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Shufan Yu; Qingtang Liu; Jingjing Ma; Huixiao Le; Shen Ba – Interactive Learning Environments, 2023
Augmented reality (AR) recently shows great potential to facilitate students' learning, especially their learning performance and motivation. However, few studies considered learners' emotional factors such as learning anxiety, which may influence the learning results. This study aims to explore how different experimental conditions (AR &…
Descriptors: Computer Simulation, Physics, Science Instruction, Science Laboratories
Shalaunda M. Reeves; Charlotte A. Bolch; Richard T. Bex II; Kent J. Crippen – Interactive Learning Environments, 2024
Recently, interest in understanding the prospects of virtual environments, specifically virtual reality laboratories (VR Lab) -- those that involve a first-person practica experience via a desktop computer or head-mounted display -- in science education has increased. Seemingly ingrained in the process of implementing a VR Lab is a supposition of…
Descriptors: Student Experience, Student Motivation, Student Attitudes, Beliefs
Papadimitropoulos, N.; Pavlatou, E. A. – Interactive Learning Environments, 2023
Physical experiments on real-world systems are proposed as a means to raise learning outcomes and Arduino microcontroller is highlighted as an appropriate tool to perform them. However, experimentation on a real system may encounter various barriers. Therefore, a learning environment was developed in order to perform Arduino experiments on digital…
Descriptors: Educational Technology, Technology Uses in Education, Chemistry, Science Instruction
Herodotou, Christothea; Muirhead, Dave K.; Aristeidou, Maria; Hole, Malcolm J.; Kelley, Simon; Scanlon, Eileen; Duffy, Marcus – Interactive Learning Environments, 2020
Virtual Learning Environments (VLEs) are becoming commonplace in Higher Education. Amongst the latest VLE developments is the design and use of Virtual Microscopes (VMs) that allow for viewing and manipulation of online images by multiple students. Although students are found to be generally satisfied with the use of VMs, it is yet not known what…
Descriptors: Educational Technology, Computer Simulation, Higher Education, Laboratory Equipment
Song, Donggil; Karimi, Arafeh; Kim, Paul – Interactive Learning Environments, 2016
Teaching argumentation with appropriate activities and strategies would support a wide range of goals in science education. Though science labs have been suggested and employed for argumentation activities, such educational expenditures are likely to be beyond the means of most schools in under-resourced areas. Due to the lack of appropriate…
Descriptors: Science Experiments, Disadvantaged Schools, Developing Nations, Rural Areas
Toth, Eva Erdosne; Ludvico, Lisa R.; Morrow, Becky L. – Interactive Learning Environments, 2014
This study examined the characteristics of virtual and hands-on inquiry environments for the development of blended learning in a popular domain of bio-nanotechnology: the separation of different-sized DNA fragments using gel-electrophoresis, also known as DNA-fingerprinting. Since the latest scientific developments in nano- and micro-scale tools…
Descriptors: Blended Learning, Hands on Science, Inquiry, Active Learning