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Polyak, Steven – Teaching Science, 2014
Modern drug discovery programs require the contribution of researchers in a number of specialist areas. One of these areas is structural biology. Using X-ray crystallography, the molecular basis of how a drug binds to its biological target and exerts its mode of action can be defined. For example, a drug that binds into the active site of an…
Descriptors: Biology, Guides, Molecular Biology, Physical Sciences
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VanRooy, Wilhelmina; Sultana, Khalida – Teaching Science, 2010
This article describes a simple, inexpensive, easy to conduct gel-electrophoresis activity using food dyes. It is an alternative to the more expensive counterparts which require agarose gel, DNA samples, purchased chamber and Tris-borate-EDTA buffer. We suggest some learning activities for senior biology students along with comments on several…
Descriptors: Biology, Science Instruction, Science Activities, Learning Activities
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Alexander, Athalie; Russo, Sharon – Teaching Science, 2010
Capitalising on areas in which teachers feel most comfortable, the teaching of Biology, environmental education or nature to young children can be an alternative way of introducing and understanding Science. A "Citizen Science" program currently being run by the University of South Australia (UniSA) may be an appropriate starting point.…
Descriptors: Environmental Education, Language Arts, Foreign Countries, Science Education
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Dawson, Vaille; Carson, Katherine; Venville, Grady – Teaching Science, 2010
The purpose of this project was to provide innovative and cutting edge genetics materials for 14-17 year olds (Year 10-12) in Australian schools, which aimed to engage students and encourage evidence based decision-making. In 2008, an Australian School Innovation in Science, Technology and Mathematics (ASISTM) project called "Genetics…
Descriptors: Feedback (Response), Genetics, Workshops, Foreign Countries
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Williams, Jenni-Lea – Teaching Science, 2009
Educators are increasingly looking to Information and Communications Technology (ICT) as a means of enhancing student learning. The New Life Sciences (NLS) is a domain where complex and often abstract concepts must be communicated from a scientific perspective and understood by the student in terms of their underlying implications. This…
Descriptors: Science Instruction, Teaching Methods, Misconceptions, Evolution
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Bauer, Adriana – Teaching Science, 2009
This article evaluates three online educational resources on the Queensland Museum website in terms of their use of ICTs in science education; how they relate to the Queensland Middle School Science Curriculum and the Senior Biology, Marine Studies, Science 21 syllabuses; their visual appeal and level of student engagement; the appropriateness of…
Descriptors: Electronic Learning, Museums, Scientific Literacy, Science Education
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Chong, Cordelia – Teaching Science, 2009
When students make the transition from one curriculum to another, with significant overlap of content, the challenge is not so much to impart new information but rather to tap into students' existing knowledge base. The purpose of this study was to determine if achievement in an external examination that requires analysis could be enhanced by the…
Descriptors: Computer Assisted Instruction, Foreign Countries, Biology, Science Achievement
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Eiser, Simone; Knight, Bruce Allen – Teaching Science, 2008
Increasingly, the general media cover new advancements and research in the field of biology. Stem cell research, emerging diseases and bioethics are some of the issues gaining public attention. The rate of increase of these new developments creates additional challenges to teachers of biology as they try to remain abreast of new information and…
Descriptors: Biology, Science Teachers, Faculty Development, Foreign Countries