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Matovu, Henry; Won, Mihye; Treagust, David Franklin; Mocerino, Mauro; Ungu, Dewi Ayu Kencana; Tsai, Chin-Chung; Tasker, Roy – Chemistry Education Research and Practice, 2023
Recent studies have reported a growing trend of using student-generated diagrams for assessment in science teaching and research. However, many educators tend to use diagrams to explore students' perceptions of scientists and their work rather than explore conceptual understanding of abstract concepts. In this study, we used diagrams to…
Descriptors: Science Instruction, Molecular Structure, Scientific Concepts, Concept Formation
Matovu, Henry; Won, Mihye; Treagust, David Franklin; Ungu, Dewi Ayu Kencana; Mocerino, Mauro; Tsai, Chin-Chung; Tasker, Roy – Chemistry Education Research and Practice, 2023
In recent years, chemistry educators are increasingly adopting immersive virtual reality (IVR) technology to help learners visualise molecular interactions. However, educational studies on IVR mostly investigated its usability and user perceptions leaving out its impact on improving conceptual understanding. If they evaluated students' knowledge…
Descriptors: Science Education, Chemistry, Computer Simulation, Undergraduate Students
Brown, Daniel; Uebergang, Tanya; Masters, Nicole; Towstoless, Michelle; Hayes, Alan; Hryciw, Deanne H.; Lexis, Louise; Tangalakis, Kathy – Advances in Physiology Education, 2023
Australia-wide consensus was reached on seven core concepts of physiology. The "movement of substances" core concept with the descriptor "the movement of substances (ions or molecules) is a fundamental process that occurs at all levels of organization in the organism" was unpacked by a team of three Australian physiology…
Descriptors: Physiology, Science Instruction, Teaching Methods, Molecular Structure
Dale, Keith; Dale, Stephen G. – Teaching Science, 2018
The Australian Curriculum (n.d.) describes chemistry as having three interrelated strands, Science Inquiry Skills, Science as a Human Endeavour and Science Understanding. It also states "... the three strands of the Australian Curriculum: Science should be taught in an integrated way". This article will explore a model for integrating…
Descriptors: Foreign Countries, Science Instruction, Secondary School Science, Chemistry
Van Rooy, Wilhelmina Sabina; Chan, Eveline – International Journal of Science and Mathematics Education, 2017
This paper investigates the use of multimodal representations to assess biological understanding in the final senior secondary school public examination in New South Wales, Australia. The investigation emanates from a larger Australian study concerned with the impact of disciplinary and technological innovations on science pedagogy, particularly…
Descriptors: Foreign Countries, Science Instruction, Secondary School Students, Secondary School Science
Elsworth, Catherine; Li, Barbara T. Y.; Ten, Abilio – Journal of Chemical Education, 2017
In this letter we present an innovative and cost-effective method of constructing crystal structures using Dual Lock fastening adhesive tape with table tennis (ping pong) balls. The use of these fasteners allows the balls to be easily assembled into layers to model various crystal structures and unit cells and then completely disassembled again.…
Descriptors: Hands on Science, Science Activities, Models, Physical Sciences
Kin, Ng Hong; Ling, Tan Aik – Teaching Science, 2016
The concept of specificity of enzyme action can potentially be abstract for some students as they fail to appreciate how the three-dimensional configuration of enzymes and the active sites confer perfect fit for specific substrates. In science text books, the specificity of enzyme-substrate binding is typically likened to the action of a lock and…
Descriptors: Science Instruction, Scientific Concepts, Teaching Methods, Models
Bond, Charles – Teaching Science, 2014
William Henry Bragg moved from Cambridge in Britain to South Australia to take up a professorship at the University of Adelaide in 1885. He brought with him a broad interest in many areas of physics, but when Wilhelm Roentgen discovered X-rays in the 1890s, Bragg's interest was stimulated. William's Australian-born son, Lawrence (WL Bragg), began…
Descriptors: Physical Sciences, Science Experiments, Science Equipment, Science Education
George, Robert; Patterson, John – Teaching Science, 2014
Here is a brief history of the work of two of Australia's most famous scientists, Sir William Bragg and his son Sir Lawrence Bragg. Jointly awarded the Nobel Prize in 1915 for their groundbreaking research into the use of X-rays to study the chemical structure and function of molecules, they have contributed to our heritage and to science at an…
Descriptors: Physical Sciences, Radiology, Intellectual History, Science Education History
Leong, Noby – Teaching Science, 2014
Noby Leong is a PhD student in Chemistry at University of Adelaide working on the design of new drug delivery systems for medical applications. He's also a science communicator, part of the volunteer blogging community at RiAus and curator of his own blog "The Other Side of Science." In this article Noby shares the highs and lows that…
Descriptors: Drug Education, Molecular Biology, Molecular Structure, Physical Sciences
Lyall, Robert James – Chemistry Education Research and Practice, 2010
A study of chemistry students in an organic practical class, where they were required to work on their own, found considerable benefits in allowing them to work independently in a less organised environment. Although apprehensive at first, they soon gained a self-belief in their own abilities and were able to complete the course with minimal input…
Descriptors: Organic Chemistry, Cooperative Learning, Independent Study, Student Attitudes
Murcia, Karen – Teaching Science, 2013
Nanotechnology is guided by the assumption that with the ability to shape or re-shape at the molecular level, we could manipulate the physical world. Some speculate that this ability will be the beginning of the next technological revolution. Hence, an aim of secondary science education should be the development of scientifically literate citizens…
Descriptors: Secondary School Students, Student Attitudes, Science Curriculum, Curriculum Development
Quinn, Frances; Pegg, John; Panizzon, Debra – International Journal of Science Education, 2009
Meiosis is a biological concept that is both complex and important for students to learn. This study aims to explore first-year biology students' explanations of the process of meiosis, using an explicit theoretical framework provided by the Structure of the Observed Learning Outcome (SOLO) model. The research was based on responses of 334…
Descriptors: Biology, Scientific Concepts, Scientific Principles, Concept Formation
Ng, Wan – Teaching Science, 2009
Capturing students' interest in science at the junior levels is crucial to not only improving the uptake of science at senior levels but to promoting science literacy in all students in order to prepare them for a society that is very science and technologically driven. This paper presents nanotechnology as an emerging science that is both factual…
Descriptors: Science Interests, Scientific Literacy, Middle School Students, Student Motivation
Milne, Christine; Roche, Scott; McKay, David – Teaching Science, 2008
Giving students the opportunity to extract, manipulate and visualise DNA molecules enhances a constructivist approach to learning about modern techniques in biology and biotechnology Visualisation usually requires agarose gel electrophoresis and staining. In this article, we report on an alternative DNA stain, Nile Blue A, that may be used in the…
Descriptors: Constructivism (Learning), Genetics, Biotechnology, Science Instruction
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