Duration
Discipline
Level
Affiliation
Last Updated
First Semester
Course Code | Course Title |
BSC411 | Mathematics I |
BSC412 | Physics |
BSC413 | Basic Electrical and Electronics |
BSC414 | Engineering Mechanics |
BCT415 | Computer Programming |
BCE416 | Engineering Drawing |
Second Semester
Course Code | Course Title |
BSC421 | Mathematics II |
BSC422 | Chemistry |
BSC423 | Mechanics of Solids |
BCE424 | Construction Materials |
BSC425 | Engineering Geology |
BSC426 | Mechanics of Fluids |
Third Semester
Course Code | Course Title |
BSC431 | Mathematics III |
BCE432 | Structural Analysis I |
BCE433 | Building Technology |
BCE434 | Computer Aided Drawing |
BCE434 | Engineering Survey |
BCE436 | Hydraulics |
Fourth Semester
Course Code | Course Title |
BSC441 | Statistics and Research Methodology |
BSC442 | Numerical Methods |
BCE443 | Structural Analysis II |
BCE444 | Geotechnical Engineering I |
BCE445 | Water Supply Engineering |
BCE446 | Engineering Hydrology |
Fifth Semester
Course Code | Course Title |
BCE451 | Concrete Technology |
BCE452 | Design of Steel and Timber Structures |
BCE453 | Geotechnical Engineering II |
BCE454 | Transportation Engineering I |
BCE455 | Sanitary Engineering |
BCE456 | Water Resources Engineering I |
Sixth Semester
Course Code | Course Title |
BCE461 | Design of Concrete Structures |
BCE462 | Transportation Engineering II |
BCE463 | Engineering Economics |
BCE464 | Professional Practices and Society |
BCE465 | Water Resources Engineering II |
BCE466 | Elective I |
Seventh Semester
Course Code | Course Title |
BCE471 | Earthquake Resistant Technology |
BCE472 | Project and Construction Engineering |
BCE473 | Sustainable Infrastructure Development |
BCE474 | Estimating and Valuation |
BCE475 | Elective II |
BCE476 | Engineering Project |
Eighth Semester
Course Code | Course Title |
BCE481 | Internship/Seminar |
After completing the program, graduates will be able to:
Apply mathematics, science, and engineering principles to solve complex civil engineering problems.
Design and analyze buildings, bridges, roads, foundations, and other infrastructure.
Apply structural engineering principles to reinforced concrete, steel, and other structures.
Conduct engineering surveys and interpret field and site data.
Apply geotechnical principles to soil, rock, and foundation-related problems.
Design and manage transportation, water supply, irrigation, drainage, and hydraulic systems.
Apply environmental engineering principles to develop sustainable infrastructure.
Manage construction projects, including estimation, costing, scheduling, and resource allocation.
Use engineering software, computational tools, and modern technologies for analysis and design.
Conduct laboratory experiments, field investigations, research, and engineering projects.
Demonstrate effective communication, teamwork, leadership, and problem-solving skills.
Apply professional ethics while considering public safety, environmental sustainability, and social impacts.
Pursue careers as civil engineers, structural engineers, site engineers, project engineers, transportation engineers, geotechnical engineers, water-resource engineers, construction managers, consultants, and government engineers.