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Page Keeley – NSTA Press, 2024
Here's a fresh way to help your students learn life science by determining how you can help them learn best. "Uncovering Student Ideas in Life Science, Volume 2," offers 30 new formative assessment probes--engaging questions that can reveal what students already know (or think they know) about a core science topic. Armed with that…
Descriptors: Science Education, Knowledge Level, Biological Sciences, Scientific Concepts
Eve Manz – NSTA Press, 2025
"Productive Uncertainty in Science Education" provides the support that teachers and students need for more complex science investigations. Science is driven by the need to manage uncertainty--uncertainty about how to explain the world, but also how to represent the world in an investigation, what to measure, and how to convince peers to…
Descriptors: Science Education, Teaching Methods, Scientific Concepts, Concept Formation
Joseph S. Krajcik; Charlene M. Czerniak – Routledge, Taylor & Francis Group, 2025
This essential science methods resource integrates principles of learning and motivation with practical teaching ideas for the elementary and middle school science classroom. It employs project-based learning (PBL) to enable educators to engage their students in meaningful, real-world questioning about the world. It provides concrete strategies…
Descriptors: Science Instruction, Middle School Students, High School Students, Secondary School Science
McGregor, Debra, Ed.; Anderson, Dayle, Ed. – Contributions from Science Education Research, 2023
This book presents a wide range of international perspectives that explore the different ways the diverse forms of drama supports learning in science. It illustrates how learning science by adopting and adapting theatrical techniques can offer more inclusive ways for students to relate to scientific ideas and concepts. The theatrical processes by…
Descriptors: Science Education, Drama, Theater Arts, Teaching Methods
Richard Brock – Sage Research Methods Cases, 2017
This case study reports my experiences of a PhD project applying the microgenetic approach to study changes in students' conceptual structures as they developed understanding of topics in physics. The microgenetic approach involves sampling (referring to the frequency of application of data collection probes) a phenomenon at a rate which is high…
Descriptors: Scientific Concepts, Concept Formation, Physics, Attitude Change
Singer, Susan R.; Nielsen, Natalie R.; Schweingruber, Heidi A. – National Academies Press, 2012
The National Science Foundation funded a synthesis study on the status, contributions, and future direction of discipline-based education research (DBER) in physics, biological sciences, geosciences, and chemistry. DBER combines knowledge of teaching and learning with deep knowledge of discipline-specific science content. It describes the…
Descriptors: Physics, Biology, Geology, Chemistry
Singer, Susan R., Ed.; Nielsen, Natalie R. Ed.; Schweingruber, Heidi A., Ed. – National Academies Press, 2012
The National Science Foundation funded a synthesis study on the status, contributions, and future direction of discipline-based education research (DBER) in physics, biological sciences, geosciences, and chemistry. DBER combines knowledge of teaching and learning with deep knowledge of discipline-specific science content. It describes the…
Descriptors: Student Attrition, Science Education, Public Agencies, Engineering Education
Daehler, Kirsten; Shinohara, Mayumi; Folsom, Jennifer – WestEd, 2011
Proven through more than a decade of rigorous research to be effective with both teachers and students, "Making Sense of SCIENCE" helps teachers gain a deep and enduring understanding of tricky science topics, think and reason scientifically, and support content literacy in science, thereby increasing student achievement. The materials…
Descriptors: Science Education, Scientific Concepts, Misconceptions, Concept Formation
McNeill, Katherine L.; Krajcik, Joseph S. – Pearson, 2011
By providing a variety of strategies, scenarios, examples of student writing, classroom video clips from across all science content areas, rubrics, and guidelines for designing assessment items, "Supporting Grade 5-8 Students in Constructing Explanations in Science: The Claim, Evidence, and Reasoning Framework for Talk and Writing" provides…
Descriptors: Evidence, Video Technology, Educational Strategies, Science Teachers
Carver, Sharon M., Ed.; Shrager, Jeff, Ed. – APA Books, 2012
The impulse to investigate the natural world is deeply rooted in our earliest childhood experiences. This notion has long guided researchers to uncover the cognitive mechanisms underlying the development of scientific reasoning in children. Until recently, however, research in cognitive development and education followed largely independent…
Descriptors: Thinking Skills, Class Activities, Learning Activities, Science Education
Daehler, Kirsten; Folsom, Jennifer; Shinohara, Mayumi – WestEd, 2011
Proven through more than a decade of rigorous research to be effective with both teachers and students, "Making Sense of SCIENCE" helps teachers gain a deep and enduring understanding of tricky science topics, think and reason scientifically, and support content literacy in science, thereby increasing student achievement. The materials…
Descriptors: Science Instruction, Teaching Methods, Scientific Literacy, Science Achievement
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
Stavy, Ruth; Tirosh, Dina – 2000
This book reports on students' reactions to different situations in mathematics and science education. A theory is presented to explain and predict students' responses which is based on these observations. The identified rules of the theory of intuitive rules is explained. Chapters include: (1) "How Children and Adults Use the Intuitive Rule 'More…
Descriptors: Concept Formation, Elementary Secondary Education, Mathematics Education, Misconceptions
Burnham, John C. – 1987
This book studies the history of changing patterns in the dissemination, or popularization of scientific findings, to the general public since 1830. It focuses on three different areas of science: (1) health; (2) psychology; and (3) the natural sciences. The document explores the ways in which this process of popularization has deteriorated. It…
Descriptors: Advertising, College Science, Concept Formation, Health
Lemke, Jay L. – 1990
"Talking Science" does not mean simply talking about science; it means doing science through the medium of language. This is a book about communication, scientific, and technical education. Chapters 1 and 2 introduce the specific themes and methods of the book. Each analyzes a brief classroom episode, looking from two different points of view at…
Descriptors: Case Studies, College Science, Communication (Thought Transfer), Concept Formation
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