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dc.contributor.authorSolli, Anne
dc.date.accessioned2019-02-14T10:31:47Z
dc.date.available2019-02-14T10:31:47Z
dc.date.issued2019-02-14
dc.identifier.isbn978-91-7346-999-9 (print)
dc.identifier.isbn978-91-7346-499-4 (pdf)
dc.identifier.issn0436-1121
dc.identifier.urihttp://hdl.handle.net/2077/58396
dc.description.abstractThe ambition of this dissertation is to develop knowledge of students’ reasoning and digital inquiry about socio-scientific controversies (SSCs) in science education contexts. Motivating this research is the vast access to information on SSCs that have become readily available to us through network-based digital media and the challenge of selecting, analyzing and evaluating claims from various disciplines and perspectives. The dissertation is grounded in sociocultural and dialogical perspectives which imply that students’ reasoning is investigated as being embedded in activity and shaped by the framings, demands, and traditions constituted through practice. The overarching research questions concern how student reasoning is 1) contingent on institutional, social and material contexts, 2) mediated by mapping tools developed within Science and Technology Studies (STS) when SSCs found online are investigated, and 3) the kinds of communicative competences displayed when students investigate SSCs digitally. Empirical material was collected in two different educational institutions. At a technical university, data collection was focused on group work on genetically modified (GM) food in an introductory biotechnology course (study I). At a science program in an upper secondary school, the focus was on group work on handling SSCs by using digital mapping tools (study II, III, IV). The data comprises several ethnographic sources including video-recordings, field notes, documents, as well as artefacts produced by students. The findings are presented in four studies: Study I reports on how students came to understand how to articulate an appropriate argument in a techno-scientific community exhibiting the features of biotechnological discourse, a community-specific use of language that legitimates the epistemic and moral authority of science and marginalizes GMO opponents. Study II reports on how students recirculate a message from a scientific study that has been widely spread online that claims that GMO causes cancer in rats. It shows how such ‘appeals to science’ gained their meaning and rhetorical power as a discursive resource intrinsic to different Communicative Activity Types (CATs). Study III reports on how students’ unfolding discourses on socio-scientific controversies (SSC) can be fruitfully analyzed by using dialogical theories. The findings illuminate how students discursively manage the multivocality and multimodality inherent in SSI online and reveal a set of discursive means that the students use to handle the many perspectives involved when communicating about an issue. Study IV reports on how a digital network visualization tool together with other mediational means such as a task provided by teachers, supports students when analysing data found online. The analysis shows how tool-mediated activity provides means for students to work out what is relevant and useful in a corpus of online data, categorizing online material in terms of criteria such as institutional status, trustworthiness, and position of a controversy. Overall, this dissertation points to the importance of learning not only to make what appears to be well-founded knowledge claims by appealing to science, but also the need to understand how science is used rhetorically in different contexts in order to develop appropriate contextualized responses to complex issues in a pluralist, democratic society in the Internet age.sv
dc.language.isoengsv
dc.relation.ispartofseriesGothenburg Studies in Educational Sciencessv
dc.relation.ispartofseries427sv
dc.relation.haspartSolli, A., Bach, F., & Åkerman, B. (2014). Learning to argue as a biotechnologist: disprivileging opposition to genetically modified food. Cultural Studies of Science Education, 9(1), 1–23. ::doi::10.1007/s11422-013-9528-1sv
dc.relation.haspartSolli A. (under review) Appeals to science: recirculation of online claims in socio-scientific reasoning.sv
dc.relation.haspartSolli, A., Hillman, T., & Mäkitalo, Å. (2017). Navigating the Complexity of Socio-scientific Controversies—How Students Make Multiple Voices Present in Discourse. Research in Science Education. ::doi::10.1007/s11165-017-9668-5sv
dc.relation.haspartSolli, A., Mäkitalo, Å., & Hillman, T. (2018). Rendering controversial socioscientific issues legible through digital mapping tools. International Journal of Computer-Supported Collaborative Learning, 13(4), 391–418. ::doi::10.1007/s11412-018-9286-xsv
dc.subjectscience educationsv
dc.subjectdigital toolssv
dc.subjectcontroversy mappingsv
dc.subjectsocio-scientific reasoningsv
dc.subjectvideo analysissv
dc.subjectSSIssv
dc.titleHandling socio-scientific controversy:Students' reasoning through digital inquirysv
dc.typeText
dc.type.svepDoctoral thesiseng
dc.gup.mailanne.solli@gu.sesv
dc.type.degreeDoctor of Philosophysv
dc.gup.originGöteborgs universitet. Utbildningsvetenskapliga fakultetenswe
dc.gup.originUniversity of Gothenburg. Faculty of Educationeng
dc.gup.departmentDepartment of Education, Communication and Learning ; Institutionen för pedagogik, kommunikation och lärandesv
dc.gup.price212
dc.gup.defenceplaceFredagen den 8 mars 2019, kl 13.00, Göteborgs universitet, Pedagogen, Lokal:BE 036sv
dc.gup.defencedate2019-03-08
dc.gup.dissdb-fakultetUF


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