Science teaching based on cognitive load theory: Engaged students, but cognitive deficiencies

Studies in Educational Evaluation - Tập 38 - Trang 127-134 - 2012
Barbara Meissner1, Franz X. Bogner1
1University of Bayreuth, Chair of Biology Education, GER-95440 Bayreuth, Germany

Tài liệu tham khảo

Chandler, 1991, Cognitive load theory and the format of instruction, Cognition and Instruction, 8, 293, 10.1207/s1532690xci0804_2 Clark, 2006, Motivational challenges experienced in highly complex learning environments, 27 de Jong, 2010, Cognitive load theory, educational research, and instructional design: Some food for thought, Instructional Science, 38, 105, 10.1007/s11251-009-9110-0 Deci, 1981, Characteristics of the rewarder and intrinsic motivation of the rewardee, Journal of Personality and Social Psychology, 40, 1, 10.1037/0022-3514.40.1.1 Eysenck, 1992, Anxiety and performance: The processing efficiency theory, Cognition and Emotion, 6, 409, 10.1080/02699939208409696 Gerjets, 2009, The scientific value of cognitive load theory: A research agenda based on the structuralist view of theories, Educational Psychology Review, 21, 43, 10.1007/s10648-008-9096-1 Gillies, 2010, Increasing explanatory behaviour, problem-solving, and reasoning within classes using cooperative group work, Instructional Science Goldman, 2009, Explorations of relationships among learners, tasks, and learning, Learning and Instruction, 19, 451, 10.1016/j.learninstruc.2009.02.006 Gopher, 1984, On the psychophysics of workload: Why bother with subjective measures?, Human Factors, 26, 519, 10.1177/001872088402600504 Grolnick, 1987, Autonomy in children's learning: An experimental and individual difference investigation, Journal of Personality and Social Psychology, 52, 890, 10.1037/0022-3514.52.5.890 Hofstein, 2004, The laboratory in science education: Foundations for the twenty-first century, Science Education, 88, 28, 10.1002/sce.10106 Kalyuga, 2007, Expertise reversal effect and its implications for learner-tailored instruction, Educational Psychology Reviews, 19, 509, 10.1007/s10648-007-9054-3 Kalyuga, 2003, The expertise reversal effect, Educational Psychologist, 38, 23, 10.1207/S15326985EP3801_4 Kalyuga, 2001, When problem solving is superior to studying worked examples, Journal of Educational Psychology, 93, 579, 10.1037/0022-0663.93.3.579 Kirschner, 2006, Why minimal guidance during instruction does not work: An analysis of the failure of constructivist, discovery, problem-based, experiental, and inquiry-based teaching, Educational Psychologist, 41, 75, 10.1207/s15326985ep4102_1 Klahr, 2004, The equivalence of learning paths in early science instruction – Effects of direct instruction and discovery learning, Psychological Science, 15, 661, 10.1111/j.0956-7976.2004.00737.x Koedinger, 2007, Exploring the assistance dilemma in experiments with cognitive tutors, Educational Psychology Review, 19, 239, 10.1007/s10648-007-9049-0 Laukenmann, 2003, An investigation of the influence of emotional factors on learning in physics instruction, International Journal of Science Education, 25, 489, 10.1080/09500690210163233 Lunetta, 2007, Learning and teaching in the school science laboratory: An analysis of research, theory, and practice, 393 Meissner, 2011, Enriching Students’ Education Using Interactive Workstations at a Salt Mine Turned Science Center, Journal of Chemical Education, 88, 510, 10.1021/ed1006103 Meissner, B., & Bogner, F. Towards Cognitive Load Theory as Guideline for Instructional Design in Science Education. Manuscript submitted for publication. Moreno, 2004, Decreasing cognitive load for novice students: Effects of explanatory versus corrective feedback in discovery-based multimedia, Instructional Science, 32, 99, 10.1023/B:TRUC.0000021811.66966.1d Moreno, 2010, Cognitive load theory: More food for thought, Instructional Science, 38, 135, 10.1007/s11251-009-9122-9 Orion, 1994, Factors that influence learning during a scientific field trip in a natural environment, Journal of Research in Science Teaching, 31, 1097, 10.1002/tea.3660311005 Ozcinar, 2009, The topic of instructional design in research journals: A citation analysis for the years 