{"title":"Drawing a Portrayal of Science Teachers’ Epistemic Cognitions Around Different Concepts Characterizing Science Education","authors":"Yilmaz Soysal","doi":"10.1007/s11191-023-00494-9","DOIUrl":null,"url":null,"abstract":"<p>The objective of this descriptive study is to provide a detailed examination of science teachers’ perspectives regarding scientific knowledge, science learning, science concepts, and science teaching. A total of 304 science teachers created metaphors to express their cognitions about the epistemological aspects of their work. A specifically designed metaphor construction task was used to capture the participants’ epistemic cognitions. The participants’ metaphorical reasoning was captured since the metaphors might deliver experience-based conceptions, perceptions, beliefs, or comprehensions about four concepts regarding epistemic cognition. In-depth, descriptive analysis was undertaken through open, axial, and selective coding procedures with higher validity and reliability. The participants’ epistemic cognitions were gathered around five-order themes: function (accepting science knowledge and science concepts and their teaching/learning as vital entities by adopting an instrumentalist or tool-based perspective), personal epistemological stance (seeing science knowledge and science learning as an endless and immortal accumulation of factual knowledge), motivational construct (scientific knowledge attaches importance so it should be taught in the school systems in the science lessons), sociological construct (science knowledge provides power), and pedagogical construct (not the science knowledge but the science concepts should be taught in the schools in the science lesson). This study concluded that the participant science teachers mostly held conventional orientations in externalizing their epistemic cognitions. Theory-based explanations are presented in terms of the participants’ traditional epistemic orientations in the sense of future directions of further research.</p>","PeriodicalId":771,"journal":{"name":"Science & Education","volume":"1 1","pages":""},"PeriodicalIF":3.1000,"publicationDate":"2024-01-22","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Science & Education","FirstCategoryId":"95","ListUrlMain":"https://doi.org/10.1007/s11191-023-00494-9","RegionNum":1,"RegionCategory":"教育学","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q1","JCRName":"EDUCATION & EDUCATIONAL RESEARCH","Score":null,"Total":0}
引用次数: 0
Abstract
The objective of this descriptive study is to provide a detailed examination of science teachers’ perspectives regarding scientific knowledge, science learning, science concepts, and science teaching. A total of 304 science teachers created metaphors to express their cognitions about the epistemological aspects of their work. A specifically designed metaphor construction task was used to capture the participants’ epistemic cognitions. The participants’ metaphorical reasoning was captured since the metaphors might deliver experience-based conceptions, perceptions, beliefs, or comprehensions about four concepts regarding epistemic cognition. In-depth, descriptive analysis was undertaken through open, axial, and selective coding procedures with higher validity and reliability. The participants’ epistemic cognitions were gathered around five-order themes: function (accepting science knowledge and science concepts and their teaching/learning as vital entities by adopting an instrumentalist or tool-based perspective), personal epistemological stance (seeing science knowledge and science learning as an endless and immortal accumulation of factual knowledge), motivational construct (scientific knowledge attaches importance so it should be taught in the school systems in the science lessons), sociological construct (science knowledge provides power), and pedagogical construct (not the science knowledge but the science concepts should be taught in the schools in the science lesson). This study concluded that the participant science teachers mostly held conventional orientations in externalizing their epistemic cognitions. Theory-based explanations are presented in terms of the participants’ traditional epistemic orientations in the sense of future directions of further research.
期刊介绍:
Science Education publishes original articles on the latest issues and trends occurring internationally in science curriculum, instruction, learning, policy and preparation of science teachers with the aim to advance our knowledge of science education theory and practice. In addition to original articles, the journal features the following special sections: -Learning : consisting of theoretical and empirical research studies on learning of science. We invite manuscripts that investigate learning and its change and growth from various lenses, including psychological, social, cognitive, sociohistorical, and affective. Studies examining the relationship of learning to teaching, the science knowledge and practices, the learners themselves, and the contexts (social, political, physical, ideological, institutional, epistemological, and cultural) are similarly welcome. -Issues and Trends : consisting primarily of analytical, interpretive, or persuasive essays on current educational, social, or philosophical issues and trends relevant to the teaching of science. This special section particularly seeks to promote informed dialogues about current issues in science education, and carefully reasoned papers representing disparate viewpoints are welcomed. Manuscripts submitted for this section may be in the form of a position paper, a polemical piece, or a creative commentary. -Science Learning in Everyday Life : consisting of analytical, interpretative, or philosophical papers regarding learning science outside of the formal classroom. Papers should investigate experiences in settings such as community, home, the Internet, after school settings, museums, and other opportunities that develop science interest, knowledge or practices across the life span. Attention to issues and factors relating to equity in science learning are especially encouraged.. -Science Teacher Education [...]