The Airports Authority of India has released the syllabus and weightage for the Computer Based Test for Manager (Engineering–Civil) under Advertisement No. 12/2026/CHQ/DR-CBT. Candidates interested in the AAI Manager Civil Recruitment can check the important dates, CBT pattern, detailed subject-wise syllabus and application link below.
Apply online: Click here to submit the application
AAI Manager Civil Recruitment 2026: Overview
| Particulars | Details |
|---|---|
| Organization | Airports Authority of India (AAI) |
| Post | Manager (Engineering–Civil) |
| Advertisement number | 12/2026/CHQ/DR-CBT |
| Selection test | Computer Based Test (CBT) |
| Total marks | 120 |
| Exam duration | 2 hours |
| Application mode | Online |
Important Dates
Candidates should complete the online registration and fee payment well before the closing date.
| Important event | Date |
| Commencement of online registration | 8 August 2026 |
| Last date for online registration | 7 September 2026 |
| Last date for editing application details | 7 September 2026 |
| Online fee-payment period | 8 August 2026 to 7 September 2026 |
| Last date for printing the application | 22 September 2026 |
AAI Manager Civil Exam Pattern 2026
The Computer Based Test carries 120 marks and has a duration of two hours. The paper is divided into two parts.
| Part | Subjects | Weightage |
| Part A | General Knowledge, General Intelligence, General Aptitude, English, etc. | 30% |
| Part B | Subjects related to the prescribed educational qualification | 70% |
Civil Engineering subjects account for the major share of the test. Candidates should therefore combine technical preparation with regular practice in aptitude, reasoning, English and general knowledge.
Detailed AAI Manager Civil Syllabus 2026
1. Engineering Mechanics, Strength of Materials and Structural Analysis
Engineering Mechanics
Units and dimensions and SI units
Vectors; concepts of force, particle and rigid body
Concurrent, non-concurrent and parallel forces in a plane
Moment of force, free-body diagrams and equilibrium
Principle of virtual work and equivalent force systems
Strength of Materials
Simple stress and strain and elastic constants
Axially loaded compression members
Shear force and bending moment
Theory of simple bending and shear-stress distribution across sections
Beams of uniform strength
Deflection of beams using Macaulay’s method, Mohr’s moment-area method, conjugate-beam method and unit-load method
Torsion of shafts
Elastic stability of columns; Euler, Rankine and secant formulae
Structural Analysis
Castigliano’s first and second theorems
Unit-load method and consistent deformation applied to beams and pin-jointed trusses
Slope-deflection and moment-distribution methods
Rolling loads and influence lines for shear force and bending moment
Maximum shear force and bending moment due to moving loads
Influence lines for simply supported plane pin-jointed trusses
Three-hinged, two-hinged and fixed arches; rib shortening and temperature effects
Matrix methods: force and displacement methods for indeterminate beams and rigid frames
Plastic analysis of beams and frames; statical and mechanism methods
Unsymmetrical bending, moment and product of inertia, neutral and principal axes, and bending stresses
2. Design of Structures
Structural Steel Design
Factors of safety and load factors
Riveted, bolted and welded joints and connections
Design of tension and compression members
Built-up beams, riveted and welded plate girders and gantry girders
Stanchions with battens and lacings
Concrete and Masonry Structures
Concrete mix-design concepts
Reinforced-concrete design using working-stress and limit-state methods
Relevant IS Code recommendations
Design of one-way and two-way slabs and staircase slabs
Simple and continuous rectangular, T and L beams
Compression members under direct and eccentric loading
Cantilever and counterfort retaining walls
Design requirements for rectangular and circular water tanks resting on the ground
Prestressed-concrete methods, systems, anchorages, flexural analysis and design based on working stress, and losses of prestress
Brick-masonry design as per IS Codes
3. Geotechnical Engineering
Soil types and structure, gradation, particle-size distribution and consistency limits
Water in soil, effective stress, pore-water pressure and permeability
Field and laboratory determination of permeability
Seepage pressure and quicksand conditions
Shear strength and the Mohr–Coulomb concept
Laboratory and field compaction tests
Compressibility, consolidation theory and settlement analysis
Earth-pressure theories and retaining-wall analysis
Sheet piles and braced excavations
Bearing capacity, field tests and settlement analysis
Stability of earth slopes
Subsurface soil-exploration methods
Foundation types, selection criteria and design criteria
Stress distribution below footings and piles, pile-group action and pile-load tests
Ground-improvement techniques and soil stabilization
