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Correlation between tools for thinking; arts, crafts, and design avocations; and scientific achievement among STEMM professionals

视觉思维 艺术 数学教育 心理学 手工艺品 批判性思维 心理模型 创造性思维 样品(材料) 创造力 社会心理学 视觉艺术 艺术 认知科学 化学 色谱法
作者
Robert Root‐Bernstein,Megan Van Dyke,Amber Peruski,Michèle Root-Bernstein
出处
期刊:Proceedings of the National Academy of Sciences of the United States of America [National Academy of Sciences]
卷期号:116 (6): 1910-1917 被引量:30
标识
DOI:10.1073/pnas.1807189116
摘要

Previous studies of science, technology, engineering, mathematics, and medical (STEMM) professionals have identified a common “mental toolkit” composed of 13 “tools for thinking” that STEMM professionals use in their problem raising and problem solving. The present research surveyed a convenience sample of 225 STEMM professionals to investigate whether these “thinking tools” are correlated with STEMM achievement measured variously as patents filed or licensed, companies founded, number of papers and books published, and copyrights assigned. Some mental skills such as modeling and playing are significantly correlated with patent filings and licenses, and others are correlated with different measures of STEMM achievement. Previous research has also demonstrated that some of these thinking tools, most notably visual thinking skills, can be taught through various arts, crafts, and design (ACD) practices, resulting in significant improvements in STEMM learning outcomes. The present research therefore investigates in the survey pool whether ACD are associated with the same measures of STEMM achievement as thinking tool use. Correlations exist between use of some thinking tools and particular ACD avocations: Modeling and playing are correlated with persistent crafts avocations such as metalworking, woodworking, and mechanics, which are, in turn, significantly correlated with patent production. Most survey participants were explicitly aware of the connections between their ACD avocations; their STEMM work; and the tools, skills, and knowledge derived from the former. We conclude that integrating ACD with STEMM content by means of tools for thinking may be an effective way to achieve improved STEMM learning outcomes.
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