Epistemologically authentic inquiry in schools: A theoretical framework for evaluating inquiry tasks
Top Cited Papers
Open Access
- 19 February 2002
- journal article
- learning
- Published by Wiley in Science Education
- Vol. 86 (2) , 175-218
- https://doi.org/10.1002/sce.10001
Abstract
A main goal of science education is to help students learn to reason scientifically. A main way to facilitate learning is to engage students in inquiry activities such as conducting experiments. This article presents a theoretical framework for evaluating inquiry tasks in terms of how similar they are to authentic science. The framework helps identify the respects in which these reasoning tasks are similar to and different from real scientific research. The framework is based on a recent theory of reasoning, models‐of‐data theory. We argue that inquiry tasks commonly used in schools evoke reasoning processes that are qualitatively different from the processes employed in real scientific inquiry. Moreover, school reasoning tasks appear to be based on an epistemology that differs from the epistemology of authentic science. Inquiry tasks developed by researchers have increasingly captured features of authentic science, but further improvement is still possible. We conclude with a discussion of the implications of our analysis for research, assessment, and instruction. © 2002 Wiley Periodicals, Inc. Sci Ed 86:175–218, 2002; DOI 10.1002/sce.10001Keywords
This publication has 59 references indexed in Scilit:
- The Generality/Specificity of Expertise in Scientific ReasoningCognitive Science, 1999
- Inquiry, Modeling, and Metacognition: Making Science Accessible to All StudentsCognition and Instruction, 1998
- Teaching for Understanding: A Study of Students' Preinstruction Theories of Matter and a Comparison of the Effectiveness of Two Approaches to Teaching About Matter and DensityCognition and Instruction, 1997
- Collaborative Discovery in a Scientific DomainCognitive Science, 1997
- The Impact of Goal Specificity on Strategy Use and the Acquisition of Problem StructureCognitive Science, 1996
- Teacher epistemology and scientific inquiry in computerized classroom environmentsJournal of Research in Science Teaching, 1995
- An Investigation of Problem Framing and Solving in a Grade 8 Open-Inquiry Science ProgramJournal of the Learning Sciences, 1994
- Science as Model Building: Computers and High-School GeneticsEducational Psychologist, 1992
- Appropriating Scientific Discourse: Findings From Language Minority ClassroomsJournal of the Learning Sciences, 1992
- ‘An experiment is when you try it and see if it works’: a study of grade 7 students’ understanding of the construction of scientific knowledgeInternational Journal of Science Education, 1989