Mechanical Engineering is a field of study for technology enthusiasts who want to design, build, and service modern machinery and equipment using CAD systems and 3D printing. The program combines knowledge of structural design, manufacturing methods, and material properties, preparing specialists to work in modern industry, automotive, and aviation sectors. It is an ideal choice for individuals with spatial imagination and a constructive mindset who want to have a real impact on the development of manufacturing technologies.
What makes this direction stand out?
Mechanical Engineering stands out with its unique combination of traditional engineering craftsmanship and the digital revolution, offering students access to modern laboratories equipped with industrial robots and laser scanners. From the very first years of study, you will work with professional design software under the guidance of experts, creating real structures and technical documentation. This is a versatile field of study that, thanks to its practical approach to education, gives you a competitive edge in almost every branch of the modern economy.
This studies are for you if:
you are interested in technology and want to know „how things are made”,
you have an analytical mind and enjoy solving logical puzzles,
you enjoy working with computers but want to see the real results of your projects,
you want to have a specific, respected profession with a secure future on the job market.
Mechanical Engineering
Who can you become after these studies? An engineer who can turn a vision into a finished product. You will be a specialist capable of solving complex technical problems, designing innovative devices, and optimizing production processes in the world of Industry 4.0.
What will you learn during your studies?
After just one year:
you efficiently use technical drawing and the principles of engineering graphics,
you perform basic structural strength calculations,
you understand material properties and their shaping processes.
After the second year:
you design machine parts in a 3D CAD environment,
you program automation machines and devices,
you analyze motion mechanisms and the dynamics of mechanical systems.
After the third year:
you independently design complex devices and technical systems,
you conduct advanced computer simulations of machine operations,
you manage the operation and maintenance of a modern machine park.
After subsequent years, if applicable:
you apply advanced numerical methods (FEM) to optimize lightweight and durable structures,
you manage innovation processes and the implementation of new technologies in Industry 4.0,
you conduct independent research and development work and lead engineering teams in highly complex projects.
Examples of subjects in the field of study
CAD Design Techniques
Finite Element Method
CNC Machine Tool Programming
CAM Process Design
Rapid Prototyping Techniques
CAD Machine Design
From high school leaving exams to a professional career
What subject is worth taking in the final exam?
Mathematics
Foreign Language
Polish Language
Computer Science
Physics
Chemistry
What can you do after graduation?
Work as a machine designer and structural engineer in engineering offices.
Become a process or production engineer in industrial plants.
Handle programming and operation of CNC systems and robots.
Work as a quality and metrology specialist.
Become a technical advisor or manager in the technology industry.
Run your own business providing engineering services.
What does it look like in practice?
Imagine you are working in a design team at a modern vehicle factory. Your task is to create a new suspension component. First, you design it in 3D, check its strength using computer simulations, and then prepare a program for the device that will manufacture it. You don’t just create a physical object; you ensure its reliability and the safety of future users.