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Arguing about argument and evidence

Disagreements and ambiguities in science education research and practice

Dados Bibliográficos

ID21392677
AutoresXiaowei Tang (0000-0002-9363-6248, Faculty of Education University of Macau Macau China), Daniel M Levin (0000-0001-6806-4228, Department of Teaching and Learning, Policy and Leadership University of Maryland College Park Maryland USA, autor correspondente), Alexander K Chumbley (Department of Teaching and Learning, Policy and Leadership University of Maryland College Park Maryland USA), Andrew Elby (0000-0002-1965-8406, Department of Teaching and Learning, Policy and Leadership University of Maryland College Park Maryland USA)
Ano2022
Volume106
Fascículo2
Páginas285-311
Data de publicação2022-03-01
Peer ReviewedSim
Open AccessSim
TipoARTICLE
PeriódicoScience Education (JOURNAL)
Identificadores do periódicoISSN: 0036-8326 • E-ISSN: 1098-237X
EditoraWiley (PUBLISHER • GB)
DOI10.1002/sce.21696
OpenAlexW4205947590
IdiomaEN
Citações recebidas2
Referências citadas50

Science education researchers agree about the importance of evidence in science practices such as argumentation. Yet, disagreements and ambiguities about what counts as “evidence” in science classrooms pervade the literature. We argue that these ambiguities and disagreements can be viewed as falling along three fault lines: (i) the source of evidence, specifically, whether it must be first‐hand; (ii) whether “evidence” must always be empirical; and (iii) the extent to which evidence is inferred, and what degree of inference transforms “evidence” into something else. In this paper, after showing how these three fault lines manifest in the literature, we argue that these three dimensions of disagreements and ambiguities are not confined to research and research‐based curricula; they are also salient in teachers' classroom practice, as illustrated by a dramatic, multiday debate between a mentor teacher and her teacher intern. After establishing the salience of the three fault lines in both research and practice, we explore whether Next Generation Science Standard (NGSS) can provide a resolution to the teachers' debate and to the disagreements/ambiguities in the literature. Our analysis reveals that NGSS reproduces rather than resolves those three fault lines—but in doing so, it invites a resolution of a different type. Instead of providing a single, precise, context‐independent definition of “evidence,” NGSS implicitly reflects a defensible view that what counts as “evidence” depends on the epistemic aims of the practices in which the students are engaged. This implied context‐dependency of what counts as good evidence use, we argue, could be made explicit in an addendum document clarifying aspects of NGSS. Doing so would provide valuable guidance to teachers, teacher educators, and researchers

Argument (complex analysis) · Argumentation theory · Cognitive psychology · Context (archaeology) · Curriculum · Educational research · Empirical evidence · Epistemology · Mathematics education · Pedagogy · Philosophy of science · Political science · Salience (neuroscience) · Salient · Science education · Sociology · Education and Critical Thinking Development · Educational Strategies and Epistemologies · Law · Philosophy · Psychology · Science Education and Pedagogy

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Obras citantes distintas2
Citações por ano0,67
Intervalo de citações2023 - 2025 (3)
Velocidade de citaçãorecent
Altamente citadoNão
Tipos de citaçãoNeutras: 2
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