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Showing all 14 results Save | Export
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Ivaylo Staribratov; Nikol Manolova – Discover Education, 2024
The article presents the application of 3D technologies in STEAM education through a conducted scientific research, highlighting the role of 3D modeling and 3D printing as an innovative approach in achieving an interdisciplinary learning model. The research included the following stages: preparation for designing a detailed 3D steam locomotive…
Descriptors: Art Education, STEM Education, Educational Technology, Technology Uses in Education
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Lin, Kuen-Yi; Lu, Shao-Chuan; Hsiao, Hsien-Hsien; Kao, Chia-Pin; Williams, P. John – Interactive Learning Environments, 2023
Over the past few years, digital fabrication has been utilized in technology laboratories to emphasize hands-on learning processes in technology and engineering education. Recent studies indicate that hands-on activities can help students connect with science, technology, engineering, and mathematics (STEM) disciplines and develop key skills…
Descriptors: STEM Education, Imagination, Vocational Interests, Repetition
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Üçgül, Memet; Altiok, Serhat – Education and Information Technologies, 2023
3D printing technology has an influence on a variety of industries such as automotive, engineering, medical, aerospace, sports, fashion, education, and more. In education, 3D printing is used in many different fields like pharmacy, mathematics, biology, chemistry, art education, graphic design, engineering, and even in early childhood and special…
Descriptors: Preservice Teachers, Student Attitudes, Information Technology, Technology Integration
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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
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Reißer, Sabine; Prock, Sebastian; Heinzmann, Hartmut; Ulrich, Anne S. – Biochemistry and Molecular Biology Education, 2018
Protein ORIGAMI (http://ibg.kit.edu/protein_origami) is a browser-based web application that allows the user to create straightforward 3D paper models of folded peptides for research, teaching and presentations. An amino acid sequence can be turned into a-helices, ß-strands and random coils that can be printed out and folded into properly scaled…
Descriptors: Educational Technology, Technology Uses in Education, Models, Science Instruction
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Fujiwara, Yujiro – Technology and Engineering Teacher, 2018
While many students may struggle to make sense of a mathematical formula and its practical implications, they can benefit greatly from an intuitive visualization and the engineering application of the topic. Effective STEM programs create clear connections at least with two subject areas, which translates into an enhanced student learning…
Descriptors: STEM Education, Computer Assisted Instruction, Models, Computer Peripherals
Grayburn, Jennifer, Ed.; Lischer-Katz, Zack, Ed.; Golubiewski-Davis, Kristina, Ed.; Ikeshoji-Orlati, Veronica, Ed. – Council on Library and Information Resources, 2019
This volume, comprising eight chapters from experts in a variety of fields, examines the use of three-dimensional (3D) and virtual reality (VR) technologies in research and teaching, and the library's vital role in supporting this work. 3D modeling, 3D capture techniques, and VR enable faculty and students to engage with highly detailed 3D…
Descriptors: Computer Simulation, Library Services, Academic Libraries, Educational Trends
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Penny, Matthew R.; Cao, Zi Jing; Patel, Bhaven; dos Santos, Bruno Sil; Asquith, Christopher R. M.; Szulc, Blanka R.; Rao, Zenobia X.; Muwaffak, Zaid; Malkinson, John P.; Hilton, Stephen T. – Journal of Chemical Education, 2017
Three-dimensional (3D) chemical models are a well-established learning tool used to enhance the understanding of chemical structures by converting two-dimensional paper or screen outputs into realistic three-dimensional objects. While commercial atom model kits are readily available, there is a surprising lack of large molecular and orbital models…
Descriptors: Organic Chemistry, Science Instruction, Scientific Concepts, Educational Technology
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Puzziferro, Maria; McGee, Elisabeth – Online Journal of Distance Learning Administration, 2021
The COVID-19 pandemic has led to an unprecedented shift in how health science education is delivered (Sandars et al., 2020). With face-to-face learning, such as lab and classroom interactions, largely unavailable during the pandemic, institutions have been required to quickly shift the learning environment to a fully virtual format. While…
Descriptors: COVID-19, Pandemics, Health Sciences, Laboratories
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Blauch, David N.; Carroll, Felix A. – Journal of Chemical Education, 2014
A 3D printer is used to prepare a variety of models representing potential energy as a function of two geometric coordinates. These models facilitate the teaching of structure-energy relationships in molecular conformations and in chemical reactions.
Descriptors: Computer Peripherals, Educational Technology, Technology Uses in Education, Energy
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Martinez-Torres, M. R.; Toral, S. L. Marin; Garcia, F. Barrero; Vazquez, S. Gallardo; Oliva, M. Arias; Torres, T. – Behaviour & Information Technology, 2008
The application of scientific tools to analyse the use of Internet-based e-learning tools in academic settings is in general an ignored area. E-learning tools are actually an emergent topic as a result of the new ideas introduced by the European Higher Education Area. Lifelong learning, or the promotion of student initiative, is the new paradigm…
Descriptors: Higher Education, Student Attitudes, Lifelong Learning, Laboratories
Daly, Kevin F. – Computing Teacher, 1994
Discusses three phases in implementing a master plan for a school-based local area network (LAN): (1) network software selection; (2) hardware selection, network topology, and site preparation; and (3) implementation time table. Sample planning and specification worksheets and a list of planning guides are included. (Contains six references.) (KRN)
Descriptors: Computer Peripherals, Computer Software Selection, Computer System Design, Educational Technology
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Yang, Stephen J. H. – Educational Technology & Society, 2006
A ubiquitous learning environment provides an interoperable, pervasive, and seamless learning architecture to connect, integrate, and share three major dimensions of learning resources: learning collaborators, learning contents, and learning services. Ubiquitous learning is characterized by providing intuitive ways for identifying right learning…
Descriptors: Management Systems, Group Discussion, Educational Environment, Models
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Sternberger, Carol – AACE Journal, 2006
Electronic delivery of courses presents an evolving process and one that necessitates a change in the architecture of learning designs. Moving beyond the adaptation of familiar methodology for electronic delivery is challenging and requires innovation. The inclusion of interactive courseware in an electronically delivered course addresses varied…
Descriptors: Self Efficacy, Courseware, Teaching Methods, Distance Education