Using visual, embodied, and language representations to teach the 5E instructional model of inquiry science

Teaching and Teacher Education - Tập 87 - Trang 102951 - 2020
Robyn M. Gillies1, Mary Rafter1
1The University of Queensland, Australia

Tài liệu tham khảo

Aguiar, 2010, Learning from responding to students’ questions: The authoritative and dialogic tension, Journal of Research in Science Teaching, 47, 174 Ainsworth, 2011, Drawing to learn in science, Science, 333, 1096, 10.1126/science.1204153 Australian Academy of Science, 2005 Bell, 2010, Collaborative inquiry learning: Models, tools, and challenges, International Journal of Science Education, 32, 349, 10.1080/09500690802582241 Biggs, 1982 Bybee, 2006, Enhancing science teaching and student learning: A BSCS perspective, Vol. 64, 1 Bybee, 2014, The BSCS 5E Instructional Model: Personal reflections and contemporary implications, Science and Children, 51, 10, 10.2505/4/sc14_051_08_10 Bybee, 2015 Bybee, 2006 Carolan, 2008, Using representations for teaching and learning science, Teaching Science, 54, 18 2007 Gillies, 2016, Cooperative learning: Review of research and practice, Australian Journal of Teacher Education, 41, 38, 10.14221/ajte.2016v41n3.3 Gillies, 2016, Dialogic interactions in the cooperative classroom, International Journal of Educational Research, 76, 178, 10.1016/j.ijer.2015.02.009 Gillies, 2009, Promoting reasoned argumentation, problem-solving and learning during small-group work, Cambridge Journal of Education, 39, 7, 10.1080/03057640802701945 Gillies, 2015, The effects of scientific representations on primary students’ development of scientific discourse and conceptual understandings during cooperative contemporary inquiry-science, Cambridge Journal of Education, 45, 427, 10.1080/0305764X.2014.988681 Hackling, 2008 Herbel-Eisenmann, 2005, Questioning our patterns of questioning, Mathematics Teaching in the Middle School, 10, 484, 10.5951/MTMS.10.9.0484 Hmelo-Silver, 2013, Problem-based learning: An instructional model for collaborative learning, 370 Hmelo-Silver, 2015, Using representational tools to learn about complex systems: A tale of two classrooms, Journal of Research in Science Teaching, 52, 6, 10.1002/tea.21187 Hubber, 2010, Teaching and learning about force with a representational focus: Pedagogy and teacher change, Research in Science Education, 40, 5, 10.1007/s11165-009-9154-9 Kind, 2017, Styles of scientific reasoning: A cultural rationale for science education, Science Education, 101, 8, 10.1002/sce.21251 King, 2008, Structuring peer interaction to promote higher-order thinking and complex learning in cooperating groups, 73 Klein, 2010, Multimodal literacies in science: Currency, coherence and focus, Research in Science Education, 40, 87, 10.1007/s11165-009-9159-4 Kozma, 2005, Students becoming chemists: Developing representational competence, 121 Krajcik, 2010, Supporting students in developing literacy in science, Science, 328, 456, 10.1126/science.1182593 Lin, 2012, A review of empirical evidence on scaffolding for science education, International Journal of Science and Mathematics Education, 10, 437, 10.1007/s10763-011-9322-z Mercer, 2007 National Research Council, 2000 Oliveria, 2010, Engaging students in guided science inquiry discussions: Elementary teachers’ oral strategies, Journal of Science Teacher Education, 21, 747, 10.1007/s10972-009-9168-1 Osborne, 2006, Towards a science education for all: The role of ideas, evidence and argument Osborne, 2018, Towards a more coherent model for science education than the crosscutting concepts of the next generation science standards: The affordances of styles of reasoning, Journal of Research in Science Teaching, 55, 962, 10.1002/tea.21460 Pearson, 2010, Literacy and science: Each in the service of the other, Science, 328, 459, 10.1126/science.1182595 Pouw, 2014, An embedded and embodied cognition review of instructional manipulatives, Educational Psychology Review, 26, 51, 10.1007/s10648-014-9255-5 Prain, 2012, Learning through constructing representations in science: A framework of representational construction affordances, International Journal of Science Education, 34, 2751, 10.1080/09500693.2011.626462 Prain, 2010, Representing science literacies: An introduction, Research in Science Education, 40, 1, 10.1007/s11165-009-9153-x Rennie, 2005, Science awareness and scientific literacy, Teaching Science, 51, 10 Scott, 2006, The tension between authoritative and dialogic discourse: A fundamental characteristic of meaning making interactions in high school science lessons, Science Education, 90, 605, 10.1002/sce.20131 Tytler, 2007, Re-imagining Science Education: Engaging the students in science for Australia’s future Tytler, 2016, Constructing representations to learn science, 159