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Harshbarger, Dena; Wiechman, Joseph – Science and Children, 2021
This article describes a force and motion unit that spanned four weeks (50 minutes a day) in a fifth-grade classroom. The inquiry-based learning progression mirrors Piaget's Theory of Cognitive Development (1952) because it allowed students to manipulate materials and ideas as they actively constructed and reconstructed their knowledge of motion…
Descriptors: Grade 5, Elementary School Science, Engineering Education, Physics
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Brown, Patrick – Science and Children, 2023
Science and engineering practices (SEPs) and crosscutting concepts (CCs) constitute a significant part of "A Framework for K-12 Science Education" (NRC 2012). As teachers, the role of the authors is to highlight the pivotal role that both scientific knowledge and the practices used to generate knowledge play in learning. This article…
Descriptors: STEM Education, Teaching Methods, Scientific Research, Concept Formation
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Janney, Benjamin A.; Sobotka, Alex J.; Kidd, Aaron E. – Clearing House: A Journal of Educational Strategies, Issues and Ideas, 2022
Despite holding wide-ranging experiences with constant velocity and non-zero acceleration, students wrestling with physical science concepts struggle to demarcate the two distinct characteristics of motion. In fact, this prior experience and loose familiarity with associated terminology often act as an obstacle toward a deep and robust…
Descriptors: Scientific Concepts, Physical Sciences, Motion, Experience
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Emden, Markus; Gerwig, Mario; Jänichen, Michael; Wildhirt, Susanne – School Science Review, 2021
Martin Wagenschein's ideas of prioritising phenomena in making sense of science processes have influenced the German "Lehrkunstdidaktik" (art of teaching) approach. This article sketches a "Lehrkunstdidaktik" teaching unit inspired by Michael Faraday's "Chemical History of a Candle." It shows how primary and lower…
Descriptors: Science Instruction, Teaching Methods, Elementary School Science, Secondary School Science
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Hurdle, Zach; Stanford, Angela; Nix, Katy; Perry, Nick – Science and Children, 2021
In an ever-increasing technological society, teachers have now, more than ever, a vast offering of educational technologies made available for classroom use. However, the time necessary for vetting and developing rigorous lessons with the usage of such technologies can be overwhelming for a classroom teacher. Still, teachers need the opportunity…
Descriptors: Grade 3, Grade 5, Elementary School Teachers, Elementary School Students
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Macalalag, Augusto, Jr.; Johnson, Barbara; Johnson, Joseph – Science and Children, 2018
Engaging students in designing, testing, and revising engineering models using mathematical representation of data from scientific investigations helps them embody the science and engineering practices highlighted in the "Next Generation Science Standards" (NGSS Lead States, 2013). The practices of modeling, conducting failure analysis,…
Descriptors: STEM Education, Standards, Design, Engineering Education
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Gross, Lisa A.; Bradbury, Leslie Upson; Frye, Elizabeth M.; Watkins, Bonnie – Science and Children, 2016
To further students' understanding about gravity, forces, and motion, multiple types of text were integrated into instruction. As part of a 5E lesson (Bybee et al. 2006), the authors used a selection from Capstone Press's Graphic Science series, "A Crash Course in Forces and Motion with Max Axiom" (Sohn and Barnett 2007) to support…
Descriptors: Engineering Education, Science Education, Cartoons, Novels
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Manser, Michael James; Kilgo, John Wesley – Science Activities: Classroom Projects and Curriculum Ideas, 2015
This investigation-based lesson is geared toward third through fifth grade students. The lesson presented in this article was the first of three lessons designed and taught by us for our first preservice teaching course. UTeach is a teacher preparation program for undergraduate STEM majors, which originated at the University of Austin, Texas. The…
Descriptors: Elementary School Science, Grade 3, Grade 4, Grade 5
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Loverude, Michael E.; Gonzalez, Barbara L.; Nanes, Roger – Physical Review Special Topics - Physics Education Research, 2011
We describe an inquiry-based course in physics and chemistry for preservice K-8 teachers developed at California State University Fullerton. The course is one of three developed primarily to enhance the science content understanding of prospective teachers. The course incorporates a number of innovative instructional strategies and is somewhat…
Descriptors: Physics, Teaching Methods, Chemistry, Preservice Teacher Education
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Sandifer, Cody – Science and Children, 2011
Pairing an inquiry lesson with a traditional reading activity creates a jarring philosophical mismatch between the interaction, deep thinking, and scientific reasoning that drives meaningful inquiry instruction and the "scan the text, copy the answers" response often obtained from elementary nonfiction readers. Realizing that there must be a…
Descriptors: Content Area Reading, Interdisciplinary Approach, Grade 5, Inquiry
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Oliver, Suzanne – Journal of Physical Education, Recreation & Dance (JOPERD), 2009
This article addresses postural awareness and efficiency as a fundamental but often overlooked aspect of movement training that falls naturally into the domain of HPERD pedagogical practice. Beginning with a brief overview and discussion on the anatomical "cost" of poor organization, the body of the article describes activities that can be…
Descriptors: Movement Education, Teaching Methods, Human Body, Physical Activities
Curriculum Review, 2009
Imagine recreating a tsunami's force in a bathtub or exploring the potential of geothermal energy by using steam from a kettle to illuminate a light bulb. These types of activities and more are offered in Matthew Levy and Mario Salvadori's collection of experiments and demonstrations in Earthquakes, Volcanoes and Tsunamis. More than 30 easy and…
Descriptors: Physics, Physical Geography, Natural Disasters, Science Experiments
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Beck, Charles – Science and Children, 2008
We all hope our classrooms don't take on a circus-like atmosphere, but juggling can be an engaging way to introduce elementary physics to students. The very act of tossing and catching objects can help students to understand the basic physical principles involved in rotating a set of objects. This article suggests a variety of simple hands-on…
Descriptors: Science Activities, Physics, Science Instruction, Scientific Concepts