The Bachelorβs in Energy Engineering aims to equip students with scientific and technical knowledge in conventional and renewable energy sources, focusing on energy production, conversion, and storage. The program also develops skills to understand environmental challenges and sustainability in the energy sector.
π Fundamentals of Energy Engineering β Principles of energy generation and conversion.
π Renewable and Sustainable Energy β Solar, wind, and bioenergy technologies.
π Thermodynamics and Heat Transfer β Analysis of thermal energy systems.
π Energy Efficiency and Consumption Management β Methods for improving energy performance.
π Electricity and Emerging Energy Technologies β Production and storage of electrical energy.
π Fluid Mechanics and Turbines β Study of mechanical energy conversion.
π Industrial Control and Automation β Smart energy management systems.
π Final Year Project and Internship β Practical experience in the energy sector.
π Climate Change and Alternative Energies β Impact of environmental policies on the energy sector.
π Waste Energy Management and Recycling β Strategies to reduce energy-related pollution.
π Smart Energy Storage β Battery technologies and smart grids.
π Nuclear Energy and Applications β Safety concepts and nuclear technologies.
π Hydrogen Technologies and Future Energy β Potential of clean energy solutions.
π Applied Research in Energy and Internship β Real-world implementation of energy theories.
π Eligibility: High school diploma in Science and Technology, Mathematics, or Exact Sciences.
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