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Helping Students Connect Interdisciplinary Concepts and Skills in Physical Chemistry and Introductory Computing: Solving Schrodinger's Equation for the Hydrogen Atom
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Helping Students Connect Interdisciplinary Concepts and Skills in Physical Chemistry and Introductory Computing: Solving Schrodinger's Equation for the Hydrogen Atom

Oka Kurniawan, Li Ling Apple Koh, Jermaine Zhi Cheng and Maggie Pee
Journal of chemical education, Vol.96(10), pp.2202-2207
08/10/2019

Abstract

Chemistry Chemistry, Multidisciplinary Education & Educational Research Education, Scientific Disciplines Physical Sciences Science & Technology Social Sciences
Integrating knowledge across disciplines has been shown to be a challenging, and yet it is a necessary skill that university students need to develop. Students who are able to connect different concepts, perspectives, and angles of a given topic are generally more engaged and have better understanding. However, designing lesson plans or assignments that integrate knowledge across disciplines is a challenge to most instructors. This paper describes our effort to provide an interdisciplinary and independent assignment that couples topics from a Physical Chemistry course with skills taught in an Introductory Computing course. It was shown that such an interdisciplinary assignment, though done independently, can help to boost students' learning. However, it helps only in the understanding of certain aspects of the topics. We present the design of the assignment and the lessons learned for other instructors willing to adopt this kind of interdisciplinary approach.

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