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Liu, Qingtang; Ma, Jingjing; Yu, Shufan; Wang, Qiyun; Xu, Suxiao – Journal of Science Education and Technology, 2023
The microscopic composition of substances is a piece of essential but abstract knowledge in chemistry. Junior high school students may experience difficulty in mental representation when learning micro concepts, which leads to problems such as unsatisfactory academic performance and low learning motivation. Augmented reality (AR) is an optimal…
Descriptors: Chemistry, Science Instruction, Grade 9, Scientific Concepts
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McPherson, Heather; Frank, Gregory; Pearce, Rebecca; Hoffman, Ernest – Science Teacher, 2021
In this article, the authors share a unique science, technology, engineering and math (STEM) online field trip structure developed for high school students. The ninth-, tenth-, and eleventh-grade students who participated in the virtual field trips were from multiple high schools. This article focuses on two virtual trips that the authors…
Descriptors: Computer Simulation, Field Trips, Experiential Learning, High School Students
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Angela L. Mahaffey – Journal of Chemical Education, 2023
Chemistry topics are ubiquitous in healthcare diagnostics as well as health professions undergraduate curricula. However, there are limited correlations between chemistry and healthcare made in textbooks or template lecture materials. For undergraduate nursing students (BSN) enrolled in a Chemistry for Health Professions course, the author (and…
Descriptors: Computer Simulation, Laboratory Experiments, Chemistry, Allied Health Occupations Education
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Yunus Emre Avcu; Yavuz Yaman – Journal of Inquiry Based Activities, 2024
A differentiated science activity was created for gifted students. The focus is on Sustainable Development Goal 15 (SDG-15) for life on land, enhancing engagement, self-regulated learning skills, and scientific creativity in gifted students. The activity spanned eight lesson hours, with tasks encouraging observation, inquiry, and creative…
Descriptors: Gifted, Individualized Instruction, Science Instruction, Computer Simulation
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Cook, Jim; Brown, Martin; Sellwood, Matthew; Campbell, Craig; Kouppas, Paul; Poronnik, Philip – Biochemistry and Molecular Biology Education, 2021
This brief review provides insights into the recent advances made by the Unity game engine into education and the ways that learning resources can be used to teach novice bioscience students to use the VR/AR affordances of the platform. We present our own practises for implementation of a novel gamification task for final-year bioscience students…
Descriptors: Educational Games, Science Instruction, Teaching Methods, Biological Sciences
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Chinaka, Taurayi Willard – African Journal of Research in Mathematics, Science and Technology Education, 2021
Research in the past decades has repeatedly revealed that first year university students struggle to understand two-dimensional projectile motion concepts. In contrast to high school, projectile motion frequently makes use of components and it requires at least a basic understanding of trigonometry concepts. To follow the lessons and generate…
Descriptors: College Freshmen, Scientific Concepts, Motion, Concept Formation
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Matovu, Henry; Ungu, Dewi Ayu Kencana; Won, Mihye; Tsai, Chin-Chung; Treagust, David F.; Mocerino, Mauro; Tasker, Roy – Studies in Science Education, 2023
The advanced visualisation and interactive capabilities make immersive virtual reality (IVR) attractive for educators to investigate its educational benefits. This research reviewed 64 studies published in 2016-2020 to understand how science educators designed, implemented, and evaluated IVR-based learning. The immersive design features (sensory,…
Descriptors: Computer Simulation, Science Instruction, Teaching Methods, Science Education
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Leung, Promail K. Y.; Cheng, Maurice M. W. – Journal of Educational Technology Systems, 2021
Students nowadays grow up with electronic devices and are adept at navigating the virtual world. Practical activities may be more of a novelty for them than simulations. Using the topic of electric circuits as a context, we examined the ways in which Grade 11 students perceived and learned from practical work and simulations, respectively. In this…
Descriptors: Grade 11, Experiential Learning, Computer Simulation, Electronic Equipment
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Soong, Ronald; Jenne, Amy; Lysak, Daniel H.; Biswas, Rajshree Ghosh; Adamo, Antonio; Kim, Kris S.; Simpson, Andre – Journal of Chemical Education, 2021
Due to the COVID-19 pandemic, social distancing restrictions are in place in most public settings, and the undergraduate laboratory is no exception. In order to accommodate social distancing requirements, many laboratory exercises are being redeployed in an online format, which deprives students of experiential learning opportunities in a real…
Descriptors: COVID-19, Pandemics, Undergraduate Students, Science Instruction
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Cano, Junar S.; Olvis, Paul R.; Disca, Berlita Y.; Docena, Aida F. – International Journal of Technology in Education, 2022
The essence of Genetics lies in the understanding of the concepts of Central Dogma of Molecular Biology. Although these ideas are fundamental to the field, they are notoriously difficult to understand and visualize. While simulation-based instructional materials are found to improve the teaching-learning process in science education, little has…
Descriptors: Molecular Biology, Science Instruction, Scientific Concepts, Genetics
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Frances Heaney; Trinidad Velasco-Torrijos; Carmel Breslin; Robert Elmes; John Stephens; Ria Collery-Walsh; Anne Cleary; Orla Joyce; Brian Murphy; Bernard Drumm; Ronan Bree; Eric Moore; Aoife Morrin; Bla´naid White; Denise Rooney – Journal of Chemical Education, 2025
In a technology-enhanced learning environment and underpinned by a unique hybrid pedagogic model that borrows from gamification, constructivism, and experiential learning approaches, badges were purposefully used to foster engagement. This approach promoted the development of a mindset that identifies and appreciates the worth of a portfolio of…
Descriptors: Science Instruction, Blended Learning, Large Group Instruction, Experiential Learning
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Mead, Chris; Buxner, Sanlyn; Bruce, Geoffrey; Taylor, Wendy; Semken, Steven; Anbar, Ariel D. – Journal of Geoscience Education, 2019
Field learning is considered an essential part of geoscience education, yet there are many practical challenges that limit broad and equitable access to field learning. Virtual field experiences can now help to broaden access to field learning. This work details the learning design and technical components of immersive, interactive virtual field…
Descriptors: Experiential Learning, Educational Technology, Technology Uses in Education, Computer Simulation
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Chang, Shao-Chen; Hsu, Ting-Chia; Chen, Yen-Ni; Jong, Morris Siu-yung – Interactive Learning Environments, 2020
With the continuous development and innovation of information technology, virtual reality (VR) has become an important topic of education technology in recent years. VR is not only applied in many industries, but is also used by scholars for education applications as it enables students to have an immersive learning experience to enhance their…
Descriptors: Video Technology, Computer Simulation, Science Instruction, Instructional Effectiveness
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Cano, Junar S. – International Society for Technology, Education, and Science, 2021
The essence of Genetics lies in the understanding of the concepts of Central Dogma of Molecular Biology. Although these ideas are fundamental to the field, they are notoriously difficult to understand and visualize. While simulation-based instructional materials are found to improve the teaching-learning process in science education, little has…
Descriptors: Instructional Materials, Molecular Biology, Science Instruction, Scores
Kyle Joe Branch – ProQuest LLC, 2018
We developed an introductory chemical engineering design laboratory course coupling traditional, hands-on, and virtual learning techniques. The course is centered on a set of interactive, online simulations mimicking laboratory experimentation, which the students complete for homework prior to completing a corresponding hands-on experiment as a…
Descriptors: Chemical Engineering, Introductory Courses, Laboratory Experiments, Experiential Learning
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