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UKM Civil Engineering

UKM Civil Engineering

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Civil engineering is the profession of planning and constructing public-use structures such as dams, bridges, aqueducts, canals, highways, power plants, sewerage systems, and other infrastructure.

Bachelor of Civil Engineering

The Civil Engineering Department provides a Bachelor of Civil Engineering with Honors program. Their program is internationally renowned, and it is listed in the top 200 in the QS World University Rankings.

This program’s purpose is to create Engineers in the discipline of Engineering. A dynamic, innovative, and moral public capable of adapting to an international and global work environment. Bachelor of civil engineering tuition fees for academic year 2023-2024 is 21,500 Ringgit.

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Master of Civil Engineering

This program is intended to produce engineers that have a global perspective, good technical capability, are inventive, and value life-long learning.

The curriculum offers a diverse range of four traditional civil engineering fields: structural engineering and composite construction, sustainable water resources, geotechnical engineering, and transportation engineering.

Prospective students are provided options for enrolling in the program based on their needs, interests, and enthusiasm. Master of civil engineering tuition fees for academic year 2023-2024 is 8,500 Ringgit per year.

Program Structure

  • Research Methodology and Innovation
  • Management and Project Implementation
  • Advanced Theory of Structures
  • Finite Element Method
  • Extreme Loading on Structures
  • Advanced Prestressed Concrete
  • Forensic, Assessment and Maintenance of
    Concrete Structures
  • Bridge Engineering
  • Slopes and Retaining Structures
  • Surface Water Hydrology
  • Natural Water Chemistry and Ecology
  • Sediment Transport
  • Stormwater Management
  • Advanced Ground Water Engineering
  • Geospatial Engineering
  • Sustainable Water Management and
    Engineering
  • River Engineering

Courses

Research Methodology and Innovation: This course equips civil engineering students with research skills, encouraging innovation in solving complex engineering problems. It focuses on research design, methods, data analysis, and the application of innovative solutions in civil engineering.
Management and Project Implementation: This course delves into project management principles, techniques, and software relevant to the civil engineering industry. It covers topics like project planning, scheduling, controlling, and implementation within the scope, cost, and time constraints.
Advanced Theory of Structures: This course explores advanced principles and theories of structural engineering, enhancing students’ understanding of how different structures respond to various loads. It covers structural stability, dynamics, and analysis of complex structures.
Finite Element Method: This course introduces students to the Finite Element Method, a powerful tool for solving differential equations that model real-world physical phenomena. The course focuses on the application of the method in structural engineering, fluid mechanics, and heat transfer problems.
Extreme Loading on Structures: This course examines the behavior of structures under extreme conditions like earthquakes, wind, and blast loads. It covers the design and analysis techniques for structures to withstand such extreme loading scenarios.
Advanced Prestressed Concrete: This course goes deeper into the design and analysis of prestressed concrete structures. It covers advanced concepts like time-dependent effects, composite sections, and the design of various prestressed concrete members.
Forensic, Assessment, and Maintenance of Concrete Structures: This course discusses the principles and methods of assessment, repair, and maintenance of concrete structures. It also introduces students to forensic investigations related to structural failures.
Bridge Engineering: This specialized course covers the design, construction, and maintenance of bridges. It explores different types of bridges and the considerations involved in their design and construction, including material selection, load considerations, and aesthetic factors.
Slopes and Retaining Structures: This course covers the principles and practices of designing and analyzing slopes and retaining structures. It focuses on stability analysis, failure mechanisms, and remedial measures for both man-made and natural slopes.
Surface Water Hydrology: This course covers the principles of surface water hydrology, focusing on the processes of precipitation, evaporation, infiltration, and runoff. It also introduces students to flood forecasting and management.
Natural Water Chemistry and Ecology: This course examines the chemical and biological processes in natural water systems. It covers topics like water quality, water pollution, and the impact of human activities on water ecology.
Sediment Transport: This course delves into the principles and processes of sediment transport in water bodies. It discusses topics like erosion, sediment transport mechanics, and sediment control strategies.
Stormwater Management: This course focuses on methods and strategies for managing stormwater runoff to prevent flooding and protect water quality. It covers the design and implementation of stormwater management systems.
Advanced Ground Water Engineering: This course offers an in-depth understanding of the occurrence, movement, and extraction of groundwater. It covers topics like well hydraulics, groundwater modeling, and groundwater management strategies.
Geospatial Engineering: This course introduces students to geospatial technologies and their applications in civil engineering, covering topics like geographic information systems (GIS), remote sensing, and spatial data analysis.
Sustainable Water Management and Engineering: This course focuses on sustainable strategies for managing water resources. It explores topics like water conservation, wastewater treatment, and the integration of sustainability principles into water engineering projects.
River Engineering: This course examines the principles and practices of river engineering. It covers river dynamics, river management and restoration techniques, and the design and construction of river structures.

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