Students’ Experiences of Teachers’ Ways of Unpacking Visual Representations in the Context of Intermolecular Forces
Datos Bibliográficos
| ID | 21392858 |
|---|---|
| Autores | Emelie Patron (0000-0002-9193-943X, Department of Pedagogy Linnaeus University Kalmar Sweden, autor de correspondencia), Cedric Linder (0000-0001-6409-5182, Department of Physics and Astronomy Uppsala University Uppsala Sweden), Jonathan Clark (0000-0003-1860-4323, Department of Physics and Astronomy Uppsala University Uppsala Sweden), Susanne Wikman (0000-0001-9810-5561, Department of Chemistry and Biomedical Sciences Linnaeus University Kalmar Sweden) |
| Año | 2026 |
| Volumen | 110 |
| Número | 4 |
| Páginas | 1133-1151 |
| Fecha de publicación | 2026-07-01 |
| Peer Reviewed | Sí |
| Open Access | Sí |
| Tipo | ARTICLE |
| Revista | Science Education (JOURNAL) |
| Identificadores de la revista | ISSN: 0036-8326 • E-ISSN: 1098-237X |
| Editorial | Wiley (PUBLISHER • GB) |
| DOI | 10.1002/sce.70062 |
| OpenAlex | W7134170664 |
| Idioma | EN |
| Referencias citadas | 63 |
This is the third article in a series, emanating from a project that used social semiotics and phenomenography to explore the role visual representations play in the teaching and learning of chemistry. Building on our earlier work that identified five qualitatively different ways that teachers may use to unpack visual representations in their introductory classes at upper secondary school when dealing with intermolecular forces, this article deals with how students describe their experience of chemistry teachers’ unpacking of visual representations. The theoretical thematic analysis, grounded in phenomenography and social semiotics, foregrounds qualitative differences in students’ experiences of teachers’ representational work. The results show that the ways of unpacking that we previously characterized as student‐centered were described by the students as being particularly valuable. Here, a key point from a student perspective is that the teacher reflects on how to verbally guide them through the unpacking process in ways that support them in their meaning‐making. We use these results to propose that chemistry teacher practice and education can be modified to emphasize the importance of seeing the practice of unpacking from a semiotic perspective. Furthermore, based on our findings and previous research in the chemistry education field, we conclude by suggesting a strategy that can be used in teacher education and by in‐service teachers as a basis for planning chemistry lessons and reflecting on them, particularly with respect to the visual representations employed
Context (archaeology) · Phenomenography · Qualitative research · Science education · Semiotics · Social constructivism · Social semiotics · Sociocultural evolution · Teacher education · Unpacking · Educational Theory and Curriculum Studies · Mathematics Education and Teaching Techniques · Science Education and Pedagogy
Modelling-based Teaching in Science Education
Multimodality
Introducing Multimodality
Classroom Discourse and the Space of Learning
Reading Images
DeFT
Qualitatively different ways of unpacking visual representations when teaching intermolecular forces in upper secondary school
Making semantic waves
Using Paired Depth Interviews to Collect Qualitative Data
Stimulated recall
Multimedia and understanding
Using thematic analysis in psychology
Writing in Multimodal Texts
Phenomenography ? Describing conceptions of the world around us
Stimulated Recall
On Qualitative Differences in Learning-ii Outcome as a Function of the Learner's Conception of the Task
On Qualitative Differences in Learning
Student learning and the scholarship of university teaching
| Velocidad de citación | historical |
|---|---|
| Altamente citado | No |