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Showing 1 to 15 of 23 results Save | Export
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Megan Johnson; Brian Davis; Gerard Guillot; Emily Porta-Miller; Jennifer Brueckner-Collins – Anatomical Sciences Education, 2025
A deep understanding of pelvic floor anatomy requires a three-dimensional visualization of the spatial relationships among pelvic neurovasculature, soft tissue structures, and bony landmarks, which are highly complex and difficult to comprehend solely through traditional teaching methods such as didactic lectures and anatomical dissection. This…
Descriptors: Teaching Methods, Computer Peripherals, Printing, Anatomy
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Christian Myles; Laura Gorman; James F. X. Jones – Anatomical Sciences Education, 2025
Textbook anatomy depiction of the hepatobiliary tree is present in 55%-62% of the population. Misidentification of hepatobiliary variants can lead to bile duct injuries in cholecystectomies. A better understanding of variants has been cited as a key area for improvement in anatomy education. The aim of this study was to compare the effectiveness…
Descriptors: Computer Peripherals, Printing, Science Instruction, Teaching Methods
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Yuting Deng; Yanling Zhang; Ruibin Zhao – Education and Information Technologies, 2025
Computer simulation technology and virtual reality technology have gained considerable attention in the field of education due to their potential to create various 3D interactive learning environments, typically including simulated learning environments and immersive learning environments. To gain a deeper understanding of students' learning…
Descriptors: Computer Uses in Education, Computer Simulation, Assistive Technology, Computer Peripherals
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Ugur Orhan; Eda Demirhan – International Journal of Education in Mathematics, Science and Technology, 2025
The aim of the current study is to develop a detailed understanding of how thirdgrade primary school students construct 3D printers in their minds based on their initial knowledge about 3D printers. This study, which was conducted with a phenomenological design, is one of the qualitative research methods. The participants of the study consisted of…
Descriptors: Elementary School Students, Cognitive Structures, Computer Peripherals, Grade 3
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Seyda Gul; Funda Yalinkilic – Education and Information Technologies, 2025
In recent years, 3D printing technology or 3D printing models have become a powerful educational tool used in many fields such as medicine, engineering and science. However, research on the integration of these technologies into formal educational environments and the researches examining their effect on students' learning biology is quite…
Descriptors: Science Education, Science Instruction, Teaching Methods, Biochemistry
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Boiangiu Razvan-Stefan; Popa Laura Nicoleta; Marius Miha?an – Biochemistry and Molecular Biology Education, 2025
A strong understanding of molecular structure is key for mastering structure-function concepts in life sciences and is based on the visualization of biomolecules. Therefore, various approaches to help students translate between the 2D space of a textbook figure to the 3D space of a molecule have been developed. Object-based learning is an approach…
Descriptors: Computer Peripherals, Printing, Molecular Structure, Scientific Concepts
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Thanh Tuan To; Abdullah Al Mahmud; Charlie Ranscombe – European Journal of Engineering Education, 2025
Additive manufacturing (AM) and 3D printing (3DP) offer unique opportunities for experiential learning and practical application in engineering education. In developed countries, AM is integrated into engineering education to train mechanical engineers. However, existing research has not investigated the integration of AM and 3DP into higher…
Descriptors: Foreign Countries, Engineering Education, Teacher Attitudes, Student Attitudes
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Jessica F. Li; Eric K. Glassford – Journal of School Health, 2025
Background: Additive manufacturing or 3-dimensional (3D) printing is an emerging technology with increasing prevalence in non-industrial settings such as university and school settings. However, printers are often located in spaces not designed for this purpose. Methods: 3D-printer use in 11 university and K-12 schools was evaluated by identifying…
Descriptors: Computer Peripherals, Printing, Manufacturing, Technology Uses in Education
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Yuwei Chen; Nat Ku; Bonnie Lin; Jonathan Sun; Andrew Wang; Jin Kim Montclare – Discover Education, 2025
Tangible teaching aids can provide a valuable supplement to traditional textbook-based learning of fundamental STEM concepts. 3D-printed templates detailing the construction of simple parallel and series circuits were incorporated into the lesson plans for 6th-grade introductory physics. Aiming to introduce the concepts of junction and loop rules…
Descriptors: Printing, Computer Peripherals, Science Instruction, Physics
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Stefano Scippo; Serena Madiai; Stefano Cuomo – Journal of Information Technology Education: Research, 2025
Aim/Purpose: This study aims to assess the effectiveness of a tessellation-based instructional program supported by digital technologies for enhancing geometric learning in primary school pupils. Background: Digital education offers various benefits, including increased motivation and engagement, and has been shown to be effective in teaching…
Descriptors: Mathematics Instruction, Geometry, Computer Assisted Instruction, Elementary School Students
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Vasco Rikkers; Dipti Kapoor Sarmah – Journal of Computing in Higher Education, 2025
In recent years, gamification has seen a rise in usage for cyber-security training, with some of the most used elements being story and narrative. Yet there seems to be a lack of research on story-based gamification as well as how this type of gamification affects a training's effectiveness. The goal of this study was to test the effectiveness of…
Descriptors: Gamification, Computer Security, Training Methods, Foreign Countries
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Ahmet Çelik; Selçuk Özdemir – Instructional Science: An International Journal of the Learning Sciences, 2025
Tinkering learning is a pedagogical strategy that emphasizes hands-on exploration, experimentation, and learning from mistakes in STEM education. It involves using personal fabrication tools, such as a 3D printer, to develop and improve ideas through interactive play. Design-based making activities have gained popularity in K-12 classrooms as they…
Descriptors: Elementary Secondary Education, STEM Education, Hands on Science, Experiential Learning
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Marja-Leena Rönkkö; Juli-Anna Aerila; Tuula Stenius – Design and Technology Education, 2025
This study explores humour's role in a holistic craft process when 7-8-year-olds design personalised soft toys. Humour enhances learning environments by fostering joy, belonging and a positive atmosphere, acting as a motivational tool in experiential and arts-based learning. The study aims to answer the following questions: (1) What are the…
Descriptors: Humor, Toys, Handicrafts, Young Children
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Yu-Hui Ching; Sasha Wang; Min Long – TechTrends: Linking Research and Practice to Improve Learning, 2025
This study explored pre-service teachers' perceptions of a 3D printing integrated science, technology, engineering, and mathematics (STEM) module within a college-level mathematics content course. Data from surveys and reflections collected from nineteen participants were analyzed. Results indicated that the pre-service teachers perceived…
Descriptors: Printing, Computer Peripherals, STEM Education, College Mathematics
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Muhammad Tajammal Munir; Prashant K. Jamwal; Bing Li; Susan Carter; Shahid Hussain – Innovations in Education and Teaching International, 2025
This paper presents a comprehensive study on the integration of 3D printing technology in biomedical robotics education with undergraduate students learning about the design of robotic systems. The research investigated the effectiveness of this new teaching strategy in enhancing students' understanding of complex engineering principles by…
Descriptors: Engineering Education, Computer Peripherals, Biomedicine, Robotics
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