Department of School Research, Development, and Evaluation, University of Regensburg, Regensburg, Germany.
Ann N Y Acad Sci. 2023 Mar;1521(1):112-131. doi: 10.1111/nyas.14968. Epub 2023 Feb 1.
In the present day, we need outstanding scientists, engineers, mathematicians, and medical science researchers more than ever to solve the world's most pressing issues, such as climate change, water contamination, and cyber security. Naturally, we ask the question: What does it take to develop eminence in science, technology, engineering, mathematics, and medical science (STEMM)? To answer this question, we interviewed two relevant groups of experts: 14 talent development researchers and 14 STEMM experts. The interview questions were developed based on the theoretical framework of the Actiotope Model of Giftedness and the related educational and learning capital approach that differentiates five types of exogenous resources (educational capital) and five types of endogenous resources (learning capital) that feed into talent development toward eminence. The results show that all types of capital were regarded as important by the experts for developing eminence in STEMM. However, there were also differences. We describe the educational and learning capital that talent development researchers and STEMM experts considered to be important for talent development in STEMM, as well as the similarities and differences between the two groups.
在当今时代,我们比以往任何时候都更需要杰出的科学家、工程师、数学家和医学研究人员,以解决气候变化、水污染和网络安全等全球最紧迫的问题。自然而然,我们会问:要在科学、技术、工程、数学和医学(STEMM)领域崭露头角,需要具备哪些条件?为了回答这个问题,我们采访了两组相关的专家:14 名人才发展研究人员和 14 名 STEMM 专家。访谈问题是基于天才的活动区模型的理论框架以及相关的教育和学习资本方法制定的,该方法区分了五种类型的外生资源(教育资本)和五种类型的内生资源(学习资本),这些资源为人才发展成为杰出人才提供了支持。研究结果表明,所有类型的资本都被专家认为对 STEMM 领域的杰出成就很重要。然而,也存在一些差异。我们描述了人才发展研究人员和 STEMM 专家认为对 STEMM 人才发展重要的教育和学习资本,以及这两组专家之间的相似点和不同点。