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Showing 1 to 15 of 79 results Save | Export
Esch, R. Keith; Burbacher, Emily; Dodrill, Eric; Fussell, Kristen DeVanna; Magdich, Mitchell; Norris, Heather; Midden, W. Robert – Horizon Research, Inc., 2020
Citizen science (CS) projects have become widespread in part because they expand the capacity of professional scientists, enabling research that would otherwise be impracticable or unaffordable. In addition to the research benefits, educators and scientists have seen educational value in CS because it can incorporate students into real-world…
Descriptors: Citizen Participation, Scientific Research, Science Education, Science Projects
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Kim, Kris S.; Rackus, Darius G.; Mabury, Scott A.; Morra, Barbora; Dicks, Andrew P. – Journal of Chemical Education, 2017
The Chemistry Teaching Fellowship Program (CTFP) is offered to graduate students and postdoctoral researchers at the University of Toronto as an opportunity to undertake curriculum development and chemistry education research. Projects are run with faculty supervision and focus on designing new laboratory activities, lectures, tutorials,…
Descriptors: Chemistry, Fellowships, Graduate Students, Curriculum Development
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Stevenson, E.; McArthur, J. – International Journal for Academic Development, 2015
In this Reflection on Practice we propose a triple nexus of research, public engagement and teaching that could provide a new pathway for academic developers to enable greater engagement in learning and teaching issues from science, technology, engineering, and mathematics (STEM) academics. We argue that the public engagement activities demanded…
Descriptors: STEM Education, Instructional Innovation, Teaching Methods, Science Instruction
Mamlok, Rachel; Dershimer, Charles; Fortus, David; Krajcik, Joe; Marx, Ron – 2001
The purpose of this study was to document the iterative development of a design-based science curriculum called Learning Science by Designing Artifacts (LSDA). The study refers to the enactment of the Safer Cell Phones curriculum in a high school located in the Midwest. The curriculum was a 5- or 9-week unit in an 18-week science elective course.…
Descriptors: Curriculum Development, Design, Educational Change, Experiential Learning
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Barsoum, Mark J.; Sellers, Patrick J.; Campbell, A. Malcolm; Heyer, Laurie J.; Paradise, Christopher J. – CBE - Life Sciences Education, 2013
We redesigned the undergraduate introductory biology course by writing a new textbook ("Integrating Concepts in Biology" ["ICB"]) that follows first principles of learning. Our approach emphasizes primary data interpretation and the utility of mathematics in biology, while de-emphasizing memorization. This redesign divides biology into five big…
Descriptors: Biology, Science Instruction, Data Interpretation, Textbooks
National Energy Education Development Project, Reston, VA. – 2000
A unit on energy is a perfect opportunity to use an interdisciplinary approach with a range of grade levels. This blueprint describes the needs of one such program and covers developmental strategies step by step. Each activity is categorized according to grade level. Topics include: (1) "Getting Organized," which discusses selecting activities…
Descriptors: Curriculum Development, Electricity, Elementary Secondary Education, Energy
Sapianchai, Nida – Journal of Science and Mathematics Education in Southeast Asia, 1979
This paper was presented at the Southeast Asian Workshop on new trends in the selection of content for chemistry curricula. The chemistry curriculum project developed by the Institute for the Promotion of Teaching Science and Technology (IPST) of Thailand was discussed. (HM)
Descriptors: Chemistry, Cognitive Development, Conceptual Schemes, Conference Reports
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Teo, Tang Wee – Journal of Curriculum Studies, 2012
"Potemkin schools" is used as the phrase to capture what a US science, technology, engineering, and mathematics (STEM) public speciality high school becomes as a result of its institutional branding. By way of an examination of the efforts of one teacher drawn into school branding through his "inquiry-based reform" of an Advanced Chemistry course,…
Descriptors: Curriculum Development, Educational Change, Science Instruction, Science Curriculum
Elliott, Sue – 1989
This booklet provides an understanding of science education for young children in terms of both a theoretical basis for planning and a selection of practical experiences. The theoretical and practical sections are organized separately, and readers are advised that an understanding of the theoretical approach is essential prior to implementing the…
Descriptors: Curriculum Development, Early Childhood Education, Foreign Countries, Science Activities
Symington, David; And Others – 1982
The Learning in Science Project (Primary)--LISP(P)--investigated the questions and explanations primary children have about rocks. Data were collected during teaching sessions from New Zealand students (ages 8-11) and Australian students (ages 10-11). The teaching sessions required the teacher to create a situation in which children generated some…
Descriptors: Comprehension, Concept Formation, Curriculum Development, Elementary Education
Biddulph, Fred; Osborne, Roger – 1983
The topic of metals is frequently taught in primary schools. However, when metals are suggested as one of a series of topics for study, students often initially show little enthusiasm for the topic. To determine the ideas that children have about metals the Learning in Science Project (Primary)--LISP(P)--interviewed thirty-eight 9- to 10-year-old…
Descriptors: Comprehension, Concept Formation, Curriculum Development, Elementary Education
Biddulph, Fred; McMinn, Bill – 1983
An alternative approach for teaching primary school science has been proposed by the Learning in Science Project (Primary--LISP(P). This study investigated the use of the approach during three series of lessons on the topic "metals." Each series followed the same general pattern: (1) an introductory session to stimulate children to ask…
Descriptors: Comprehension, Concept Formation, Curriculum Development, Elementary Education
Keogh, Margaret – Southern African Journal of Environmental Education, 1987
Outlines the evolution of thinking and the development of materials related to the biological component of the Science Education Project. Examines the context of the project within Southern African society and its relationship to curriculum development theory. Discusses possible models for the dissemination of knowledge. (RT)
Descriptors: Biological Sciences, Biology, Curriculum Development, Ecology
Biddulph, Fred – 1982
The Learning in Science Project (Primary)--LISP(P)--investigated the questions and explanations primary children have about spiders. The data comprise 112 questions and 104 explanations (included in appendices) offered by children after being shown a picture of a spider. Additional data were collected during individual interviews with 18 students.…
Descriptors: Animals, Comprehension, Concept Formation, Curriculum Development
Hawe, Eleanor – 1984
The Learning in Science Project (Primary)--LISP(P)--investigated the ideas and interests about spiders held by 8- to 10-year-old children. Data included 303 questions--and answers to some of the questions--about spiders obtained from children in four classes and from responses obtained during individual interviews with 10 children from each age…
Descriptors: Animals, Comprehension, Concept Formation, Curriculum Development
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