4. Construction Technology, Equipment, Planning and Management
Construction Materials and Technology
Properties and uses of stones, bricks, tiles, lime and cement
Mortars and concrete
Ferrocement, fibre-reinforced concrete, high-strength concrete and PPC
Brick, stone and block masonry principles, detailing and strength
Plastering, pointing, flooring and roofing
Common repairs in buildings
Functional planning of residential and special-use buildings
Building-code provisions
Estimation and Construction Equipment
Detailed and approximate estimation
Specification writing, rate analysis and valuation of real property
Earthwork and concreting machinery and their specific uses
Equipment-selection factors and operating costs
Construction Planning and Management
Construction activities, schedules and organization of the construction industry
Quality-assurance principles
CPM and PERT network analysis
Construction monitoring, cost optimization and resource allocation
5. Surveying and Transportation Engineering
Surveying
Methods and instruments for measuring distance and angles
Plane-table surveying, traverse surveying and levelling
Triangulation, contouring and topographical maps
Basic principles of photogrammetry and remote sensing
Highway Engineering
Highway alignment, classification, geometric-design elements and standards
Flexible- and rigid-pavement structures and design principles
Construction methods and material standards for stabilized soil, WBM, bituminous works and cement-concrete roads
Pavement joints
Road surface and subsurface drainage and culverts
Pavement distress and strengthening through overlays
6. Environmental Engineering
Water Supply and Treatment
Forecasting water demand
Water impurities and their significance
Physical, chemical and bacteriological analysis
Waterborne diseases and potable-water standards
Water intakes
Coagulation, flocculation and sedimentation
Slow, rapid and pressure filters
Chlorination, softening, and removal of taste, odour and salinity
Sewerage and Wastewater Treatment
Domestic and industrial wastewater and storm sewage
Separate and combined sewerage systems
Flow through and design of sewers
BOD, COD, solids, dissolved oxygen, nitrogen and TOC
Disposal standards for normal watercourses and land
Treatment units and chambers, sedimentation tanks, trickling filters, oxidation ponds and activated-sludge process
Septic tanks, sludge disposal and wastewater recycling
Solid Waste and Environmental Pollution
Rural and urban solid-waste collection and disposal
Management of long-term environmental effects
Sustainable development and waste disposal
Environmental-impact assessment for thermal power plants, mines and river-valley projects
Air pollution and pollution-control Acts
7. Basic Computer Software Usage
MS Word
MS Excel
MS PowerPoint
Additional Topics
Schedule of Rates, Estimation and Codes
CPWD, PWD and MES Schedule of Rates
Estimation and bar-bending schedules
Knowledge of the National Building Code and IS Codes
Analysis of Rates and Specifications
Methodology of Analysis of Rates (AOR)
Market-rate items
Vendor quotations
Specifications of common items
Construction Contracts
Item-rate, lump-sum and EPC contracts
Statutory provisions of contracts
Labour laws
Quality Control and Assurance
Rigid pavement or PQC work
Flexible or bituminous pavement work
Quality control for bricks, aggregates, sand, steel, cement, glass and other important building materials
Project Management
MS Project and Primavera
Schedule revision
Critical activities
Milestones
Green Buildings
Basic concepts of rating systems such as GRIHA and LEED
Environmental clearance
Solid- and liquid-waste management
Preparation Tips
Give priority to Part B because technical subjects carry 70% weightage.
Prepare short revision notes for formulas, IS Code provisions and frequently tested concepts.
Practise numerical questions from Strength of Materials, Structural Analysis, RCC, Steel, Geotechnical Engineering, Surveying and Environmental Engineering.
Revise the additional practical topics, especially SOR, rate analysis, contracts, quality control, project management and green-building ratings.
Attempt timed mock tests to improve accuracy and complete the 120-mark paper within two hours.
AAI Manager Civil Recruitment 2026 – Full Advertisement Details
For complete details about AAI Manager (Engineering–Civil) Recruitment 2026, including vacancy details, required educational qualifications, experience criteria, age limit, selection process and other important information, read our detailed article on AAI Manager Civil Recruitment 2026.
Download AAI Manager Civil Syllabus PDF
💡 Final Thoughts
The AAI Manager Civil Revruitment 2026 CBT gives 70% weightage to qualification-related Civil Engineering subjects. Candidates should apply by 7 September 2026, cover every technical and additional topic in the official syllabus, and practise full-length mock tests before the examination.