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Xin Guan; Chunmei Sun; Gwo-jen Hwang; Kegan Xue; Zhuo Wang – Interactive Learning Environments, 2024
Play is crucial to children's development. With the prevalent use of digital technologies, children and young adults are seen playing games more often and longer on digital devices. How should teachers capitalize the advantages of games in class, without inducing more health risks or problems for children? To achieve this goal, teachers need…
Descriptors: Game Based Learning, Educational Technology, Science Instruction, Design
Ryan He; Melinda Tidrick – Journal of Chemical Education, 2023
An increased reliance on nanotechnology and recent developments in materials fabrication coincide with a greater prevalence of 3D printers in high schools. We developed this lesson to foster an exploration of interdisciplinary fields and to increase access to recent advances in materials chemistry through two different learning modules. The lab…
Descriptors: Chemistry, High School Students, Computer Peripherals, Printing
Ethan P. McNaughton; Liam Bilbie; Matea Zuljevic; Lauren K. Allen; Daiana-Roxana Pur; Roy Eagleson; Sandrine Ribaupierre – Anatomical Sciences Education, 2025
In this article, we introduce a new virtual application that offers an interactive model of the brain for neuroanatomy education. Through a dual-platform architecture, the application can be downloaded on both desktop and mobile devices, with the mobile app leveraging unique capacities of modern handheld systems to deploy the brain model in…
Descriptors: Undergraduate Students, Anatomy, Brain, Science Instruction
Chiara Elmi – School Science and Mathematics, 2025
Interactive digital technologies are playing an increasingly important part in education for enhancing collaborative learning processes and improving engagement. Social annotation (SA) tools and collaborative platforms are an innovative way to involve students to give and take feedback, annotate, and brainstorm on complex topics in science,…
Descriptors: Skill Development, Science Process Skills, Thinking Skills, Inquiry
Gabor, Donna Hembra; Canaway Camano, Leona Marie – Journal of Science Learning, 2023
This study aimed to examine learners' perspectives on the hybrid learning approach, using printed modules and social media as learning materials to redesign science courses and improve their performances. This study involved 37 students from Tacuyong Sur National High School, 20 from the Grade 9 class and 17 from the Grade 12 Technical Vocational…
Descriptors: Foreign Countries, Instructional Design, Science Education, High School Students
Scholten, Danny J.; Wijtmans, Maikel; Dekker, Stefan J.; Vuuregge, Anna H.; Boon, Erik J. J.; Vos, J. Chris; Siderius, Marco; Westbroek, Hanna; van Muijlwijk-Koezen, Jacqueline E. – Journal of Chemical Education, 2021
Incorporation of increased flexibility and adaptivity in courses can support freshmen with taking responsibility for their learning process. This is especially beneficial in the case of chemistry courses given their typically abstract nature and associated need for engaging in practice and higher order thinking. Blended learning can be used to…
Descriptors: Chemistry, Science Instruction, Blended Learning, Introductory Courses
Nursakinah, Yulianita; Prima, Eka Cahya; Agustin, Rika Rafikah – Journal of Science Learning, 2023
The lack of digital media to support middle school chemistry learning needs further expanded. Hence, an Android application as a learning media on acid, base, and salt topics was needed. This study aims to develop FunLABS (Fun Learning Acid, Base, and Salt) android-based applications. This study used a DDD-E model of development as a research…
Descriptors: Handheld Devices, Computer Oriented Programs, Chemistry, Science Instruction
Gonzalez, Emily A.; Grotzer, Tina A.; McGivney, Eileen; Reilly, Joseph – Technology, Knowledge and Learning, 2022
Multi-User Virtual Environments (MUVEs) provide a rich and immersive context for introducing inquiry-based and Problem-Based Learning (PBL) into science classrooms. MUVES can have a significant effect on learning outcomes, however, illuminating how particular design features interact with those outcomes is an important area of investigation for…
Descriptors: Science Instruction, Inquiry, Active Learning, Problem Based Learning
Ananda, Lintang Rizkyta; Rahmawati, Yuli; Khairi, Fauzan – Journal of Technology and Science Education, 2023
This project seeks to foster students' critical thinking abilities through the incorporation of Design Thinking with STEAM-PjBL in a chemistry redox process. 41 grade 10 students from a high school in Rangkasbitung, Banten, Indonesia participated in this study. Learning was facilitated by using a variety of online platforms, including Edmodo,…
Descriptors: Critical Thinking, Thinking Skills, Chemistry, Science Instruction
Cirkony, Connie; Tytler, Russell; Hubber, Peter – Educational Technology Research and Development, 2022
Inquiry-based representation-focused approaches in science education have shown promising outcomes when students engage in knowledge building via an active process of constructing, coordinating, and evaluating representations. To date, much of the existing research around these approaches has taken place in pre-digital classrooms, but the…
Descriptors: Science Education, Science Instruction, Inquiry, Active Learning
Shegufta Shetranjiwalla; Molly S. J. Hu – Journal of Chemical Education, 2023
Green chemistry and chemical safety complement each other in reducing adverse health and safety outcomes. However, it is imperative to train students of advanced synthetic chemistry, beyond reaction mechanisms, to proactively connect complex experiments with hazard analysis, risk minimization, and planetary sustainability. Virtual experiments…
Descriptors: Stakeholders, Science Experiments, Chemistry, Electronic Learning
Covey, Scott D. – Biochemistry and Molecular Biology Education, 2021
The real time PCR (qPCR) method provides a powerful method to assess levels of particular species of DNA. When combined with reverse transcription (RT-qPCR) it is the predominate technique to measure expression of gene transcripts. While this approach is very powerful, particular care must be taken in the design of the primers to facilitate…
Descriptors: Science Instruction, Genetics, Molecular Biology, Teaching Methods
Van De Heyde, Valentino; Siebrits, André – Research in Science & Technological Education, 2022
Background: This article presents the findings of a pilot study introducing students to emerging educational technologies to enhance their physics laboratory learning experiences. This follows a design-based laboratory approach in which the students move from constructing and developing their laboratory reports in a traditional cookbook…
Descriptors: Educational Technology, Science Instruction, Science Laboratories, Physics
Batir, Zafer; Sadi, Özlem – Journal of Inquiry Based Activities, 2021
The purpose of this study is to introduce a science module that was designed based on the ASSURE model and to present its implementation process. The study was conducted with the participation of 21 students attending a private school during the 2020-2021 academic year. The instructional plan focused on the concept of "Relationship between…
Descriptors: Science Instruction, Units of Study, Physics, Energy
Sansom, Rebecca L.; Bodily, Robert; Bates, Caroline O.; Leary, Heather – Journal of Science Education and Technology, 2020
Use of online learning systems, such as learner dashboards, is increasing in university chemistry courses. Learning analytics can support student learning by providing feedback on concept mastery. This paper investigated how student use of a chemistry learner dashboard might be increased through class structure, instructor practice, and dashboard…
Descriptors: Online Systems, Teaching Methods, Data Analysis, Feedback (Response)