Journal of Research in Science Teaching · 2004 · 707 citations · 54 references
Moral ReasoningScience EducationBehavioral Decision MakingSocial PsychologyScience TeachingScience EthicEducationTheoretical Knowledge BaseIndividual Decision MakingResearch EthicsPsychologySocial SciencesStem EducationGenetic Engineering DilemmasSituational ReasoningSocial ReasoningGenetic Engineering ScenariosBioethicsDecision TheoryCognitive ScienceScientific LiteracyReasoning About ActionSocial CognitionMoral PsychologyReasoningSocioscientific Decision MakingNatural SciencesSocial BehaviorInformal ReasoningDecision SciencePersuasion
The study aims to expand theoretical understanding of science education reform by examining how individuals negotiate and resolve genetic engineering dilemmas within socioscientific contexts. Using qualitative methods, 30 college students participated in two semi‑structured interviews that explored informal reasoning across six genetic engineering scenarios. Students employed rationalistic, emotive, and intuitive reasoning—often in combination—and integrated moral considerations, highlighting the need to value intuition and emotion alongside reason in science classrooms. © 2004 Wiley Periodicals, Inc., J Res Sci Teach 42:112–138, 2005.
The purpose of this study is to contribute to a theoretical knowledge base through research by examining factors salient to science education reform and practice in the context of socioscientific issues. The study explores how individuals negotiate and resolve genetic engineering dilemmas. A qualitative approach was used to examine patterns of informal reasoning and the role of morality in these processes. Thirty college students participated individually in two semistructured interviews designed to explore their informal reasoning in response to six genetic engineering scenarios. Students demonstrated evidence of rationalistic, emotive, and intuitive forms of informal reasoning. Rationalistic informal reasoning described reason-based considerations; emotive informal reasoning described care-based considerations; and intuitive reasoning described considerations based on immediate reactions to the context of a scenario. Participants frequently relied on combinations of these reasoning patterns as they worked to resolve individual socioscientific scenarios. Most of the participants appreciated at least some of the moral implications of their decisions, and these considerations were typically interwoven within an overall pattern of informal reasoning. These results highlight the need to ensure that science classrooms are environments in which intuition and emotion in addition to reason are valued. Implications and recommendations for future research are discussed. © 2004 Wiley Periodicals, Inc. J Res Sci Teach 42: 112–138, 2005
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