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Daniel A. Martens Yaverbaum – ProQuest LLC, 2024
This study investigated evidence of how students' mental models of fundamental kinematic relations evolved (i.e., developed cognitively over time) as observed during an introductory course in calculus-based classical mechanics. The core of the curriculum is based on a claim known as Galileo's principle of relativity. The course material comprised…
Descriptors: Schemata (Cognition), Motion, Physics, Science Education
Saba, Janan; Hel-Or, Hagit; Levy, Sharona T. – Interactive Learning Environments, 2023
This paper presents the design and initial learning research with the MMM modeling platform, seeking to advance middle school students' learning through constructing computational models of complex physical and chemical systems. A complexity-based structure of an MMM interface is introduced. It suggests that a complex system can be described and…
Descriptors: Motion, Chemistry, Physics, Grade 7
Ayar, Mehmet C.; Aydeniz, Mehmet; Yalvac, Bugrahan – International Journal of Science and Mathematics Education, 2015
In this paper, we analyze the science activities offered at 7th grade in the Turkish science and technology curriculum along with addressing the curriculum's original intent. We refer to several science education researchers' ideas, including Chinn & Malhotra's (Science Education, 86:175--218, 2002) theoretical framework and Edelson's (1998)…
Descriptors: Science Instruction, Grade 7, Foreign Countries, Science Curriculum
Taylor, Gregory S.; Hord, Casey – Learning Disabilities: A Multidisciplinary Journal, 2016
An exploratory study of a middle school curriculum directly aligned with the Next Generation Science Standards was conducted with a focus on how the curriculum addresses the instructional needs of students with learning disabilities. A descriptive analysis of a lesson on speed and velocity was conducted and implications discussed for students with…
Descriptors: Middle School Students, Science Instruction, Science Curriculum, Research Methodology
Friedman, Lawrence B.; Margolin, Jonathan; Swanlund, Andrew; Dhillon, Sonica; Liu, Feng – American Institutes for Research, 2017
Playground Physics is a technology-based application and accompanying curriculum designed by New York Hall of Science (NYSCI) to support middle school students' science engagement and learning of force, energy, and motion. The program includes professional development, the Playground Physics app, and a curriculum aligned with New York State…
Descriptors: Middle School Students, Science Instruction, Secondary School Science, Physics
Jensen, Jill – Science and Children, 2012
The author's first reaction to learning that the new science standards adopted in Minnesota included engineering was fear and apprehension. She couldn't picture what an engineering project would look like at the elementary level. As a K-5 elementary science specialist, it was now her job to figure out how to incorporate engineering in their…
Descriptors: Engineering, Elementary School Science, Motion, Science Instruction
Batiza, Ann; Luo, Wen; Zhang, Bo; Gruhl, Mary; Nelson, David; Hoelzer, Mark; Ning, Ling; Roberts, Marisa; Knopp, Jonathan; Harrington, Tom; LaFlamme, Donna; Haasch, Mary Anne; Vogt, Gina; Goodsell, David; Marcey, David – Society for Research on Educational Effectiveness, 2016
The SUN approach to biological energy transfer education is fundamentally different from past practices that trace chemical and energy inputs and outputs. The SUN approach uses a hydrogen fuel cell to convince learners that electrons can move from one substance to another based on differential attraction. With a hydrogen fuel cell, learners can…
Descriptors: Teaching Methods, Biology, Fuels, Scientific Concepts
Tiberghien, Andree; Vince, Jacques; Gaidioz, Pierre – International Journal of Science Education, 2009
Design-based research, and particularly its theoretical status, is a subject of debate in the science education community. In the first part of this paper, a theoretical framework drawn up to develop design-based research will be presented. This framework is mainly based on epistemological analysis of physics modelling, learning and teaching…
Descriptors: Mechanics (Physics), Grade 10, Science Education, Instructional Design

Ford, Michael J. – Science and Education, 2003
Offers a psychological role that external representations can play in the process of refining intuitive ideas into scientific knowledge. Presents an argument for this role through historical analysis of Galileo's ramp experiments, then through documentation of an innovative 6th grade classroom activity. (Contains 19 references.) (Author/YDS)
Descriptors: Middle Schools, Models, Motion, Physics
Kemp, Andrew – Science Scope, 2005
Everything moves. Even apparently stationary objects such as houses, roads, or mountains are moving because they sit on a spinning planet orbiting the Sun. Not surprisingly, the concepts of motion and the forces that affect moving objects are an integral part of the middle school science curriculum. However, middle school students are often taught…
Descriptors: Motion, Science Curriculum, Middle School Students, Secondary School Science

Russel, William B.; And Others – Chemical Engineering Education, 1979
Described is a graduate level engineering course offered at Princeton University in colloidal phenomena stressing the physical and dynamical side of colloid science. The course outline, reading list, and requirements are presented. (BT)
Descriptors: Curriculum Development, Engineering, Engineering Education, Graduate Study
Fraknoi, Andrew, Ed. – Universe in the Classroom, 1989
Discusses the orbit, motion, and phases of the moon. Describes three activities on the moon: "How Soon Can You See a Crescent Moon?"; "When is the Moon Visible?"; and "Lunar Eclipses." (YP)
Descriptors: Astronomy, Instructional Materials, Lunar Research, Moons
Kavanagh, Claudine; Sneider, Cary – Astronomy Education Review, 2007
This article is the first of a two-part review of research on children's and adults understanding of gravity and on how best to teach gravity concepts to students and teachers. This first article concerns free fall--how and why objects fall when they are dropped. The review begins with a brief historical sketch of how these ideas were developed in…
Descriptors: Curriculum Development, Physics, Misconceptions, Scientific Concepts
Manitoba Dept. of Education, Winnipeg. – 1982
The tables, graphs, articles, and other sources of information in this document are designed to provide teachers with additional resources to supplement the unit "Motions and Collisions." The information is coordinated with the unit objectives specified in "Science 100, 101," the currently (1982) approved provincial guide for…
Descriptors: Accident Prevention, Grade 10, High Schools, Motion
Kavanagh, Claudine; Sneider, Cary – Astronomy Education Review, 2007
This is the second and final part of a review of educational research on children's ideas about gravity. The first part concerned students' understanding of how and why things fall. This article picks up the trail of research studies that address students' understanding of the more complex ideas of projectile motion and orbits and examines how the…
Descriptors: Curriculum Development, Physics, Misconceptions, Scientific Concepts
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