MA(STEM Ed)

STEM教育文学硕士

Master of Arts in STEM Education
学习模式
全日制 / 兼讀制
修业期
1年 / 2年
联招课程编号
-
教大课程编号
A1M095 / C2M028

查询

(852) 2948 6886
(852) 2948 7694
蔡达诚博士
(852) 2948 7470
(Chinese) MA_STEM_2025.pdf
教学语言
教学语言为英语。

课程资讯

STEM教育文学硕士课程将透过生动有趣、富成就感的学习体验,提高你在STEM教育方面的专业素养。

課程目的

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课程旨在

  • 促进学生对STEM教育有更全面的理解
  • 透过课程统整和整合学习,提升推广STEM教育的效能
  • 以知识和技能装备学生,应用科技及工程设计解决问题
  • 培育学生的教学内容知识,设计综合STEM教育的教学和评估
  • 帮助学生发展领袖才能及培养他们推广校本STEM教育的革新精神
课程亦注重以下STEM教育专才和领袖须要领略的方面
  • STEM教育校本发展的领导能力
  • 创意运用科技进行探究和设计
  • 增强自主学习的模式和方法
  • 加强学科和跨学科的协同学习
  • 综合应用知识与21世纪技能
  • 更有效运用正式和非正式课程和社会资源
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课程结构

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课程结构

整个课程由24个学分构成。学生须根据学校安排每周上课,上课时间或定于平日或周六白昼或傍晚,地点可能为教大大埔校舍、将军澳教学中心、北角教学中心和/或九龙塘卫星教学中心。

本硕士课程提供涵盖主要STEM教育课题的6+2个课程

 

6门必修课:(每门课3学分,共18学分):
  • STEM education: theoretical and curricular perspectives (3 cps)
  • Scientific inquiry and engineering design (3 cps)
  • Technology in STEM education (3 cps)
  • Developing creativity and innovation in STEM (3 cps)
  • Coding and computational thinking (3 cps)
  • Principles and methods in STEM education research (3 cps)
     
2门选修课:(每门课3学分,共6学分):

学生须分别在每个选修课组别中各选一个课程:

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入学要求

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入学要求

(a)  申请人一般须持有认可大学颁授的学士学位(或同等资历)。

(b)  申请人需持有以英语授课之学士学位或同等资格证明。如申请人持有的入学资格来自非英语授课体系的院校颁发,一般须符合以下其中一项英语语文能力之最低要求:

  • 雅思国际英语语言测试 (IELTS) (学术模式) 总分6分#;或
  • 网上托福考试(TOEFL-iBT)#:总分80 分(适用于2026 年1 月21 日前应考者)
                                                     总分4 分(适用于2026 年1 月21 日起应考者);或
  • 全国大学英语六级考试 (CET-6) 总分430#;或
  • 综合中等教育证书考试 (GCSE) / 普通教育文凭普通程度考试 (GCE O-Level) 英语C级;或
  • 其他同等资历将视个案而定。 

    #只接受在官方指定考试中心应考的成绩,成绩有效期为两年。申请2026/27入学者提交的成绩必须于2024年1月1日或之后应考。  

    本校并不接受TOEFL Home Editions、TOEFL MyBest Score、线上应考的IELTS Indicator和IELTS Online、IELTS One Skill Retake、多邻国 (Duolingo)及全国硕士研究生招生考试的成绩。 
     
  • (c)  入选申请者或会被邀参加面试。
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学费 / 奖学金

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学费

  • 整个课程学费(2026/27学年)为$160,800 (每学分$6,700)
  • 学费有可能调整。

 

奖学金

  • 香港未来人才深造奖学金计划

大学教育资助委员会于2025/26学年设立“香港未来人才深造奖学金计划”以资助修读授课式研究生课程的本地学生。详情请参阅大学教育委员会网页

  • 入学奖学金 – 新生可能获得香港教育大学提供的奖学金港币$10,000。
  • 优秀奖 – 每学期,学业成绩优异的学生将获得学系所颁发的奖励。
  • 教师奖学金 – 香港教育局亦为本地教师提供港币$80,000之奖学金(须经遴选),详情请参阅教育局网页之教师奖学金(进修硕士学位课程*)分页。 

