BARC OCES Syllabus 2023 (New) Scientific Officer Exam Pattern PDF Download

BARC OCES Syllabus & Exam Pattern PDF: The Bhabha Atomic Research Centre has released BARC OCES Syllabus on its Official Web portal @ barc.gov.in. The BARC Scientific Officer Exam Pattern is uploaded on this page for the sake of the Candidates. Candidates who had applied for BARC Jobs and preparing forScientific Officer Exam 2023 should check this article for BARC Syllabus and test pattern PDF. Here we have uploaded the Subject Wise Syllabus and Detailed Exam Pattern to help the Aspirants in their Exam Preparation. So all the Applicants are advised to read this article completely and Download the BARC Scientific Officer Syllabus and Exam Pattern for the Below Section for free of cost.

BARC OCES Syllabus 2023 Highlights

Organization Name Bhabha Atomic Research Centre
Post Name Scientific Officer
Category Syllabus
Official Website barc.gov.in

Check the Latest BARC OCES Exam Pattern 2023

Name Of The Subjects Type Of the Exam Number Of Questions Maximum No. Of Marks Time Duration
Engineering/ Science discipline Multiple Choice Questions 100 300 Marks (For Each Correct Answer 3 Marks) 120 Minutes

Download Subject Wise BARC OCES Exam Syllabus 2023 PDF

Download BARC OCES Syllabus & Exam Pattern 2023 PDF Here: The Candidates who have been searching for the BARC OCES Syllabus can get a complete Syllabus from this article……….So the candidates who have applied for the BARC OCES 2023 and preparing for the BARC OCES Prelims and Mains Exam 2023 are advised to take a look at this page now. Here the BARC OCES Syllabus & Exam Pattern are available in detail.                                                                

Engineering/ Science discipline

Civil Engineering

  • Engineering Mechanics: Internal forces in structures; Frictions and their applications; Centre of mass; System of forces, free-body diagrams (FBD), equilibrium equations; Internal forces in structures, frictions and their applications, free vibrations from an SDOF system.
  • Transportation Engineering: Transportation infrastructure, Railway Track Geometric Design- Speed and Cant, length of an airport runway, its computations, and modifications; the design of a taxiway and an exit taxiway.
  • Hydrology & Irrigation: Hydrologic cycles, Precipitation, evaporation, evapotranspiration, infiltration, unit hydrographs, hydrograph analysis, reservoir capacity, flood estimation, and routing, surface run-off models, groundwater hydrology- steady state well hydraulics and aquifers; Darcy’s Law in Practice, Irrigation system types, gravity dams and spillways; canals, lined and unlined, weir design on permeable foundations, and cross drainage systems.
  • Engineering Mathematics: Calculus, Linear Algebra, Differential Equations, Complex variables, probability and statistics, and numerical methods.
    Structural Analysis: Force/energy methods for statically determinate and indeterminate structures, superposition method; Trusses, arches, beams, cables, and frames.
  • Environmental Engineering: Waste and wastewater quality and treatment, water quality index, sewerage system design, the quantity of domestic wastewater, air pollution, primary and secondary treatment, effluent discharge standards, Municipal solid waste, sludge disposal, waste distribution system and Reuse of treated sewage for different applications.
  • Construction Materials & Concrete Structures: Construction materials, Structural Steel – Composition, material properties and behavior, PERT, CPM, mix designs, concepts of working stress and limit state design, beam, slab, and column design; bond and development length; prestressed concrete beams.
  • Design of Steel Structures: Design considerations for working stress and limit states; Tension and compression members, beams and beam-columns, and column bases, simple and eccentric connections, beam-column connections, plate girders, and trusses; plastic analysis concept – beams and frames.

Mechanical Engineering

 

 

  • Engineering Mechanics: Friction and its applications, such as rolling friction, belt-pulley, brakes, clutches, screw jack, wedge, vehicles, and others; trusses and frames; virtual work; kinematics and dynamics of rigid bodies in plane motion; impulse and momentum (linear and angular) and energy formulations; Lagrange’s equation.
  • Heat transfer: Heat transfer modes; one-dimensional heat conduction, resistance concept and electrical analogy, heat transfer through fins; unsteady heat conduction, lumped parameter system, Heisler’s charts; thermal boundary layer, dimensionless parameters in free and forced convective heat transfer, heat transfer correlations for flow over flat plates and through pipes, effect of turbulence; heat exchanger performance, LMTD and NTU methods; radiative heat transfer, Stefan-Boltzmann methods; radiative heat transfer.
  • Industrial Engineering: Casting, forming, joining, machining and machine tool operations, metrology and inspection, inventory control, and operations research.
    Engineering Mathematics: Calculus, Linear Algebra, Differential Equations, Complex variables, probability and statistics, and numerical methods.
  • Strength of Materials: Poisson’s ratio, elastic constants, and stress and strain Shear force and bending moment diagrams; bending and shear stresses; concept of shear centre; deflection of beams; torsion of circular shafts; Mohr’s circle for plane stress and plane strain; thin cylinders; deflection of beams; torsion of circular shafts; Euler’s theory of columns; energy methods.
  • Thermodynamics: Thermodynamic systems and processes; properties of pure substances; behavior of ideal and real gases; zeroth and first laws of thermodynamics; work and heat calculations in various processes; second law of thermodynamics; thermodynamic property charts and tables; availability and irreversibility; thermodynamic relations.
  • Machine Design: Design for static and dynamic loads; failure theories; fatigue strength and the SN diagram; principles of machine element design, including bolted, riveted, and welded connections; shafts, gears, rolling, sliding contact bearings, brakes and clutches, and springs.
  • Theory of Machines: Plane mechanism displacement, velocity, and acceleration analysis; linkage dynamic analysis; cams; gears and gear trains; flywheels and governors; reciprocating and rotating mass balancing; gyroscope.

Electronics and Communication Engineering

  • Engineering Mathematics
  • Network Analysis
  • Signals and Systems
  • Analog Electronics
  • Electronic Devices and Circuits
  • Electromagnetics
  • Computer Engineering
  • Control System
  • Digital Electronics
  • Measurements and Instrumentation

Electrical & Electronics Engineering

  • Control System
  • Measurements and Instrumentation
  • Analog Electronics
  • Electrical and Electronics Devices
  • Engineering Mathematics
  • Electrical Machines
  • Power Electronics
  • Signals and Systems
  • Electromagnetics
  • Network Theory, etc.

Computer Science & Engineering

  • Operating System
  • Computer Networks
  • Digital Logic
  • Programming and Data Structures
  • Engineering Mathematics
  • Discrete Mathematics
  • Software Engineering
  • Databases
  • Algorithms
  • Computer Devices, etc.

BARC OCES Syllabus – Frequently Asked Questions(FAQ)

What is BARC OCES Syllabus??

Quantitative Ability, Communication Ability, English Comprehension, Analytical Ability, General Knowledge and Current affairs

What is the Exam Pattern for BARC OCES2023?

The Detailed BARC OCESExam Pattern 2023 is available @ Questionpapersonline.com

Where can I Get the BARC OCES Syllabus PDF?

The BARC OCES Syllabus PDF available @ barc.gov.in

What are the Total Marks for BARC OCES Exam?

The BARC OCES will be Conducted for 300 Marks

How many Questions will be asked in the BARC OCES Exam ?

A Total of 100 Questions will be asked in the BARC OCES Exam