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The Trouble with Chemical Energy: Why Understanding Bond Energies Requires an Interdisciplinary Systems Approach

机译:化学能的麻烦:为什么理解键能需要跨学科系统方法

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摘要

Helping students understand “chemical energy” is notoriously difficult. Many hold inconsistent ideas about what energy is, how and why it changes during the course of a chemical reaction, and how these changes are related to bond energies and reaction dynamics. There are (at least) three major sources for this problem: 1) the way biologists talk about chemical energy (which is also the way we talk about energy in everyday life); 2) the macroscopic approach to energy concepts that is common in physics and physical sciences; and 3) the failure of chemistry courses to explicitly link molecular with macroscopic energy ideas. From a constructivist perspective, it is unlikely that students can, without a coherent understanding of such a central concept, attain a robust and accurate understanding of new concepts. However, changes are on the horizon, guided by the increasing understanding that difficult concepts require coherent, well-designed learning progressions and the new National Research Council Framework for K–12 Science Education. We provide supporting evidence for our assertions and suggestions for an interdisciplinary learning progression designed to better approach the concept of bond energies, a first step in an understanding chemical energy and behavior of reaction systems that is central to biological systems.
机译:众所周知,帮助学生理解“化学能”非常困难。许多人对什么是能量,在化学反应过程中能量如何以及为什么改变以及这些改变如何与键能和反应动力学有关持不一致的看法。这个问题至少有三个主要来源:1)生物学家谈论化学能的方式(这也是我们谈论日常生活中能量的方式); 2)物理学和物理科学中常见的对能量概念的宏观方法; 3)化学课程未能将分子与宏观能量思想明确地联系起来。从建构主义的角度来看,如果没有对这样一个中心概念的连贯理解,学生就不可能对新概念有一个牢固而准确的理解。然而,随着对困难概念需要连贯,精心设计的学习过程以及新的国家研究理事会K-12科学教育框架的认识日益加深,变化即将出现。我们为跨学科学习进展的主张和建议提供了支持证据,旨在更好地接近键能的概念,这是理解化学能和生物系统至关重要的反应系统行为的第一步。

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