Overall SDG Alignment Evaluation:
The Bachelor of Engineering in Civil Engineering program is holistically and fundamentally aligned with the Sustainable Development Goals by training professionals who design, build, and maintain the foundational infrastructure of society. The curriculum's philosophy, which emphasizes technical competence, professional ethics, and the application of engineering principles to serve society, makes it a powerful contributor to sustainable development. The program is a cornerstone of SDG 9 (Industry, Innovation, and Infrastructure) and SDG 11 (Sustainable Cities and Communities), with every core course—from structural analysis and soil mechanics to transportation and construction management—being critical for building resilient, sustainable, and inclusive infrastructure. It directly addresses SDG 6 (Clean Water and Sanitation) through comprehensive training in hydraulics, hydrology, and water resources engineering. Furthermore, the curriculum's focus on environmental engineering, professional ethics, and safety contributes to SDG 13 (Climate Action), SDG 16 (Peace, Justice, and Strong Institutions), and SDG 8 (Decent Work and Economic Growth). As a professional engineering program, it is a flagship of SDG 4 (Quality Education) and is built upon extensive industry partnerships, embodying the spirit of SDG 17.
Alignment Summary: The program supports good health through its focus on environmental engineering. By designing systems for water supply, wastewater treatment, and solid waste management, civil engineers create the public health infrastructure that is essential for preventing disease and promoting well-being.
Course Code | Course Title | Alignment Rationale |
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CE413601 | Environmental Engineering | Directly supports good health by providing the engineering principles for water and wastewater treatment systems, which are critical for preventing waterborne diseases (Target 3.9). |
Alignment Summary: This professional engineering program provides a high-quality, specialized education that equips students with the advanced technical and analytical skills required for a demanding profession. Through a rigorous curriculum that combines theory, laboratory work, and cooperative education, it ensures graduates are competent, skilled professionals capable of lifelong learning.
Course Code | Course Title | Alignment Rationale |
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CE410801 | Civil Engineering Project | Enhances education for sustainable development by enabling students to conduct a comprehensive design or research project, applying their knowledge to solve real-world engineering problems (Target 4.7). |
EN014002 | Engineering Cooperative Education | Provides inclusive and equitable quality education through extensive, supervised professional work experience, ensuring students acquire the technical and vocational skills for employment (Target 4.4). |
Alignment Summary: This program is central to ensuring the availability and sustainable management of water and sanitation for all. The curriculum provides comprehensive training in water resources engineering, including the design of water supply systems, irrigation networks, flood control structures, and wastewater treatment facilities.
Course Code | Course Title | Alignment Rationale |
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CE213501 | Hydraulics | Is fundamental to water management, providing the principles of water flow in pipes and open channels, which is essential for designing water infrastructure (Target 6.4). |
CE413506 | Water Resources Engineering | Directly supports the integrated management of water resources by focusing on the planning, design, and operation of water supply, irrigation, and drainage systems (Target 6.5). |
CE413601 | Environmental Engineering | Is a cornerstone of sanitation, covering the principles and design of water and wastewater treatment plants to ensure water is safe and to protect water-related ecosystems (Target 6.3 & 6.6). |
Alignment Summary: The curriculum contributes to clean energy by providing the civil engineering expertise required for energy infrastructure. This includes the design of foundations for wind turbines, the structural design of power plants, and the construction of hydropower dams.
Course Code | Course Title | Alignment Rationale |
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CE413506 | Water Resources Engineering | Contributes to increasing the share of renewable energy by covering the principles of hydropower development, a major source of clean energy (Target 7.2). |
Alignment Summary: The program is a direct driver of economic growth, as infrastructure development is a primary engine of economic activity. It promotes decent work by instilling the principles of construction safety, project management, and professional ethics, preparing graduates to lead productive and safe construction projects.
Course Code | Course Title | Alignment Rationale |
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CE413801 | Construction Management | Supports higher levels of economic productivity by teaching the principles of efficient management of construction projects, which are a major source of employment (Target 8.2). |
EN010003 | Professional and Ethical Practice | Promotes decent work by ensuring graduates understand and adhere to the ethical and professional standards that protect labor rights and promote safe working environments (Target 8.8). |
Alignment Summary: This program is the very definition of building industry, innovation, and infrastructure. The entire curriculum is focused on the design, construction, and maintenance of quality, reliable, sustainable, and resilient infrastructure, including roads, bridges, buildings, and water systems, which form the backbone of all economic activity.
