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Introduction to Systems Thinking for the Chemistry Education Community

机译:化学教育社区的系统介绍

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Within recent history, both science research and science education have been largely reductionist in perspective. While the reductionist approach has resulted in a significant increase in our knowledge of the natural world and in great technological advances, it is not sufficient for addressing global world challenges, such as sustainability, pollution, climate change, and poverty. We, as members of the Systems Thinking in Chemistry Education (STICE) project, argue that for science in general, and chemistry in specific, to continue to advance and for citizens to be prepared to participate knowledgeably and democratically in science-related policy decisions, the reductionist approaches that are commonly used in chemistry research and chemistry education must be complemented with a more holistic approach. Systems thinking is such an approach. This article discusses the historical development, describes the key characteristics, and presents some skills and competencies associated with systems thinking. Our intention is to provide chemical educators with enough basic information about systems thinking that they can consider why and how such an approach might be applied in the education of both future chemists and future global citizens.
机译:在近期历史内,科学研究和科学教育都在很大程度上减少了视角。虽然减少师范方法导致了我们对自然界知识的显着增加,但在巨大的技术进步方面,它不足以解决全球世界挑战,例如可持续性,污染,气候变化和贫困。我们作为化学教育(Stice)项目的系统思想的成员,辩称,对于一般的科学,以及特定的化学,继续前进,并为公民准备参与知识和民主的科学相关政策决定,在化学研究和化学教育中常用的还原剂方法必须与更全面的方法相辅相成。系统认为是一种方法。本文讨论了历史发展,描述了关键特征,并提出了一些与系统思维相关的技能和能力。我们的意图是提供有关系统的有关系统的基本信息的化学教育者,以为他们可以考虑为什么以及这种方法如何应用于未来化学家和未来的全球公民的教育。

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