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Showing 1 to 15 of 19 results Save | Export
Shute, Valerie J.; Smith, Ginny; Kuba, Renata; Dai, Chih-Pu; Rahimi, Seyedahmad; Liu, Zhichun; Almond, Russell – Grantee Submission, 2020
In honor of Jim Greer, we share our recent work--a design and development study of various learning supports embedded within the game "Physics Playground." This 2-dimensional computer game is designed to help students learn Newtonian physics and uses stealth assessment to measure, in real-time, their physics understanding. The game…
Descriptors: Physics, Educational Games, Computer Games, Science Education
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Bongers, Amanda; Beauvoir, Berthorie; Streja, Nicholas; Northof, Georg; Flynn, Alison B. – Chemistry Education Research and Practice, 2020
In chemistry, novices and experts use mental models to simulate and reason about sub-microscopic processes. Animations are thus important tools for learning in chemistry to convey reaction dynamics and molecular motion. While there are many animations available and studies showing the benefit of learning from animations, there are also limitations…
Descriptors: Science Instruction, Schemata (Cognition), Scientific Concepts, Animation
Prapti Utami, Retno; Rohaeti, Eli – Online Submission, 2019
This research aimed at describing the effectiveness of the macromedia flash based inquiry learning in improving students' concept understanding in chemistry learning. It was an experimental research with post-test only design. The population was the eleventh-grade science students of state high school 5 Yogyakarta, Indonesia. The sample in this…
Descriptors: Chemistry, Scientific Concepts, Concept Formation, Active Learning
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Diget, C. Aa.; Pastore, A.; Leech, K.; Haylett, T.; Lock, S.; Sanders, T.; Shelley, M.; Willett, H. V.; Keegans, J.; Sinclair, L.; Simpson, E. C. – Physics Education, 2017
We present a new teaching and outreach activity based around the construction of a three-dimensional chart of isotopes using LEGO® bricks. The activity, "binding blocks", demonstrates nuclear and astrophysical processes through a seven-meter chart of all nuclear isotopes, built from over 26000 LEGO® bricks. It integrates A-Level and GCSE…
Descriptors: Science Instruction, Scientific Concepts, Nuclear Energy, Nuclear Physics
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Álvarez-Rúa, Carmen; Borge, Javier – Journal of Chemical Education, 2016
Thermodynamic processes are complex phenomena that can be understood as a set of successive stages. When treating processes, classical thermodynamics (and most particularly, the Gibbsian formulation, predominantly used in chemistry) only pays attention to initial and final states. However, reintroducing the notion of process is absolutely…
Descriptors: Undergraduate Study, Science Education, Chemistry, Thermodynamics
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Rosenthal, Deborah P.; Sanger, Michael J. – Chemistry Education Research and Practice, 2012
A group of 55 students were shown unnarrated versions of two different particulate-level computer animations of varying complexity depicting the oxidation-reduction reaction of aqueous silver nitrate and solid copper metal. These students were asked to explain their understanding of the chemical reaction based on their interpretations of these…
Descriptors: Chemistry, Misconceptions, Science Instruction, Computer Uses in Education
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Akpinar, Ercan – Journal of Science Education and Technology, 2014
This study investigates the effects of using interactive computer animations based on predict-observe-explain (POE) as a presentation tool on primary school students' understanding of the static electricity concepts. A quasi-experimental pre-test/post-test control group design was utilized in this study. The experiment group consisted of 30…
Descriptors: Animation, Elementary School Science, Computer Uses in Education, Elementary School Students
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Jones, Thomas C.; Laughlin, Thomas F. – American Biology Teacher, 2010
Natural selection and other components of evolutionary theory are known to be particularly challenging concepts for students to understand. To help illustrate these concepts, we developed a simulation model of microevolutionary processes. The model features all the components of Hardy-Weinberg theory, with population size, selection, gene flow,…
Descriptors: Evolution, Science Instruction, Biology, Scientific Concepts
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Kohnle, Antje; Douglass, Margaret; Edwards, Tom J.; Gillies, Alastair D.; Hooley, Christopher A.; Sinclair, Bruce D. – European Journal of Physics, 2010
In this paper, we describe animations and animated visualizations for introductory and intermediate-level quantum mechanics instruction developed at the University of St Andrews. The animations aim to help students build mental representations of quantum mechanics concepts. They focus on known areas of student difficulty and misconceptions by…
Descriptors: Student Attitudes, Quantum Mechanics, Misconceptions, Teaching Methods
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Kulasekara, Geetha Udayangani; Jayatilleke, Buddhini Gayathri; Coomaraswamy, Uma – Open Learning, 2011
This study was carried out to explore learner perceptions on the instructional design features of interactive multimedia (IMM), which was especially designed to support the open and distance learners studying microbiology as a part of the BSc degree programme of the Open University of Sri Lanka (OUSL). The purpose of developing this IMM was to…
Descriptors: Feedback (Response), Instructional Design, Qualitative Research, Open Universities
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Hoban, Garry; Nielsen, Wendy – Teaching Science, 2010
"Slowmation" (abbreviated from "Slow Animation") is a simplified way of making an animation that enables students to create their own as a new way of learning about a science concept. When students make a slowmation, they create a sequence of five multimodal representations (the 5 Rs) with each one contributing to the learning…
Descriptors: Animation, Hands on Science, Teaching Methods, Scientific Concepts
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Chang, Hsin-Yi; Quintana, Chris; Krajcik, Joseph S. – Science Education, 2010
In this study, we investigated whether the understanding of the particulate nature of matter by students was improved by allowing them to design and evaluate molecular animations of chemical phenomena. We developed Chemation, a learner-centered animation tool, to allow seventh-grade students to construct flipbook-like simple animations to show…
Descriptors: Animation, Peer Evaluation, Factor Analysis, Effect Size
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Aldahmash, Abdulwali H.; Abraham, Michael R. – Journal of Chemical Education, 2009
Using animated computer-generated graphics to assist instruction has recently attracted the attention of educators and educational researchers. The specific focus of this study is to compare the influence of animated visuals with static visuals on college students' understanding of organic reaction mechanisms in chemistry. This study also focuses…
Descriptors: College Students, Kinetics, Organic Chemistry, Correlation
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Akpinar, Ercan; Ergin, Omer – Asia-Pacific Forum on Science Learning and Teaching, 2008
The purpose of this study was to investigate the effects of instruction (application) including interactive computer animation accompanied by teacher and student-prepared concept maps on primary students' biology achievement during instruction, as well as revealing attitudes towards science as a school subject. A quasi-experimental…
Descriptors: Experimental Groups, Control Groups, Animation, Concept Mapping
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Hall, Donald W. – Journal of College Science Teaching, 1996
Describes the use of computer-based animations in demonstrating and enlivening scientific principles. Discusses frame-based animation, cel-based animation, object animation, the creation of simple animations, and the use of animation software. (JRH)
Descriptors: Animation, Biology, Computer Uses in Education, Entomology
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