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1.
<正>STEM教育源于美国,STEM是科学、技术、工程和数学四门学科的简称。STEM教育并不是科学、技术、工程和数学教育的简单叠加,而是强调多学科的交叉融合,将四门学科内容组合形成有机整体,以更好地培养学生的创新精神与实践能力。近年来,我国STEM教育也是遍地开花,很多地方开始尝试进行STEM教学,他们的尝试给我们科学教育工作者积累了宝贵的经验。作为一名小学科学教师,笔者也在自己的小学科学教学中进行了STEM教育的尝试,实际教学中我深  相似文献   

2.
小学科学教学融入STEM教育理念,为教师的教学设计提供了更多选择,也为学生的学习创造了更多思考空间。在科学教学中,教师要整合教学资源,创建STEM教育理念的实施环境;优化教学设计,促进STEM教育理念的实施;强化教学训练,提升STEM教育理念的实践效度;注重教学实践,实现STEM教育理念的学科融合,有效拓展教与学的宽度和长度,为学生的学科认知发展提供动力。  相似文献   

3.
《考试周刊》2019,(85):19-20
科学技术的不断变化尤其是跨越学科的教学,成为学生学习的良好辅助,在小学科学教学中教师使用STEM的教育方式可以开发出学科特色性教学内容,并且结合具体实践让小学生的学习得到更多的拓展。基于此,本文对如何实现STEM教育与小学科学的融合做出分析和研究,希望可以更好地提升学生的学习效率,也能够让小学科学教学质量得到明显的提升。  相似文献   

4.
目前,我国的新课改在不断地完善,在小学的教育中,STEM教育理念被不断地融入小学科学教育,为教师的教学设计提供了更多选择,也为学生的学习创造了更多思考空间。在科学教学中,教师要整合教学资源,创建STEM教育理念的实施环境;优化教学设计,促进STEM教育理念的实施;强化教学训练,提升STEM教育理念的实践效度;注重教学实践,实现STEM教育理念的学科融合,有效拓展教与学的宽度和长度,为学生的学科认知发展提供动力。  相似文献   

5.
STEM是科学、技术、工程、数学四个词的英文首字母集合,当前,STEM科学教育正在世界范围内迅速发展。为此,学校和教师应当全面、深刻地认识STEM科学教育的价值,领会集成与融合是STEM教育的核心思想与理念,从课程建设的高度开展STEM教育,以有创新内涵的STEM课程为载体,充分、合理地融入技术、工程和数学等学科内容,并研究它们的整合方式,探讨教学策略,从而提升STEM科学教育的价值,达到培养学生科学、技术、工程、数学素养的目的。  相似文献   

6.
STEM教育理念是目前高等教育领域的研究热点。文章阐述了STEM教育的概念、起源及其在国外高等教育领域中的应用案例,并从组成STEM教育的四门学科(科学、技术、工程和数学),分别探讨如何将STEM教育理念融入新能源材料与器件专业教育中。旨在通过多学科融合促进学生对该专业理论知识的掌握与应用,并提升学生勇于探索的创新精神和善于解决问题的实践能力。  相似文献   

7.
STEM教育是一种全新的教育理念,对优化课堂结构、提高教学质量大有裨益。在小学科学教学中,教师可从实践探究、思维训练、学科融合和情感渗透四个方面入手实施STEM教育,帮助学生实现深层次学习,促进学生全面发展。  相似文献   

8.
地理学科与STEM教育的融合是一种跨学科教学模式,它将地理学科的地理思维与STEM教育的科学、技术、工程和数学元素相结合。这种融合不仅拓宽了学生的学科视野,还促进了学生跨学科综合素养的提升。本文分析了地理学科与STEM教育的关系和互补性,阐述了两者融合培养的意义,并结合教学实践案例,提出在地理教学中融入STEM教育的策略。  相似文献   

9.
STEM教育从美国传播至世界其他许多国家,成为了许多国家战略发展、教育创新的重要途径.但实践发现,STEM教育中学科界限分明、知识不关联的现象严重阻碍了学生创新能力的培养.从知识论的视角看,STEM教育本质上是反对传统教育"知识孤立"的倾向,主张"知识融通".本文基于科学理性主义的科学精神、科学知识和科学方法构建了STEM教育的三层体系框架:信念层——STEM教育的意识状态,认识层——STEM教育的知识结构,方法层——STEM教育的思维工具.达到领域内容标准、探索学科之间不确定的相关性和确立相关知识间的逻辑关系模型,这"三步走"的STEM教育实践之路将有助于教师理解和处理STEM教育中的"知识"问题.  相似文献   

