bulk modulus and modulus of rigidity.

3.2 Surface Tension

Introduction, Cohesive and Adhesive forces, Molecular theory of surface tension. Angle of

contact. Application of surface tension.

3.3 Viscosity

Fluid motion, streamline and turbulent motion, viscous forces, co-efficient of viscosity and its

determination by Stoke’s method and Poisuelle’s method.

4.1Heat And Temperature

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Concept of heat and temperature on the basis of kinetic theory. Units of heat. Basic principles of

measurement of temperature. Various thermometers like mercury thermometer thermocouples,

bimetallic thermometer, resistance thermometer, Pyrometers (Principle, construction and

working). Criteria for the selection of a thermometer.

4.2Heat Transfer

Modes of heat transfer, coefficient of thermal conductivity and its determination by (i)

Searle’s method for good conductor and (ii) Lee’s method for poor conductors

conduction of heat through compound media. Radiation of energy. Prevost’s theory of

heat exchange. Absorptivity and emissivity. Black body.

5.Simple Harmonic Motion

Periodic motion, characteristics of simple harmonic motion, equation of S.H.M. and

determination of velocity and acceleration. Graphical representation. Simple pendulum.

Derivation of their periodic time. Energy consideration in S.H.M. definition of free,

forced, damped and resonant vibration.

6.Waves

Generation of waves by vibration bodies. Progressive waves. Equation of wave. Super-

position of waves and its applications of interference, beats and stationery wave-graphical

method. Sound and light as wave frequencies, wavelengths, velocities and nature.

7.Geometrical Optics

Defects in image formation (qualitative) Microscope (simple and compound) and

telescope (Astronomical, terrestrial theodolite) and their magnifying powers. Optical

projections principles. Epidiascope and overhead projector.

8.Wave Optics

Interference of light waves. Young’s experiment. Applications of interference (paleness

testing, measurement of small thicknesses). Diffraction of light wave. Polarization of

light and its engineering applications. Simple concept of electromagnetic spectrum.

9. Atomic Structure(Covered in Chemistry)

Atomic structure, Bohr’s theory, energy level diagram, excitation, ionization, de-

excitation and radiation. Quantum numbers n.1, m,s.Paulis’s principle Bonds in

molecules and solids.

4) REASONING FOR DIPLOMA HOLDERS (ALL OVER IPU LEET COVERED)

Verbal Reasoning

1) Analogy

2) Classification

3) Alphabet Test

4) Word Formation

5) Coding Decoding

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6) Number Series

7) Letter Series

8) Logical Order of Words

9) Inserting the Missing Character

10) Number,Ranking and Time Sequence test

11) Blood Relations

12) Mathematical

13) Direction Sense test

14) Clock and calendar

15) Problems based on ages

16) Sitting Arrangement

17) Puzzles

18) Matrix Coding

19) Mathematical Reasoning

Analytical Reasoning

20) Logical Venn Diagrams

21) Eligibility Test

22) Syllogism

23) Statement and assumption

24)Statement and conclusions

25)Statement and arguments

26)Statement and course of action

27) Data sufficiency

28)Input-output

Non-verbal Reasoning

1) Analogy

2) Classification

3) Series

4) Mirror Image

5) Water image

6) paper folding and cutting

7) Grouping of identical Figures

8) Formation of figures

9) Counting of figures

10) Embedded Figures

11) Figure complexion

12) Figure Matrix

13) Cube and Dice

BRANCHWISE SECTION 2 ( Specially Covered All LEET)

1)ECE FOR DIPLOMA HOLDER (ALL OVER INDIA LEET COVERED)

1.ELECTRONICS INSTRUMENTS AND MEASUREMENTS

Measurements & Instrumentation, Errors, standards, accuracy precision resolution, Ammeters,

voltmeters, wattmeters and energy meters, insulation tester, earth tester, multimeter, CRO,

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measurement of V, I, phase & Frequecy on CRO, low, medium & high resistance measurment,

AC Bridges, Transducers for measurement of temperature, displacement,

2. COMMUNICATION SYSTEM

Communication System, Types of modulation, demodulation.

