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Tritrakan, Kasame; Kidrakarn, Pachoen; Asanok, Manit – Educational Research and Reviews, 2016
The aim of this research is to develop a learning model which blends factors from learning environment and engineering design concept for learning in computer programming course. The usage of the model was also analyzed. This study presents the design, implementation, and evaluation of the model. The research methodology is divided into three…
Descriptors: Engineering, Design, Computer Science Education, Programming
Rehmat, Abeera P.; Owens, Marissa C. – Science and Children, 2016
This column presents ideas and techniques to enhance your science teaching. This month's issue shares information about a unit promoting scientific literacy and the engineering design process. The integration of engineering with scientific practices in K-12 education can promote creativity, hands-on learning, and an improvement in students'…
Descriptors: Science Instruction, Scientific Literacy, Engineering Technology, Integrated Activities
Wilson-Lopez, Amy; Gregory, Stacie; Larsen, Victor – Journal of Pre-College Engineering Education Research, 2016
For decades, researchers have asserted that K-12 teachers should embed reading comprehension instruction within each academic discipline, including "technical subjects" such as engineering. Recently, this assertion has become a source of controversy among researchers and practitioners who believe that time spent on teaching reading…
Descriptors: Elementary School Students, Reading Comprehension, Engineering, Reading Strategies
Roberts, Amanda Shackleford – ProQuest LLC, 2013
The purpose of this study was to identify the preferred instructional design strategies for the preparation of pre-service teachers who will deliver integrated STEM lessons. The research objectives were threefold and included identifying a preferred definition of integrated STEM education, developing its purpose statement, and creating a list of…
Descriptors: Instructional Design, Educational Strategies, STEM Education, Integrated Curriculum
Bledsoe, Karen E.; Flick, Lawrence – Journal of Science Education and Technology, 2012
This phenomenographic study documented changes in student-held electrical concepts the development of meaningful learning among students with both low and high prior knowledge within a problem-based learning (PBL) undergraduate electrical engineering course. This paper reports on four subjects: two with high prior knowledge and two with low prior…
Descriptors: Concept Mapping, Problem Based Learning, Prior Learning, Problem Solving
Grigg, Sarah J.; Benson, Lisa C. – European Journal of Engineering Education, 2014
This study describes the development and structure of a coding scheme for analysing solutions to well-structured problems in terms of cognitive processes and problem-solving deficiencies for first-year engineering students. A task analysis approach was used to assess students' problem solutions using the hierarchical structure from a…
Descriptors: Engineering Education, Coding, Problem Solving, Error Correction
Corona, Lilia Benítez; Rodríguez, Reyna del Carmen Martínez – Bulgarian Comparative Education Society, 2014
This paper presents part of the research results: "The development of resilient competencies through protective factors and risk in engineering students". Resilience is considered as a process, a becoming human that inscribes its development in an environment and writes its story in a culture (Jaramillo, 2004: 231). So Vanistendael…
Descriptors: Resilience (Psychology), Engineering Education, Competency Based Education, Personality Traits
Baldwin, Blake; Koenig, Kathleen; Van der Bent, Andries – Science Teacher, 2016
Integrating engineering and science in the classroom can be challenging, and creating authentic experiences that address real-world problems is often even more difficult. "A Framework for K-12 Science Education" (NRC 2012), however, calls for high school graduates to be able to undertake more complex engineering design projects related…
Descriptors: Environmental Education, Engineering Education, Science Education, Design
Foster, W. Tad; Shahhosseini, A. Mehran; Maughan, George – Journal of Technology Education, 2016
Facilitating student growth and development in diagnosing and solving technical problems remains a challenge for technology and engineering educators. With funding from the National Science Foundation, this team of researchers developed a self-guided, computer-based instructional program to experiment with conceptual mapping as a treatment to…
Descriptors: Technology Education, Engineering Education, Undergraduate Students, Problem Solving
King, Samuel Olugbenga – Curriculum and Teaching, 2016
In undergraduate mathematics education, atypical problem solving approaches are usually discouraged because they are not adaptive to systematic deduction on which undergraduate instructional systems are predicated. I present preliminary qualitative research evidence that indicates that these atypical approaches, such as genetic guessing, which…
Descriptors: Mathematics Instruction, College Mathematics, Undergraduate Study, Qualitative Research
Halpern, Daniel; Oh, Kyong Eun; Tremaine, Marilyn; Chiang, James; Bemis, Karen; Silver, Deborah – International Journal of Science Education, 2015
The following study investigates the range of strategies individuals develop to infer and interpret cross-sections of three-dimensional objects. We focus on the identification of mental representations and problem-solving processes made by 11 individuals with the goal of building training applications that integrate the strategies developed by the…
Descriptors: Visualization, Qualitative Research, Problem Solving, Perspective Taking
Kelley, Todd R.; Capobianco, Brenda M.; Kaluf, Kevin J. – International Journal of Technology and Design Education, 2015
Initiatives to integrate engineering design in the elementary science classroom have become increasingly evident in both national reform documents and classroom practice. Missing from these efforts is a purposeful attempt to capture students' designerly thinking and dialogues as they engage in the process. The purpose of this study was to…
Descriptors: Protocol Analysis, Elementary School Science, Elementary School Students, Design
Mellingsaeter, Magnus Strøm; Bungum, Berit – European Journal of Engineering Education, 2015
This paper presents a case study of how the interactive whiteboard (IWB) may facilitate collective meaning-making processes in group work in engineering education. In the case, first-year students attended group-work sessions as an organised part of a basic physics course at a Norwegian university college. Each student group was equipped with an…
Descriptors: Physics, Cooperative Learning, Educational Technology, College Science
Grohs, Jacob R.; Knight, David B.; Young, Glenda D.; Soledad, Michelle M. – International Journal of Education in Mathematics, Science and Technology, 2018
Situated in the second year of an engineering curriculum, undergraduate engineering mechanics courses represent a significant barrier to persistence in engineering. This study seeks to inform and improve these educational environments by examining academic performance paths over time in a course and explore how students in each path compare in the…
Descriptors: Academic Achievement, Learning Strategies, Engineering Education, Course Content
Blizzard, Jacqualyn – ProQuest LLC, 2013
The need for more engineers equipped with new skill sets is essential for ensuring our national security, climate sustainability, and maintaining our position as a global leader in innovation and as an economic world power. The design challenges engineers face increasingly require a human-centered, creative, practical, and systems-based approach…
Descriptors: Design, Problem Solving, Thinking Skills, Engineering

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