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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
Rianne van Dinther; Lesley de Putter; Birgit Pepin – Journal of Chemical Education, 2023
One way of triggering students' interest in chemistry is making chemistry education more meaningful. Four characteristics of meaningful chemistry education (MCE) were identified in projects that involved a redesign of curriculum materials: daily life context, the need-to-know principle, students' input, and the macro--micro connection. Chemistry…
Descriptors: Science Instruction, Chemistry, Computer Simulation, Educational Technology
Mohottala, H. E.; Higgins, Brent – Physics Education, 2022
The use of animations, simulations, and remote lab experiments has taken a new turn during the pandemic. When teaching introductory-level physics courses, the simulations and animations play an important role. Carefully designed simulations assist students visualize real-life situations and help understand complex physics concepts behind them.…
Descriptors: Physics, Science Instruction, COVID-19, Pandemics
Natalia Spitha; Yujian Zhang; Samuel Pazicni; Sarah A. Fullington; Carla Morais; Amanda Rae Buchberger; Pamela S. Doolittle – Chemistry Education Research and Practice, 2024
The Beer-Lambert law is a fundamental relationship in chemistry that helps connect macroscopic experimental observations (i.e., the amount of light exiting a solution sample) to a symbolic model composed of system-level parameters (e.g., concentration values). Despite the wide use of the Beer-Lambert law in the undergraduate chemistry curriculum…
Descriptors: Chemistry, Science Instruction, Undergraduate Students, Scientific Principles
Rahmawati, Yuli; Zulhipri; Hartanto, Octaviano; Falani, Ilham; Iriyadi, Deni – Journal of Technology and Science Education, 2022
This research aims to analyse students' conceptual understanding of chemical equilibrium matter using Physics Education Technology (PhET) Interactive Simulations. Students' misconceptions can be caused by the difficulty in connecting the sub-microscopic, macroscopic, and symbolic levels of understanding in chemistry. The study was conducted at a…
Descriptors: Science Instruction, Chemistry, Scientific Concepts, Concept Formation
Byukusenge, Céline; Nsanganwimana, Florien; Tarmo, Albert Paulo – Journal of Science Education and Technology, 2023
Some science subjects are often perceived to be difficult and boring by students due to their nature and the way they are taught. This study sought to check the effectiveness of the technology-enhanced instruction method with comprehensive use of virtual labs and animations in teaching nerve cells' (neurons and glial cells) structures and…
Descriptors: Foreign Countries, Secondary School Students, Knowledge Level, Scientific Literacy
Cole, Martin H.; Fuller, Dana K.; Sanger, Michael J. – Chemistry Education Research and Practice, 2021
This study compares students' explanations of the oxidation-reduction reaction between silver nitrate and copper metal after viewing a chemical demonstration and one of four different particulate-level computer animations. The animations differed in the way the ionic charges were depicted (shown or omitted) and the way the transferred electrons…
Descriptors: Chemistry, Scientific Concepts, Knowledge Level, Metallurgy
Antwi, Victor; Addo-Wuver, Fortune; Sakyi-Hagan, Nelly – Science Education International, 2020
Newton's third law of motion is probably one of the easiest and simplest laws in physics for students to recite. However, when they are given questions where they must apply the understanding of the law to solve a problem, it often becomes a challenge. They seem to forget about the fact that action and reaction are opposite and equal. In this…
Descriptors: Motion, Physics, Concept Formation, Misconceptions
Nyirahabimana, Pascasie; Minani, Evariste; Nduwingoma, Mathias; Kemeza, Imelda – Journal of Baltic Science Education, 2023
The research on students' perceptions after implementing a teaching style is recommended due to its potential to inform reformed education. The present study surveyed 319 students and revealed their perceptions of multimedia usage in teaching and learning quantum physics. Among these students, 156 were surveyed after learning quantum physics with…
Descriptors: Physics, Science Instruction, Computer Simulation, Video Technology
Fang, Ning; Guo, Yongqing – Journal of Educational Computing Research, 2023
Computer simulation and animation (CSA) is educational technology in which computer programs are employed to simulate and animate real-world physical phenomena and processes. CSA has attracted growing attention and received an increasing number of applications in the international science, technology, engineering, and mathematics education…
Descriptors: Educational Improvement, Learning Processes, Educational Technology, Computer Software
Aristov, Michael M.; Moore, John W.; Berry, John F. – Journal of Chemical Education, 2021
Through the implementation of the free website/smartphone application Sketchfab, we have found a simple means to introduce 3D visual tools into the chemistry classroom. Sketchfab stores 3D models and animations with free cross-platform accessibility. Blender is a free 3D modeling tool that has been used to prepare models and animations for…
Descriptors: Chemistry, Science Instruction, Educational Technology, Technology Uses in Education
Cole, Martin H.; Rosenthal, Deborah P.; Sanger, Michael J. – Chemistry Education Research and Practice, 2019
This paper describes two studies comparing students' explanations of an oxidation-reduction reaction after viewing the chemical demonstration and one of two different particulate-level computer animations. In the first study, the two animations differed primarily in the complexity of the visual images. Students viewing the more simplified…
Descriptors: Molecular Structure, Scientific Concepts, Chemistry, Science Instruction
Di Vincenzo, Antonella; Floriano, Michele A. – Journal of Chemical Education, 2019
An application for visualizing the aggregation of structureless atoms is presented. The application allows us to demonstrate on a qualitative basis, as well as by quantitatively monitoring the aggregate surface/volume ratio, that the enhanced reactivity of nanoparticles can be connected with their large specific surface. It is suggested that,…
Descriptors: Chemistry, Science Instruction, Molecular Structure, Scientific Principles
Faggioni, Thaís; Ferreira, Natiele Carla da Silva; Lopes, Renato Matos; Fidalgo-Neto, Antonio Augusto; Cotta-de-Almeida, Vinicius; Alves, Luiz Anastacio – Advances in Physiology Education, 2019
The use of computers as a pedagogical resource is currently on the rise. In the case of immunology, students present difficulties in visualizing molecular phenomena. Thus the use of animations and simulations available on the internet might facilitate the learning of complex immunological concepts. In this context, it is important to map and…
Descriptors: Physiology, Science Instruction, Computer Software, Molecular Structure
Tibell, Lena A. E.; Harms, Ute – Science & Education, 2017
Modern evolutionary theory is both a central theory and an integrative framework of the life sciences. This is reflected in the common references to evolution in modern science education curricula and contexts. In fact, evolution is a core idea that is supposed to support biology learning by facilitating the organization of relevant knowledge. In…
Descriptors: Biology, Scientific Concepts, Fundamental Concepts, Evolution