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Boda, Phillip A.; Bathia, Shruti; Linn, Marcia C. – Journal of Research in Science Teaching, 2021
Integrating sophisticated graphical analysis skills as they learn science is essential for K-12 students and emphasized in current standards. In this study, we iteratively designed a Graphing Integration Inventory (GII) over a three-year period, while also supporting students to develop their capabilities to use graphs to learn science content in…
Descriptors: Middle School Students, Graphs, Teaching Methods, Science Instruction
Aldrich, Preston R. – Biochemistry and Molecular Biology Education, 2015
This article advances the prerequisite network as a means to visualize the hidden structure in an academic curriculum. Networks have been used to represent a variety of complex systems ranging from social systems to biochemical pathways and protein interactions. Here, I treat the academic curriculum as a complex system with nodes representing…
Descriptors: Science Curriculum, Biochemistry, Molecular Biology, Science Instruction
van Buuren, Onne; Heck, André; Ellermeijer, Ton – Research in Science Education, 2016
A learning path has been developed on system dynamical graphical modelling, integrated into the Dutch lower secondary physics curriculum. As part of the developmental research for this learning path, students' understanding of the relation structures shown in the diagrams of graphical system dynamics based models has been investigated. One of our…
Descriptors: Foreign Countries, Physics, Secondary School Science, Science Curriculum
Tolson, Siobhan – Primary Science, 2011
Working with evidence is a fundamental part of scientific enquiry. Children should be taught to consider evidence and evaluate it. They should make simple comparisons, comparing what happened with what they expected to happen, and try to explain what happened through drawing on their knowledge and understanding. In this article, the author…
Descriptors: Evidence, Science Education, Science Instruction, Science Curriculum
Kovalik, Susan J.; Olsen, Karen D. – Corwin, 2010
This book examines learning science from multiple perspectives--especially a child's. The whimsical character of Mary Froggins guides readers through the steps of igniting students' natural sense of wonder, incorporating brain research, integrating science concepts with other subjects, and applying science to daily life. The authors demonstrate…
Descriptors: Educational Strategies, Curriculum Development, Multiple Intelligences, Science Programs
Lunsford, Eddie; Melear, Claudia T.; Roth, Wolff-Michael; Perkins, Matthew; Hickok, Leslie G. – Journal of Research in Science Teaching, 2007
Inscriptions are central to the practice of science. Previous studies showed, however, that preservice teachers even those with undergraduate degrees in science, generally do not spontaneously produce inscriptions that economically summarize large amounts of data. This study was designed to investigate the production of inscription while a group…
Descriptors: Graduate Students, Scientific Concepts, Visual Aids, Science Instruction
Berger, N. M. – Soviet Education, 1973
The author details graph exercises and solutions, coordinated with a "new textbook," to explain gas laws for isoprocesses, the first law of thermodynamics, and heat transfer. (JH)
Descriptors: Comparative Education, Curriculum Development, Graphs, Physics
Peer reviewedShugrue, Sylvia K. – Science Activities, 1992
Presents year-long, elementary science projects that address the question of why daylight hours vary in length according to locality. Provides three instructional units designed to commence in September, including data collection activities for sunny days encouraging later classroom calculations; on-going graphing activities; and modeling…
Descriptors: Astronomy, Earth Science, Elementary Education, Elementary School Science
Peer reviewedCarlone, Edward J. – Science Teacher, 1989
Describes how the tapping of maple trees can be used to teach lessons in science on boiling points, density, solubility, and other sugaring projects in the curricula. Outlines activities and precautions to follow when doing this project. (RT)
Descriptors: Chemistry, Experiential Learning, Graphs, High Schools
Anchorage School District, AK. – 1987
This publication provides information and activities for teaching about vegetables and process skills including observing, classifying, collecting and interpreting data, inferring, measuring, and predicting. There are 12 lessons. Lessons 1 through 5 pertain to growing, rinsing, and observing sprouts. Lessons 6 and 8 through 11 deal with tasting…
Descriptors: Biological Sciences, Elementary School Science, Experiential Learning, Gardening
Ahtee, Maija, Ed.; And Others – 1991
The main purpose of this symposium was to find new ideas and resources for the evaluation and improvement of physics education on all levels. The papers included in this document are entitled: (1) "Quality of Physics Teaching Through Building Models and Advancing Research Skills"; (2) "Evaluation of Physics Education in Terms of Its…
Descriptors: Cognitive Development, Cognitive Style, Computer Assisted Instruction, Concept Formation

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