48 monthsProgramme duration
OctStarting Month
Programme overview
Degree
BEng
Study Level
Undergraduate
Study Mode
On Campus
The Industrial Power Engineering Bachelor's Program
Faculty of Engineering
Established in 1990, the Industrial Power Engineering program is one of the oldest and most established undergraduate engineering programs at the university. It aims to provide students with solid theoretical foundations and practical skills in the field of energy engineering, with a particular focus on energy generation, conversion, transmission, and efficient utilization in industrial environments.
The curriculum combines core engineering subjects with specialized courses, preparing graduates to meet the demands of modern energy systems. Key areas of study include Thermotechnics, Heat and Mass Transfer, Applied Informatics, Electrotechnics, Electrical Machines and Drives, Electronics, Power Generation (thermal and electrical), Renewable Energy Sources, Power Plant Components, Electrical Networks, Artificial Intelligence Techniques, Classical and Numerical Relay Protections and Engineering Management.
Students benefit from a well-structured academic plan that integrates theoretical knowledge with hands-on experience through laboratory work, professional internships, and a final-year thesis project.
Graduates of this program are well-qualified for positions in energy production and distribution companies, industrial manufacturing, engineering consultancy, renewable energy firms, as well as governmental and regulatory bodies. Typical career paths include roles such as:
- Power Systems Engineer
- Industrial Energy Engineer
- Thermal Systems Engineer
- Energy Design Engineer
- Energy Utilities Management and Control Engineer
Programme overview
Degree
BEng
Study Level
Undergraduate
Study Mode
On Campus
The Industrial Power Engineering Bachelor's Program
Faculty of Engineering
Established in 1990, the Industrial Power Engineering program is one of the oldest and most established undergraduate engineering programs at the university. It aims to provide students with solid theoretical foundations and practical skills in the field of energy engineering, with a particular focus on energy generation, conversion, transmission, and efficient utilization in industrial environments.
The curriculum combines core engineering subjects with specialized courses, preparing graduates to meet the demands of modern energy systems. Key areas of study include Thermotechnics, Heat and Mass Transfer, Applied Informatics, Electrotechnics, Electrical Machines and Drives, Electronics, Power Generation (thermal and electrical), Renewable Energy Sources, Power Plant Components, Electrical Networks, Artificial Intelligence Techniques, Classical and Numerical Relay Protections and Engineering Management.
Students benefit from a well-structured academic plan that integrates theoretical knowledge with hands-on experience through laboratory work, professional internships, and a final-year thesis project.
Graduates of this program are well-qualified for positions in energy production and distribution companies, industrial manufacturing, engineering consultancy, renewable energy firms, as well as governmental and regulatory bodies. Typical career paths include roles such as:
- Power Systems Engineer
- Industrial Energy Engineer
- Thermal Systems Engineer
- Energy Design Engineer
- Energy Utilities Management and Control Engineer
Admission Requirements
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