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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. Cause-effect relationships in Maxwell's equations and their implications in the teaching of electromagnetism in introductory physics courses

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

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

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

9. A synaptic temperature sensor for body cooling

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

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

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

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

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

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

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

17. Students' Reasoning When Tackling Electric Field and Potential in Explanation of DC Resistive Circuits

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

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

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

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

25. The design and evaluation of an instructional sequence on Ampere's law

26. Investigación basada en el diseño de Secuencias de Enseñanza-Aprendizaje: una línea de investigación emergente en Enseñanza de las Ciencias

27. Desarrollo iterativo de una secuencia de enseñanza/aprendizaje sobre el principio generalizado de trabajo y energía en cursos de física general universitaria

28. ¿Qué entienden los estudiantes universitarios de Física General por Fuerza Electromotriz? Un estudio en cuatro países

31. Deficiencias de comprensión y epistémicas de los estudiantes universitarios en la construcción de categorías explicativas sobre las relaciones trabajo-energía

33. El papel de la utilización de representaciones de los conceptos en las dificultades de su comprensión: el caso del campo eléctrico.

35. Actitudes y motivaciones de los estudiantes de ciencias en Bachillerato y Universidad hacia el aprendizaje de la Física

36. Ideas de los estudiantes universitarios sobre las relaciones trabajo y energía en Mecánica en cursos introductorios de Física

38. Taller de iniciación a la ciencia : una experiencia no formal en la escuela primaria

40. Investigating physics teaching and learning in a university setting

42. Dificultades de estudiantes universitarios de tres países en el aprendizaje del concepto de fuerza electromotriz en electricidad

45. Dificultades de los estudiantes universitarios en el aprendizaje de la inducción electromagnética

46. Una propuesta didáctica para un análisis crítico de los alumbrados públicos

47. Designing and evaluating a research-based Teaching sequence for electrical capacitance

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