百家乐怎么玩-澳门百家乐官网娱乐城网址_网上百家乐是不是真的_全讯网888 (中国)·官方网站

Master of Science in Materials Engineering and Nanotechnology

As the No. 1 programme (US News & Shanghai Rankings in Hong Kong)  and a Top-20  programme (US News & Shanghai Rankings in the World) in the field of materials science and engineering, the programme provides an opportunity for applied scientists and engineers to pursue an in-depth study in various aspects of materials engineering and nanotechnology. Courses in this programme can also be used to fulfill the "top up courses" requirement for joining the Materials Discipline of the Hong Kong Institution of Engineers (HKIE).

Programme Master of Science in Materials Engineering and Nanotechnology
理學碩士(材料工程及納米科技)
Award Title Master of Science in Materials Engineering and Nanotechnology
理學碩士(材料工程及納米科技)
Offering Academic Unit Department of Materials Science and Engineering
Mode of Study Combined mode
Programme Leader Prof. LEI Dangyuan

Programme Aims and Features

Designed to benefit students from a broad spectrum of academic background, the programme aims to enable students to:

  • have extensive knowledge of and possess analytical ability in the field of materials engineering and nanotechnology;
  • have the ability to apply the knowledge of materials engineering and nanotechnology to generate creative technical solutions in the working environment;
  • be capable of communicating effectively in materials related professions;
  • design and conduct experiments, and to analyze and interpret data;
  • identify, formulate, solve engineering problems and generate new ideas in materials engineering and nanotechnology; and
  • recognize the need for, and an ability to engage in life-long learning.

Research Opportunity

Top students with relatively higher GPA and suitable background can take the “Advanced Research” course (12 credit units), and have the opportunity to conduct world-class research using our sophisticated instruments.

Assessment and Progression

The assessment system consists of a combination of assessments in course work and written examination. The assessment criteria vary according to the different components of a course but students are provided with as many opportunities as possible to demonstrate their competence.
Course work consists of student performance in written assignments, tutorials, projects and laboratories. Formal written examination(s) are normally held at the end of each semester.

Professional Career Prospects:

  • Materials Engineers & Scientists
  • Quality Control Engineers
  • Production Engineers
  • Laboratory Managers
  • Research & Development Engineers
  • Engineering Sales Managers for high-ended equipment and sophisticated materials
  • Specialists in Electronics, Semiconductors, EV batteries,  Solar Cells, Catalysis, Biomaterials, Metals, Ceramics, Computational Materials, AI for Materials, and Construction
  • Better prepared candidates for Ph.D. study in top universities.

Programme Structure

For student of 2021-22 Cohort and 2022-23 Cohort
For student of 2023-24 Cohort
For student of 2024-25 Cohort 
For student of 2025-26 Cohort and Thereafter

1. Programme Core Courses: (9 credits)
Course Code Course Title Credit Units Course Offering in 2025/26 Semester
MSE5301 Instrumentation for Materials Characterization 3 A
MSE5303 Structure and Deformation of Materials 3 A
MSE6265 Quantum Theory of Semiconductors 3 A
2. Programme Electives: (21 credits)
MSE5304 Thermodynamics of Materials 3 B
MSE6121 Thin Film Technology and Nanocrystalline Coatings 3 A
MSE6176 Nanomaterials Design for Energy Applications 3 A
MSE6181 Photonics in Nanomaterial Systems and Devices 3 A
MSE6182 Polymers and composites and nano-applications 3 A
MSE6183 Computational Methods for Materials Science 3 B
MSE6184 Biomedical Materials and Devices with Nano-applications 3 B
MSE6185 Advanced Structural Materials 3 B
MSE6266 Semiconductor Materials and Devices 3 B
MSE6303 Corrosion and Surface Engineering 3 B
MSE6309 Advanced Research 9 Normally A and B
MSE8015 Theory and Practice of TEM & Related Spectroscopy 3 B
MSE8020 Structural Properties of Materials 3 A
MSE8021 Kinetic and Thermodynamic Properties of Materials 3 B
The course syllabus is subject to change

3. Additional Notes:

Intermediate and other awards:

Postgraduate Diploma in Materials Engineering and Nanotechnology (24 CUs)
深造文憑(材料工程及納米科技)
Postgraduate Certificate in Materials Engineering and Nanotechnology (12 CUs)
深造證書(材料工程及納米科技)

For the Postgraduate Diploma award, students are required to complete the three required courses (9 CUs) and 15 CUs electives to make up the total of 24 CUs.
Entrance requirement: same as Master of Science in Materials Engineering and Nanotechnology

For the Postgraduate Certificate award, students are required to complete the three required courses (9 CUs) and 3 CUs electives to make up the total of 12 CUs.
Entrance requirement: same as Master of Science in Materials Engineering and Nanotechnology

Admission

To be eligible for admission, you must satisfy the General Entrance Requirements, and you should normally have a degree in a relevant physical science or engineering discipline. For further details of admission requirements and application procedures, Click here for more information.

MSMENENG   MSMENCHIN

Related Links

Department of Materials Science and Engineering
Master's Programme

名仕百家乐官网的玩法技巧和规则| 华宁县| 优博百家乐的玩法技巧和规则| 百家乐官网教父方法| 百家乐官网乐翻天| 516棋牌游戏中心| 百家乐增值公式| 西吉县| 百家乐正规站| 百家乐官网神算子| 天津太阳城橙翠园| 顶尖百家乐官网的玩法技巧和规则| 庄闲和| 百家乐官网棋牌交友中心| 威尼斯人娱乐城官方网| 百家乐官网投法| 同仁县| 百家乐路单破解器| 百家乐官网棋牌游戏源码| 大发888在线娱乐二十一点| 澳门百家乐官网赌场娱乐网规则 | 嘉鱼县| 百家乐园是真的不| 百家乐官网77scs| 百家乐能破解| 娱乐城百家乐官网的玩法技巧和规则 | 百家乐官网投住系统| 十三张娱乐城开户| 网上百家乐博彩正网| 网络百家乐官网金海岸破解软件| 世界顶级赌场酒店| 苹果百家乐的玩法技巧和规则 | 网上梭哈| 百家乐稳赢投注| 大都会百家乐官网的玩法技巧和规则| 什么棋牌游戏能赚钱| 新梦想百家乐的玩法技巧和规则| 博士百家乐现金网| 百家乐官网博国际| 百家乐官网游戏规则玩法| 澳博国际娱乐|