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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
Pandora Dorouka; Michail Kalogiannakis; Ron Blonder – Journal of Science Education and Technology, 2024
Successful integration of digital technologies in the education of young children still needs to be solved. Despite a growing body of research focusing on learning through digital technologies in childhood, there are areas of knowledge where the impact of digital technologies has yet to be explored. A prominent example is nanoscience and…
Descriptors: Handheld Devices, Computer Oriented Programs, Literacy Education, Early Childhood Education
Larnder, Chris I. – Physics Teacher, 2021
Today's students are increasingly immersed in a landscape of screens and handheld digital devices through which a good deal of their interactions with the world around them are mediated. Physics educators, meanwhile, continue to rely on traditional human interactions with the physical world, such as sliding down a ramp or throwing a baseball, in…
Descriptors: Physics, Science Instruction, Teaching Methods, Computer Peripherals
Öçal, Mehmet Fatih; Simsek, Mertkan; Kapucu, Serkan – PRIMUS, 2021
The use of smartphones is increasingly gaining popularity in education. Students and teachers can determine scientific concepts using smartphones equipped with sensors such as Global Positioning System (GPS -- a navigation system that provides location information) and orientation (a device to measure coordinates according to a reference frame).…
Descriptors: Telecommunications, Handheld Devices, Measurement Techniques, Scientific Concepts
Grethel G. Bactong; Abegial Dianne H. Sabas; Krezel Marie M. Salva; Albert John B. Lituañas; Angelo Mark P. Walag – Online Submission, 2021
The integration of information and communication tools in education has been a common trend in the last decade which resulted in increased student engagement, motivation, and even achievement and learning. Despite these improvements, science teachers still report challenges with its use in science education. Several abstract topics in chemistry…
Descriptors: Science Education, Science Instruction, Teaching Methods, Chemistry
Dinov, Ivo D.; Palanimalai, Selvam; Khare, Ashwini; Christou, Nicolas – Teaching Statistics: An International Journal for Teachers, 2018
Statistical inference involves drawing scientifically-based conclusions describing natural processes or observable phenomena from datasets with intrinsic random variation. We designed, implemented, and validated a new portable randomization-based statistical inference infrastructure (http://socr.umich.edu/HTML5/Resampling_Webapp) that blends…
Descriptors: Statistical Inference, Sampling, Simulation, Computer Oriented Programs
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
Eliyawati; Agustin, Rika Rafikah; Sya'bandari, Yustika; Putri, Rossy Andini Herindra – Journal of Science Learning, 2020
An android application named SmartChem was developed to explain multiple representations of acid-base chemistry. This paper is a description of an android-based media (SmartChem) through the stages of design, development, validation and revision, and finally, limited trials with pre-service science teachers. SmartChem is intended to aid students…
Descriptors: Science Instruction, Chemistry, Educational Technology, Telecommunications
Florea, Catalin – Physics Teacher, 2019
In almost any given day, one will stumble upon sounds that are out of the ordinary, distinct enough to capture one's attention. Ordinary sounds in a home are represented by the white-noise-like background created by speaking, moving around, household appliances running, and so forth. The out of the ordinary is the sparkling sound of a knife blade…
Descriptors: Telecommunications, Handheld Devices, Acoustics, Science Instruction
Stenlund, Jörgen Ingemar; Schönborn, Konrad Janek; Tibell, Lena Anna Elisabet – Journal of Science Education and Technology, 2021
Central to evolution is the concept of a common ancestry from which all life has emerged over immense time scales, but learning and teaching temporal aspects of evolution remain challenging. This study investigated students' interpretation of evolutionary time when engaging with a multi-touch tabletop application called DeepTree, a dynamic…
Descriptors: Evolution, Time, Scientific Concepts, Computer Oriented Programs
Christian, Wolfgang; Belloni, Mario; Sokolowska, Dagmara; Cox, Anne; Dancy, Melissa – Physics Education, 2020
Over the past 25 years, the Davidson College Physics Department has developed small computer programs called Physlets. These programs were written in Java and distributed as Java applets embedded in HTML pages. Physics teachers from around the world used Physlets to author interactive computer-based curricular materials for the teaching of…
Descriptors: Science Instruction, Physics, Teaching Methods, Computer Oriented Programs
Carvalho, Paulo Simeão; Hahn, Marcelo – Physics Teacher, 2016
The result of additive colors is always fascinating to young students. When we teach this topic to 14- to 16-year-old students, they do not usually notice we use maximum light quantities of red (R), green (G), and blue (B) to obtain yellow, magenta, and cyan colors in order to build the well-known additive color diagram of Fig. 1. But how about…
Descriptors: Science Experiments, Teaching Methods, Hands on Science, Color
Newman, Richard; van der Ventel, Brandon; Hanekom, Crischelle – Physics Education, 2017
Probing university students' understanding of direct-current (DC) resistive circuits is still a field of active physics education research. We report here on a study we conducted of this understanding, where the cohort consisted of students in a large-enrollment first-year physics module. This is a non-calculus based physics module for students in…
Descriptors: Science Instruction, College Science, College Students, Scientific Concepts
Wang, June-Yi; Wu, Hsin-Kai; Chien, Sung-Pei; Hwang, Fu-Kwun; Hsu, Ying-Shao – Journal of Educational Computing Research, 2015
So far relatively little research in education has explored the pedagogical and learning potentials of applications (Apps) on tablet PCs (TPCs). Drawing upon research on learning technologies and taking an embodied perspective, this study first identified educational functionalities of TPCs and generated guidelines to design educational Apps for…
Descriptors: Physics, Science Instruction, Secondary School Science, High School Students
Lennex, Lesia; Bodenlos, Emily – Online Submission, 2014
Elementary science is chock-full of wonderful experiences for students. Do children see iPads as a tool for learning about science? Using Prensky (2010) as a guide, the researchers decided to see if "assessing students with their own" tools (p.178) using iPad apps would support learning discrete knowledge for electricity and light…
Descriptors: Elementary School Science, Grade 4, Teaching Methods, Computer Oriented Programs
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