    *须经批准
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详细课程介绍

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详细课程介绍

必修课程(共18学分)
STEM education: theoretical and curricular perspectives(3学分)This course introduces participants to the theoretical underpinnings of STEM education. It traces the historical backgrounds to the STEM education movement in response to changes in economic, social and educational milieus in developed countries.  The course critiques the various interpretations of STEM education, and how different degrees and forms of integration of STEM and non-STEM disciplines have given rise to various curricular manifestations such as STEAM and STREAM, and diverse pedagogical approaches ranging from multidisciplinary to transdisciplinary problem solving approaches. The notion of STEM literacy as a universal goal of STEM education for the general citizenry will be critically examined in the context of modern and possible future technological advancement and its various implications. Participants will also compare the goals of different national standards for promoting STEM to understand their diverse emphases in transforming theory into practice. The challenges of the STEM education movement and its potential for sparking a paradigm shift in science, technology and mathematics education will be discussed in light of research findings regarding the impact of STEM education on student learning. Participants will be guided to construct a personal philosophy of STEM education to inform school practice.
Scientific inquiry and engineering design (3学分)This course provides participants with an in-depth understanding of the nature of science and engineering as two essential STEM practices, and their inter-relationships. It leads participants to compare the key thought processes of scientific inquiry and engineering design. Discussion on engineering design will focus on how it utilizes knowledge and skills across STEM disciplines, notably science and mathematics, and how engineering habits of mind are manifested in analytical designing, modeling, optimizing and system thinking for solving problems. Participants will learn how to effectively combine scientific inquiry and engineering design in STEM education settings.  While scientific inquiry provides the means for school students to research scientific knowledge that could provide a foundation for design, engineering design serves as the context to apply and further develop their scientific knowledge and inquiry skills. In practicing engineering design, participants will be guided to consider important design factors such as innovation, environmental sustainability, human factors, health and safety, feasibility and reliability to achieve planned goals within constraints. This course further leads participants to develop the pedagogical content knowledge for articulating science inquiry processes, engineering design strategies, technological skills and mathematical knowledge in designing integrated STEM activities.
Technology in STEM education (3学分)The course begins by tracing the historical development of technology to highlight the nature of technology as both a means and an end in human problem solving. The combined effect of politico-economic and socio-cultural factors, and the emergence of science as chief driving forces for the development of technology will be critically examined. The impact of modern technology on society and humanity will be discussed together with its ethical implications. With such foundation, the course provides participants with the essential pedagogical content knowledge for infusing modern technological devices into school STEM education. These include sensors, dataloggers, microcontrollers, 3D-printers, laser cutters, VR/AR, drones, mobile technology and Internet-of-things (IOT), and how they could be applied to STEM activity designs. Such knowledge will be useful for participants to build school students’ capacity to integrate technology into scientific inquiry and engineering design.
Developing creativity and innovation in STEM (3学分)This course offers a comprehensive study relating creativity and innovation to STEM education in five different ways. The first part introduces the basic concepts and theories of creativity and innovation, and their relations with STEM. The second part enhances the application of creative strategies for solving problems and developing inventions in STEM. The third part imagines how inventions can be translated into commercially viable innovations. The fourth part equips participants with the pedagogical and assessment skills for fostering student’s creativity in STEM learning. The fifth part aims at cultivating participants’ creativity in teaching STEM, from curriculum design to classroom improvisation. In this course, participants will be engaged in a variety of thinking exercises, experiential learning, case studies, hands-on and real-life authentic problem solving activities. Furthermore, participants are encouraged to transfer their learning from STEM to other domains. Ultimately, this course will benefit general creativity and innovation education as a whole.
Coding and computational thinking(3学分)This course begins with a review of the knowledge and skills of computational thinking and its role in developing advanced and future technology. The important role of coding and computational thinking as an integral part of STEM (Science, Technology, Engineering and Mathematics) education and the rationale behind will be critically examined. It then discusses strategies for learning coding from various perspectives to develop participants’ computational thinking within the context of STEM education. The course will provide hands-on practices of using coding and computational thinking to address authentic problems and real-life scenarios in relation to STEM. Participants will be introduced to a variety of teaching and learning approaches to use coding to develop computational thinking, with the effectiveness of these approaches critically examined. They will also be led to further explore issues related to the design and practice of coding pedagogies, and how coding and computational thinking could be linked with other STEM disciplines to design integrated STEM learning activities in school curricular contexts.
Principles and methods in STEM education research(3学分)The course reviews the literature, strategies and instruments that inform qualitative and quantitative research in STEM education, leading participants to reflect on existing STEM education practices and explore ways forward. It will engage participants in the analysis and critique of published research from a variety of scholarly sources to develop participants’ ability to apply critical and interdisciplinary thinking to the methodical investigation of issues of concern in STEM education. With this foundation, participants will conduct a comprehensive literature review on a selected topic on STEM education for developing their ability to devise research questions, use appropriate methods for answering related questions, and reflect on claims and evidence on the impact of STEM education, leading to the development of their own informed philosophy and practices for promoting STEM education.
选修课程(共6学分)

