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Hanxiang Du; Gaoxia Zhu; Wanli Xing; Charles Xie – Journal of Science Education and Technology, 2025
Engineering design that requires mathematical analysis, scientific understanding, and technology is critical for preparing students for solving engineering problems. In simulated design environments, students are expected to learn about science and engineering through their design. However, there is a lack of understanding concerning linking…
Descriptors: Engineering, Design, Scientific Concepts, Problem Solving
Cengiz Tüysüz; Nurettin Can Bodur; Ilker Ugulu – Journal of Advanced Academics, 2024
An issue arising in emergency distance education procedures, such as the response to the COVID-19 pandemic, is a lack of appropriate high-quality content and course activities for high ability students suitable for distance education. In this study, online CAD-based learning experiences structured with the Tinkercad Circuits Platform designed for…
Descriptors: Distance Education, Academically Gifted, Computer Assisted Design, Emergency Programs
Yang, Weishu; Lahti, Henna; Seitamaa-Hakkarainen, Pirita – Design and Technology Education, 2022
In collaborative design settings, designers communicate and explicate their ideas visually and verbally in order to reach a shared understanding. The verbal exchanges of group members engaged in a joint design task provide rich data regarding the design activities being undertaken by the group members. In addition, sketching and modelling are…
Descriptors: Computer Simulation, Design, Innovation, Cooperative Learning
Guo, Yanjie; Yang, Lijuan; Chen, Xuefeng; Yang, Lei – Education Sciences, 2020
How to cultivate students' engineering practice ability in the digital manufacturing period is a difficult problem. This paper presents a finite element analysis experiment project for undergraduate students. The goals of implementing finite element modeling in this project are to enhance students' understanding of theoretical mechanics and to…
Descriptors: Undergraduate Students, Engineering Education, Computer Assisted Design, Outcome Based Education
Magana, Alejandra J.; Elluri, Sindhura; Dasgupta, Chandan; Seah, Ying Ying; Madamanchi, Aasakiran; Boutin, Mireille – Journal of Science Education and Technology, 2019
In science and engineering education, the use of heuristics has been introduced as a way of understanding the world, and as a way to approach problem-solving and design. However, important consequences for the use of heuristics are that they do not always guarantee a correct solution. Learning by Design has been identified as a pedagogical…
Descriptors: Role, Computer Simulation, Learning Experience, Middle School Students
Fernandes, Fábio A. O.; Marques, Clauber; Castelan, Jovani; Fritzen, Daniel; Alves de Sousa, Ricardo J. – Education Sciences, 2020
This paper reports pedagogical experiences and educational techniques in the field of Mechanics of Structures (Mechanical Engineering degree), resorting to computational tools. Several aspects are addressed, covering CAD (Computer-Aided Design) modelling systems to CAE (Computer-Aided Engineering) solutions, in terms of analysis and validation of…
Descriptors: Learning Processes, Engineering Education, Computer Assisted Design, Curriculum Development
Pando Cerra, Pablo; Gracia Rodríguez, Javier; Fernández Álvarez, Humberto; Busto Parra, Bernardo – Interactive Learning Environments, 2020
Interactive Web Environments and multimedia tools are very common in engineering studies. However, these resources are very limited when graphical resolution is needed during the learning process. A learning environment that combines video and self-assessment Computer-Aided Design (CAD) tools was developed to analyse this problem and to determine…
Descriptors: Multimedia Materials, Self Evaluation (Individuals), Engineering Education, Computer Assisted Design
Choo, Sam; Park, Sunhi; Nelson, Nancy J. – Learning Disability Quarterly, 2021
Science, Technology, Engineering, and Mathematics (STEM) education initiatives have placed pressure on teachers to bring technology tools into classroom, including three-dimensional (3D) printing. Yet, little research has examined what specific math skills are required for 3D printing technology. This article describes a follow-up analysis of…
Descriptors: Spatial Ability, Thinking Skills, Mathematics Instruction, Mathematics Skills
Corum, Kimberly; Garofalo, Joe – Journal of Computers in Mathematics and Science Teaching, 2016
Surface area is consistently identified as a curriculum standard for K-12 students and it regularly appears on national and international assessments. Recently, many schools began acquiring digital fabrication and advanced manufacturing equipment. The growing use of digital fabrication in classrooms raises the question of whether or not this…
Descriptors: Elementary School Mathematics, Elementary School Students, Grade 5, Geometric Concepts
Xu, Xinhao; Ke, Fengfeng – American Journal of Distance Education, 2016
This exploratory study examined the design issues related to a virtual-reality-based, gamelike learning environment (VRGLE) developed via OpenSimulator, an open-source virtual reality server. The researchers collected qualitative data to examine the VRGLE's usability, playability, and content integration for math learning. They found it important…
Descriptors: Computer Simulation, Educational Environment, Mathematical Concepts, Mathematics Instruction
Lahti, Henna; Seitamaa-Hakkarainen, Pirita – Journal of Learning Design, 2014
This study examined pedagogical aspects of virtual designing. It focused on how an industrial design teacher organised a university course in plastic product design and how the teacher guided student teams' design processes in a virtual design studio. The model of Learning by Collaborative Design was used as a pedagogical and analytical framework.…
Descriptors: Design, Computer Assisted Design, College Students, Computer Uses in Education
Dwyer, Christopher P.; Hogan, Michael J.; Harney, Owen M.; O'Reilly, John – Educational Technology Research and Development, 2014
Critical thinking (CT) is a metacognitive process, consisting of a number of sub-skills and dispositions, that, when used appropriately, increases the chances of producing a logical solution to a problem or a valid conclusion to an argument. CT has been identified as a fundamental learning objective of third-level education; however, students…
Descriptors: Critical Thinking, Case Studies, Metacognition, Thinking Skills
FitzSimons, Gail E. – Adults Learning Mathematics, 2013
The aim of this review of selected literature on research into mathematics in the workplace is to offer researchers from the field of adult mathematics education an opportunity to become more familiar with this specialised area. In recent years much progress has been made, building on earlier research, but with increasingly nuanced understandings.…
Descriptors: Literature Reviews, Workplace Learning, Mathematics Education, Adult Education
Thorsteinsson, Gisli – Journal on School Educational Technology, 2014
This paper reports a case study series of four related case study lessons, set up as a course using a Virtual Reality Learning Environment (VRLE) to support the students' ideation skills in Innovation Education (IE) in Icelandic conventional classroom. The IE course content and preparation is described. Overall aims, objectives and research…
Descriptors: Information Technology, Case Studies, Online Courses, Educational Innovation
Chu, Sauman; Ramirez, German Mauricio Mejia – E-Learning and Digital Media, 2012
One of the biggest problems for students majoring in pre-graphic design is students' inability to apply their knowledge to different design solutions. The purpose of this study is to examine the effectiveness of interactive learning modules in facilitating knowledge acquisition during the learning process and to create interactive learning modules…
Descriptors: Learning Modules, Problem Solving, Interaction, Theory Practice Relationship
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