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Schultz, Madeleine; Lawrie, Gwendolyn A.; Bailey, Chantal H.; Bedford, Simon B.; Dargaville, Tim R.; O'Brien, Glennys; Tasker, Roy; Thompson, Christopher D.; Williams, Mark; Wright, Anthony H. – International Journal of Science Education, 2017
A multi-institution collaborative team of Australian chemistry education researchers, teaching a total of over 3000 first year chemistry students annually, has explored a tool for diagnosing students' prior conceptions as they enter tertiary chemistry courses. Five core topics were selected and clusters of diagnostic items were assembled linking…
Descriptors: Foreign Countries, College Freshmen, Chemistry, Diagnostic Tests
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McGinness, Lachlan P.; Savage, C. M. – Physical Review Physics Education Research, 2016
We report on progress towards the development of an Action Concept Inventory (ACI), a test that measures student understanding of action principles in introductory mechanics and optics. The ACI also covers key concepts of many-paths quantum mechanics, from which classical action physics arises. We used a multistage iterative development cycle for…
Descriptors: Introductory Courses, Optics, Mechanics (Physics), Measures (Individuals)
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Won, Mihye; Krabbe, Heiko; Ley, Siv Ling; Treagust, David F.; Fischer, Hans E. – Educational Assessment, 2017
In this study, we investigated the value of a concept map marking guide as an alternative formative assessment tool for science teachers to adopt for the topic of energy. Eight high school science teachers marked students' concept maps using an itemized holistic marking guide. Their marking was compared with the researchers' marking and the scores…
Descriptors: Science Teachers, Science Instruction, Concept Mapping, Formative Evaluation
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English, Lyn D.; King, Donna; Smeed, Joanna – Journal of Educational Research, 2017
As part of a 3-year longitudinal study, 136 sixth-grade students completed an engineering-based problem on earthquakes involving integrated STEM learning. Students employed engineering design processes and STEM disciplinary knowledge to plan, sketch, then construct a building designed to withstand earthquake damage, taking into account a number of…
Descriptors: STEM Education, Engineering, Design, Elementary School Students
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Fuller, Kathryn; Linden, Matthew D.; Lee-Pullen, Tracey; Fragall, Clayton; Erber, Wendy N.; Röhrig, Kimberley J. – Advances in Physiology Education, 2016
Advances in science education research have the potential to improve the way students learn to perform scientific interpretations and understand science concepts. We developed active, collaborative activities to teach skills in manipulating flow cytometry data using FlowJo software. Undergraduate students were given compensated clinical flow…
Descriptors: Cytology, Foreign Countries, Pathology, Science Education
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Ngu, Bing Hiong; Yeung, Alexander Seeshing; Phan, Huy P. – International Journal of Mathematical Education in Science and Technology, 2015
An experiment using a sample of 11th graders compared text editing and worked examples approaches in learning to solve dilution and molarity algebra word problems in a chemistry context. Text editing requires students to assess the structure of a word problem by specifying whether the problem text contains sufficient, missing, or irrelevant…
Descriptors: Grade 11, Algebra, Chemistry, Problem Solving
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Geelan, David; Mahaffy, Peter; Mukherjee, Michelle – Teaching Science, 2014
Scientific visualisations such as computer-based animations and simulations are increasingly a feature of high school Science instruction. Visualisations are adopted enthusiastically by teachers and embraced by students, and there is good evidence that they are popular and well received. There is limited evidence, however, of how effective they…
Descriptors: Visualization, Chemistry, Scientific Concepts, High Schools
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Gillies, Robyn M.; Nichols, Kim; Khan, Asaduzzaman – Cambridge Journal of Education, 2015
Teaching students to use and interpret representations in science is critically important if they are to become scientifically literate and learn how to communicate their understandings and learning in science. This study involved 248 students (119 boys and 129 girls) from 26 grade 6 teachers' classes in nine primary schools in Brisbane,…
Descriptors: Elementary School Science, Elementary School Students, Scientific Concepts, Concept Formation
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Tongchai, Apisit; Sharma, Manjula D.; Johnston, Ian D.; Arayathanitkul, Kwan; Soankwan, Chernchok – International Journal of Science Education, 2009
An understanding of mechanical waves is a pre-requisite for the study of many topics in advanced physics, and indeed in many other disciplines. There have been many research studies in mechanical waves, all of which have revealed that students have trouble with the basic concepts. Therefore, in order for teachers to prepare appropriate instruction…
Descriptors: Multiple Choice Tests, Diagnostic Tests, High School Students, Physics
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Hudson, Peter – Journal of Learning Design, 2005
Reform documents have provided a framework for advancing science education (e.g., The Australian National Science Standard Committee, 2002), but omit the need to assess preservice teachers prior knowledge for designing effective learning programs. A pretest-posttest 34-item survey linked to the course outcomes (associated with four constructs)…
Descriptors: Instructional Design, Preservice Teacher Education, Statistical Analysis, Elementary School Science