3.ANALOG ELECTRONICS(EDC 1&2) Analog Electronics, Semiconductor diode circuits,rectifiers, zener diode and zener diode

circuits, LED, Photo diode, BJT, FET & their configurations and characteristics, Biasing, small

signal & large signal amplifiers, OPAMPS, multi stage amplifier,oscillators,feedback, regulated

power supply.

4.DIGITAL ELECTRONICS

Digital Electronics, Number System, conversion from one to another system, Binary Arithmetic,

codes conversion & parity; Logic gates; Boolean algebra, Flip, Flop.

5.POWER ELECTRONICS

Industrial Electronics and Control, SCR, DIAC, TRIAC

6.SEMICONDUCTOR PHYSICS

Energy band formation. Band structure of conductors insulators and semiconductors. Intrinsic

and extrinsic semiconductors, effect of temperature.

2)EE FOR DIPLOMA HOLDER (ALL OVER INDIA LEET)

ELEMENTS OF ELECTRICAL ENGINEERING

1.OHM’S LAW

2. CAPACITANCE

3. ELECTRICAL AND MAGNETIC CIRCUITS

Electrical and Magnetic Circuits, EMF, Kirchhoff's laws and Faraday's Laws, Network

theorems.

4. A.C. FUNDAMENTALS AND RLC CIRCUIT

AC Circuits, RMS value, behavior of RLC elements, series and parallel circuits, series and

parallel resonance circuits.

5.TRANSFORMERS

Transformers, Introductionsto single phase and three phase transformers.

6. DC MACHINES

DC Machines, Theory, constructions and operation of DC generator and motor.

7. INDUCTION MOTOR

Induction Motor, Principle, construction and operation of three phase induction motors.

8. TRANSMISSION AND DISTRIBUTION Transmission and Distribution, Advantage of high voltage for transmission, comparison of 3

phase, single phase, 2 phase and three wire D.C.Systems

3)COMPUTER FOR DIPLOMA HOLDER (ALL OVER INDIA LEET)

ELEMENTS OF COMPUTER ENGINEERING

1. FUNDAMENTALS OF COMPUTERS

Fundamentals of Computers, Organization of Digital Computers, Data Processing, High Level

Languages, Translators, Compilers, Interpreters, algorithms, Flow Charting, Instructions,

assembly language Programming.

2. COMPUTER ORGANISATION

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Computer Organization, Overview of registers, bus organized computers, instruction set,

Instruction execution, Hard-wired and micro programmed control units, Processor

3. MEMORY ORGANISATION

Organization. Memory Organization : Cache and virtual memory, I/O organization.

4. OPERATING SYSTEMS

Operating Systems, Overview of Operating Systems, Basic functions, concept of process,

scheduling, memory management, critical section, synchronization, monitors.

5. PROGRAMMING IN C

Programming in C, Steps in Program development, flowcharting, algorithm, C Language: Data

types, Console I/O program control statements, arrays , structures, unions functions, pointers,

enumerated data types and type statement, File handling, C standard library and header files

6. COMPUTER NETWORKING

Basic of Computer networking, LAN, WAN, Internet & Application.

7. DIGITAL ELECTRONICS

Digital Electronics, Number System, conversion from one to another system, Binary Arithmetic,

codes Gray, BCD, Binary, Excess-3 codes, codes conversion & parity; Logic gates; Boolean

Algebra, Combinational ckt, Sequential ckt-Flip-Flop,counter, Register.

4)MECHANICAL STREAM FOR DIPLOMA HOLDER (ALL OVER INDIA LEET)

1. APPLIED MECHANICS

Applied Mechanics, Friction, laws of friction, friction applications, centroid of a plane area,

simple machines, screw jack, wheel & axles, system of pulleys, projectile, work, power, energy.

2. STRENGTH OF MATERIALS

Strength of materials, Stress, Strain, Hooks law, stress-strain diagram, temperature stresses,

composite section, Relation between elastic constants, ( E.C.G.) Resilience, Principal stresses,

principal planes, B.M. & S.F. diagram for simply supported and cantilevers, beams, columns &

structs.

3. THERMODYNAMICS

Thermodynamics, First law of thermodynamics, second law of thermod dynamics, zeroth law,

steam properties, Diesel cycle, otto cycle. o Modes of Heat Transfer (Conduction, Convection,

Radiation.

