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Showing 1 to 15 of 17 results Save | Export
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Radwan Ali; Dominic Thomas – Journal of Information Technology Education: Innovations in Practice, 2024
Aim/Purpose: The purpose of this paper is to illustrate the integration of emerging technology (ET) integration in the information systems (IS) curriculum. Background: Modernizing the IS curriculum is consistently needed to meet the demands of the workplace. The IS2020 curriculum model recommends adding emerging technology learning into the IS…
Descriptors: Printing, Computer Peripherals, Technology Integration, Technology Uses in Education
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Emmanuel Fokides; Georgia Lagopati – Journal of Information Technology Education: Innovations in Practice, 2024
Aim/Purpose: This review's main objective was to examine the existing literature on the use of 3D printers in primary education, covering students aged six to twelve across general, special, and inclusive educational environments. Background: A review of the literature indicated a significant oversight -- prior reviews insufficiently distinguish…
Descriptors: Computer Peripherals, Printing, Technology Uses in Education, Elementary School Students
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B. Ettinger – PRIMUS, 2024
This paper presents a semester-long bottle design project for an undergraduate Numerical Analysis course. Students implement numerical methods in MATLAB to design and 3D print a bottle. Employing mathematical methods to compute features of their designs enhances students' understanding of numerical techniques in design applications. Student…
Descriptors: Undergraduate Students, College Mathematics, Mathematics Activities, Mathematics Instruction
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Ishant Singhal; Guru Ratan Satsangee; Lakshya Bhardwaj; Gaurang S. Sharma; Anand Swarup Chandrakar; Hritav Gupta; Gargi Malik; Bobby Tyagi; Ankit Sahai; Rahul Swarup Sharma – IEEE Transactions on Learning Technologies, 2024
3D-printing (3DP) is a rapidly evolving sector and is advancing at an unmatched pace. Integrating digital-based approaches to disseminate knowledge within institutional curricula is crucial for mainstreaming knowledge. This work explores the development of a virtual lab (VL) for additive manufacturing (AM), using an interactive VL simulator. The…
Descriptors: Computer Peripherals, Printing, Laboratories, Computer Simulation
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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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Branko, Andic; Šorgo, Andrej; Helm, Christoph; Weinhandl, Robert; Lang, Vida – TechTrends: Linking Research and Practice to Improve Learning, 2023
Owing to its advantages such as producing durable models and easy accessibility, 3D modeling and printing (3DMP) has become increasingly popular in educational practice and research. However, the results of many studies have shown that the adoption rate of 3DMP among teachers is still low, especially in elementary schools. Therefore, research is…
Descriptors: Elementary School Teachers, Teacher Attitudes, Adoption (Ideas), Technology Uses in Education
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Chen, Ye; Cao, Li; Zhang, Yinning – Education and Information Technologies, 2023
As part of the maker movement, 3D printing technology has received considerable attention in education. Although this technology has become increasingly available in schools, K-12 teachers often struggle with integrating 3D technology into classroom teaching and learning. Professional development support is needed to help teachers develop the…
Descriptors: Elementary Secondary Education, Elementary School Teachers, Secondary School Teachers, Educational Technology
Whitewolf, Elizabeth – ProQuest LLC, 2022
In response to the maker movement, administrators are adding 3D printers, laser cutters, vinyl cutters, and other computer-controlled machinery into school-based makerspaces at a rapid rate. These digital fabrication tools can potentially engage students in hands-on learning across all subject areas. However, adding these extra tools into schools…
Descriptors: Technology Uses in Education, Computer Peripherals, Printing, Manufacturing
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Nguyen-Dang Minh Phuc; Huynh Tan Thanh Tam – International Journal for Technology in Mathematics Education, 2024
Mathematics education often grapples with the challenge of teaching abstract mathematical concepts, particularly those existing in 3D space. Visualizing, manipulating, and comprehending these abstract objects can be a formidable task for learners. While 3D printing technology has found applications in various fields, its utilization in mathematics…
Descriptors: High Schools, Technology Uses in Education, Computation, Measurement
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Ng, Oi-Lam; Ye, Huiyan – Asia Pacific Education Review, 2022
This paper reports on a mixed-methods, design-based study conducted with five classes of Primary 6 (age 11-12 years) students learning the properties of 3D solids. The researcher and participating teachers designed mathematics lessons that integrated the hands-on construction of artifacts (i.e., making) with a class set of 3D printing pens to…
Descriptors: Elementary School Students, Elementary School Mathematics, Geometric Concepts, Computer Peripherals
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Zaman, Mohd Hairi Mohd; Mokhtar, Mohd Hadri Hafiz; Ibrahim, Mohd Faisal; Huddin, Aqilah Baseri; Beng, Gan Kok – International Journal of Evaluation and Research in Education, 2020
Engineering students at an undergraduate level typically learn the design aspect and concept through lectures and practical sessions using computeraided software. However, the current computer-aided design and engineering (CAD/CAE) course did not expose the students to apply and relate the latest advanced technologies to solve global issues, for…
Descriptors: Foreign Countries, Technology Integration, Printing, Computer Peripherals
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Gurer, Melih Derya; Tekinarslan, Erkan; Kocaayak, Ibrahim; Gonultas, Sertan – International Journal of Education and Development using Information and Communication Technology, 2019
The purpose of this study was to develop and validate a scale aiming to assess pre-service teachers' attitudes towards 3D printing for teaching and learning processes. The data were collected from 250 pre-service teachers in different departments at a public state university. The validity of the scale was tested with exploratory factor analysis…
Descriptors: Measures (Individuals), Preservice Teachers, Student Attitudes, Public Colleges
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Chien, Yu-Hung; Chu, Po-Ying – International Journal of Science and Mathematics Education, 2018
To enable high school students, especially those interested in art and design-related careers, to improve their ability to integrate knowledge of science, technology, engineering, and mathematics (STEM) in their creative design practices and to be familiar with auto manufacturing, the development of a bridging curriculum, known as STEAM (science,…
Descriptors: Outcomes of Education, High School Students, College Students, Engineering Education
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Sullivan, Pamela; McCartney, Holly – Journal of Early Childhood Teacher Education, 2017
This reflection on practice describes a case study integrating 3D printing into a creativity course for preservice teachers. The theoretical rationale is discussed, and the steps for integration are outlined. Student responses and reflections on the experience provide the basis for our analysis. Examples and resources are provided, as well as a…
Descriptors: Technology Integration, Printing, Computer Peripherals, Early Childhood Education
Stansell, Alicia; Tyler-Wood, Tandra; Stansell, Christina – International Association for Development of the Information Society, 2016
The reverse engineering of simple inventions that were of historic significance is now possible in a classroom by using digital models provided by places like the Smithsonian. The digital models can facilitate the mastery of students' STEM learning by utilizing digital fabrication in maker spaces to provide an opportunity for reverse engineer and…
Descriptors: STEM Education, Manufacturing, Scientific Concepts, Mathematical Concepts
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