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Cardon, Philip L.; Kinczkowski, Linda; Speelman, Pamela – Technology and Engineering Teacher, 2022
The versatility required for employment continues to change with technological advancements. Some of the top listed skills needed for a career are positive attitude, communication, time management, critical-thinking, and problem-solving (Peart, 2019). How to teach each of these competencies may take different strategies and techniques. This…
Descriptors: Problem Based Learning, Learning Activities, Communication Skills, Critical Thinking
Scott R. Bartholomew; Mark P. Mahoney; Joanna Papadopoulos; Subrina D. Oliver; Euisuk Sung; Douglas Lecorchick; Geoff Wright; Todd R. Kelley – Technology and Engineering Teacher, 2022
The ITEEA's Council for Technology and Engineering Teacher Education (CTETE) Curriculum Committee solicited, collected, and analyzed several examples of international lesson plans to find out how various countries understand and/or apply the "Standards for Technological and Engineering Literacy: The Role of Technology and Engineering in STEM…
Descriptors: STEM Education, Comparative Analysis, Curriculum Evaluation, Foreign Countries
Swagerty, Lindsey M.; Hodge, Tara – Technology and Engineering Teacher, 2019
Recent education initiatives have created a spotlight for science, technology, engineering and mathematics (STEM) programs within schools with an eye to not only improve students' overall performance in mathematics and science, but also increase the pipeline of students pursuing STEM-focused careers. While current STEM initiatives focus on all…
Descriptors: Creativity, Inquiry, STEM Education, Elementary School Students
Euefueno, William D. – Technology and Engineering Teacher, 2019
Project-/Problem-Based Learning (PBL) creates dynamic learning environments, incorporates various stimuli, allows learners to gain valuable experiences that extend to real-world applicability, and should be considered as a primary delivery method in STEM classes. The application and benefits of PBL in STEM classes are limitless. Students learn…
Descriptors: Instructional Effectiveness, STEM Education, Active Learning, Student Projects
Bartholomew, Scott R. – Technology and Engineering Teacher, 2017
Interest in Technology and Engineering Education (TEE) has recently revolved around working to define/redefine who we are, and who we are not; while others in TEE are not interested in a change of identity. An emphasis on design, design education, and design assessment may help clarify the discussion surrounding the future direction of TEE.…
Descriptors: Technology Education, Engineering Education, Design, Elementary Secondary Education
Asunda, Paul A.; Weitlauf, John – Technology and Engineering Teacher, 2018
In order to maintain the United States' global competitiveness and create new and innovative solutions to solve global challenges, more and diverse numbers of STEM graduates need to be attracted and retained in technical disciplines (Committee on Prospering in the Global Economy of the 21st Century: An Agenda for American Science and Technology,…
Descriptors: STEM Education, Interdisciplinary Approach, Problem Based Learning, Employment Qualifications
Asunda, Paul A.; Mativo, John – Technology and Engineering Teacher, 2017
Part One of this article ("Technology and Engineering Teacher," 75(4), December/January, 2016) presented a process that science, math, engineering, and technology teachers could use to collaborate and design integrated STEM courses. A conceptual framework was discussed that could provide a premise that educators interested in delivery of…
Descriptors: STEM Education, Technology Education, Teaching Methods, Common Core State Standards
Asunda, Paul A.; Mativo, John – Technology and Engineering Teacher, 2016
In this first of a two-part series, the authors report that STEM is still mostly science and mathematics, taught separately with little or no attention to technology and engineering. Where connections do get made to technology and engineering, too often they happen through several disconnected projects that lack coherence in content standards and…
Descriptors: STEM Education, Technology Education, Teaching Methods, Common Core State Standards