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Yonai, Ella; Blonder, Ron – Physical Review Physics Education Research, 2020
The goal of this research is to provide a rich set of connections between two fields: (i) Nanoscale science and technology (NST) and (ii) topics from a common middle school physics curriculum. NST is emerging as one of the most promising new fields of the 21st century, which is one of the many arguments for including NST topics in secondary…
Descriptors: Secondary School Science, Science Instruction, Physics, Molecular Structure
Stein, Hana; Galili, Igal – International Journal of Science and Mathematics Education, 2015
Several researches in physics education have demonstrated the problematic status of teaching the subject of gravitation and weight and students' knowledge of these concepts. This paper presents findings of a study of students' knowledge following instruction within a changed conceptual framework of the weight concept in several 9th grade classes…
Descriptors: Middle School Students, Secondary School Science, Science Education, Physics
Bar, Varda; Brosh, Yaffa; Sneider, Cary – Science Educator, 2016
Threshold concepts are essential ideas about the natural world that present either a barrier or a gateway to a deep understanding of science. Weight, mass, and gravity are threshold concepts that underpin students' abilities to understand important ideas in all fields of science, embodied in the performance expectations in the Next Generation…
Descriptors: Scientific Concepts, Physics, Concept Formation, Science Instruction
Blonder, Ron; Sakhnini, Sohair – Chemistry Education Research and Practice, 2012
A nanotechnology module was developed for ninth grade students in the context of teaching chemistry. Two basic concepts in nanotechnology were chosen: (1) size and scale and (2) surface-area-to-volume ratio (SA/V). A wide spectrum of instructional methods (e.g., game-based learning, learning with multimedia, learning with models, project based…
Descriptors: Student Attitudes, Teaching Methods, Student Projects, Grade 9
Mualem, Roni; Eylon, Bat Sheva – Journal of Research in Science Teaching, 2010
Students at the junior high school (JHS) level often cannot use their knowledge of physics for explaining and predicting phenomena. We claim that this difficulty stems from the fact that explanations are multi-step reasoning tasks, and students often lack the qualitative problem-solving strategies needed to guide them. This article describes a new…
Descriptors: Mechanics (Physics), Grade 9, Junior High Schools, Secondary School Science