Master in New Energy Science and Engineering
About
Xiamen University Malaysia (XMUM) offers a Master in New Energy Science and Engineering degree that focusses on energy-related disciplines such as innovative material design, optimisation, and applications.
The program offers practical training in energy technology modules, including materials fabrication and characterisation. It aims to develop knowledge of chemistry, physics, and engineering fundamentals for commercially important energy applications. Their diverse research environment provides students with access to contemporary laboratories and equipment. Students can receive multidisciplinary knowledge and practical skills through speciality lectures, workshops, research seminars, and hands-on lab and analytical experience.
Key facts
Qualification | Master's Degree |
Study mode | Full-time, Part-time |
Duration | 2 years |
Intakes | January, February, March, April, May, June, July, August, September, October, November, December |
Tuition (Local students) | $ 11,277 |
Tuition (Foreign students) | $ 13,533 |
Subjects
-
Engineering
-
Environmental Science
Duration
2 years
Tuition fees
Description | Local students | Foreign students |
---|---|---|
Tuition fee | $ 11,277 | $ 13,533 |
Miscellaneous fees | $ 67 | Data not available |
Total estimated cost of attendance | $ 11,345 | $ 13,533 |
Estimated cost per year | $ 5,672 | $ 6,766 |
Miscellanous fees explained
Local students
Description | Amount |
---|---|
Application Fee | $ 22 |
Registration Fee | $ 45 |
Foreign students
Description | Amount |
---|---|
Application Fee | $ 22 |
Registration Fee | $ 45 |
International Student Fee
|
$ 563 |
Security Deposit (refundable) | $ 225 |
Hostel Deposit (refundable) | $ 112 |
Hostel Application Fee | $ 22 |
Estimated cost as reported by the institution. There may be additional administrative fees. Please contact for the latest information.
Every effort has been made to ensure that information contained in this website is correct. Changes to any aspects of the programmes may be made from time to time due to unforeseeable circumstances beyond our control and the Institution and EasyUni reserve the right to make amendments to any information contained in this website without prior notice. The Institution and EasyUni accept no liability for any loss or damage arising from any use or misuse of or reliance on any information contained in this website.
Admissions
Intakes
Entry Requirements
Any of These:
- A Bachelor’s Degree in related science or engineering discipline with a minimum CGPA of 2.75; OR
- A Bachelor’s Degree in related science or engineering discipline with a minimum CGPA of 2.50 but below 2.75 will be subjected to internal assessment; OR
- A Bachelor’s Degree in related science or engineering discipline with a CGPA below 2.50, can be accepted subjected to a minimum of 5 years of relevant working experience; OR
- Any other equivalent qualifications recognised by the Malaysian Government and accepted by the Senate.
English Proficiency Requirement (for International Students):
- IELTS 5.0
- CEFR High B1
- TOEFL with TOEFL Essentials (Online) 7.5 or TOEFL IBT: 40
- Cambridge English Qualifications 154
- PTE 47
- ELS 107
- MUET Band 3.5
Note: *For other equivalent qualifications, please consult our program counsellor.
Curriculum
Core Courses:
- Research Methodology
- Graduate Seminar
- Research Thesis
- Chinese 1*
- Selected Topics on China
*Students with credits in Chinese courses in previous result slips (UPSR/STPM/UEC/A-Level/Foundation/Matriculation/Diploma/SPM/O-Level/HSK, etc.) can be exempted from Chinese 1.
Research Areas:
- Catalysis
- Solar energy research
- Electrochemical energy storage research
- Piezoelectric energy research
- Energy materials simulation research
- Wave energy research
- Building-integrated photovoltaic, urban flows, heat and mass transfer, turbulence simulation research
- Petroleum chemical energy research
- Life cycle assessment, solid waste management, energy optimization research
- Low dimensional photonics and plasmonics, physical modelling of urban systems research
- Renewable and sustainable energy research