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Ellington, Henry – Simulation & Gaming, 2012
In this invited autobiography, the author describes the impact that educational gaming and simulation has had on his professional career. He begins by reviewing his early life and education in Aberdeen and his subsequent work as a research scientist, schoolteacher, and physics lecturer. He then shows how he changed disciplines from physics to…
Descriptors: Curriculum Development, Educational Games, Systems Approach, Autobiographies

Chen, Benjamin; And Others – Science Education, 1979
Describes the adaptation process involved in modifying the outdoor biology instructional strategies (OBIS) project to the local environment and educational system in Israel. (HM)
Descriptors: Biological Sciences, Curriculum Development, Ecology, Elementary School Science
Liu, S.; Tang, J.; Deng, C.; Li, X.-F.; Gaudiot, J.-L. – IEEE Transactions on Education, 2011
Java Virtual Machine (JVM) education has become essential in training embedded software engineers as well as virtual machine researchers and practitioners. However, due to the lack of suitable instructional tools, it is difficult for students to obtain any kind of hands-on experience and to attain any deep understanding of JVM design. To address…
Descriptors: Educational Technology, Courseware, Computer System Design, Science Course Improvement Projects
Allen, Kasi; St. John, Mark; Tambe, Pamela – Inverness Research, 2009
Back in 1992, the National Science Foundation (NSF) awarded grants to five curriculum development teams and charged them with the task of starting over. Five years later, each of the development teams had produced an innovative and "integrated" curriculum. All represented notable departures from the commonly encountered, calculus-driven high…
Descriptors: National Curriculum, Curriculum Development, High Schools, Mathematics Education
Krnel, Dušan; Bajd, Barbra – Acta Didactica Napocensia, 2009
This paper addresses the use of e-materials in learning. Under pressure from the public, which is becoming increasingly conversant with IT, schools and also other non-formal types of learning are changing into e-classrooms and e-learning. Among parents and teachers, too, there is a widespread opinion that e-learning is more motivating and is more…
Descriptors: Instructional Materials, Electronic Learning, Electronic Classrooms, Online Courses

Dennis, J. T.; Peterson, C. C. – Science Activities, 1972
Describes different features of Science - A Process Approach materials for elementary schools. A brief review about the success of the program is included. (PS)
Descriptors: Curriculum, Elementary School Science, Instructional Materials, Program Descriptions
Rogers, Robert E.; Voelker, Alan M. – Sci Children, 1970
First of a series of three articles on elementary science programs, this describes the Elementary Science Study (ESS): (1) the nature of the program, (2) instructional materials, (3) implementation and teacher programs, (4) evaluation, and (5) the role of the teacher. (BR)
Descriptors: Curriculum Development, Elementary School Science, Instruction, Instructional Materials
Scott, Arthur; And Others – 1967
This guide contains Parts III and IV of the students' guide to the first year of the three-year integrated biology, chemistry, and physics courses being prepared by the Portland Project Committee. Part III is titled "Energy and Work" and Part IV is titled "Ecology." (GR)
Descriptors: Biology, Chemistry, Curriculum, Instructional Materials

Science and Children, 1975
Descriptors: Curriculum, Elementary School Science, Instruction, Instructional Materials

Science and Children, 1978
Reviews the Elementary School Sciences Program (ESSP) in terms of format and content, goals and objectives, student materials, teacher materials, and equipment and media kits. (CP)
Descriptors: Curriculum, Elementary Education, Elementary School Science, Evaluation
James, F. – South Australian Science Teachers Journal, 1973
Descriptors: General Science, Instructional Materials, Program Descriptions, Science Course Improvement Projects
Damaskos, Mickander J. – Sci Teacher, 1969
Descriptors: Course Objectives, Curriculum, Engineering, Instructional Materials
Biological Sciences Curriculum Study, Boulder, CO. – 1967
Seventy-five of the most common questions concerning the Biological Sciences Curriculum Study (BSCS) are answered in this publication. Questions range from fundamental ones concerning the history of the project, objectives, and availability of materials to those of a more singular interest such as the distribution of the royalties from the sale of…
Descriptors: Biology, Curriculum Development, Educational Objectives, Evaluation
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
Thomson, Barbara S.; Voelker, Alan M. – Sci Children, 1970
Description of the Science Curriculum Improvement Study (SCIS) includes: nature of program psychological bases, learning environment, instructional materials, evaluation, and role of the teacher. Orients the reader to the SCIS program and reviews related literature and research. Bibliography. (BR)
Descriptors: Curriculum Development, Educational Programs, Elementary School Science, Evaluation
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