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Showing 1 to 15 of 130 results Save | Export
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Gordon, Neil – Teaching Science, 2016
Cognitive Acceleration through Science Education (CASE) on the Sunshine Coast is growing rapidly. It has expanded from one inaugural Year 8 class in 2012 to the current state of play with the involvement of over 3,000 CASE students from eleven Sunshine Coast State High Schools. It is being taught by more than seventy CASE teachers with…
Descriptors: Science Course Improvement Projects, Secondary School Science, Science Achievement, Science Activities
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Balmer, Denise – School Science Review, 2014
The article describes an innovative project for year 9 (age 13-14) students that has run since 2002 with the help of professional engineers and scientists and incorporates careers information and hands-on practical work. The programme was developed to highlight alternative energy as a subject and also to provide a hands-on practical day for the…
Descriptors: Foreign Countries, Secondary School Science, Science Course Improvement Projects, Science Activities
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Langley, Mark – School Science Review, 2014
Science is at heart a practical subject, but the perception of what makes good teaching and learning through practical science is often misunderstood. Through working with teachers on professional development courses at the UK's National Science Learning Centre, and drawing on work carried out by other organisations, we present some thoughts and…
Descriptors: Delivery Systems, Educational Quality, Instructional Effectiveness, Science Course Improvement Projects
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Denholm, Allie – Education in Science, 2012
Following on from taking part in the successful "Getting Practical: improving practical work in science across the primary-secondary transition" CPD project, Uplands Community College with Wadhurst and Ticehurst Primary Schools in East Sussex worked together on developing the CPD--focusing on effective practical work across the…
Descriptors: Science Curriculum, Science Course Improvement Projects, Science Process Skills, Science Activities
Schunn, Christian – National Center for Engineering and Technology Education, 2011
At the University of Pittsburgh, the author and his colleagues have been exploring a range of approaches to design challenges for implementation in high school science classrooms. In general, their approach has always involved students working during class time over the course of many weeks. So, their understanding of what works must be…
Descriptors: Engineering Education, Engineering Technology, Scientific Principles, Learning Experience
Bongarzone, E. J. – Sci Teacher, 1970
Descriptors: Course Descriptions, Curriculum, Models, Problem Solving
Australian Science Education Project, Toorak, Victoria. – 1972
These materials form a service unit for students in grade seven science courses in Australian secondary schools. The teacher's guide lists the expected knowledge, skills, and attitudinal outcomes; suggests methods of facilitating student investigation; lists materials needed for each activity; and suggests additional references for student and…
Descriptors: Curriculum, Instructional Materials, Measurement, Science Activities
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Gard, Paul E. – Physics Teacher, 1972
Descriptors: Curriculum, Experiential Learning, Instruction, Physical Sciences
Scott, Arthur; And Others – 1967
Parts I and II of the students' guide to the three-year integrated biology, chemistry, and physics course being prepared by the Portland Project Committee are contained in this guide. A committee reviewed and selected material developed by the national course improvement groups--Physical Science Study Committee, Chemical Bond Approach, Chemical…
Descriptors: Biology, Chemistry, Curriculum, Instructional Materials
Australian Science Education Project, Toorak, Victoria. – 1972
This unit, intended for students in grades eight or nine, is a revised version of ED 053 990. The teacher's guide lists the aims of the unit, behavioral objectives, suitable references and audio-visual aids, required apparatus and materials, and provides teaching notes for each activity, including comments concerning microbiological techniques.…
Descriptors: Curriculum, Instructional Materials, Laboratory Procedures, Microbiology
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Burkman, Ernest – Science Teacher, 1974
Briefly describes the Individualized Science Instructional System (ISIS) originating from Florida State University, with support from the National Science Foundation, with emphasis on the design and development of the minicourses involved in the project. (PEB)
Descriptors: Curriculum, Curriculum Design, Individualized Instruction, Individualized Programs
Australian Science Education Project, Toorak, Victoria. – 1972
The contents of this Australian Science Education Project (ASEP) unit are designed for students who have worked through two other ASEP units: Models (ED 068 298) and Charge (SE 016 883). Three other units, Electric Circuits (ED 081 576), Minerals and Crystals (ED 058 059), and Sticking Together (ED 081 573), are considered to provide background…
Descriptors: Earth Science, Metal Industry, Metallurgy, Metals
Australian Science Education Project, Toorak, Victoria. – 1972
This verion of a unit written by the Australian Science Education project, which is preparing materials for science instruction in grades seven through ten, is available for national testing. It contains two student books, the first providing instruction for six activities considered basic to an understanding of the aquatic habitat, and reading on…
Descriptors: Biology, Curriculum, Environmental Education, Pollution
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Aldridge, Bill G. – Science Teacher, 1995
Discusses important tenets of the Scope Sequence and Coordination (SS&C) project and presents the SS&C high school project designed specifically to achieve the National Science Education Standards. Specifies the scope, sequence, and coordination of the natural sciences in grades 9 through 12 in support of general goals taken from the…
Descriptors: Educational Change, Science Activities, Science Course Improvement Projects, Science Education
Australian Science Education Project, Toorak, Victoria. – 1972
This physical science unit from the Australian Science Education Project (ASEP) focuses on electrostatics. After students complete the activities contained in the core of the unit, they have six optional activities to pursue: How do charged objects behave? (conductors, insulators, charged objects); What is blue? (formation of copper ion); Putting…
Descriptors: Electric Batteries, Electric Circuits, Electricity, Physical Sciences
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