Warsaw, Poland

Civil Engineering

Master's
Table of contents
Civil Engineeringsds

Civil Engineering at SGGW

Language: EnglishStudies in English
Subject area: engineering and engineering trades
Kind of studies: full-time studies
  • Description:

  • pl
University website: www.sggw.edu.pl/en

Why study Civil Engineering at SGGW?

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Why It's Worth It:

Advanced technical expertise in a global language

Studying Civil Engineering at the Warsaw University of Life Sciences (SGGW) within the Faculty of Civil and Environmental Engineering provides a unique opportunity to gain high-level technical qualifications in an international environment. The curriculum is delivered entirely in English, which naturally prepares students for the global job market and enables them to master professional terminology essential for working in multinational corporations or international design offices. The program bridges technical engineering with elements of natural sciences, creating a modern approach to infrastructure development.

Comprehensive understanding of engineering infrastructure

The mission of this program is to transfer advanced knowledge and provide a deep understanding of the challenges facing modern engineering infrastructure. Students develop analytical, decision-making, and critical thinking skills that are crucial in the engineering profession. By delivering high-quality modules in areas such as structural design and geotechnical engineering, the university ensures that graduates are well-equipped to handle complex technical tasks and innovative projects in various environmental conditions.

Versatile curriculum and specialized knowledge

The scope of the program covers a wide array of disciplines, ranging from general construction of residential and public utility buildings to specialized fields like hydrotechnical engineering. Participants explore the intricacies of damming structures, embankments, and small water structures, as well as communication infrastructure including roads, bridges, and railway facilities. This broad approach allows for a holistic view of the built environment and the technical dependencies between different types of structures.

Modern analytical tools and design standards

The course places a significant emphasis on the use of contemporary design standards and advanced numerical analysis tools. Students learn how to apply the theory of elasticity and plasticity, as well as rock mechanics, in practical engineering scenarios. Training includes the use of spatial information systems and specialized computer programs that support the design process, ensuring that graduates can operate effectively in a digitalized industry and manage complex investment processes.

Focus on sustainable and safe development

Education at SGGW also includes vital aspects of environmental safety and spatial planning. Modules covering environmental hazard assessment and water construction prepare future engineers to design with sustainability in mind. Graduates understand how to integrate technical infrastructure into the existing landscape while minimizing negative environmental impacts, which is a key competence in the era of climate change and evolving building regulations.

Development of leadership and managerial skills

Beyond technical calculations, the program fosters essential transferable skills such as project management and team leadership. Students are prepared to take on independent positions in construction companies, where they will be responsible for organizing work, managing budgets, and overseeing the execution of construction sites. The ability to work independently on complex topics and demonstrate initiative in solving engineering challenges is a hallmark of the curriculum.

Extensive career opportunities worldwide

Graduates of the program find employment as designers and contractors in various sectors, including general construction, hydrotechnology, and transport infrastructure. Their expertise is also valued in state and local government administration, where they serve as specialists in building distribution and infrastructure management. The international nature of the studies opens doors to careers not only in Poland but also across the European Union and globally, providing a solid foundation for professional growth in the construction industry.

Test: check whether Civil Engineering is the right major for you!

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Answer all questions to see if Civil Engineering (Master's) is the right fit for you!

1. Are you motivated to design, analyze, and improve infrastructure such as bridges, roads, water systems, or buildings?

2. Do you want to develop advanced skills in structural analysis, geotechnics, fluid mechanics, or materials for construction?

3. Are you interested in sustainable design and resilience of infrastructure to adapt to climate change and evolving urban needs?

4. Are you willing to work with digital tools such as BIM, simulation, and modeling to plan and manage engineering projects?

5. Do you believe a two-year master’s degree will substantially increase your ability to lead complex civil engineering projects?

6. Are you interested in construction management, scheduling, cost control, and ensuring quality on large-scale sites?

7. Do you want to build competence in risk assessment, safety regulations, and lifecycle performance of infrastructure?

8. Are you prepared to collaborate with urban planners, architects, environmental experts, and stakeholders to deliver integrated solutions?

9. Are you excited by emerging trends like smart infrastructure, resilient urban systems, or advanced material usage?

10. What motivates you most to pursue a master’s in Civil Engineering?

Definitions and quotes

Civil Engineering
Civil engineering is a professional engineering discipline that deals with the design, construction, and maintenance of the physical and naturally built environment, including works such as roads, bridges, canals, dams, airports, sewerage systems, pipelines, and railways. Civil engineering is traditionally broken into a number of sub-disciplines. It is the second-oldest engineering discipline after military engineering, and it is defined to distinguish non-military engineering from military engineering. Civil engineering takes place in the public sector from municipal through to national governments, and in the private sector from individual homeowners through to international companies.
Engineering
Engineering is the creative application of science, mathematical methods, and empirical evidence to the innovation, design, construction, operation and maintenance of structures, machines, materials, devices, systems, processes, and organizations. The discipline of engineering encompasses a broad range of more specialized fields of engineering, each with a more specific emphasis on particular areas of applied mathematics, applied science, and types of application. See glossary of engineering.
Engineering
Engineering is the art of directing the great sources of power in nature for the use and convenience of man.
Thomas Tredgold (1828), used in the Royal Charter of the Institution of Civil Engineers (ICE) published in: The Times, London, article CS102127326, 30 June 1828.
Civil Engineering
Mechanical engineering is now the largest branch, with nearly 40 percent of the profession's members. Civil engineering, which was the largest branch prior to World War II, has dropped to second place, with about 25 percent of all engineers.
United States. Bureau of Labor Statistics (1951) Effect of defense program on employment outlook in engineering. p. 18
Civil Engineering
Go for civil engineering, because civil engineering is the branch of engineering which teaches you the most about managing people. Managing people is a skill which is very, very useful and applies almost regardless of what you do.
Sir John Harvey-Jones (1882), in Contact - asceis-ices | VIT

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