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Warner, Scott A.; Shearer, Korbin L.; Heidt, Garreth; Shoemaker, Korbin – Technology and Engineering Teacher, 2021
For as long as the profession of technology and engineering education (TEE) has existed (the addition of engineering to the professional title marks the official beginning of the profession, and that occurred in 2010), there has been a struggle. Arguably, this struggle's roots go back to the beginning of public education in the U.S. The struggle,…
Descriptors: Technology Education, Engineering Education, Technological Literacy, Educational Objectives
Ardito, Gerald; Czerkawski, Betül; Scollins, Lauren – TechTrends: Linking Research and Practice to Improve Learning, 2020
Problem-solving and critical thinking are considered important skills to be developed by students, and are supported by the development of Computational Thinking (CT) skills. This study investigated the collaborative development of CT skills in sixth grade students via a six week LEGO robotics program. This robotics program focused on the…
Descriptors: Problem Solving, Thinking Skills, Middle School Students, Robotics
Chiu, Jennifer L.; Fick, Sarah J.; McElhaney, Kevin W.; Alozie, Nonye; Fujii, Reina – Journal of Pre-College Engineering Education Research, 2021
This paper addresses an important consideration for promoting equitable engineering instruction: understanding how teachers contextualize curricular materials to draw upon student and community resources. We present a descriptive case study of two 5th grade teachers who co-designed a Next Generation Science Standards (NGSS)-aligned curricular unit…
Descriptors: Engineering Education, Teaching Methods, Grade 5, Elementary School Students
de Melo Bezerra, Juliana; Martins, Cristiane Aparecida; Teles, Lara Kühl; de Oliveira, Neusa Maria Franco; da Silva, Maria Margareth; dos Santos, Leila Ribeiro; Piani, Raquel Caratti – International Association for Development of the Information Society, 2018
The development of transversal competences is essential for the success of engineers, who need to have the ability to adapt to the new and changing demands posed by modern society and scientific advances. It is a challenge for professors to teach and evaluate transversal competences, since such competences are related to attitudes and values. We…
Descriptors: Engineering Education, Competence, STEM Education, Student Motivation
Garcez, Carolina Montanha; Vitor, Davi Henrique Curia; Bortoli, Mirela Marchiori; Vieira, Lucas Augusto; Prado, Danielle Goncalves De Oliveira; Ramires, Thiago Gentil – International Society for Technology, Education, and Science, 2020
The university aims to form professionals through transmission and dissemination of knowledge, therefore, the Extension, as a tool of the universities, has a major role contributing to improvements in the learning and teaching process. The Extension projects are extremely important for The Federal Technological University of Paraná (UTFPR), since…
Descriptors: Public Schools, Private Schools, Universities, Competition
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
Dankenbring, Chelsey; Capobianco, Brenda M.; Eichinger, David – Science and Children, 2014
In this article, the authors provide an overview of engineering and the engineering design process, and describe the steps they took to develop a fifth grade-level, standards-based engineering design task titled "Getting the Dirt on Decomposition." Their main goal was to focus more on modeling the discrete steps they took to create and…
Descriptors: Engineering Education, Design, Curriculum Design, Task Analysis
Cogger, Steven D.; Miley, Daniel H. – Advances in Engineering Education, 2012
This paper proposes that project-based active learning is a key part of engineering education at the middle school level. One project from a comprehensive middle school engineering curriculum developed by the authors is described to show how active learning and state frameworks can coexist. The theoretical basis for learning and assessment in a…
Descriptors: Engineering Education, Middle School Students, Energy, Teaching Methods
Goonatilake, Rohitha; Bachnak, Rafic A. – Journal of STEM Education: Innovations and Research, 2012
Recent decline of students pursuing engineering degree programs is a great concern for many higher education authorities including Federal and State governments. Existing programs in high schools have not yet produced the desired results. Consequently, a number of initiatives to remedy this situation have been proposed and implemented. One such…
Descriptors: Engineering Education, High School Students, Middle School Students, Workshops
Sweeney, Preston – Tech Directions, 2010
Hosting an engineering competition can bring great success to a technology department. Development and planning of an event can prove frustrating at times, but it pays off in the end. The author describes the first-ever engineering competition held at Maple Avenue Middle School in Saratoga Springs, New York, which provided an evening of creative…
Descriptors: Competition, Engineering, Science Fairs, Science Activities
Schnittka, Christine G.; Brandt, Carol B.; Jones, Brett D.; Evans, Michael A. – Advances in Engineering Education, 2012
Studio STEM adopts a design studio model to provide middle school youth with the opportunity to work with peers and college student facilitators after school in a relaxed, non-threatening, collaborative environment. Two informal learning educators guided overall instruction and pacing, but youth directed their own step-by-step activities by…
Descriptors: Informal Education, Engineering Education, STEM Education, Design
Starkman, Neal – T.H.E. Journal, 2007
US students continue to lag behind the rest of the world in science, technology, engineering, and math--taken together, STEM. Even as the US falls further and further behind other countries in these four critical academic areas, not everyone sees it as a crisis. Fortunately, there are those who do. One organization out front on the issue is,…
Descriptors: Middle Schools, Problem Solving, Technology Education, Engineering Education