Studying Mechanical Engineering is a solid choice for career opportunities as it is one of the most sought after professions in the world.
Those who are skilled in mechanical engineering can also diversify their careers due to the employment opportunities in several different industries, as well as the myriad skills that come with learning this vast field of engineering.
According to Prospects, âMechanical engineering is concerned with the design, development, installation, operation and maintenance of anything that has moving parts.
âFor this reason, you will find relevant opportunities in a range of industries, including aerospace, automotive, construction, energy, manufacturing, medicine, railroads and sports. “
The rise of new technologies such as robotics and 3D printing makes mechanical engineering an exciting and progressive career choice.
Mechanical engineers are increasingly expected to solve problems using innovative approaches and be responsible for tackling global problems, while being aware of the impact on the environment and on society.
Universities offering mechanical engineering programs must sufficiently prepare graduates for the real world of work. It is a competitive field and employers are increasingly looking for people with some work experience.
An internship or other types of work experience in the field is incredibly valuable, giving students insight into the industry while helping them develop the relevant skills needed to become competent and capable mechanical engineers.
Here are four main departments from universities across Europe that prepare ready-to-use mechanical engineering graduates.
The Engineering and Design Department is one of the few general engineering departments in the UK to offer degrees in Mechanical, Automotive, Electrical / Electronic Engineering and Product Design. This gives our UG mechanics students the experience of mixing in courses and projects with students studying for different degrees.
The BEng Mechanical Engineering program provides students with the ideal training to lead multidisciplinary teams in the development of complex systems, such as sustainable energy production, modern powertrains for motor vehicles, and jet engines for the propulsion of vehicles. planes.
There is also the Integrated Master of Engineering (MEng) program, suitable for those who wish to specialize and further their education in areas such as computational fluid dynamics, FEA, advanced mechanical dynamics via optional modules and work on areas such as control, vibration, tribology, or aerodynamics through project work, including Student Formula and electric car projects
In the past two years, the department has also offered programs in Mechanical Engineering with BEng Robotics (Hons) and Mechanical Engineering with MEng Robotics.
These programs give students the opportunity to develop specific expertise in the field of robotics as well as mechanical engineering skills so that they can work in sectors such as the design and development of robots for self-driving cars, robotics , automation, mechatronics, automotive, aerospace and renewable energies.
Students learn in Future Technologies Labs which integrate computer suites and new automation / robotics facilities, with a dedicated manufacturing lab and state-of-the-art facilities such as CNC machines and 3D printers.
In addition to academic advisors, student mentors, and engineering companies, mechanical engineering students here have a rewarding student experience and become career-ready graduates.
The Master of Science in Mechanical Engineering at this University of Milan, Italy, prepares professionals to independently develop projects related to product or process innovation, both in the industrial and service sectors. .
BSc and MSc graduates receive extensive preparation for a career in mechanical engineering, but the MSc program deepens innovation and application of complex models to design and improve existing products and processes. and new.
The aim of the Department of Mechanical Engineering is to foster a culture of research and innovation in new areas that are becoming increasingly important to society.
These include transport and sustainable mobility, energy technologies, biomechanics and service robotics, biomaterials, smart materials and hybrid materials, manufacturing and production systems, space and security.
Mechanical engineering graduates of this university become independent engineers capable of developing the functional, constructional and energy-related aspects of innovative products, processes and systems in industry and in the advanced service sector.
LUT University in Finland has been a pioneer in the region for combining technology and business – since its establishment in 1969.
The diverse and international community consists of 6,000 students and faculty experts who engage in cutting-edge scientific research and quality university education.
For Mechanical Engineering, students can enroll in the bachelor’s program or advance their careers by joining one of four different master’s programs in the field of Mechanical Engineering, hosted within the LUT School of Energy Systems.
These are: advanced structural design and robotic welding, industrial design engineering (Lahti campus), mechatronic system design and sustainable production in mechanical engineering.
The department is committed to training graduates ready to find a sustainable solution to climate challenges such as climate change, food security and efficient use of energy.
As more engineers are needed globally to ensure safe, economical and low-emission technology and energy production, as well as access to renewable energy sources, the studies here combine modern mechanical engineering with the techniques and systems required for the production, transfer and use of energy and the management of environmental impacts.
Located in the Netherlands, UT is a public research university where societal impact is a core value.
The Faculty of ET is one of five faculties that combines Mechanical Engineering, Civil Engineering, and Industrial Design Engineering.
In the Bachelor of Mechanical Engineering program, students learn both scientific theory and how to apply it in practice.
Each module asks students to tackle real-life problems and find innovative solutions by working in groups, which prepares students for the world of work and helps them discover which team role is best for them. (researcher, designer or organizer).
The department focuses on teaching students how to become capable and independent professionals, based on student-led learning.
Understanding that graduates will enter a world of work with jobs that do not yet exist, they educate them to become T-shaped entrepreneurial professionals who are able to collaborate across different disciplines and have depth in their areas of expertise. , so they are prepared for all kinds of worlds of work.
Here, students also learn to think innovatively and apply their knowledge in a wider context and across multiple sectors so that they can work in a wide range of jobs.
* Some of the institutions featured in this article are Business Partners of Study International
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