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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
Dunn, Justin; Ramnarain, Umesh – Education Sciences, 2020
This study investigated the effect of interactive computer simulation-supported inquiry on South African grade 8 learners' comprehension of atoms and molecular structures. Two sample groups of 34 learners per sample group were used, one acting as a control group who were exposed to a teacher-directed pedagogy while the experimental group used…
Descriptors: Computer Simulation, Technology Integration, Active Learning, Inquiry
Gencer, Ayse Savran; Dogan, Hilmi; Bilen, Kadir – Turkish Journal of Education, 2020
The theme that structure determines function is one of the most significant cornerstones in understanding natural sciences. On the other hand, recently revised science curriculum in Turkey has emphasized science and engineering practices to help students be able to converge science with the other disciplines by applying theory into practice and…
Descriptors: STEM Education, Teaching Methods, Case Studies, Grade 5
Düsing, Katharina; Asshoff, Roman; Hammann, Marcus – Journal of Biological Education, 2019
This study investigates students' conceptions of the carbon cycle with regard to the components they believe to be relevant to the carbon cycle, how they interrelate these components, the ways in which they trace carbon atoms, and the different levels of biological organisation they consider when doing so. A total of 142 students aged 13-16 years…
Descriptors: Scientific Concepts, Grade 8, Grade 9, Grade 10
Fried, Daniel B.; Tinio, Pablo P. L.; Gubi, Aaron; Gaffney, Jean P. – European Journal of Science and Mathematics Education, 2019
The scientists of the future will need to begin studying science to great depth, much earlier in life, in order to keep up with the accelerating pace of discovery and technological innovation. For this to be possible, engaging and child-friendly pedagogical approaches need to be developed that leverage the natural enthusiasm of young science…
Descriptors: Elementary School Science, Science Instruction, Organic Chemistry, Models
Ryoo, Kihyun; Bedell, Kristin; Swearingen, Amanda – Journal of Science Education and Technology, 2018
Ensuring that all students, including English language learners (ELLs) who speak English as a second language, succeed in science is more challenging with a shift towards learning through language-intensive science practices suggested by the Next Generation Science Standards (NGSS). Interactive visualization technologies have the potential to…
Descriptors: English Language Learners, Visual Aids, Science Instruction, Chemistry
Köse, Mücahit – Education Quarterly Reviews, 2021
The purpose of the study is to determine the knowledge and awareness of gifted children receiving education in the Science and Art Center on nanotechnology. The descriptive survey model was used in the study. The purposeful sampling method was chosen and a total of 160 students receiving education in two Science and Art Centers located in the city…
Descriptors: Foreign Countries, Knowledge Level, Academically Gifted, Gifted Education
Sausan, Inas; Saputro, Sulistyo; Indriyanti, Nurma Yunita – International Journal of Instruction, 2020
Most junior high school students considered chemistry as a complicated science subject with an abstract concept, symbols, and terms that must be memorized. The difficulty of learning chemistry made students had low positive perceptions of chemistry. It was needed the right ways to introduce chemistry to them. The purpose of the multiple case study…
Descriptors: Chemistry, Science Instruction, Grade 7, Junior High School Students
Wiener, Gerfried J.; Schmeling, Sascha M.; Hopf, Martin – Physics Education, 2017
We present a new learning unit, which introduces 12 year-olds to the subatomic structure of matter. The learning unit was iteratively developed as a design-based research project using the technique of probing acceptance. We give a brief overview of the unit's final version, discuss its key ideas and main concepts, and conclude by highlighting the…
Descriptors: Physics, Science Instruction, Scientific Concepts, Teaching Methods
Eriksen, Kristina; Nielsen, Bjarne E.; Pittelkow, Michael – Journal of Chemical Education, 2020
We present a simple procedure to make an augmented reality app to visualize any chemical 3D model. The molecular structure may be based on crystallographic data or from computational modeling. This guide is made in such a way that no programming skills are needed, and the procedure uses free software and provides a way to visualize 3D structures…
Descriptors: Chemistry, Molecular Structure, Science Instruction, Teaching Methods
Dean, Natalie L.; Ewan, Corrina; Braden, Douglas; McIndoe, J. Scott – Journal of Chemical Education, 2019
Comprehension of the 3D structure of objects usually represented in 2D is a critical part of understanding molecular geometries. The frequency with which students actually get hands-on with 3D molecular structures is often limited to a singular laboratory session. We sought to develop a set of molecular shapes that were inexpensive enough not only…
Descriptors: Science Instruction, Chemistry, Molecular Structure, Science Laboratories
Smith, P. Sean; Plumley, Courtney L.; Hayes, Meredith L. – Science and Children, 2017
This column provides ideas and techniques to enhance your science teaching. This month's issue discusses how children think about the small-particle model of matter. What Richard Feynman referred to as the "atomic hypothesis" is perhaps more familiar to us as the small-particle model of matter. In its most basic form, the model states…
Descriptors: Science Instruction, Teaching Methods, Molecular Structure, Grade 5
DeKorver, Brittland K.; Choi, Mark; Towns, Marcy – Journal of Chemical Education, 2017
Chemical demonstration shows are a popular form of informal science education (ISE), employed by schools, museums, and other institutions in order to improve the public's understanding of science. Just as teachers employ formative and summative assessments in the science classroom to evaluate the impacts of their efforts, it is important to assess…
Descriptors: Chemistry, Science Instruction, Elementary School Science, Middle Schools
Amy Kamarainen; Shari Metcalf; Tina Grotzer; Craig Brimhall; Chris Dede – International Journal of Designs for Learning, 2016
We describe a mobile augmented reality (AR) experience called Atom Tracker designed to help middle school students better understand the cycling of matter in ecosystems with a focus on the concept of conservation of matter and the processes of photosynthesis and respiration. Location-based AR allows students to locate virtual "hotspots,"…
Descriptors: Middle School Students, Secondary School Science, Conservation (Concept), Scientific Concepts
Fried, Daniel B.; Tinio, Pablo P. L.; Hughes, Azuri; Paneque, Diana – European Journal of Science and Mathematics Education, 2019
Studying nature from the atomic and molecular perspective gives students access to modern scientific paradigms and could improve achievement and motivation towards science learning. A visual and tactile approach to chemistry can form the foundation for a child-friendly but high-level chemistry curriculum and could be a powerful tool to invigorate…
Descriptors: Science Curriculum, Science Instruction, Molecular Structure, Student Motivation