10.
中美STEM课程平移项目让我国教师亲身领略美国STEM教学方式,在唤醒学科融合意识、提升STEM教学技能、汇聚教师共同体等方面发挥积极作用。以此为契机,杭州市上城区以开放和创新的理念,从师资培训、课程开发、教师激励、实施保障等方面设计相应的策略,促进区域STEM教育的提质增效和均衡发展,为STEM教育的区域推广提供经验参考。  相似文献   

11.
Navigating the current STEM agendas and debates is complex and challenging. Perspectives on the nature of STEM education and how it should be implemented without losing discipline integrity, approaches to incorporating the arts (STEAM) and how equity in access to STEM education can be increased are just a few of the many issues faced by researchers and educators. There are no straightforward answers. Opinions on how STEM education should be advanced vary across school contexts, curricula and political arenas. This position paper addresses five core issues: (a) perspectives on STEM education, (b) approaches to STEM integration, (c) STEM discipline representation, (d) equity in access to STEM education and (e) extending STEM to STEAM. A number of pedagogical affordances inherent in integrated STEM activities are examined, with the integration of modelling and engineering design presented as an example of how such learning affordances can be capitalized on.  相似文献   

12.
美国整合性STEM教育框架基于STEM理念,阐明对整合性STEM的共识性理解,首次提供了涵盖K-12阶段的整合性STEM课程资源,绘制了STEM课程路线图,提供在课堂层次实施STEM的课程路线,为整合STEM方法的系统转型提供支持,以数据驱动STEM教学与评价,制定有效的STEM课程项目和STEM教师专业发展框架,推动整合性STEM课程实施与教学方法改革,培养学生运用STEM知识去解决真实问题,提高创新、批判性思维和解决问题的能力,培养21世纪技能。美国整合性STEM教育框架的课程理念、课程路径与课程支持系统,对我国在基础教育阶段推进STEM教育改革,开发全学段的STEM教育整体框架和课程路线图可以提供有益借鉴,包括基于标准的整合性STEM课程框架,赋能STEM教师的整合性教学实践和推动整合性STEM教育的系统性转变。  相似文献   

13.
Surrounding the national emphasis on improving STEM education, effective STEM educators are required. Connected, yet often overlooked, is the need for effective preservice STEM teaching instruction for incoming educators. At a basic level, preservice STEM teacher education should include STEM content, pedagogy, and conceptualization. However, the literature suggests no leading conception of STEM education, and little is known about how preservice STEM teachers are conceptualizing STEM education. In order to explore preservice STEM teacher conceptions of STEM education, preservice teachers at a large, Midwestern research university were given an open-ended survey eliciting both textual and visual responses. Here, we report and discuss the results of employing this instrument in relation with the current STEM conceptualization literature.  相似文献   

14.
早期STEM教育是近年来继项目活动后出现在学前教育领域的一种新的教育形态。STEM教育与项目活动非常类似,两者都是基于问题的学习,都有助于培养幼儿解决问题的能力;但同时两者在其价值取向、整合方式、探究内容、对幼儿个性化发展的促进以及教师的角色与作用等方面也有着明显的区别。项目活动更多看重的是教育的个人发展功能,而STEM教育更多追求的是教育的工具价值;项目活动是一种跨越学科领域的、大范围的整合,STEM教育则是一种围绕同类型学科的、小范围的整合;项目活动以幼儿的兴趣为出发点,探究的内容往往极为丰富多彩,基本上可以囊括幼儿生活的全部,而STEM教育主要集中在幼儿对周围物质世界的探究方面,其内容主要涉及到"物理知识"及"逻辑数理知识"两个方面;项目活动能满足所有幼儿的个性化发展需要,故而能促进所有幼儿的适宜性发展,而STEM教育则相对只能更好地满足某些特定学习风格(场独立型)的幼儿的个性化发展需要;在项目活动中,教师的"引导"作用更多地表现在对幼儿已有兴趣的合理引导,在STEM教育活动中教师的"引导"既有对幼儿已有兴趣的"引导",更有对兴趣的"引发",带有一定的"外烁论"的痕迹。厘清这些差异,有助于幼儿园教师提升相关教育理念,从而更好地开展这两种教育活动。  相似文献   

