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The aim of energy systems education is to cultivate professionals with creativity and international competence in areas related to energy which is a driving force of the development of human society. Energy Systems Major focuses on studying source technologies about energy conversion, storage and transmission and efficiency improvement based on thermo fluid dynamics, and renewable energy systems that can solve environmental problems in the 21st century. It plays a central role in the energy cluster in the country's southeast region which accounts for 46% of total energy production. Based on world-class educational and experimental facilities, Energy Systems Major will contribute to the national energy industry by promoting interdisciplinary convergence research and establishing a new business and academic cooperation system with global companies.

Major Research Areas

  • Renewable energy : Solar energy / solar power / fuel cell / geothermal / wind power energy, building construction technology using renewable energy, low-carbon technology, development of technology to diagnose and improve environmental energy
  • High-tech thermo fluids : Analysis of high-tech fluids and fluid transfer, multi physics / multi-scale analysis, analysis and application of turbulent, new material thermo-fluid process / development of sensing technology
  • High-efficiency energy : High-efficiency energy components and energy conversion technology, high-efficiency heat management technology, technology for high efficiency of power generation energy, next-generation power engines, energy production and storage technology, technology for nuclear machinery components, refrigerator and air-conditioner / heat exchange technology
  • Microfluidics and bio-fluid : Microfluidics system technology, development of bio diagnosis and bio-components, technology for efficiency of drug delivery, integrated bio equipment technology

Curriculum

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Subject No. Subjects Credit Remarks
MN6600331 È®·ü¹×Åë°è (Probability & Statistics) 3 ±âÃÊ
MN7500124 °øÇмöÄ¡Çؼ®Æ¯·Ð (Advanced Numerical Methods with Engineering Applications) 3 ±âÃÊ
MN6800426 ¹ÌºÐ¹æÁ¤½ÄƯ·Ð (Advanced Differential Equation) 3 ±âÃÊ
MN6200693 ¼±Çü´ë¼öÇÐƯ·Ð (Advanced Linear Algebra) 3 ±âÃÊ
MN7200274 ÀÀ¿ë°ø¾÷¼öÇÐ (Applied Engineering Mathematics) 3 ±âÃÊ
MN6000515 °íü¿ªÇÐƯ·Ð (Advanced Solid Mechanics) 3 ÇÙ½É
MN6400237 Àç·á°úÇÐƯ·Ð (Advanced Material Science) 3 ÇÙ½É
MN6200713 ¼±ÇüÁøµ¿·Ð (Theory of Linear Vibration) 3 ÇÙ½É
MN6100480 µ¿¿ªÇÐƯ·Ð (Advanced Dynamics) 3 ÇÙ½É
MN7600516 »ý»ê°øÇÐƯ·Ð (Advanced Manufacturing Processes) 3 ÇÙ½É
MN6800488 À¯Ã¼¿ªÇÐƯ·Ð (Advanced Fluid Dynamics) 3 ÇÙ½É
MN6800663 ¸¶ÀÌÅ©·Î°¡°ø (Micromachining Theory) 3 ÇÙ½É
MN7600506 ¹ÙÀÌ¿À¿µ»ó½Åȣó¸® (Bio Image-Signal Processing) 3 ÇÙ½É
MN6300518 ¿­¿ªÇÐƯ·Ð (Advanced Thermodynamics) 3 ÇÙ½É
MN7200307 ½ÇÇè¿­À¯Ã¼¿ªÇÐ (Experimental Methods of Thermo-Fluid Mechanics) 3 ÇÙ½É
MN7600507 ¿­¹°ÁúÈ®»êƯ·Ð (Advanced Heat and Mass Diffusion) 3 ÇÙ½É
MN6200706 ¼±ÇüÁ¦¾î (Linear Control) 3 ÇÙ½É
MN6000280 °èÃø¹×½Åȣó¸® (Measurement and Signal Processing) 3 ÇÙ½É
MN7200282 ¹æ»ç¼±°øÇÐ (Radiation Engineering) 3 ÇÙ½É
MN7600512 ¿øÀÚ·ÎÀÌ·Ð (Nuclear Reactor Theory) 3 ÇÙ½É

* Refer to the attached file about other subjects