选修课组别一(3学分)

Curriculum, teaching and assessment in STEM for primary schools(3学分)This course examines the relationship of STEM and the primary curriculum with particular reference to local school contexts.  It leads participants to explore potential ways to integrate STEM education into the curriculum of primary schools.  The connections among different primary STEM subjects, e.g., General Studies/Science, Mathematics ICT, and non-STEM subjects, such as Visual Arts, will be discussed with a view to synergizing disciplinary and interdisciplinary learning. This course also explores how integrated STEM curriculum designs could enhance primary students’ development of knowledge, inquiry skills, mathematical reasoning, computational thinking, creative design thinking, and 21 century skills. The use of problem-based learning, design-based learning, technology-enhanced learning approaches and scaffolding techniques to promote inquiry and design, will be examined. Formative and summative assessment strategies will be explored that could provide the essential feedback to school students and teachers on STEM learning outcomes. The role of leadership in overcoming challenges of integrated STEM education is examined with respect to curriculum integration, inter-departmental collaboration, teacher professional development, resources management and garnering of community support.
Curriculum, teaching and assessment in STEM for secondary schools(3学分)This course examines the relationship of STEM and the secondary curriculum with particular reference to local school contexts.  It leads participants to explore potential ways to integrate STEM education into the curriculum of secondary schools.  The connections among different secondary STEM subjects, e.g., Science, Mathematics ICT/Computer, Design and Technology, and non-STEM subjects, such as Arts, will be discussed with a view to promoting interdisciplinary learning that synergizes with disciplinary learning. This course also explores how integrated STEM curriculum designs could enhance secondary students’ development of knowledge, inquiry skills, mathematical reasoning, computational thinking, creative design thinking, and 21st century skills. Issues and challenges about progression in STEM education from the primary to secondary curriculum with increasing emphasis on self-directed learning, and about the dissolution of rigid subject boundaries across various secondary subjects will be discussed.  The use of problem-based, design-based learning and technology-enhanced learning approaches and scaffolding techniques to promote inquiry and design will be examined. Formative and summative assessment strategies will be explored to provide the essential feedback to school students on their learning outcomes. The role of leadership in overcoming challenges of integrated STEM education is examined with respect to curriculum integration, inter-departmental collaboration, teacher professional development, resources management and garnering of community support.

选修课组别二(3学分)

Research project(3学分)In this course, participants will be engaged in a small-scale research in STEM education under the guidance of a supervisor. Participants will select a research topic after identifying gaps in research on STEM education to date. The topic should have the potential to inform practice in the context of Hong Kong or other places. Possible topics include instructional design for achieving specific learning outcomes, the effectiveness of different approaches to curriculum integration, methods for assessing 21st century skills, and teachers’ readiness for integrated STEM education.  In the study, participants will go through the process of literature review, formulating research questions, methodology, data analysis, discussion of findings, and drawing of conclusions. Both quantitative or qualitative, or a mixed approach may be used, involving action research, surveys, case studies or other methods as appropriate. The course will span two semesters to allow sufficient time for participants to plan and conduct the research.
Internship (3学分)The Internship aims to provide participants with first-hand learning experiences for broadening their understanding of STEM and their vision of STEM education through exposure to workplace environments in STEM industries or STEM education fields. This course will also help participants integrate and apply their knowledge and skills gained from this programme, and to reflect on practical challenges and solve problems which they may encounter in workplace environments. Participants will be engaged in analysis and reflection on their Internship experience with regard to the development of STEM education in Hong Kong. The Internship thus offers participants the opportunity to enhance their STEM competencies or STEM educational competencies, as well as to foster their professional attitudes towards STEM and STEM education. This course will also equip participants with the essential knowledge to promote STEM professions as future careers for school students.  The internship will not lead to a qualified teacher status that enables participants to teach STEM subjects at local schools.
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学生资讯

