GATE Books for Civil Engineering Low Price Buy Online
GATE Books for Civil Engineering: Civil Engineering Books for GATE Exam. We also provide details about the topics which you have to study by the aspirants for Gate Civil Engineering – CE exams. We are also providing the GATE Syllabus for Civil Engineering as shown below.
GATE Books for Civil Engineering Buy Online:
List of Best Books for Gate Civil Engineering
|1.||GATE 2017: Civil Engineering Solved Papers||Made Easy|
|2.||Gate Guide Civil Engg. 2017||GKP|
|3.||GATE Tutor 2017 Civil Engineering||Prasant Dixit|
|4.||GATE 2017 : Civil Engineering Chapterwise Solved Papers : 20 Years||Hitesh Aggarwal|
|5.||GATE 2017 CIVIL ENGINEERING||VANI INSTITUTE|
|6.||Civil Engineering Gate 2017 30 years solution||IES Master|
|7.||GATE Guide Civil Engineering 2017||Hitesh Aggarwal|
|8.||Gate Guide Civil Engg. 2017||GKP|
|9.||GATE Paper Civil Engineering 2017 (Solved Papers 2000-2016)||GKP|
Best Books for Gate Civil Engineering
- GATE CIVIL Engineering Book by Made Easy – This is one the best book on the list of best books for gate civil engineering. Made Easy publishes this book. Made Easy is also one of the best coaching institutions for gate exam. Many engineers recommend this book for the preparation of gate exam.
GATE Books For Civil Engineering By Made Easy Publication:
GATE 2018: Civil Engineering Solved Papers Book by Made Easy Editorial Board. Book Published in 2017.
Best Books For Gate In Civil Engineering-Top Gate Books For Civil Engineering
The new edition of GATE 2018 Solved Papers : Civil Engineering has been fully revised, updated and edited. The whole book has been divided into topic wise sections. At the beginning of each subject, analysis of previous papers are given to improve the understanding of subject. This book also contains the conventional questions asked in GATE before 2003.
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Gate Guide Book For Civil Engineering-Gate Text Books For Civil Engineering
A Handbook for Civil Engineering Book by Made Easy Editorial Board.
The Handbook of Civil Engineering provides the crux of Civil Engineering in a concise form to the student to brush up the formulae and important concepts required for IES, GATE, PSUs and other competitive examinations.
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Civil Engineering GATE 2018 Book by Prasant Dixit.
The Engineering Mathematics section has been divided into Linear Algebra, Calculus, Differential Equations, Complex Variables, Probability and Statistics, Numerical Methods and Transform Theory whereas the Civil Engineering section has been divided into twelve chapters namely Mechanics, Structure Analysis, Concrete Structure, Steel Structure, Geotechnical Engineering, Fluid Mechanics, Hydraulics, Engineering Hydrology, Water Resource Engineering, Environmental Engineering, Transportation Engineering and Surveying.
Gate Guide Book For Civil Engineering
Also unsolved practice questions have been covered under the Unit Exercise sections.
The exercises contain questions as per the GATE pattern i. e. 1 mark questions, 2 marks questions and common data and linked answer questions. The books contain Unitwise Numerical Answer Type Questions and newly added topics in questions. The book also contains last six years’ (2012-2017) solved papers of original online GATE Civil Engineering to give the aspirants an insight into the trends of questions asked in GATE Examination.
Gate Paper Civil Engineering 2018 (Solved Papers 2000-2017)2017 Book by GKP
GATE Civil Engineering Syllabus
Section 1: Engineering Mathematics
Linear Algebra: Matrix algebra, Systems of linear equations, Eigen values and eigen vectors.
Calculus: Functions of single variable, Limit, continuity and differentiability, Mean value theorems, Evaluation of definite and improper integrals, Partial derivatives, Total derivative, Maxima and minima, Gradient, Divergence and Curl, Vector Line, Surface and Volume integrals, identities, Directional derivatives, Stokes, Gauss and Green’s theorems.
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Partial Differential Equation (PDE): Fourier series; separation of variables; solutions of onedimensional diffusion equation; first and second order one-dimensional wave equation and two-dimensional Laplace equation.
Probability and Statistics: Definitions of probability and sampling theorems; Conditional probability; Discrete Random variables: Poisson and Binomial distributions; Continuous random variables: normal and exponential distributions; Descriptive statistics – Mean, median, mode and standard deviation; Hypothesis testing.
Numerical Methods: Accuracy and precision; error analysis. Numerical solutions of linear and non-linear algebraic equations; Least square approximation, Newton’s and Lagrange polynomials, numerical differentiation, Integration by trapezoidal and Simpson’s rule, single and multi-step methods for first order differential equations.
Section 2: Structural Engineering
Engineering Mechanics: System of forces, free-body diagrams, equilibrium equations; Internal forces in structures; Friction and its applications; Kinematics of point mass and rigid body; Centre of mass; Euler’s equations of motion; Impulse-momentum; Energy methods; Principles of virtual work.
Solid Mechanics: ; Simple stress and strain relationships; Theories of failures; Simple bending theory Bending moment and shear force in statically determinate beams, flexural and shear stresses, shear centre; Uniform torsion, buckling of column, combined and direct bending stresses.
Structural Analysis: Displacement methods: Slope deflection and moment distribution methods; Influence lines; Statically determinate and indeterminate structures by force/ energy methods; Method of superposition; Analysis of trusses, arches, beams, cables and frames; Stiffness and flexibility methods of structural analysis.