1980–2008, Australasian Journal of Educational Technology, 25, 559, 10.14742/ajet.1129 Paas, 1992, Training strategies for attaining transfer of problem-solving skill in statistics: A cognitive-load approach, Journal of Educational Psychology, 84, 429, 10.1037/0022-0663.84.4.429 Paas, 2005, A motivational perspective on the relation between mental effort and performance: Optimizing learner involvement in instruction, Educational Technology Research and Development, 53, 25, 10.1007/BF02504795 Paas, 2010, Cognitive load theory: New conceptualizations, specifications, and integrated research perspectives, Educational Psychology Review, 22, 115, 10.1007/s10648-010-9133-8 Paas, 1993, The efficiency of instructional conditions: An approach to combine mental effort and performance measures, Human Factors, 35, 737, 10.1177/001872089303500412 Paas, 1994, Variability of worked examples and transfer of geometrical problem-solving skills: A cognitive-load approach, Journal of Educational Psychology, 86, 122, 10.1037/0022-0663.86.1.122 Patrick, 1993, What motivates children's behavior and emotion? Joint effects of perceived control and autonomy in the academic domain, Journal of Personality and Social Psychology, 65, 781, 10.1037/0022-3514.65.4.781 Pollock, 2002, Assimilating complex information, Learning and Instruction, 12, 61, 10.1016/S0959-4752(01)00016-0 Randler, 2011, Reliability and validation of a short scale to measure situational emotions in science education, International Journal of Environmental & Science Education, 6, 359 Reeve, 1996 Reeve, 2002, Self-determination theory applied to educational settings, 183 Reeve, 2006, What teachers say and do to support students autonomy during a learning activity, Journal of Educational Psychology, 98, 209, 10.1037/0022-0663.98.1.209 Reeve, 2004, Enhancing students’ engagement by increasing teachers’ autonomy support, Motivation and Emotion, 28, 147, 10.1023/B:MOEM.0000032312.95499.6f Renkl, 2009, Example-based learning in heuristic domains: A cognitive load theory account, Educational Psychology Review, 21, 67, 10.1007/s10648-008-9093-4 Ryan, 2000, Intrinsic and extrinsic motivations: Classic definitions and new directions, Contemporary Educational Psychology, 25, 54, 10.1006/ceps.1999.1020 Scharfenberg, 2007, Learning in a gene technology laboratory with educational focus – results of a teaching unit with authentic experiments, Biochemistry and Molecular Biology Education, 35, 28, 10.1002/bmb.1 Schnotz, 2007, A reconsideration of cognitive load theory, Educational Psychology Review, 19, 469, 10.1007/s10648-007-9053-4 Schnotz, 2010, Reanalyzing the expertise reversal effect, Instructional Science, 38, 315, 10.1007/s11251-009-9104-y Skinner, 2008, Engagement and disaffection in the classroom: Part of a larger motivational dynamic?, Journal of Educational Psychology, 100, 765, 10.1037/a0012840 1975 Sweller, 2010, Element interactivity and intrinsic, extraneous, and germane cognitive load, Educational Psychology Review, 22, 123, 10.1007/s10648-010-9128-5 Sweller, 1994, Why some material is difficult to learn, Cognition and Instruction, 12, 185, 10.1207/s1532690xci1203_1 Sweller, 1990, Cognitive load as a factor in the structuring of technical material, Journal of Experimental Psychology: General, 119, 176, 10.1037/0096-3445.119.2.176 Sweller, 1998, Cognitive architecture and instructional design, Educational Psychology Review, 10, 251, 10.1023/A:1022193728205 van Gog, 2008, Instructional efficiency: Revisiting the original construct in educational research, Educational Psychologist, 43, 16, 10.1080/00461520701756248 van Merriënboer, 2006, Teaching complex rather than simple tasks: Balancing intrinsic and germane load to enhance transfer of learning, Applied Cognitive Psychology, 20, 343, 10.1002/acp.1250 van Merriënboer, 2002, Redirecting learners’ attention during training: Effects on cognitive load, transfer test performance and training efficiency, Learning and Instruction, 12, 11, 10.1016/S0959-4752(01)00020-2 Winberg, 2007, Students’ cognitive focus during a chemistry laboratory exercise: Effects of a computer-simulated prelab, Journal of Research in Science Teaching, 44, 1108, 10.1002/tea.20217