# Gate Exam Syllabus For Civil Engineering 2015 Pdf Free

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You can also download it in the pdf format from the given link at the bottom of this article. Syllabus for General Aptitude GA common to all papers.

Ordinary Differential Equation ODE : First order linear and non-linear equations; higher order linear equations with constant coefficients; Euler-Cauchy equations; Laplace transform and its application in solving linear ODEs; initial and boundary value problems. Partial Differential Equation PDE : Fourier series; separation of variables; solutions of one- dimensional 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.

## Previous Exam Questions of GATE Civil Engineering - Part 1 - Simplified Learning Civil

Solid Mechanics: Bending moment and shear force in statically determinate beams; Simple stress and strain relationships; Theories of failures; Simple bending theory, flexural and shear stresses, shear centre; Uniform torsion, buckling of column, combined and direct bending stresses.

Construction Materials and Management: Construction Materials: Structural steel — composition, material properties and behaviour; 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.

## GATE Civil Cut Off Marks

Steel Structures: Working stress and Limit state design concepts; Design of tension and compression members, beams and beam- columns, column bases; Connections — simple and eccentric, beam-column connections, plate girders and trusses; Plastic analysis of beams and frames.

Fluid Mechanics: Properties of fluids, fluid statics; Continuity, momentum, energy and corresponding equations; Potential flow, applications of momentum and energy equations; Laminar and turbulent flow; Flow in pipes, pipe networks; Concept of boundary layer and its growth.

Hydraulics: 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; Channel Hydraulics — Energy-depth relationships, specific energy, critical flow, slope profile, hydraulic jump, uniform flow and gradually varied flow.

Irrigation: 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, irrigation methods; Water logging and drainage; Canal regulatory works, cross-drainage structures, outlets and escapes.

Water and Waste Water: Quality standards, basic unit processes and operations for water treatment.

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Drinking water standards, water requirements, basic unit operations and unit processes for surface water treatment, distribution of 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. Air Pollution: Types of pollutants, their sources and impacts, air pollution meteorology, air pollution control, air quality standards and limits. Noise Pollution: Impacts of noise, permissible limits of noise pollution, measurement of noise and control of noise pollution. Transportation Infrastructure: Highway alignment and engineering surveys; Geometric design of highways — cross-sectional elements, sight distances, horizontal and vertical alignments; Geometric design of railway track; Airport runway length, taxiway and exit taxiway design.

Highway Pavements: Highway materials — desirable properties and quality control tests; Design of bituminous paving mixes; Design factors for flexible and rigid pavements; Design of flexible pavement using IRC: ; Design of rigid pavements using IRC: ; Distresses in concrete pavements. Principles of surveying; Errors and their adjustment; Maps — scale, coordinate system; Distance and angle measurement — Levelling and trigonometric levelling; Traversing and triangulation survey; Total station; Horizontal and vertical curves.

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Photogrammetry — scale, flying height; Remote sensing — basics, platform and sensors, visual image interpretation; Basics of Geographical information system GIS and Geographical Positioning system GPS. Your email address will not be published.