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Rodrigues, Marcelo José; Simeão Carvalho, Paulo – Physics Education, 2022
Nowadays, students have digital skills that are much larger than any other student in the past. Traditional experiments in a real laboratory are still fundamental, however an increasing number of computers can be used to simulate experiments close to the experimental environment. This can be seen as a great advantage for science learning, as…
Descriptors: Computer Simulation, Science Experiments, Science Activities, Physics
Nicole Calma-Roddin; Kevin Park; Jacqueline Keighron – Journal of Chemical Education, 2023
The three-dimensional nature of macromolecules is often difficult for undergraduate students to grasp. This leads to difficulties in understanding key concepts in Biochemistry, such as protein function and conformational change. Virtual reality (VR) technologies, which can aid students in three-dimensional visualizations, have been shown to…
Descriptors: Technology Integration, Technology Uses in Education, Museums, Undergraduate Students
Melanie B. Berkmen; Melisa Balla; Mikayla T. Cavanaugh; Isabel N. Smith; Misael Eduardo Flores-Artica; Abby M. Thornhill; Julia C. Lockart; Celeste N. Peterson – Biochemistry and Molecular Biology Education, 2025
Biochemistry and molecular biology students are asked to understand and analyze the structures of small molecules and complex three-dimensional (3D) macromolecules. However, most tools to help students learn molecular visualization skills are limited to two-dimensional (2D) images on screens and in textbooks. The virtual reality (VR) App Nanome,…
Descriptors: Technology Uses in Education, Computer Simulation, Computer Oriented Programs, Science Instruction
Chris Vicari – International Journal of Designs for Learning, 2020
The American Museum of Natural History (AMNH) in New York City implemented a science-based curriculum pairing augmented reality (AR) with a student-designed escape room experience to support astronomy learning. AR has the potential to simplify complex systems into digestible concepts. Designing an escape room experience provided students with an…
Descriptors: Student Empowerment, Design, Science Instruction, Computer Simulation
Bakri, Fauzi; Permana, Handjoko; Wulandari, Suci; Muliyati, Dewi – Journal of Technology and Science Education, 2020
Practicum based learning is required to provide opportunities for students in finding and applying concepts by observation. Student worksheets with a discovery learning model and equipped with AR video are needed as a learning tool, so students will be able to have good work in the laboratory and implementation of the practicum is effective. This…
Descriptors: Worksheets, Computer Simulation, Physics, Multimedia Instruction
Christensen, Rhonda; Knezek, Gerald – Journal of Educational Multimedia and Hypermedia, 2020
Using innovative technologies to study Mars and the sun and other stars is one way to engage learners in learning more about our solar system and how it impacts us on a daily basis. The focus of this paper is to highlight several innovative technologies such as augmented reality and virtual reality that are easily accessible by educators and…
Descriptors: Astronomy, Technology Uses in Education, Learner Engagement, Instructional Innovation
Ronda Cole Harmon; Maryann Hospelhorn; Esti Gutierrez; Camille Velarde; Matthew Fetrow; Vanessa Svihla – International Journal of Designs for Learning, 2021
For years, the Air Force Research Laboratory (AFRL) in New Mexico has led an outreach effort called "Mission to Mars" to engage fifth grade students in applying science and mathematics concepts related to building a colony on Mars. Many organizations across the US canceled similar events due to the novel coronavirus (COVID-19) pandemic.…
Descriptors: Elementary School Students, Elementary School Science, Astronomy, Grade 5
Artun, Huseyin; Durukan, Alper; Temur, Atilla – Education and Information Technologies, 2020
Innovative instructional technologies, especially virtual reality devices, are becoming more prominent and feasible in science education. Concerning science laboratories, activities enriched with virtual reality technology have the potential to make unobservable phenomena accessible in any school. This virtual reality technology has the potential…
Descriptors: Computer Simulation, Science Laboratories, Science Activities, Preservice Teachers
Soto, Inia; Cambazoglu, Mustafa Kenal; Arnone, Robert; Kastler, Jessica; Parra, Sabrina – Science Teacher, 2018
Cruise planning may seem like an ordinary task for oceanographers, but it actually involves logical and strategic thinking, collaboration, and multidisciplinary work. The "Challenger" expedition, led by Charles Wyville Thomson from 1872 to 1876, was the first to be fully dedicated to understanding oceans (Rice et al. 1999) and was…
Descriptors: Oceanography, Science Instruction, Science Activities, Role Playing
Jagodzinski, Piotr; Wolski, Robert – Journal of Science Education and Technology, 2015
Natural User Interfaces (NUI) are now widely used in electronic devices such as smartphones, tablets and gaming consoles. We have tried to apply this technology in the teaching of chemistry in middle school and high school. A virtual chemical laboratory was developed in which students can simulate the performance of laboratory activities similar…
Descriptors: Computer Simulation, Virtual Classrooms, Science Laboratories, Computer Interfaces
Prigozhin, Maxim B.; Scott, Gregory E.; Denos, Sharlene – Journal of Chemical Education, 2014
In this activity, science education and modern technology are bridged to teach students at the high school and undergraduate levels about protein folding and to strengthen their model building skills. Students are guided from a textbook picture of a protein as a rigid crystal structure to a more realistic view: proteins are highly dynamic…
Descriptors: Computer Simulation, Models, Science Education, Undergraduate Students
Vrellis, Ioannis; Avouris, Nikolaos; Mikropoulos, Tassos A. – Australasian Journal of Educational Technology, 2016
Although problem-based learning (PBL) has many advantages, it often fails to connect to the real world outside the classroom. The integration with the laboratory setting and the use of information and communication technologies (ICTs) have been proposed to address this deficiency. Multi-user virtual environments (MUVEs) like Second Life (SL) are…
Descriptors: Science Activities, Outcomes of Education, Satisfaction, Problem Based Learning
dos Santos Ferreira, Robson; Kataoka, Verônica Yumi; Karrer, Monica – Statistics Education Research Journal, 2014
The objective of this paper is to discuss aspects of high school students' learning of probability in a context where they are supported by the statistical software R. We report on the application of a teaching experiment, constructed using the perspective of Gal's probabilistic literacy and Papert's constructionism. The results show improvement…
Descriptors: Probability, Statistics, Courseware, High School Students
Chen, Sufen; Lo, Hao-Chang; Lin, Jing-Wen; Liang, Jyh-Chong; Chang, Hsin-Yi; Hwang, Fu-Kwun; Chiou, Guo-Li; Wu, Ying-Tien; Lee, Silvia Wen-Yu; Wu, Hsin-Kai; Wang, Chia-Yu; Tsai, Chin-Chung – Physical Review Special Topics - Physics Education Research, 2012
Technology has been widely involved in science research. Researchers are now applying it to science education in an attempt to bring students' science activities closer to authentic science activities. The present study synthesizes the research to discuss the development of technology-enhanced laboratories and how technology may contribute to…
Descriptors: Physics, Educational Change, Science Instruction, Laboratories
International Association for Development of the Information Society, 2012
The IADIS CELDA 2012 Conference intention was to address the main issues concerned with evolving learning processes and supporting pedagogies and applications in the digital age. There had been advances in both cognitive psychology and computing that have affected the educational arena. The convergence of these two disciplines is increasing at a…
Descriptors: Academic Achievement, Academic Persistence, Academic Support Services, Access to Computers