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Kristal Lee; John McInerney – Interactive Learning Environments, 2024
Simulation has an ever-increasing role in health professions' education, however there is limited evidence on the transferability of learning to practice. In this study, a pragmatic approach using a convergent mixed methods design explored the use of a virtual high-fidelity Computed Tomography (CT) simulator in preparing students for clinical…
Descriptors: Simulation, Radiology, Transfer of Training, Foreign Countries
Pauletta Irwin; Maree Crepinsek; Rosanne Coutts – Interactive Learning Environments, 2024
"Background": The adoption of technology in healthcare and higher education supports an opportunity for educators to harness the capacity of digital environments. This research contributes to discourse of industry acceptance regarding the educational value of virtual teaching and learning nursing skills, along with transferability to…
Descriptors: Nursing Education, Experiential Learning, Computer Simulation, Nursing Students
Yotam Hod; Michal Dvir; Sahar Tueg – Interactive Learning Environments, 2024
This research advances notions about how interactive learning environments that intentionally shape learners' identities can empower students and give them agency. Our work draws on research on teacher noticing, extends it to the community level, and orients it towards identity. We provide an instrumental case study approach that examines…
Descriptors: Experiential Learning, Educational Environment, Self Concept, Community Influence
Ching-Yi Chang; Hsiu-Ju Jen; Jie Chi Yang – Interactive Learning Environments, 2024
Nursing students participating in labor support training need to learn core clinical skills to assess the delivery process to reduce the risk and labor pain of pregnant women. We proposed an approach to integrate scenario game-based learning with the experiential learning strategy to facilitate nursing students' learning performance and six core…
Descriptors: Vignettes, Game Based Learning, Experiential Learning, Learning Strategies
Ding-Chau Wang; Yong-Ming Huang – Interactive Learning Environments, 2024
Tiny and affordable computers (e.g. Raspberry Pi and Arduino) have been widely applied to technology-enhanced hands-on learning (THL). However, little scholarly attention has been devoted to the key factors behind students' performance in THL contexts. Therefore, this study not only helped the participants learn computer science through THL, but…
Descriptors: Handheld Devices, Self Efficacy, Educational Technology, Computer Science Education
Yanying Chen; Yaoxin Tan; Yuhui Wang – Interactive Learning Environments, 2024
We designed a microbial science popularization product based on virtual reality technology, "Micro World -- Exploring the Microbial Kingdom," and conducted usability tests. Participants used head-mounted VR glasses to experience virtual scenarios teaching microbiological knowledge. The product's user experience was evaluated through a…
Descriptors: Computer Simulation, Science Education, Microbiology, Computer Peripherals
Wei-Sheng Wang; Margus Pedaste; Chia-Ju Lin; Hsin-Yu Lee; Yueh-Min Huang; Ting-Ting Wu – Interactive Learning Environments, 2024
Virtual reality (VR) provides a unique platform for interactive learning experiences, enhancing learning, particularly in hands-on courses. However, the visual load of VR and the lack of guidance and interaction from physical teachers or peers can pose challenges for learners in self-regulated learning (SRL) and learning motivation. This study…
Descriptors: Feedback (Response), Self Management, Student Motivation, Computer Simulation
Jian-Guo Jiang; Qing-Shen Li; Xin Guan – Interactive Learning Environments, 2024
Experimental learning is one kind of contextual learning, which places learners in a variety of virtual or real contexts to acquire knowledge, gain ability and experience, and generates emotion through experiencing and perceiving, communicating and exploring, and self-reflecting. Applying VR technology to experiential learning involves both…
Descriptors: Experiential Learning, Computer Simulation, Global Approach, Technology Uses in Education
Yu-Shan Chang; Yen-Yin Wang; Yu-Te Ku – Interactive Learning Environments, 2024
Given the importance of innovation, artificial intelligence (AI) education, and online learning during the COVID-19 pandemic, we explored the effects of science, technology, engineering, art, and mathematics (STEAM) hands-on learning on online AI learning and creativity. We also analyzed the effects of creative emotions on AI learning using facial…
Descriptors: Electronic Learning, STEM Education, Experiential Learning, Artificial Intelligence
Shadiev, Rustam; Wang, Xueying; Liu, Taoying; Yang, Mengke – Interactive Learning Environments, 2023
Fifty-one learning strategies were developed and validated in this study to make language learners more knowledgeable about unfamiliar environments. The study tested the effectiveness of the strategies in improving the creativity of students. 75 university students participated in the study and they were divided into three groups: (1) students who…
Descriptors: Foreign Countries, Experiential Learning, English (Second Language), Educational Environment
Kartoglu, Ümit; Vesper, James L.; Reeves, Thomas C. – Interactive Learning Environments, 2017
The World Health Organization converted an award-winning experiential learning course that takes place on a bus traveling down the "cold chain" for time- and temperature-sensitive pharmaceutical products in Turkey to an online interactive learning environment through design-based research. Similarities and differences in the objectives…
Descriptors: Foreign Countries, Experiential Learning, Interaction, Pharmaceutical Education
Maratou, Vicky; Chatzidaki, Eleni; Xenos, Michalis – Interactive Learning Environments, 2016
This article presents a role-play game for software project management (SPM) in a three-dimensional online multiuser virtual world. The Opensimulator platform is used for the creation of an immersive virtual environment that facilitates students' collaboration and realistic interaction, in order to manage unexpected events occurring during the…
Descriptors: Computer Software, Computer Simulation, Program Development, Teaching Methods
Chandler, Thomas; Park, Yoon Soo; Levin, Karen L.; Morse, Stephen S. – Interactive Learning Environments, 2013
This article describes the design and evaluation of a blended online/face-to-face course completed by more than 6000 learners throughout the United States of America and internationally. The educational impact was monitored using a variety of evaluation strategies. The results, in terms of achieved knowledge and overall satisfaction, indicate that…
Descriptors: Online Courses, Experiential Learning, Blended Learning, Student Improvement
Traphagan, Tomoko; Traphagan, John; Dickens, Linda Neavel; Resta, Paul – Interactive Learning Environments, 2014
Motivated by the need to facilitate Net Generation students' information literacy (IL), or more specifically, to promote student understanding of legitimate, effective use of Web-based resources, this exploratory study investigated how analyzing, writing, posting, and monitoring Wikipedia entries might help students develop critical…
Descriptors: Student Attitudes, Attitude Change, Internet, Information Sources

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