Publication Date
In 2025 | 0 |
Since 2024 | 1 |
Since 2021 (last 5 years) | 1 |
Since 2016 (last 10 years) | 5 |
Since 2006 (last 20 years) | 13 |
Descriptor
Source
Technology and Engineering… | 7 |
Journal of STEM Education:… | 2 |
Mathematics Teaching in the… | 1 |
National Center for… | 1 |
School Science and Mathematics | 1 |
Science Teacher | 1 |
Science and Children | 1 |
Author
DeRose, Rob | 1 |
Deal, Walter F., III | 1 |
Dickerson, Daniel | 1 |
Dockers, Jean | 1 |
Ernst, Jeremy | 1 |
Flowers, Jim | 1 |
Gonczi, Amanda L. | 1 |
Grubbs, Michael E. | 1 |
High, Karen | 1 |
Householder, Daniel L., Ed. | 1 |
Hsiung, Steve C. | 1 |
More ▼ |
Publication Type
Journal Articles | 13 |
Reports - Descriptive | 10 |
Guides - Classroom - Teacher | 3 |
Reports - Research | 3 |
Collected Works - General | 1 |
Education Level
Higher Education | 5 |
Postsecondary Education | 4 |
Middle Schools | 2 |
Secondary Education | 2 |
Elementary Education | 1 |
Elementary Secondary Education | 1 |
Grade 6 | 1 |
Grade 7 | 1 |
Grade 8 | 1 |
Audience
Teachers | 6 |
Location
Indiana | 1 |
New York | 1 |
Oklahoma | 1 |
Pennsylvania | 1 |
Laws, Policies, & Programs
Assessments and Surveys
What Works Clearinghouse Rating
Vimal K. Viswanathan; Nikhitha Reddy Nukala; John Solomon – Journal of STEM Education: Innovations and Research, 2024
This paper describes applying a new brain-based instructional approach called "Tailored Instructions and Engineered Delivery using Protocols" (TIED UP) in an engineering classroom. Brain-based strategies leverage our knowledge about the functioning of the human brain to deliver the course information effectively. Although brain-based…
Descriptors: College Students, Engineering Education, Engineering Technology, College Faculty
Kelley, Todd R. – Technology and Engineering Teacher, 2017
As national STEM initiatives focus on engineering design as a STEM integrator, a more important concern for K-12 educators should be teaching design fundamentals and using these experiences to help students obtain STEM content knowledge. There appears however, to be little instruction and emphasis on building students' design-sketching skills in…
Descriptors: Drafting, Design, Engineering Education, Engineering Technology
Llewellyn, Douglas; Pray, Sandra; DeRose, Rob; Ottman, William – Science and Children, 2016
This column presents ideas and techniques to enhance science teaching. In this month's issue an upper elementary Science, technology, engineering, and math (STEM) challenge brings an engineer into the classroom while emphasizing cooperation, communication, and creativity. STEM activities come in various shapes and sizes. Some are quite involved…
Descriptors: Science Instruction, Teaching Methods, Elementary School Science, Engineering Technology
Deal, Walter F., III; Hsiung, Steve C. – Technology and Engineering Teacher, 2017
Sensors of all kinds play significant roles in the way that we use and interact with technological devices today. Smartphones, household appliances, automobiles, and other products that we use every day incorporate many different kinds of sensors. While the sensors are hidden from view in the products, appliances, and tools that we use, they…
Descriptors: Engineering Education, Engineering Technology, Robotics, Electronic Equipment
Love, Tyler S.; Salgado, Carlos A. – Technology and Engineering Teacher, 2016
The focus on construction in T&E education has drastically changed. This article presents a series of topics and design-based labs that can be taught at various grade levels to integrate STEM concepts while also increasing students' overall awareness of construction and structural technologies.
