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Rahmawati, Yuli; Dianhar, Hanhan; Arifin, Fadhillah – Education Sciences, 2021
Students often have difficulty understanding abstract concepts in chemistry and a low spatial ability, especially in visualizing intermolecular interactions at the submicroscopic level. Therefore, this study aims to analyze the spatial ability of students by using a 3D virtual representation as they study the curriculum topic of molecular…
Descriptors: Spatial Ability, Chemistry, Science Instruction, Secondary School Students
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Gandhi, Heta A.; Jakymiw, Sebastian; Barrett, Rainier; Mahaseth, Harshita; White, Andrew D. – Journal of Chemical Education, 2020
Three-dimensional visualization of molecular simulations in virtual reality (VR) is an emerging teaching tool in chemical education. This work describes a VR application which can generate a 3D molecular dynamics (MD) simulation from arbitrary molecular structures and renders that MD simulation trajectory on a VR headset in real-time. This system…
Descriptors: Interaction, Computer Simulation, Visualization, Organic Chemistry
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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
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Hunter, Christine – Science Teacher, 2015
Imagine a microscopic world filled with tiny motors, ratchets, switches, and pumps controlled by complex signaling and feedback systems. Now imagine that these parts can assemble themselves. This is the world presented to students in the protein structure unit of a genetic engineering course. Students learn how protein folding gives rise to the…
Descriptors: Science Instruction, Biology, Cytology, Hands on Science
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Raven, Sara – Research in Science & Technological Education, 2015
Background: Studies have shown that students' knowledge of osmosis and diffusion and the concepts associated with these processes is often inaccurate. This is important to address, as these concepts not only provide the foundation for more advanced topics in biology and chemistry, but are also threaded throughout both state and national science…
Descriptors: Scientific Concepts, Knowledge Level, Molecular Structure, Biology
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Plass, Jan L.; Milne, Catherine; Homer, Bruce D.; Schwartz, Ruth N.; Hayward, Elizabeth O.; Jordan, Trace; Verkuilen, Jay; Ng, Florrie; Wang, Yan; Barrientos, Juan – Journal of Research in Science Teaching, 2012
Are well-designed computer simulations an effective tool to support student understanding of complex concepts in chemistry when integrated into high school science classrooms? We investigated scaling up the use of a sequence of simulations of kinetic molecular theory and associated topics of diffusion, gas laws, and phase change, which we designed…
Descriptors: Chemistry, Science Instruction, Teaching Methods, Computer Simulation
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Rotbain, Yosi; Stavy, Ruth; Marbach-Ad, Gili – Science Education Review, 2008
Our main goal in this study was to explore whether the use of models in high school molecular genetics instruction can contribute to students' understanding of concepts and processes in genetics. Three hundred and nineteen students from four comparable groups of 11th- and 12th-grade students participated. The control group (116 students) was…
Descriptors: Molecular Structure, Models, High School Students, Genetics
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Burkholder, Phillip R.; Purser, Gordon H.; Cole, Renee S. – Journal of Chemical Education, 2008
Intermolecular forces play an important role in many aspects of chemistry ranging from inorganic to biological chemistry. These forces dictate molecular conformation, species aggregation (including self-assembly), trends in solubility and boiling points, adsorption characteristics, viscosity, phase changes, surface tension, capillary action, vapor…
Descriptors: Advanced Courses, Chemistry, Molecular Structure, Science Instruction
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Stern, Luli; Barnea, Nitza; Shauli, Sofia – Journal of Science Education and Technology, 2008
The objective of this study was to evaluate the effect of a dynamic software simulation on the understanding of the kinetic molecular theory by 7th graders. Students in the control group (n = 62) studied a curricular unit that addressed the differences in arrangement and motion of molecules in the three phases of matter. The experimental group (n…
Descriptors: Kinetics, Computer Software, Grade 7, Gender Differences
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Moore, John W., Ed. – Journal of Chemical Education, 1985
Describes: (1) an interactive computer simulation for a science fair display of chromatography inks; (2) analytical chemistry programs; (3) microcomputer-assisted drills in organic synthesis; (4) programs for conformation analysis of ethane and butane; (5) MOLPIX--a program for generating and displaying molecular structures; and (6) chemical…
Descriptors: Chemistry, College Science, Computer Simulation, Computer Software
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Moore, John W., Ed. – Journal of Chemical Education, 1988
Describes five computer software packages; four for MS-DOS Systems and one for Apple II. Included are SPEC20, an interactive simulation of a Bausch and Lomb Spectronic-20; a database for laboratory chemicals and programs for visualizing Boltzmann-like distributions, orbital plot for the hydrogen atom and molecular orbital theory. (CW)
Descriptors: Atomic Theory, Chemistry, College Science, Computer Simulation
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Imai, Izumi; Kamata, Masahiro; Miura, Naosuke – Physics Education, 2003
Kinetic models of a gas can be hard for students to understand. Typical tools do not display events at the microscopic level, yet computer simulations of the molecules lack a hands-on aspect. Here a new tool is described that combines the squeezing of a syringe with a computer simulation, and it is shown that this has worked well in class for both…
Descriptors: Mechanics (Physics), Computer Simulation, Molecular Structure, Kinetics
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Sperandeo-Mineo, R. M.; Tripi, G. – Physics Education, 1987
Describes some simple computer programs designed to simulate the molecular dynamics of two-dimensional systems with a Lennard-Jones interaction potential. Discusses the use of the software in introductory physics courses at the high school and college level. (TW)
Descriptors: College Science, Computer Assisted Instruction, Computer Simulation, Computer Uses in Education
Hakerem, Gita; And Others – 1993
The Water and Molecular Networks (WAMNet) Project uses graduate student written Reduced Instruction Set Computing (RISC) computer simulations of the molecular structure of water to assist high school students learn about the nature of water. This study examined: (1) preconceptions concerning the molecular structure of water common among high…
Descriptors: Chemistry, Cognitive Development, Computer Assisted Instruction, Computer Simulation
Hakerem, Gita; And Others – 1993
This study reports the efforts of the Water and Molecular Networks Project (WAMNet), a program in which high school chemistry students use computer simulations developed at Boston University (Massachusetts) to model the three-dimensional structure of molecules and the hydrogen bond network that holds water molecules together. This case study…
Descriptors: Case Studies, Chemistry, Computer Assisted Instruction, Computer Simulation