Sustainability should be the basis of responsible civil engineering. Civil engineers should work to improve our quality of life, but in doing so they have a duty to subsequent generations to minimise the impacts that civil engineering activities have upon the environment.

The aim of this course is to provide students with a thorough understanding of the iterative nature of design and the fundamental principles on which the analyzes are based. Design in the steel of tension and compression members, beams, columns, connections; eccentrically loaded and moment resistant joints; plate girders and Advanced topics in structural steel design, such as frames and buildings The course covers the design and analysis of a steel frame structure for local and global buckling as well as material failure.


The aim of this course is to provide students with a thorough understanding of the iterative nature of design and the fundamental principles on which the analyzes are based. Design in the steel of tension and compression members, beams, columns, connections; eccentrically loaded and moment resistant joints; plate girders and Advanced topics in structural steel design, such as frames and buildings The course covers the design and analysis of a steel frame structure for local and global buckling as well as material failure. this course also includes the application of different software.


The aim of this course is to provide students with a thorough understanding of the iterative nature of design and the fundamental principles on which the analyzes are based. Design in the steel of tension and compression members, beams, columns, connections; eccentrically loaded and moment resistant joints; plate girders and Advanced topics in structural steel design, such as frames and buildings The course covers the design and analysis of a steel frame structure for local and global buckling as well as material failure. this course also includes the application of different software.

The purpose   is to gain knowledge, skills, skills, and experience in the field of theory and design of buildings and structures that characterize the stages of competence formation and ensure the achievement of the planned results of the development of the educational program. Produce graduates who are committed to a career in structural engineering with a range of employers. Produce graduates equipped to take up professional employment in the construction industry and become lifelong learners with unappreciation of the value to society of an education in structural engineering. Produce graduates who have knowhow and understanding of the key aspects of structural engineering.

The main objectives:

 -study of the principles and theory of steel structures

- formation of skills of calculations and design of metal structures from the point of view of specific engineering tasks using design norms, standards, reference books.

- obtaining skills in the use of automation tools for the design of metal building structures.

The aim of this course is to provide students with a thorough understanding of the iterative nature of design and the fundamental principles on which the analyzes are based. Design in the steel of tension and compression members, beams, columns, connections; eccentrically loaded and moment resistant joints; plate girders and Advanced topics in structural steel design, such as frames and buildings The course covers the design and analysis of a steel frame structure for local and global buckling as well as material failure.

The purpose  of mastering the discipline Structural Design in Steel: Special Topics" is to gain knowledge, skills, skills and experience in the field of theory and design of buildings and structures that characterize the stages of competence formation and ensure the achievement of the planned results of the development of the educational program.

 The main objectives of the discipline " Structural Design in Steel: Special Topics" are:

- training of specialists of a wide profile in industrial and civil construction with an in-depth study of the basics of design, manufacture, installation, reinforcement of metal structures of buildings and structures;

- formation of skills of calculations and design of metal structures from the point of view of specific engineering tasks using design norms, standards, reference books;

- obtaining skills in the use of automation tools for the design of metal building structures.


Course objective – learning the basic project management processes and how information technology can be applied to support successful project outcomes.

The goal of thwe discipline is to familiarize the students with the full cycle that is required to initiate computer-supported innovation in a branch of civil engineering, starting with the mathematical formulation of a physical problem, continuing with its reduction to an algebraic form that is suitable for computer application and ending with the implementation of the application on the computer, including the data base and the algorithms for the internal computer model as well as the presentations and editors for an interactive graphical engineering interface. This experience prepares students for research and for innovation as a part of practical engineering