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Showing 1 to 15 of 32 results Save | Export
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Hoath, Leigh – Primary Science, 2015
Often when the term "transition" is heard, it is with reference to the move between key stages 2 and 3 (upper primary 11-year-olds moving to secondary school). Sometimes it refers to movement between other key stages and, less often, to movement within the classroom itself. Again, often, when the term is used it is in relation to…
Descriptors: Elementary School Science, Elementary School Students, Learning Processes, Science Instruction
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Keeley, Page – Science and Children, 2015
A distinguishing feature of all the formative assessment probes in the "Uncovering Student Ideas" series is that each probe has two parts: (1) a selected answer choice that usually mirrors the research on commonly held ideas students have about concepts or phenomena; and (2) an explanation that supports their answer choice. It is this…
Descriptors: Formative Evaluation, Student Evaluation, Learning Processes, Concept Formation
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Moyer, Richard; Everett, Susan – Science Scope, 2010
The flashlight is a simple device that is composed of a lightbulb, usually two cells connected in series, a housing, a switch, and a reflector for the light. All flashlights essentially use these parts to complete a circuit that converts the stored chemical energy in the cells to light energy. In this lesson, students will take apart an…
Descriptors: Hands on Science, Learning Processes, Science Instruction, Light
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Turgeon, Brenda – Science and Children, 2012
One of the biggest challenges in the early weeks of the new school year is to keep learning interesting and the students engaged as routines and procedures are established and reinforced. How can a classroom teacher make the routines and procedures engaging and educational, while building a community of learners? The answer is simple... build a…
Descriptors: Science Education, Learning Processes, Investigations, Scientists
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Ross, Ann; Vanderspool, Staria – Science Scope, 2004
Students can use seed characteristics to discriminate between the different kinds of legumes using taxonomic classification processes of sorting and ranking, followed by construction of taxonomic keys. The application of the Learning Cycle process to taxonomic principles, hierarchical classification, and construction of keys presents the…
Descriptors: Learning Processes, Entomology, Classification, Science Instruction
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Gerber, Brian L.; Marek, Edmund A. – Science Teacher, 1996
Presents an investigation that engages students in constructing models of houses to examine the dynamics of energy flow patterns. Uses the learning cycle procedure that allows students to experience the processes of science and to use higher level thinking skills. (JRH)
Descriptors: Architecture, Building Design, Energy Conservation, Learning Processes
Oltman, Marcie, Ed. – 2002
This guide is written for environmental educators who are interested in learning more about how and why young children think and act, and how they can use this information to design developmentally appropriate programs and activities. The sections of this guide become progressively more practical and specific from understanding the basics of how…
Descriptors: Cognitive Development, Elementary Education, Environmental Education, Learning Processes
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McCarthy, Deborah – Science Scope, 2005
To demonstrate how Newton's first law of motion applies to students' everyday lives, the author developed a learning cycle series of activities on inertia. The discrepant event at the heart of these activities is sure to elicit wide-eyed stares and puzzled looks from students, but also promote critical thinking and help bring an abstract concept…
Descriptors: Learning Processes, Science Instruction, Motion, Physics
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Brown, Sherri – Science and Children, 2006
Collecting "bugs" is an authentic, engaging approach for students to learn about various arthropods and their habitat. Students are able to construct knowledge from field notes involving direct observation, drawing, and classification of these animals. This activity has continuously provided successful measurable content outcomes in which students…
Descriptors: Learning Processes, Preservice Teachers, Classification, Preservice Teacher Education
Renner, John W.; And Others – 1985
Investigations in Natural Science is a program in secondary school biology, chemistry, and physics based upon the description of science as a quest for knowledge, not the knowledge itself. This teaching guide is designed for use with the 19 chemistry investigations found in the student manual. These investigations focus on concepts related to:…
Descriptors: Chemistry, High Schools, Learning Processes, Science Activities
Renner, John W.; And Others – 1985
Investigations in Natural Science is a program in secondary school biology, chemistry, and physics based upon the description of science as a quest for knowledge, not the knowledge itself. This teaching guide is designed for use with the 36 physics investigations found in the student manual. These investigations focus on concepts related to:…
Descriptors: High Schools, Learning Processes, Physics, Science Activities
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Audet, Richard H. – Science Scope, 2005
With such curriculum gaps, it is hardly surprising that middle school children's understanding of botany is limited and riddled with misconceptions. Knowing that plants supply the oxygen to sustain most life forms and provide the primary energy source of most food webs is a core idea of science. Investigating non-native species is one way to…
Descriptors: Middle School Students, Misconceptions, Learning Processes, Educational Resources
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Von Aufshnaiter, Stefan; Schwedes, Hannelore – Science Education, 1989
Described is a curriculum project developed in Germany. The importance of playing and gaming for the acquisition of cognitive and social capacities, the relationships among acting, reasoning, and learning in physics instruction, and the spheres of subjective experience are discussed. The framework and evaluation of the curriculum are outlined. (YP)
Descriptors: Class Activities, Foreign Countries, Learning Processes, Physics
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Lawson, Anton E. – American Biology Teacher, 1991
Presents a learning cycle lesson plan in which students investigate the question of how cells divide. Students use microscopes to explore actual plant root and stem tissues to generate and test hypotheses to answer the question. Includes teacher material, student material, and teaching tips. (MDH)
Descriptors: Biology, Cytology, Data Interpretation, Investigations
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Drake, Lon – Journal of College Science Teaching, 1993
Explains that trial and error learning is an important way for children and adults to learn. Open-ended activities have great opportunities for error and eventual feedback for error reduction. (PR)
Descriptors: College Science, Error Correction, Feedback, Higher Education
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