15.
Community and technical colleges serve a vital function in STEM education by training workers for medium- and high-skilled technical careers and providing employers the labor necessary to operate and maintain thriving business ventures. A curriculum developed with the elements of a systems-based approach results in a program more relevant to the needs of the institution, its students, and industry partners—and avoids the pitfalls of programs designed without a plan or process in place. To achieve validity and reliability, curriculum assessment tools should be conduits to collect critical feedback from students, graduates, and the industries and academic partners served. Research was undertaken to design and evaluate an associate degree-level STEM workforce education program at the nexus of bioenergy/bioproducts, electrical systems and maintenance, and wastewater treatment plant operations. Component to the research, a program’s graduates were interviewed and professionals representing a spectrum of manufacturing/processing-type industries were surveyed. A curriculum development and assessment model emerged to help community and technical college faculty and administrators develop, evaluate, and revise associate degree-level STEM workforce education programs.  相似文献   

16.
《学校用计算机》2012,29(1-2):157-173
Inquiry-based instruction has become a hallmark of science education and increasingly of integrated content areas, including science, technology, engineering, and mathematics (STEM) education. Because inquiry-based instruction very clearly contains surface, deep, and implicit structures as well as engages students to think and act like scientists, it is considered a signature pedagogy of science education. In this article the authors discuss the nature of scaffolded inquiry-based instruction and how it can be applied to the use of emerging technologies, such as data mashups and cloud computing, so that students not only learn the content of STEM, but can also begin answering the critical socioscientific questions that face the modern era.  相似文献   

17.
STEM教育由于强调跨学科融合和创新人才培养的理念而受到世界各国的广泛关注。我国学者的国际视野主要集中于欧美国家,而对日本的STEM教育研究甚少。造成这一现象的主要原因在于当前主流文献数据库并不支持对日语文献的检索,因此有必要借助KH Coder这一支持日语文献分析的文本数据挖掘软件来探索日本STEM教育研究的特色,以期为我国的STEM教育研究提供借鉴。通过对中日两国STEM教育研究主题高频词表与主题词共现关系网络的分析发现,日本的STEM教育研究更偏向于实践,且注重进行实证研究;实践指向下的开发主要关注教材开发,且非常注重与地方特色产业相结合;同时倡导和重视国际间合作开展STEM实践,不断输出和引进可贵经验。反观我国的STEM教育研究,则偏向于介绍国外特别是美国的STEM教育经验,课程内容偏向于STEM教育的理念及其设计等理论层面问题,非常缺乏融入本地境脉的实践和实证研究。为了更好地推进我国STEM教育的实践发展,我国学者应该借鉴日本STEM教育研究模式的特色,从实践与实证相结合、建立国际合作、融入地方境脉三方面探求STEM教育研究模式的转变。  相似文献   

18.
Inclusive STEM high schools (ISHSs) can be viewed as opportunity structures for students underrepresented in STEM. By opportunity structures, we mean an education that provides not only access to high quality STEM curriculum and instruction or “opportunity to learn,” but also the capacity to create learning environments where students can build STEM social capital and the dispositions, knowledge, skills, and networks to be successful in STEM college majors and careers. This is a cross‐case analysis of case studies that describe the design and implementation of eight “exemplar” ISHSs. Beginning with 10 hypothesized critical components, we found evidence for all 10, but present in unique patterns of prominence, depending on the school context. Further inductive analysis located an additional four emergent critical components that complete the picture of how these successful ISHSs were able to achieve their goals. Importantly, across schools, four components stood out as foundational: a flexible and autonomous administrative structure; a college‐preparatory, STEM‐focused curriculum for all; well‐prepared STEM teachers and professionalized teaching staffs; and supports for students in underrepresented groups. Although many of the critical components found in the ISHSs are also found in the school reform literature, these schools also had characteristics unique to STEM education. This paper is important in understanding STEM high schools as opportunity structures and as a school reform alternative that can help solve equity and social mobility gaps in STEM.  相似文献   

19.
通过对美国大学少数族裔STEM教育的现状分析发现,美国大学的少数族裔整体接受STEM教育的比率仍然较低,黑人学生STEM教育的参与度不高,原住民学生的STEM教育入学率低下,少数族裔女性学生在STEM职业发展中处于不利地位。这受到美国历史、文化、经济和教育等多元化因素的综合影响。为此,美国实施多元化的路径提升少数族裔STEM教育质量,例如,设置适合少数族裔发展的STEM教学培养模式,设立不同类型的STEM奖学金资助计划,建立有助于提升少数族裔STEM研究能力的研究机构,开发优秀的STEM大学课程资源等。这对我国少数民族的理工科教育的发展具有一定的借鉴意义。  相似文献   

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