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Strimel, Greg; Grubbs, Michael E. – Journal of Technology Education, 2016
As the presence of engineering content and practices increases in science education, the distinction between the two fields of science and technology education becomes even more vague than previously theorized. Furthermore, the addition of engineering to the title of the profession raises the question of the true aim of technology education. As a…
Descriptors: STEM Education, Technology Integration, Engineering Education, Technology Education
Duarte, M.; Leite, C.; Mouraz, A. – European Journal of Engineering Education, 2016
This study researches how first-year engineering students perceived the influence of curricular activities on their own learning autonomy, measured with an adaptation of the Personal Responsibility Orientation to Self-direction in Learning Scale (PRO-SDLS). Participants were questioned to assess the influence of the teacher's role. The results…
Descriptors: Foreign Countries, Undergraduate Students, Engineering, Engineering Education
Marshall, Matthew M.; Carrano, Andres L.; Dannels, Wendy A. – Journal of Deaf Studies and Deaf Education, 2016
Individuals who are deaf and hard-of-hearing (DHH) are underrepresented in science, technology, engineering, and mathematics (STEM) professions, and this may be due in part to their level of preparation in the development and retention of mathematical and problem-solving skills. An approach was developed that incorporates experiential learning and…
Descriptors: Problem Solving, Partial Hearing, Deafness, Experiential Learning
Herber, Daniel R.; Deshmukh, Anand P.; Mitchell, Marlon E.; Allison, James T. – Education Sciences, 2016
This paper presents an effort to revitalize a large introductory engineering course for incoming freshman students that teaches them analytical design through a project-based curriculum. This course was completely transformed from a seminar-based to a project-based course that integrates hands-on experimentation with analytical work. The project…
Descriptors: Engineering Education, College Freshmen, Student Projects, Design
Walker, Caryn; Ethington, Roberta L.; Stark, Alyssa Y. – Science and Children, 2016
Everyone has problems, from the smallest ant competing for a food source to the largest elephant needing to cool down. Fortunately, organisms have structures that function to help them solve these problems. So when a group of fourth-grade students look for solutions to their problems, who do they turn to? A biological champion, of course! Plants…
Descriptors: Grade 4, Plants (Botany), Animals, Science Instruction
Kayumova, Lilija A.; Savva, Lubov I.; Soldatchenko, Aleksandr L.; Sirazetdinov, Rustem M.; Akhmetov, Linar G. – International Journal of Environmental and Science Education, 2016
The relevance of the study is conditioned by the modernization of engineering education aimed at specialists' training to solve engineering and economic problems effectively. The goal of the paper is to develop the technology of the innovative content's formation for engineering education. The leading method to the study of this problem is a…
Descriptors: Engineering Education, Teacher Attitudes, Student Attitudes, Teaching Methods
Haglund, Jesper; Andersson, Staffan; Elmgren, Maja – Chemistry Education Research and Practice, 2016
Entropy is a central concept in thermodynamics, but has been found to be challenging to students due to its abstract nature and the fact that it is not part of students' everyday language. Interviews with three pairs of engineering students (N = 6) were conducted and video recorded regarding their interpretation and use of the entropy concept, one…
Descriptors: Engineering Education, Scientific Concepts, Thermodynamics, Syntax
Berkeihiser, Mike – Technology and Engineering Teacher, 2016
Most technology and engineering (T&E) classes are elective, so teachers are always looking for ways to market programs, engage students, and remind administrators and school board members about the good things T&E teachers do with and for kids. In this article, the Unionville High School (PA) Technology and Engineering Department describes…
Descriptors: Technical Education, Engineering Education, High School Students, Manufacturing
Steif, Paul S.; Fu, Luoting; Kara, Levent Burak – Interactive Learning Environments, 2016
Problems faced by engineering students involve multiple pathways to solution. Students rarely receive effective formative feedback on handwritten homework. This paper examines the potential for computer-based formative assessment of student solutions to multipath engineering problems. In particular, an intelligent tutor approach is adopted and…
Descriptors: Formative Evaluation, Engineering Education, Problem Solving, Intelligent Tutoring Systems
Moreno, Nancy P.; Tharp, Barbara Z.; Vogt, Gregory; Newell, Alana D.; Burnett, Christopher A. – Journal of Science Education and Technology, 2016
The middle school years are a crucial time for cultivating students' interest in and preparedness for future STEM careers. However, not all middle school children are provided opportunities to engage, learn and achieve in STEM subject areas. Engineering, in particular, is neglected in these grades because it usually is not part of science or…
Descriptors: After School Programs, STEM Education, Middle School Students, Student Interests
Putnik, Goran; Costa, Eric; Alves, Cátia; Castro, Hélio; Varela, Leonilde; Shah, Vaibhav – International Journal of Technology and Design Education, 2016
Social network-based engineering education (SNEE) is designed and implemented as a model of Education 3.0 paradigm. SNEE represents a new learning methodology, which is based on the concept of social networks and represents an extended model of project-led education. The concept of social networks was applied in the real-life experiment,…
Descriptors: Engineering Education, Social Networks, Network Analysis, Correlation
Pons, Dirk – European Journal of Engineering Education, 2016
Problem: The professional practice of engineering always involves engineering management, but it is difficult to know what specifically to include in the undergraduate curriculum. Approach: The population of New Zealand practising engineers was surveyed to determine the importance they placed on specific professional practice and engineering…
Descriptors: Engineering Education, Undergraduate Study, Administrator Education, Minimum Competencies
Jindathai, Supatsorn – LEARN Journal: Language Education and Acquisition Research Network, 2016
This study aims to identify which communication strategies (CSs) are most frequently used by Thai engineering students at Thai-Nichi Institute of Technology (TNI), Thailand and to investigate the relationship between CS use and exposure to oral communication in English. An adapted Metcalfe and Noom-Ura's Oral Communication Strategy Inventory…
Descriptors: Engineering Education, Communication Strategies, Listening Comprehension, English (Second Language)
Larsen, Lasse Juel; Majgaard, Gunver – Designs for Learning, 2016
This article considers game design research in educational settings. Its focus is on how undergraduate students -- particularly engineering students -- learn computer game design. From observations conducted during our game design courses we have developed a model of expanded game design space. It encapsulates the entire development process from…
Descriptors: Undergraduate Students, Engineering Education, Computer Games, Design
Delgado-Cepeda, Francisco Javier – Athens Journal of Education, 2016
This work summarizes the didactic design and introductory outcomes in an educative program, involving six math and physics university courses for engineers, based on the use and construction of widgets. Widgets were generated under Project Oriented Learning and blended learning methodologies. In the program, widgets previously generated by…
Descriptors: Blended Learning, College Mathematics, College Science, Physics

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