实习及就业前景

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实习机构

课程提供实习机会予学生于本港不同中小学、科学馆、工程界、航空业及本部门设立的STEM计划工作,性质包括STEM教学、研究、课程设计、A.I.研发及科技推广等等。透过亲身投入职场,学生不但能实践所学所得,更能得到启发和培育STEM创新精神,并托阔人际网络,为将来就业打好基础。

就业前景

  • STEM相关科目的教师
  • 关于电脑、工程的STEM相关职业
  • 资讯科技和电脑相关工作
  • 应用程式和网页设计与开发
  • 工业工程技术员
  • 持续进修
  • 还有更多…
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预期学生

课程将助益

  • 学校的STEM统筹者及STEM教师
  • STEM毕业生
  • Non-STEM 毕业生
  • 来自不同范畴的STEM教育执业者
  • 其他STEM专才

强大师资及技术团队,为学生提供全面支援,专业领域包括:

  • STEM教育
  • 科学
  • 资讯及通讯科技
  • 数学
  • 工程
  • 环境研究
  • 创意教育

 

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常见问题

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第一部分– 关于本课程
第二部分– 关于报名
第三部分– 关于面试及申请状态
第四部分– 其他查询(包括签证及非本地学生支持相关问题)
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Disclaimer 

EdUHK does not encourage students to entrust their application to any third party agents and we always contact applicants directly on updates regarding the applications. You must complete and submit your own application and provide your own personal and contact details. Please refer to the official EdUHK channels, such as programme websites and the admission system, for the required information to complete your application.

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大学保留一切修改课程的权利,如有需要,可随时酌情调整课程(包括但不限于课程内容和授课方式等)。考虑到教学人员、入学人数、实际具体安排、课程内容的变动以及其他无法预见的情况,大学有权更改课程。已缴学费将不予退还。 

本校维持其课程的教育质素及水准。本校受大学教育资助委员会(教资会)资助,并作为九间具备自行评审资历资格的院校之一。受教资会资助的各大学提供所有课程的教学经验均受教资会辖下质素保证局之监管。 

如个别人士欲于毕业后申请内地的学历认证,应直接联络中国教育部留学服务中心以获得最新资讯及确认(详情可参阅中国留学网:https://zwfw.cscse.edu.cn/cscse/lxfwzxwsfwdt2020/xlxwrz32/index.html) 。有别于本校于香港颁授的学历,内地的学历认证程序为独立运作。为免生歧义,本校对于个别毕业生是否获得内地之学历认证或其他香港境外的专业资格或牌照之学历认证等事宜并不提供保证。 

有关中国内地国(境)外学历学位认证的重要事项

  • 学生满足本校课程修业要求后,经过教务委员会批准便会获颁学位。本校不会为其学位于香港以外地区的认证评估承担任何责任,并建议学生咨询相关当局以进一步了解当前的规例。
  • 学生欲于毕业后申请内地的学历认证,应直接联络中国教育部留学服务中心(以下简称「留服中心」)以获得最新资讯及确认,详情可参阅中国留学网:(https://www.cscse.edu.cn)。
  • 有别于本校于香港颁授的学历,内地的学历认证程序为独立运作。为免生歧义,本校对于个别毕业生是否获得内地之学历认证或其他香港境外的专业资格或牌照之学历认证等事宜并不提供保证。
  • 留服中心会严格审查所有认证申请,包括考虑学生于修读期间在香港的居留时间。在评估毕业生的资格时,留服中心将全面审查申请人的出入境记录。
  • 拟于毕业后申请内地学历认证的学生须注意,若于修读期间在香港居留时间过短,或未能符合留服中心要求,会对其学历认证带来不确定性及风险。
  • 学生在制定个人计划时,如修读期间的住宿及跨境外游计划等,应当谨慎考虑上述事项,作出适当安排。
  • 学生有责任了解并遵守大学有关授课式研究生课程的规定和指引。学生应参考研究生院网站以了解授课式研究生课程学务规则(General Academic Regulations (for Taught Postgraduate Programmes))和守则(Code of Practice for Taught Postgraduate Programmes)。
  • 如有任何疑问,请咨询留服中心 。
  • 此中文告示为英文版本译本。如中、英文两个版本有任何抵触或不相符之处,应以英文版本为准。 
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