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Vidak, Andrej; Šapic, Iva Movre; Hadžimehmedovic, Mirza – Physics Teacher, 2022
In the past decade, we have witnessed the emergence of a large number of different computer-based animations and simulations that have the goal to foster better learning of different physics topics. Past studies have shown many benefits of animations and simulations, but for their efficient usage it is very important that teachers are well…
Descriptors: Computer Simulation, Scientific Concepts, Mechanics (Physics), Science Instruction
Smith, K. Christopher; Villarreal, Savannah – Chemistry Education Research and Practice, 2015
In this reply to Elon Langbeheim's response to an article recently published in this journal, authors Smith and Villarreal identify several types of general chemistry students' misconceptions concerning the concept of particle position during physical change. They focus their response on one of the misconceptions identified as such: Given a solid…
Descriptors: Chemistry, Science Instruction, Scientific Concepts, Misconceptions
Smith, K. Christopher; Villarreal, Savannah – Chemistry Education Research and Practice, 2015
This article reports on the types of views and misconceptions uncovered after assessing 155 freshman general chemistry students on the concept of particle position during the reversible physical change of melting, using the Melting Cycle Instrument, which illustrates particulate-level representations of a melting-freezing cycle. Animations…
Descriptors: Animation, Chemistry, Science Instruction, Misconceptions
Kelly, Resa M.; Akaygun, Sevil – Journal of Chemical Education, 2016
This article summarizes an investigation into how Flash-based cartoon video tutorials featuring molecular visualizations affect students' mental models of acetic acid and hydrochloric acid solutions and how the acids respond when tested for electrical conductance. Variation theory served as the theoretical framework for examining how students…
Descriptors: Cartoons, Visualization, Animation, Chemistry
Tasker, Roy – Teaching Science, 2014
Why is chemistry so difficult? A seminal paper by Johnstone (1982) offered an explanation for why science in general, and chemistry in particular, is so difficult to learn. He proposed that an expert in chemistry thinks at three levels; the macro (referred to as the observational level in this article), the sub-micro (referred to as the molecular…
Descriptors: Chemistry, Visualization, Molecular Structure, Theory Practice Relationship
Jena, Ananta Kumar – European Journal of Science and Mathematics Education, 2015
Adenosine triphosphate (ATP) is the molecular unit of intracellular energy and it is the product of oxidative phosphorylation of cellular respiration uses in cellular processes. The study explores the growth of the misconception levels amongst the learners and evaluates the effectiveness of animation model over traditional methods. The data…
Descriptors: Animation, Science Instruction, Teaching Methods, Molecular Structure
Prilliman, Stephen G. – Journal of Chemical Education, 2014
The College Board's recently revised curriculum for advanced placement (AP) chemistry places a strong emphasis on conceptual understanding, including representations of particle phenomena. This change in emphasis is informed by years of research showing that students could perform algorithmic calculations but not explain those calculations…
Descriptors: Science Instruction, Secondary School Science, High Schools, College Science
Guy, Richard – Advances in Physiology Education, 2012
Anyone who has taught neurophysiology would be aware of recurring concepts that students find difficult to understand. However, a greater problem is the development of misconceptions that may be difficult to change. For example, one common misconception is that action potentials pass directly across chemical synapses. Difficulties may be…
Descriptors: Computer Assisted Instruction, Physiology, Electronic Learning, Feedback (Response)
Yakmaci-Guzel, Buket; Adadan, Emine – International Journal of Environmental and Science Education, 2013
The purpose of this study was to examine the changes in 19 preservice chemistry teachers' understandings of the structure of matter, including the aspects of the physical states of matter, the physical composition of matter, and the chemical composition of matter, before, immediately after, and months after they received a specific instruction.…
Descriptors: Science Instruction, Scientific Concepts, Secondary School Science, Chemistry
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
Zhang, Yu Aimee – Journal of University Teaching and Learning Practice, 2012
Purpose: A picture is worth a thousand words. Multimedia teaching materials have been widely adopted by teachers in Physics, Biotechnology, Psychology, Religion, Analytical Science, and Economics nowadays. To assist with engaging students in their economic study, increase learning efficiency and understanding, solve misconception problems,…
Descriptors: Cartoons, Economics Education, Discussion (Teaching Technique), Tutors
Calik, Muammer; Kolomuc, Ali; Karagolge, Zafer – Journal of Science Education and Technology, 2010
This paper reports on an investigation of the effect of conceptual change pedagogy on students' conceptions of "rate of reaction" concepts. The study used a pre-test/post-test non-equivalent comparison group design approach and the sample consisted of 72 Turkish grade-11 students (aged 16-18 years) selected from two intact classrooms.…
Descriptors: Foreign Countries, Intervention, Concept Formation, Teaching Methods
Sajaniemi, Jorma; Kuittinen, Marja; Tikansalo, Taina – Journal on Educational Resources in Computing, 2008
Students' understanding of object-oriented (OO) program execution was studied by asking students to draw a picture of a program state at a specific moment. Students were given minimal instructions on what to include in their drawings in order to see what they considered to be central concepts and relationships in program execution. Three drawing…
Descriptors: Freehand Drawing, Programming, Student Development, Misconceptions
Peer reviewedMcLaughlin, Jacqueline S. – American Biology Teacher, 2001
Learning by using the lecture method based on memorization, students miss the opportunity to learn basic concepts. Uses animation and diagrams to teach key concepts. (Contains 14 references.) (YDS)
Descriptors: Animation, Biology, Cardiovascular System, Concept Formation
Peer reviewedSanger, Michael J.; Greenbowe, Thomas J. – International Journal of Science Education, 2000
Investigates the effects of both computer animations of microscopic chemical processes occurring in a galvanic cell and conceptual-change instruction based on chemical demonstrations on students' conceptions of current flow in electrolyte solutions. Finds that conceptual change instruction was effective at dispelling student misconceptions but…
Descriptors: Animation, Chemical Reactions, Chemistry, Computer Uses in Education

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