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1. Understanding student challenges with circulation and Amp\`ere-Maxwell law

2. Research in teaching and learning sequence design. To what extent do designers theoretical orientations about learning and the nature of science shape design decisions

3. Learning difficulties among students when applying Amp\`ere-Maxwell's law and its implications for teaching

4. Presentation of the electromagnetic field in introductory physics textbooks and consequences for its teaching

5. A Project-Based Learning Approach for the Development of Learning Factory in the Engineering Curriculum

7. Unified approach to the electromagnetic field: the role of the sources, causality and wave propagation

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

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

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

13. Discipline-Based Educational Research to Improve Active Learning at University

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

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

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

18. A Systematic Literature Review of Integrated STEM Education: Uncovering Consensus and Diversity in Principles and Characteristics.

20. A Comparison of the Attitudes of Spanish and American Secondary Science Teachers toward Global Science and Technology Based Problems/Threats

21. La investigación basada en el diseño: algunos desafíos y perspectivas.

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

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

28. Generalizing a Categorization of Students' Interpretations of Linear Kinematics Graphs

29. Identifying Student and Teacher Difficulties in Interpreting Atomic Spectra Using a Quantum Model of Emission and Absorption of Radiation

30. The Role of Science Museum Field Trips in the Primary Teacher Preparation

31. Using a Classroom Response System for Promoting Interaction to Teaching Mathematics to Large Groups of Undergraduate Students

32. Primary and Secondary Teachers' Ideas on School Visits to Science Centres in the Basque Country

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

38. University Students' Understanding of Electromagnetic Induction

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

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

42. Students' Understanding of the Special Theory of Relativity and Design for a Guided Visit to a Science Museum

43. Designing and Evaluating Research-Based Instructional Sequences for Introducing Magnetic Fields

44. Teaching Energy Conservation as a Unifying Principle in Physics

45. The Gauss and Ampere Laws: Different Laws but Similar Difficulties for Student Learning

46. Estimate of Students' Workload and the Impact of the Evaluation System on Students' Dedication to Studying a Subject in First-Year Engineering Courses

47. First-Year Engineering Students' Difficulties in Visualization and Drawing Tasks

48. University Students' Strategies for Constructing Hypothesis When Tackling Paper-and-Pencil Tasks in Physics

49. How are the Concepts and Theories of Acid-Base Reactions Presented? Chemistry in Textbooks and as Presented by Teachers

50. The Nature of Science and Its Implications for Physics Textbooks: The Case of Classical Magnetic Field Theory

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