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Sara Benham; Casaundra DiDomenico; Ashton Dluzneski; Erin Howley; Brenna Curley; Katelyn Amy – Journal of Occupational Therapy Education, 2024
As rehabilitation technologies rapidly develop, the lack of evidence-based training remains a barrier to technology adoption. Continuing education (CE) may provide training opportunities for new technologies, specifically 3D printing. Current models of CE course design rely on traditional, pedagogical methods, including didactic delivery, as…
Descriptors: Computer Peripherals, Printing, Cooperative Learning, Interprofessional Relationship
Álvaro Nolla; Ángela Ibiricu; Angélica Benito – International Journal for Technology in Mathematics Education, 2024
In this paper we present a collaborative 3D modeling and printing experience within a Project Based Learning (PBL) activity, carried out with two different groups of participants: pre-service teachers at the Universidad Autónoma de Madrid (Spain), and school students of Primary and Secondary level taking part in an extra-curricular activity.…
Descriptors: Cooperative Learning, Printing, Computer Peripherals, Educational Technology
Hobbs, Elizabeth; Schisler, Laura; Pressley, Hugh; Smith, Walter – Technology and Engineering Teacher, 2021
Picture students huddled around a 3D printer in a middle school classroom. They gaze at the object being printed, and exclamations of, "Where is that flag from?" "What does that symbol mean?" and "Oh; I didn't think of that!" can be heard. These examples of observation, curiosity, and critical thinking are the elusive…
Descriptors: Computer Peripherals, Printing, Student Projects, Global Approach
Walsh, Benjamin; Dalton, Bridget; Sánchez, Lenny – Journal of Adolescent & Adult Literacy, 2022
This curriculum case study describes the design and enactment of the Build a Better Book project with a group of Spanish-English bilingual high school students. Within an enriched literacy project-based learning instructional approach, students collaborated to design and fabricate multimodal 3D printed tactile picture books for children who are…
Descriptors: Curriculum Design, Literacy, Student Projects, Active Learning
Kwon, Seung-Hyuk; Lee, Yeong-Ji; Kwon, Yong-Ju – Journal of Biological Education, 2020
This paper presents an active learning approach that focuses on practical investigation of the ecosystem of tidal flats using 3D modeling and printing for biology students in order to enhance understanding of natural selection. The learning approach for the study followed a 5-step procedure: i) learning about 3D modeling and printing, ii)…
Descriptors: Active Learning, Ecology, Environmental Education, Biology
Backhouse, Simon; Taylor, Darci; Armitage, James A. – Anatomical Sciences Education, 2019
Understanding orbital anatomy is important for optometry students, but the learning resources available are often fragile, expensive, and accessible only during scheduled classes. Drawing on a constructivist, personalized approach to learning, this study investigated students' perceptions of an alternative learning resource: a three-dimensional…
Descriptors: Anatomy, Optometry, College Students, Student Attitudes
Mou, Tsai-Yun – Asia-Pacific Education Researcher, 2020
This study investigated college students' experiences with project-based learning in 3D design, specifically for 3D modeling. A total of 49 college students from a Visual Arts program participated in this study. By implementing a project-based assignment throughout one semester, each student was responsible for completing his or her proposed…
Descriptors: College Students, Student Projects, Active Learning, Visual Arts
Paul, Stepan – PRIMUS, 2018
As three-dimensional (3D) printing technology is fast becoming more affordable and accessible, calculus instructors can now consider using 3D printing and 3D printed models to actively engage students in core concepts relating to objects in R[superscript 3]. This article describes three lessons for a multivariable calculus class in which students…
Descriptors: Manipulative Materials, Calculus, Mathematics Instruction, Visual Aids
Novak, Elena; Wisdom, Sonya – Journal of Science Education and Technology, 2018
3D printing technology is a powerful educational tool that can promote integrative STEM education by connecting engineering, technology, and applications of science concepts. Yet, research on the integration of 3D printing technology in formal educational contexts is extremely limited. This study engaged preservice elementary teachers (N = 42) in…
Descriptors: Computer Peripherals, Printing, Student Projects, Active Learning
Blachut, Klaus – School Science Review, 2018
3D printers can do a lot more than just printing nice little giveaways such as keyring pendants or chess pieces. During a project at the Holbein-Gymnasium Augsburg in Bavaria, Germany, students developed a number of helpful tools for chemistry lessons and tested them in classes. Full details of these are now available for free to any teacher who…
Descriptors: Science Instruction, Secondary School Students, Printing, Computer Peripherals
Finch, Lila; Moreno, Celeste; Shapiro, R. Benjamin – Cognition and Instruction, 2021
Creating learning environments that integrate arts, sciences, and computing in education can improve learning in these disciplines. In particular, transdisciplinary integrations of these disciplines can lead to expansive alterations or dissolutions of epistemological, ideological, and methodological boundaries. We wish to support teachers in the…
Descriptors: Interdisciplinary Approach, Learning Processes, Thinking Skills, Epistemology
Huang, Tien-Chi; Lin, Weijane; Yueh, Hsiu-Ping – International Journal of Science and Mathematics Education, 2019
Environmental education is intended to increase public awareness and knowledge about environmental issues and enhance individuals' problem-solving and decision-making skills by tackling problems in the real world. "Maker education," on the contrary, mostly relies on "problem-based" and "project-based learning"…
Descriptors: Environmental Education, Creative Thinking, Creativity, Problem Solving
Hennessey, Eden; Mueller, Julie – Canadian Journal of Education, 2020
As a problem-solving approach, design thinking (DT) emphasizes iterative, user-focused designing. While DT is being readily adopted into education, little is known about how educators integrate DT across curricula. To address this question, we collaborated with a tech-ed industry partner and a focus group of experienced educators to assess…
Descriptors: Design, Thinking Skills, Teaching Methods, Student Projects
Revitalising Traditional Street Markets in Rural Korea: Design Thinking and Sense-Making Methodology
Lee, Hyun-Kyung – International Journal of Art & Design Education, 2019
This article reports on an academic-industrial cooperation between students at the Ulsan National Institute of Science and Technology and a local foundation working to revitalise the Eonyang traditional market in Ulsan, South Korea. Students majoring in disciplines ranging from natural and applied sciences to business administration were…
Descriptors: Rural Areas, Design, Foreign Countries, School Business Relationship
Trust, Torrey; Maloy, Robert W.; Edwards, Sharon – TechTrends: Linking Research and Practice to Improve Learning, 2018
As higher education institutions seek to prepare an increasingly diverse population of students for a rapidly changing future, makerspaces offer a pedagogical approach for engaging all learners in active thinking and hands-on learning while promoting creativity, problem solving, and collaboration skills. In this paper, we discuss ways to integrate…
Descriptors: College Students, Shared Resources and Services, Majors (Students), Student Developed Materials
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