From Novice to Expert in Cloud Physics: a Graph-Based Analysis of Learner Understanding

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Hauptverfasser: Weihs, Julien-Pooya, Gjerde, Vegard, Drange, Helge
Format: Preprint
Veröffentlicht: 2024
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author Weihs, Julien-Pooya
Gjerde, Vegard
Drange, Helge
author_facet Weihs, Julien-Pooya
Gjerde, Vegard
Drange, Helge
contents Understanding how learners conceptualise complex scientific systems remains a key challenge in geoscience education. We investigate the evolution of conceptual understanding of cloud physics among 153 learners, ranging from bachelor students to disciplinary experts and representing diverse academic backgrounds across STEM. To do so, we trace how knowledge structures evolve over time using metrics from a cross-sectional network analysis. The analysis characterises the quantitative and qualitative dimensions of the epistemological shift that learners experience as they mature in their understanding of the discipline. We show that in their description of the life-cycle of a cloud, they progressively transition from the general physics of the water cycle to detailed descriptions of cloud microphysical processes. A triangulation of data sources with a panel of experts complements and confirms the analysis. The results can assist lecturers in structuring their teaching towards higher levels of understanding and enable students to anticipate the key complexities and conceptual challenges in the field during their learning process. Furthermore, the generic nature of the analysis can be transferred to a wide range of disciplines.
format Preprint
id arxiv_https___arxiv_org_abs_2411_06479
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle From Novice to Expert in Cloud Physics: a Graph-Based Analysis of Learner Understanding
Weihs, Julien-Pooya
Gjerde, Vegard
Drange, Helge
Physics Education
Atmospheric and Oceanic Physics
Understanding how learners conceptualise complex scientific systems remains a key challenge in geoscience education. We investigate the evolution of conceptual understanding of cloud physics among 153 learners, ranging from bachelor students to disciplinary experts and representing diverse academic backgrounds across STEM. To do so, we trace how knowledge structures evolve over time using metrics from a cross-sectional network analysis. The analysis characterises the quantitative and qualitative dimensions of the epistemological shift that learners experience as they mature in their understanding of the discipline. We show that in their description of the life-cycle of a cloud, they progressively transition from the general physics of the water cycle to detailed descriptions of cloud microphysical processes. A triangulation of data sources with a panel of experts complements and confirms the analysis. The results can assist lecturers in structuring their teaching towards higher levels of understanding and enable students to anticipate the key complexities and conceptual challenges in the field during their learning process. Furthermore, the generic nature of the analysis can be transferred to a wide range of disciplines.
title From Novice to Expert in Cloud Physics: a Graph-Based Analysis of Learner Understanding
topic Physics Education
Atmospheric and Oceanic Physics
url https://arxiv.org/abs/2411.06479