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Dixon, Raymond A.; Brown, Ryan A. – Journal of Technology Education, 2012
A concern of many educators and managers is students' ability to transfer concepts and procedures learned in school to the work environment. When children are taught a skill, such as solving a mathematical problem, they often fail to recognize that their new skill can be used to solve a similar problem outside of school. In other cases, students…
Descriptors: Science Tests, Engineering, Standardized Tests, Technology Education
Grigg, Sarah J. – ProQuest LLC, 2012
In the engineering profession, one of the most critical skills to possess is accurate and efficient problem solving. Thus, engineering educators should strive to help students develop skills needed to become competent problem solvers. In order to measure the development of skills, it is necessary to assess student performance, identify any…
Descriptors: Problem Solving, Skills, Engineering Education, Formative Evaluation
White, David W. – Technology and Engineering Teacher, 2015
In 1984, James Buffer and Michael Scott produced the book "Special Needs Guide for Technology Education" (Buffer and Scott, 1984). This was a pivotal offering insofar as it set the stage for technology education educators, at the time, to think about and be provided with information regarding students with special needs in their…
Descriptors: Student Needs, Special Needs Students, Technology Education, Engineering Education
Lammi, Matthew; Greenhalgh, Scott – Technology and Engineering Teacher, 2011
The use of projectiles is a concept familiar to most students, whether it is a classic slingshot, bow and arrow, or even a spit wad through a straw. Perhaps the last thing a teacher wants is more projectiles in the classroom. However, the concept of projectiles is relevant to most students and may provide a means of bringing more authenticity into…
Descriptors: Problem Solving, STEM Education, Technology Education, Standards
Mentzer, Nathan – Journal of Technology Education, 2014
The objective of this research was to explore design thinking among teams of high school students. This objective was encompassed in the research question driving the inquiry: How do teams of high school students allocate time across stages of design? Design thinking on the professional level typically occurs in a team environment. Many…
Descriptors: Engineering Education, Design, High School Students, Teamwork
English, Lyn D.; King, Donna T. – International Journal of STEM Education, 2015
Background: Internationally, there is a growing concern for developing STEM education to prepare students for a scientifically and technologically advanced society. Despite educational bodies lobbying for an increased focus on STEM, there is limited research on how engineering might be incorporated especially in the elementary school curriculum. A…
Descriptors: STEM Education, Engineering, Design, Elementary School Science
Mentzer, Nathan; Fosmire, Michael J. – Journal of Pre-College Engineering Education Research, 2015
This study measured the information gathering behaviors of high school students who had taken engineering design courses as they solved a design problem. The authors investigated what types of information students accessed, its quality, when it was accessed during the students' process, and if it impacted their thinking during the activity.…
Descriptors: High School Students, User Needs (Information), Engineering Technology, Design
Malheiro, Benedita; Silva, Manuel; Ribeiro, Maria Cristina; Guedes, Pedro; Ferreira, Paulo – European Journal of Engineering Education, 2015
Current engineering education challenges require approaches that promote scientific, technical, design and complementary skills while fostering autonomy, innovation and responsibility. The European Project Semester (EPS) at Instituto Superior de Engenharia do Porto (ISEP) (EPS@ISEP) is a one semester project-based learning programme (30 European…
Descriptors: Engineering Education, Problem Solving, Interdisciplinary Approach, Cultural Pluralism
Kress, Darcie K.; Rule, Audrey C. – Journal of STEM Arts, Crafts, and Constructions, 2017
Industry and authors of 21st Century Skill Frameworks are calling for student proficiency in creativity, problem-solving, innovation, collaboration, and communication skills. This project involved 13 fifth grade gifted students in inventing products for a specified audience with a set of given materials, time limit, and topic constraints. The…
Descriptors: Elementary School Students, Grade 5, Creativity, Student Developed Materials
Kapli, Natalia V. – ProQuest LLC, 2010
The study investigated the effects of non-segmented multimedia worked examples (NS-MWE), segmented multimedia worked examples (S-MWE), and segmented multimedia worked examples enhanced with self-explanation prompts (S-MWE-SE) on acquisition of conceptual knowledge and problem solving performance in an undergraduate engineering course. In addition,…
Descriptors: Undergraduate Students, Multimedia Instruction, Concept Formation, Problem Solving
Travis, Frederick; Lagrosen, Yvonne – Creativity Research Journal, 2014
This study used canonical correlation analysis to explore the relation among scores on the Torrance test of figural and verbal creativity and demographic, psychological and physiological measures in Swedish product-development engineers. The first canonical variate included figural and verbal flexibility and originality as dependent measures and…
Descriptors: Multivariate Analysis, Creativity, Correlation, Engineering
Roman, Harry T. – Technology and Engineering Teacher, 2013
This article encourages students to think multidimensionally and in a multidisciplinary fashion with this challenge, and choose a team that can support this kind of thinking. Presented is a challenge in which a major home improvement company makes tools and accessories for use by experienced and new homeowners. This company would like to provide…
Descriptors: Creative Thinking, Creative Activities, Creativity, Teamwork
Keeley, Page – Science and Children, 2015
After completing a science unit on transfer of energy, including how chemical energy from a battery is converted to electrical energy; electrical circuits; and transformation of energy into sound, light, or heat; the students in Mrs. Finlay's fourth-grade science class were challenged to use what they learned to solve a problem. The students…
Descriptors: Scientific Concepts, Engineering Education, Formative Evaluation, Energy
Kelley, Todd R. – Technology Teacher, 2010
Novices to the design process often struggle at first to understand the various stages of design. Learning to design is a process not easily mastered, and therefore requires multiple levels of exposure to the design process. It is helpful if teachers are able to implement various entry-level design assignments such as reverse-engineering…
Descriptors: Information Technology, Evaluation, Engineering, Engineering Education
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

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