Course Code | Course Title | Alignment Rationale |
---|---|---|
CE213302 | Structural Analysis I | Is fundamental to developing resilient infrastructure, providing the methods to analyze the forces in structures to ensure they are safe and stable (Target 9.1). |
CE313303 | Reinforced Concrete Design | Directly supports the development of quality and reliable infrastructure by teaching how to design the most common type of structural components (Target 9.1). |
CE313702 | Transportation Engineering | Focuses on the planning, design, and operation of transportation infrastructure like highways, which is essential for industrial and economic development (Target 9.1). |
CE213401 | Soil Mechanics | Is critical for all infrastructure projects, as it provides the knowledge to ensure that structures are built on stable ground, promoting resilience and sustainability (Target 9.4). |
Alignment Summary: This program is essential for making cities and human settlements inclusive, safe, resilient, and sustainable. Civil engineers design and build all the critical urban infrastructure, including transportation systems, water and sanitation networks, and buildings, and are responsible for urban planning and disaster risk reduction.
Course Code | Course Title | Alignment Rationale |
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CE313702 | Transportation Engineering | Supports inclusive and sustainable urbanization by focusing on the design of efficient and safe transportation systems for cities and communities (Target 11.2). |
CE413601 | Environmental Engineering | Contributes to reducing the adverse per capita environmental impact of cities by designing systems for waste management and pollution control (Target 11.6). |
CE213401 | Soil Mechanics | Is crucial for making human settlements safe by assessing ground conditions to prevent structural failures and mitigate geohazards like landslides (Target 11.5). |
Alignment Summary: The curriculum promotes responsible production patterns by teaching the efficient use of construction materials and the management of construction waste. The principles of engineering economy and project management are key to optimizing resource use in large-scale infrastructure projects.
Course Code | Course Title | Alignment Rationale |
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CE413801 | Construction Management | Promotes the sustainable management and efficient use of natural resources by teaching methods to plan and control the use of materials on construction sites, thereby reducing waste (Target 12.2). |
Alignment Summary: The program addresses climate action by training engineers to design infrastructure that is resilient to climate-related hazards like floods and storms. The study of hydrology and water resources engineering is crucial for strengthening the adaptive capacity of communities to climate change.
Course Code | Course Title | Alignment Rationale |
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CE413506 | Water Resources Engineering | Strengthens resilience and adaptive capacity to climate-related hazards and natural disasters by focusing on the design of flood control and drainage systems (Target 13.1). |
Alignment Summary: The program contributes to the conservation of aquatic ecosystems through its focus on environmental engineering. By designing systems to treat wastewater and manage stormwater runoff, civil engineers help to prevent land-based pollution from reaching and harming coastal and marine environments.
Course Code | Course Title | Alignment Rationale |
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CE413601 | Environmental Engineering | Helps to prevent and significantly reduce marine pollution of all kinds, in particular from land-based activities, by teaching how to manage and treat wastewater before it is discharged into waterways (Target 14.1). |
Alignment Summary: The curriculum supports the sustainable use of terrestrial ecosystems by providing expertise in soil mechanics and foundation engineering. This knowledge is essential for ensuring that land is used in a way that prevents soil degradation, erosion, and landslides.
Course Code | Course Title | Alignment Rationale |
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CE213401 | Soil Mechanics | Directly supports the goal to combat desertification and restore degraded land and soil by providing the engineering principles to ensure soil stability and prevent erosion (Target 15.3). |
Alignment Summary: The program contributes to building strong institutions by instilling a deep understanding of professional ethics and legal responsibilities. This is fundamental to creating an engineering and construction industry that operates with accountability and transparency, combating corruption in public works.
Course Code | Course Title | Alignment Rationale |
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EN010003 | Professional and Ethical Practice | Contributes to developing effective, accountable and transparent institutions by grounding future engineers in the ethical principles that must govern their profession, helping to combat corruption (Target 16.5). |
Alignment Summary: The program fosters partnerships through its cooperative education model, which creates a vital bridge between the university and the construction and consulting industries. This collaboration is essential for ensuring that engineering education is relevant and that graduates are prepared to contribute to sustainable infrastructure development.
Course Code | Course Title | Alignment Rationale |
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EN014002 | Engineering Cooperative Education | Directly encourages and promotes effective public-private partnerships by immersing students in real-world engineering companies, building collaborative experience (Target 17.17). |