4. FLUID MECHANICS

Fluid Mechanics, Properties of fluid, Viscosity, Newtonian and Non-Newtonian fluids,

Bernoulli‟s Theorem, Types of Fluid flows, Dimension less numbers, Measurement of fluid flow

by the pilot tube, Venturimeter, Darcy equation.

5. THEORY OF MACHINES (TOM)

6. PRODUCTION ENGINEERING/ MANUFACTURINGPROCESSES

6.1 WORKSHOP TECHNOLOGY

Workshop Technology, Lathe- operations, turning machining Time, cutting speed, feed, Depth

of cut, Drilling, Type of drilling machines, Drilling operation, Drilling time, Milling, up milling,

down milling, milling operations, milling cutters, milling time, Shaper & Planer Working

Principle, Measuring Instruments and Gauges, Vernier Caliper, Micrometer, Sine Bar, Plug

gauges, snap gauges, ring gauges welding, Soldering, Brazing.

6.2 MATERIAL SCIENCE

Material Science, Engg. Materials, Mechanical properties of materials, hardness testing

methods, heat treatment, hardening annealing, tempering, carburzing, Normalizing.

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6.3 ENGINEERING GRAPHICS & DRAWING

Engineering Graphics & Drawing, First angle and third angle projection methods, orthographic

views, Isometric views, conventions for lines and materials, Projections of lines and solids (only

conceptual questions).

6.3.1 Foundry, Pattern and their types, molds and molding materials.

6.3.2 Plastic & their properties, various molding processes of plastic.

6.3.3 Industrial management, types of organizational structure, qualities & responsibilities of

good leader, methods of quality control, productivity.

5) AUTOMOBILE ENGINEERING Power flow in an automobile

Gear box & its types,

use and types of breaks,

types of clutches,

basic knowledge of differential,

cooling o lubrication of Engine,

types of wheels and tyres used in Automobile,

major automobile industries.

6) CIVIL ENGG. FOR DIPLOMA HOLDERS(ALL OVER INDIA LEET )

CIVIL ENGG. COURSES

Introduction to brick, raw materials for bricks, manufacturing of bricks, brick work in

foundation.

Index properties of soil, seepage of soil.

Water demand for industrial/Commercial & domestic purposes, per capita demand, various

sources of water, Treatment & Disposal of sludge

Types of foundation (Design not included), Repair & Maintenance of Buildings, Basic principles

of surveying chain surveying, Bench Mark, compass surveying, Basics of RCC (elementary

knowledge) 20 different grades of concrete, workability, mixing of concrete, compaction of

concrete

Classification & suitability of various types of doors, roofs.

Name of earth moving machinery, different types of road material, flexible & rigid pavements,

classification of bridges

Water requirement of crops, methods of irrigations

Concept/meaning/need/competencies/qualities of Entrepreneur classifications of dams & site

selection for reservoir classifications of rocks

various types of cement & their uses o Basis of Ecology, Pollution of water its causes & remedial

near, Role of non-conventional sources of energy.

7) TEXTILE ENGG. FOR DIPLOMA HOLDERS (ALL OVER INDIA LEET)

Different types of fibers, Fabrics & yarn manufacturing & performance, Weaving Technology o

Textile testing & quality control

Modern methods in yarn products

Bleaching , Dying & Printing.

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8) CHEMICAL/PRINTING ENGG FOR DIPLOMA HOLDER (ALL OVER INDIA

LEET)

Elementary knowledge of ;

Fluid Flow, Chemical process industry.

Agro based industries.

Petro chemicals Introduction of printing machines/presses, types of printing.

9) CERAMIC ENGG.FOR DIPLOMA HOLDERS (ALL OVER INDIA )

Classification of various pottery productions, ceremic material & their properties

10) FOOD TECHNOLOGY FOR DIPLOMA HOLDERS (ALL OVER INDIA )

Vitamins, cereals & Pulses milk & milk powder preservation of food process.

11) AGRICULTURE COURSES FOR DIPLOMA HOLDERS (ALL OVER INDIA )

Introduction to Farm equipment

Architecture History of Indian Architecture, building topologies.

12) FASHION DESIGN & FASHION TECHNOLOGY DIPLOMA HOLDERS

(ALL OVER INDIA LEET )

Knowledge of Fashion Technology.

History & culture.

Introduction to garment manufacturing machines & tools.


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