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Construction Materials and Management: Construction Management: Types of construction projects; Tendering and construction contracts; Rate analysis and standard specifications; Cost estimation; Project planning and network analysis – PERT and CPM. Construction Materials: Structural steel – composition, material properties and behavior; Concrete – constituents, mix design, short-term and long-term properties; Bricks and mortar; Timber; Bitumen.
Concrete Structures: Working stress, Limit state and Ultimate load design concepts; Design of beams, slabs, columns; Bond and development length; Prestressed concrete; Analysis of beam sections at transfer and service loads.
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Steel Structures: Connections – simple and eccentric, beam-column connections, plate girders and trusses; Plastic analysis of beams and frames.
Working stress and Limit state design concepts; Design of tension and compression members, beams and beam- columns, column bases;
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Section 3: Geotechnical Engineering
Soil Mechanics: flow, flow nets, uplift pressure, piping; Principle of effective stress, capillarity, seepage force and quicksand condition; Compaction in laboratory and field conditions; One dimensional consolidation, time rate of consolidation; Mohr’s circle, stress paths, effective and total shear strength parameters, characteristics of clays and sand Origin of soils, soil structure and fabric; Three-phase system and phase relationships, index properties; Unified and Indian standard soil classification system; Permeability – one dimensional flow, Darcy’s law; Seepage through soils – two-dimensional.
Best Books For Gate Preparation In Civil Engineering -GATE Books for Civil Engineering
Foundation Engineering: Deep foundations – types of piles, dynamic and static formulae, load capacity of piles in sands and clays, pile load test, negative skin friction. Boussinesq’s and Westergaard’s theories, pressure bulbs; Shallow foundations – Terzaghi’s and Meyerhoff’s bearing capacity theories, effect of water table; Combined footing and raft foundation; Contact pressure; Sub-surface investigations – scope, drilling bore holes, sampling, plate load test, standard penetration and cone penetration tests; Earth pressure theories – Rankine and Coulomb; Stability of slopes – finite and infinite slopes, method of slices and Bishop’s method; Stress distribution in soils – Settlement analysis in sands and clays;
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Section 4: Water Resources Engineering
Fluid Mechanics: Laminar and turbulent flow; Flow in pipes, pipe networks; Concept of boundary layer and its growth. Properties of fluids, fluid statics; Continuity, momentum, energy and corresponding equations; Potential flow, applications of momentum and energy equations;
Hydraulics: Channel Hydraulics – Energy-depth relationships, specific energy, critical flow, slope profile, hydraulic jump, uniform flow and gradually varied flow
Forces on immersed bodies; Flow measurement in channels and pipes; Dimensional analysis and hydraulic similitude; Kinematics of flow, velocity triangles; Basics of hydraulic machines, specific speed of pumps and turbines;
Hydrology: , reservoir capacity, reservoir and channel routing, surface run-off models, ground water hydrology – steady state well hydraulics and aquifers; Application of Darcy’s law.
Hydrologic cycle, precipitation, evaporation, evapo-transpiration, watershed, infiltration, unit hydrographs, hydrograph analysis, flood estimation and routing
Irrigation: irrigation methods; Water logging and drainage; Canal regulatory works, cross-drainage structures, outlets and escapes. Duty, delta, estimation of evapo-transpiration; Crop water requirements; Design of lined and unlined canals, head works, gravity dams and spillways; Design of weirs on permeable foundation; Types of irrigation systems,
Gate Exam Books For Civil Engineering
Section 5: Environmental Engineering
Water and Waste Water: Sewage and sewerage treatment, quantity and characteristics of wastewater. Primary, secondary and tertiary treatment of wastewater, effluent discharge standards. Domestic wastewater treatment, quantity of characteristics of domestic wastewater, primary and secondary treatment. Unit operations and unit processes of domestic wastewater, sludge disposal. Quality standards, basic unit processes and operations for water treatment. Drinking water standards, water requirements, basic unit operations and unit processes for surface water treatment, distribution of water.
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Air Pollution: air pollution meteorology, air pollution control, air quality standards and limits.Types of pollutants, their sources and impacts.
Municipal Solid Wastes: Characteristics, generation, collection and transportation of solid wastes, engineered systems for solid waste management (reuse/ recycle energy recovery, treatment and disposal).
Noise Pollution: Measurement of noise and control of noise pollution, Impacts of noise, permissible limits of noise pollution.
Section 6: Transportation Engineering
Transportation Infrastructure: Horizontal and vertical alignments; Geometric design of railway track; Airport runway length, taxiway and exit taxiway design, Highway alignment and engineering surveys; Geometric design of highways – cross-sectional elements, sight distances.
Highway Pavements: Design of flexible pavement using IRC: 37-2012; Design of rigid pavements using IRC: 58-2011; Distresses in concrete pavements. Highway materials – desirable properties and quality control tests; Design of bituminous paving mixes; Design factors for flexible and rigid pavements;
Traffic Engineering: statistical analysis of traffic data; Microscopic and macroscopic parameters of traffic flow, fundamental relationships; Control devices, signal design by Webster’s method; Types of intersections and channelization; Highway capacity and level of service of rural highways and urban roads. Traffic studies on flow, speed, travel time – delay and O-D study, PCU, peak hour factor, parking study, accident study and analysis,
Section 7: Geometrics Engineering
Traversing and triangulation survey; Total station; Horizontal and vertical curves. Principles of surveying; Errors and their adjustment; Maps – scale, coordinate system; Distance and angle measurement – Levelling and trigonometric levelling;
Basics of Geographical information system (GIS) and Geographical Positioning system (GPS). Photogrammetric – scale, flying height; remote sensing – basics, platform and sensors, visual image interpretation;