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arXiv: Physics Education | 2017

Insights into teaching quantum mechanics in secondary and lower undergraduate education

K. Krijtenburg-Lewerissa; Hendrik Jan Pol; Alexander Brinkman; W.R. van Joolingen

This study presents a review of the current state of research on teaching quantum mechanics in secondary and lower undergraduate education. A conceptual approach to quantum mechanics is being implemented in more and more introductory physics courses around the world. Because of the differences between the conceptual nature of quantum mechanics and classical physics, research on misconceptions, testing, and teaching strategies for introductory quantum mechanics is needed. For this review, 74 articles were selected and analyzed for the misconceptions, research tools, teaching strategies, and multimedia applications investigated. Outcomes were categorized according to their contribution to the various subtopics of quantum mechanics. Analysis shows that students have difficulty relating quantum physics to physical reality. It also shows that the teaching of complex quantum behavior, such as time dependence, superposition, and the measurement problem, has barely been investigated for the secondary and lower undergraduate level. At the secondary school level, this article shows a need to investigate student difficulties concerning wave functions and potential wells. Investigation of research tools shows the necessity for the development of assessment tools for secondary and lower undergraduate education, which cover all major topics and are suitable for statistical analysis. Furthermore, this article shows the existence of very diverse ideas concerning teaching strategies for quantum mechanics and a lack of research into which strategies promote understanding. This article underlines the need for more empirical research into student difficulties, teaching strategies, activities, and research tools intended for a conceptual approach for quantum mechanics.


Teaching/Learning Physics: Integrating Research into Practice, GIREP-MPTL 2014 International Conference | 2014

The practical side of quantum mechanics: development and evaluation of a box with conceptual practicals for the subject of Quantum Mechanics

Hendrik Jan Pol; Aernout van Rossum; Wouter van Joolingen


NVOX | 2013

De letter en de geest : Vakspecifieke regels bij de centrale examens natuurkunde

Hendrik Jan Pol; Jacqueline Wooning; Pieter Smeets; Anneke Thurlings


ESERA Conference 2013 | 2013

Secondary school students’ and teachers’ perceptions about research and design

Hendrik Jan Pol


40e Onderwijs Research Dagen 2013: Over Waarderen | 2013

Opvattingen van leerlingen over onderzoeken en ontwerpen? : Een case-study naar de perceptie van leerdoelen van leerlingen van O&O in het Technasium

Hendrik Jan Pol


WCPE 2012, The World Conference on Physics Education: Book of Abstracts | 2012

Getting practical in the Netherlands

Hendrik Jan Pol; Wim Sonneveld


Archive | 2011

Implementing Technological Design: Case Study Technasium.

Hendrik Jan Pol; Jan T. van der Veen


38e Onderwijs Research Dagen 2011 : Passie voor Leren | 2011

Leerdoelen stellen bij implementatie van technisch ontwerpen in het voortgezet onderwijs: casestudy Technasium.

Hendrik Jan Pol; Jan T. van der Veen


Archive | 2010

Difference of goals when implementing technical design in secondary science education.

Hendrik Jan Pol; J.S. Antoniow


NVOX | 2010

De computer helpt.

Hendrik Jan Pol

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Alexander Brinkman

MESA+ Institute for Nanotechnology

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