Descriptors: Scientific Concepts, Engineering Technology, Engineering Education, Design
Xu, Renmei; Flowers, Jim – Technology and Engineering Teacher, 2015
Integrating different science, technology, engineering, and mathematics (STEM) areas can help students learn and leverage both the equipment and expertise at a single school. In comparing graphic communications classes with classes that involve rapid prototyping (RP) technologies like 3D printing, there are sufficient similarities between goals,…
Descriptors: Educational Technology, STEM Education, Integrated Activities, Specialization
Wheeler, Lindsay B.; Whitworth, Brooke A.; Gonczi, Amanda L. – Science Teacher, 2014
The number of students majoring in science, technology, engineering, and math (STEM) is declining due in part to a lack of student interest (Fairweather 2008; NRC 2012; PCAST 2010). One reason may be the difference between how science is done in school and how it is done in the field (Osborne, Simon, and Collins 2003). An interdisciplinary…
Descriptors: Engineering Technology, Student Interests, Science Interests, STEM Education
Stoner, Melissa A.; Stuby, Kristin T.; Szczepanski, Susan – Mathematics Teaching in the Middle School, 2013
Recent research suggests that high-impact activities in science and math classes promote positive attitudinal shifts in students. By implementing high-impact activities, such as designing a school and a skate park, mathematical thinking can be linked to the engineering design process. This hands-on approach, when possible, to demonstrate or…
Descriptors: STEM Education, Motivation Techniques, Student Motivation, Structural Elements (Construction)
Sutton, Kevin; Grubbs, Michael E.; Ernst, Jeremy – Technology and Engineering Teacher, 2014
Engineering design has been suggested as a viable instructional approach for Technology Education (TE) to intentionally provide students the opportunity to apply multidisciplinary concepts to solve ill-defined design challenges (Wells & Ernst, 2012; Sanders & Wells, 2010; Wicklein, 2006). Currently, the context for design challenges in TE…
Descriptors: Design, Design Crafts, Design Requirements, Engineering Technology
Mitts, Charles R. – Technology and Engineering Teacher, 2013
This design/problem-solving activity challenges students to design a replacement bridge for one that has been designated as either structurally deficient or functionally obsolete. The Aycock MS Technology/STEM Magnet Program Virtual Bridge Design Challenge is an authentic introduction to the engineering design process. It is a socially relevant…
Descriptors: Problem Solving, Facility Planning, Design, Engineering Education
Verma, Alok K.; Dickerson, Daniel; McKinney, Sue – Technology and Engineering Teacher, 2011
Old Dominion University and Norfolk State University, in collaboration with the marine industry and local school systems, is improving STEM preparation using innovative experiences for students and teachers in the nation's major shipbuilding and repair areas through MarineTech and SBRCD (Shipbuilding Repair and Maritime Career Day) projects. The…
Descriptors: Student Projects, Maintenance, Active Learning, Physical Sciences
Householder, Daniel L., Ed. – National Center for Engineering and Technology Education, 2011
Since its initial funding by the National Science Foundation in 2004, the National Center for Engineering and Technology Education (NCETE) has worked to understand the infusion of engineering design experiences into the high school setting. Over the years, an increasing number of educators and professional groups have participated in the expanding…
Descriptors: Engineering, Instructional Design, Technology Education, Science Curriculum
Redmond, Adrienne; Thomas, Julie; High, Karen; Scott, Margaret; Jordan, Pat; Dockers, Jean – School Science and Mathematics, 2011
This case study reviewed the collaborative efforts of university engineers, teacher educators, and middle school teachers to advance sixth- and seventh-grade students' learning through a series of project-based engineering activities. This two-year project enriched regular school curricula by introducing real-world applications of science and…
Descriptors: Engineering Education, Mentors, Problem Based Learning, Teaching Methods
Marcus, Michael L.; Winters, Dixie L. – Journal of STEM Education: Innovations and Research, 2004
Students from science, engineering, and technology programs should be able to work together as members of project teams to find solutions to technical problems. The exercise in this paper describes the methods actually used by a project team from a Biomedical Instrumentation Corporation in which scientists, technicians, and engineers from various…
Descriptors: Engineering, Engineering Education, Engineering Technology, Problem Solving