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Mohlin, Alice – Journal of Workplace Learning, 2023
Purpose: The purpose of this paper is twofold: to identify and map contemporary research on advanced technology implementations for problem-solving purposes in the manufacturing industry, and to further understand the organizational learning possibilities of advanced technology problem-solving in the manufacturing industry.…
Descriptors: Manufacturing Industry, Problem Solving, Organizational Learning, Technology Uses in Education
Theogene Niyomufasha; Celestin Ntivuguruzwa; Leon Rugema Mugabo – Cogent Education, 2024
The subject of physics can sometimes seem esoteric and challenging to engineering students. It would be beneficial to create a more conducive learning environment for them by combining words, mathematical equations, graphs, and diagrams to increase their problem-solving abilities. It has been demonstrated in mechanics that employing multiple…
Descriptors: Engineering Education, Problem Solving, Mathematics, Achievement Tests
Fateme Moradi; Zahra Rahimi; Zohreh Nekouee – Tuning Journal for Higher Education, 2023
The prevalence of the COVID-19 pandemic and its consequences, such as the closure of educational centers and the requirement to use virtual education, have all challenged students' learning. Students' mathematical misunderstandings can be regarded as one such challenge. While such problems may also occur in face-to-face training, where teachers…
Descriptors: Engineering Education, Problem Solving, Error Correction, COVID-19
Feille, Kelly; Wildes, Annie; Pyle, Janet; Marshall, Jessica – Science and Children, 2021
At a time when changes in standards and curriculum compound the pressures of fifth-grade state testing, the authors wanted to find an engaging way to involve students in authentic science and engineering. Rather than put their efforts into a traditional science fair that would inevitably lead to inequitable input by parents and students alike,…
Descriptors: Engineering Education, Grade 5, Elementary School Students, Science Education
le Roux, Kate; Kloot, Bruce – European Journal of Engineering Education, 2020
Engineering educators express concern that undergraduate engineering students solve problems procedurally without the necessary conceptual understanding. While research in engineering dynamics has focused on using technology to improve student performance, this article focuses on using representations for modelling problem solving in the lecture.…
Descriptors: Problem Solving, Teaching Methods, Engineering Education, Semiotics
Yelamarthi, Kumar – Journal of STEM Education: Innovations and Research, 2016
Many interesting research and design questions occur at the intersections of traditional disciplines, yet most coursework and research programs for undergraduate engineering students are focused on one discipline. This leads to underutilization of the potential in better preparing students through multidisciplinary projects. Identifying this…
Descriptors: STEM Education, Robotics, Engineering Education, Technology Education
Kolar-Begovic, Zdenka, Ed.; Kolar-Šuper, Ružica, Ed.; Jukic Matic, Ljerka, Ed. – Online Submission, 2017
The papers in the monograph address different topics related to mathematics teaching and learning processes which are of great interest to both students and prospective teachers. Some papers open new research questions, some show examples of good practice and others provide more information about earlier findings. The monograph consists of six…
Descriptors: Mathematics Education, Mathematics Instruction, Educational Research, College Students
Frezzo, Dennis C.; Behrens, John T.; Mislevy, Robert J. – Journal of Science Education and Technology, 2010
Simulation environments make it possible for science and engineering students to learn to interact with complex systems. Putting these capabilities to effective use for learning, and assessing learning, requires more than a simulation environment alone. It requires a conceptual framework for the knowledge, skills, and ways of thinking that are…
Descriptors: Computer Simulation, Computer Networks, Educational Environment, Models
Wang, Hui-Hui; Moore, Tamara J.; Roehrig, Gillian H.; Park, Mi Sun – Journal of Pre-College Engineering Education Research, 2011
To gain a better understanding of teachers' beliefs about, perceptions of, and classroom practices using STEM integration, a multi-case case study was conducted with three middle school teachers. These teachers were purposefully selected from a pool of teachers involved in a year-long professional development module on STEM integration to…
Descriptors: STEM Education, Case Studies, Teacher Attitudes, Teaching Methods
Sidhu, S. Manjit – Campus-Wide Information Systems, 2008
Purpose: This paper aims to present the development of technology-assisted problem solving (TAPS) packages at University Tenaga Nasional (UNITEN). The project is the further work of the development of interactive multimedia based packages targeted for students having problems in understanding the subject of engineering mechanics dynamics.…
Descriptors: Computer Simulation, Engineering, Geometric Concepts, Problem Solving
Samuels, Peter – International Journal for Technology in Mathematics Education, 2010
Many developed nations have a serious problem with a shortage in the supply of numerate graduates, fuelled by their school students' negative attitudes towards their future study of mathematics. At the same time, the smart phone and other personal sensing technological devices are becoming commonplace amongst students in schools and universities.…
Descriptors: Futures (of Society), Mathematics Education, Negative Attitudes, Developed Nations
Pavlekovic, Margita, Ed.; Kolar-Begovic, Zdenka, Ed.; Kolar-Super, Ruzica, Ed. – Online Submission, 2013
The universities and faculties which educate teachers of mathematics for teaching pupils/students of any age group from pre-school age to higher education carefully monitor and compare valuable results of this research, detect the areas in which the mathematical achievements of pupils should be improved at the national level and propose the ways…
Descriptors: Operations Research, Geometric Concepts, Foreign Countries, Mathematics Instruction
Peer reviewedSanders, Mark E. – NASSP Bulletin, 1999
The goal of technology education is universal technological literacy. Technology study in middle school must be more than an added science curriculum unit. Three instructional approaches predominate: student projects, technological problem solving (design under constraint), and modular technology education. The National Middle School Association's…
Descriptors: Curriculum, Engineering, Guidelines, Middle Schools
Peer reviewedNewberry, Pam B. – NASSP Bulletin, 1999
Using technology can empower students, but most U.S. schools fall short of this goal. The power of technology as related to other school subjects and problem solving is well documented in projects promoting integration of technology education with mathematics and science. National Science Education Standards are summarized. (26 references) (MLH)
Descriptors: Academic Standards, Educational Technology, Engineering, Mathematics
Clark, Aaron C.; Ernst, Jeremy V. – Technology Teacher, 2007
The integration of science, technology, engineering, and mathematics content (STEM) has become a mainstream topic within educational systems. This paper discusses the technology integration model for education and the factors to be considered when taking into account technology education as a focal point of integrated curricula. These factors are:…
Descriptors: Educational Technology, Technology Integration, Integrated Curriculum, Engineering
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