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1. Recognition and Conversion of Electric Field Representations: The Case of Electric Field Lines

2. Phenomenographic Approach to Understanding Students' Learning in Physics Education

3. Electromagnetic Field Presented in Introductory Physics Textbooks and Consequences for Its Teaching

4. Guiding Students towards an Understanding of the Electromotive Force Concept in Electromagnetic Phenomena through a Teaching-Learning Sequence

5. Students' Understanding of the Concept of the Electric Field through Conversions of Multiple Representations

6. Towards a Research Program in Designing and Evaluating Teaching Materials: An Example from DC Resistive Circuits in Introductory Physics

7. Introductory University Physics Students' Understanding of Some Key Characteristics of Classical Theory of the Electromagnetic Field

8. Evaluating and Redesigning Teaching Learning Sequences at the Introductory Physics Level

9. Addressing Students' Difficulties with Faraday's Law: A Guided Problem Solving Approach

10. Rethinking Faraday's Law for Teaching Motional Electromotive Force

11. How Much Have Students Learned? Research-Based Teaching on Electrical Capacitance

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