Publication Date
In 2025 | 0 |
Since 2024 | 0 |
Since 2021 (last 5 years) | 3 |
Since 2016 (last 10 years) | 8 |
Since 2006 (last 20 years) | 19 |
Descriptor
Engineering Education | 36 |
Models | 24 |
Higher Education | 17 |
Problem Solving | 11 |
Teaching Methods | 11 |
Engineering | 10 |
Science Education | 9 |
College Science | 7 |
Mathematical Models | 7 |
Design | 6 |
Science Instruction | 6 |
More ▼ |
Source
Author
Publication Type
Education Level
Audience
Teachers | 36 |
Practitioners | 17 |
Administrators | 5 |
Policymakers | 2 |
Parents | 1 |
Researchers | 1 |
Students | 1 |
Location
Iowa | 2 |
Germany | 1 |
Japan | 1 |
New Zealand | 1 |
North Carolina | 1 |
Oregon | 1 |
Russia | 1 |
Spain | 1 |
United Kingdom (Great Britain) | 1 |
Laws, Policies, & Programs
Assessments and Surveys
Myers Briggs Type Indicator | 1 |
What Works Clearinghouse Rating
Christine M. Cunningham; Gregory J. Kelly; Ashwin Mohan – Journal of Pre-College Engineering Education Research, 2023
Socially engaged engineering provides for student learning of the design, analysis, and practices of engineering as well as the ways that engineering is situated in sociocultural contexts. This paper provides a conceptual framework regarding socially engaged engineering for K-8 educators, researchers, and curriculum designers. The framework…
Descriptors: Elementary School Teachers, Middle School Teachers, Engineering Education, Social Justice
Walls, William; Mentzer, Nathan – Technology and Engineering Teacher, 2021
As the field evolves over time, shifting from Industrial Arts, to Technology Education, to Engineering and Technology Education (ETE), so too does what teachers teach, how they teach, and the projects that they use. Projects that worked 10 years ago might not hold up today and, as reflective practitioners, they need to be able to align the current…
Descriptors: Engineering Education, Technology Education, Models, Student Projects
Holub, Jordan; Kruse, Jerrid; Menke, Lucas – Science and Children, 2020
Engineering is increasingly expected in elementary classrooms now that the "Next Generation Science Standards" have explicitly identified engineering disciplinary core ideas as well as engineering practices. To incorporate engineering into their elementary classrooms, the authors used building blocks (i.e., LEGOS) to help students begin…
Descriptors: Engineering Education, Elementary School Students, Science Education, Standards
McGowan, Veronica Cassone; Ventura, Marcia; Bell, Philip – Science and Children, 2017
This column presents ideas and techniques to enhance your science teaching. This month's issue shares information on how students' everyday experiences can support science learning through engineering design. In this article, the authors outline a reverse-engineering model of instruction and describe one example of how it looked in our fifth-grade…
Descriptors: Science Education, Engineering Education, Engineering, Design
Turner, Ken L., Jr.; Hoffman, Adam R. – Journal of College Science Teaching, 2018
Engineering design is an ideal perspective for engaging students in college science classes. An engineering design problem-solving framework was used to create a general chemistry lab activity focused on an important environmental issue--dead zones. Dead zones impact over 400 locations around the world and are a result of nutrient pollution, one…
Descriptors: Science Instruction, College Science, Engineering, Design
Yuhyun Choi; Euisuk Sung; Seungwon Lee – Technology and Engineering Teacher, 2022
The International Technology and Engineering Educators Association's (ITEEA's) "Standards for Technological and Engineering Literacy" ("STEL") describes design thinking as an approach that allows students and educators to integrate other content areas by considering relevant contextual information to guide design and making…
Descriptors: Design, Engineering Education, Thinking Skills, Context Effect
Voronina, Marianna V.; Tretyakova, Zlata O.; Krivonozhkina, Ekaterina G.; Buslaev, Stanislav I.; Sidorenko, Grigory G. – EURASIA Journal of Mathematics, Science and Technology Education, 2019
The relevance and feasibility of this study are determined by the absence of serious, scientific research, as well as teaching materials, when it comes to the use of Augmented Reality (AR) in teaching students and future teachers Descriptive Geometry, Engineering and Computer Graphics (DGECG). The purpose of the study is to examine the current…
Descriptors: Computer Simulation, Geometry, Engineering Education, Computer Graphics
Clausen, Courtney K.; Greenhaigh, Scott D. – Technology and Engineering Teacher, 2017
As U.S. public schools continue to diversify, it is necessary for educators to find ways to meet all students' needs in the classroom. By beginning small, with some of the teaching ideas presented within this article such as learning about and supporting your students' cultural competencies and integrating students' backgrounds and interests into…
Descriptors: Technological Literacy, Technology Education, Engineering Education, Social Sciences
Ward, Brandt – Technology and Engineering Teacher, 2015
In an environment of rapid and unpredictable change determined and directed by technologies that are constantly changing, the assumption that being technologically literate is the key to being a sustained, contributing life-long learner is well founded. However, technological literacy is seldom referred to or considered in academic arguments as a…
Descriptors: Problem Solving, Technological Literacy, Models, Definitions
Kekelis, Linda; Larkin, Molly; Gomes, Lyn – Technology and Engineering Teacher, 2014
This article describes a reverse-engineering project where female students take a part a hair dryer--giving them an opportunity to see the many different kinds of engineering disciplines involved in making a hairdryer and that they work together. Mechanical Engineer, Lyn Gome, describes her experience leading a group of middle school girls through…
Descriptors: Role Models, Females, Engineering, Career Choice
Aliane, N. – IEEE Transactions on Education, 2010
This paper presents an interactive module for learning both the fundamental and practical issues of servo systems. This module, developed using Simulink in conjunction with the Matlab graphical user interface (Matlab-GUI) tool, is used to supplement conventional lectures in control engineering and robotics subjects. First, the paper introduces the…
Descriptors: Foreign Countries, Engineering Education, Learning Modules, Robotics
Mitsui, H.; Kambe, H.; Koizumi, H. – IEEE Transactions on Education, 2009
Embedded systems have been applied widely, not only to consumer products and industrial machines, but also to new applications such as ubiquitous or sensor networking. The increasing role of software (SW) in embedded system development has caused a great demand for embedded SW engineers, and university education for embedded SW engineering has…
Descriptors: Computer System Design, Computer Software, Engineering Education, Computer Science
Scott, Sophia; Koch, Doug – Journal of Technology Studies, 2010
This article focuses on how technology educators can challenge students to "think" about technical problems. A key aspect of success in quality problem solving is understanding learning preferences and problem-solving approaches. The Learning Style Inventory (LSI) can be used to assess an individual's ideal way to learn, in essence, a…
Descriptors: Cognitive Style, Problem Solving, Learning Processes, Teaching Methods
Condoret, Jean Stephane – Chemical Engineering Education, 2007
The very common situation of waiting for the cooling of a cup of coffee is addressed through a conventional engineering approach, where several important concepts of heat and mass transfer are used. A numerical and analytical solution of the differential equations of the problem are proposed, and assessed by comparing to simple experiments.…
Descriptors: Heat, Engineering Education, Models, Student Problems
Jernigan, S. R.; Fahmy, Y.; Buckner, G. D. – IEEE Transactions on Education, 2009
This paper details a successful and inexpensive implementation of a remote laboratory into a distance control systems course using readily available hardware and software. The physical experiment consists of a beach ball and a dc blower; the control objective is to make the height of the aerodynamically levitated beach ball track a reference…
Descriptors: Distance Education, Laboratory Experiments, Science Laboratories, Online Systems