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Viswanathan, Shekar – American Journal of Engineering Education, 2017
Final program projects (capstone course) in manufacturing design engineering technology at National University are intensive experiences in critical thinking and analysis, designed to broaden students' perspectives and provide an opportunity for integration of coursework in the area of manufacturing design engineering. This paper focuses on three…
Descriptors: Undergraduate Students, Manufacturing, Design, Engineering Education
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
Hoffman, Adam; Turner, Ken – Journal of Chemical Education, 2015
A multipart laboratory activity introducing microbeads was created to meet engineering and engineering design practices consistent with new Next Generation Science Standards (NGSS). Microbeads are a current topic of concern as they have been found to cause adverse impacts in both marine and freshwater systems resulting in multiple states proposing…
Descriptors: Chemistry, Educational Experiments, Investigations, Engineering Education
Pozzi, Rossella; Noè, Carlo; Rossi, Tommaso – European Journal of Engineering Education, 2015
According to the literature, in recent years, developing experiential learning has fulfilled the requirement of a deep understanding of lean philosophy by engineering students, demonstrating the advantages and disadvantages of some of the key principles of lean manufacturing. On the other hand, the literature evidences how some kinds of game-based…
Descriptors: Experiential Learning, Engineering Education, Manufacturing, Engineering Technology
Gohardani, Omid; Gohardani, Amir S.; Dokter, Erin; Macario, Kyla – Journal of College Science Teaching, 2014
Teaching in the 21st century requires a modern teaching practice coherent with the evolutions of the Information Age. Interestingly, teaching practices have stretched beyond an art form and into the realm of science. Following these scientific trails, one can argue that one of the greatest challenges educators currently face is to maintain student…
Descriptors: Engineering, Engineering Education, Engineering Technology, Aerospace Education
Zhao, Feng-qing; Yu, Yi-feng; Ren, Shao-feng; Liu, Shao-jie; Rong, Xin-yu – Journal of Chemical Education, 2014
Practical education in chemical engineering has drawn increasing attention in recent years. This paper discusses two approaches to teaching and learning about experiments among upper-level chemical and pharmaceutical engineering majors in China. On the basis of years of experience in teaching chemical and pharmaceutical engineering, we propose the…
Descriptors: Foreign Countries, Pharmaceutical Education, Engineering Technology, Majors (Students)
Tseng, Kuo-Hung; Chang, Chi-Cheng; Lou, Shi-Jer; Hsu, Pi-Shan – International Journal of Technology and Design Education, 2013
The purpose of the study was to explore that using creative problem solving can promote students' performance of concept mapping (CMPING). Students were encouraged to use creative problem solving (CPS) in constructing nanometer knowledge structure, and then to promote the performance of CMPING. The knowledge structure was visualized through…
Descriptors: Concept Mapping, Problem Solving, Creative Activities, Creative Teaching
Nersessian, Nancy J. – Mind, Culture, and Activity, 2012
As much research has demonstrated, novel scientific concepts do not arise fully formed in the head of a scientist but are created in problem-solving processes, which can extend for considerable periods and even span generations of scientists. To understand concept formation and conceptual change it is important to investigate these processes in…
Descriptors: Laboratories, Scientific Concepts, Concept Formation, Sciences
Vaidyanathan, M. – IEEE Transactions on Education, 2011
Nanoelectronics is an emerging area of electrical and computer engineering that deals with the current-voltage behavior of atomic-scale electronic devices. As the trend toward ever smaller devices continues, there is a need to update traditional undergraduate curricula to introduce electrical engineers to the fundamentals of the field. These…
Descriptors: Quantum Mechanics, Electronics, Educational Strategies, Teaching Methods
Ngai, Grace; Chan, Stephen C. F.; Leong, Hong Va; Ng, Vincent T. Y. – ACM Transactions on Computing Education, 2013
This article presents the design and development of i*CATch, a construction kit for physical and wearable computing that was designed to be scalable, plug-and-play, and to provide support for iterative and exploratory learning. It consists of a standardized construction interface that can be adapted for a wide range of soft textiles or electronic…
Descriptors: Computer System Design, Engineering Technology, Courseware, Computer Science Education
Lehman, James D.; Kim, WooRi; Harris, Constance – Journal of STEM Education: Innovations and Research, 2014
The new standards for K-12 science education in the United States call for science teachers to integrate engineering concepts and practices within their science teaching in order to improve student learning. To accomplish this, teachers need appropriate instructional materials as well as the knowledge and skills to effectively use them. This mixed…
Descriptors: Communities of Practice, Elementary School Science, Integrated Curriculum, Engineering Technology
Churlyaeva, Natalya; Kukushkin, Sergey – International Journal of Lifelong Education, 2013
The development of a continuing vocational training programme at the Information Satellite Systems Joint-Stock Company (ISS JSC) during the transition from the planned Soviet economy to what is now called the Russian market economy is briefly outlined. How the collapse of a planned economy led to the degradation of engineering higher education…
Descriptors: Case Studies, Professional Continuing Education, Vocational Education, Space Sciences
Koster, Alexis – American Journal of Business Education, 2010
According to the Bureau of Labor Statistics, close to 1.8 million people, or 77% of all computer professionals, were working in the design, development, deployment, maintenance, and management of software in 2006. The ACM [Association for Computing Machinery] model curriculum for the BS in computer science proposes that about 42% of the core body…
Descriptors: Computer Science Education, Programming, Engineering Education, Engineering Technology
Pardo, X. C.; Martin, M. J.; Sanjurjo, J.; Regueiro, C. V. – IEEE Transactions on Education, 2009
This paper describes a practical experience of adapting the teaching of a course in Computer Technology (CT) to the new demands of the European Higher Education Area (EHEA). CT is a core course taught in the first year of the degree program Technical Engineering in Management Computing in the Faculty of Computer Science at the University of A…
Descriptors: Educational Practices, Foreign Countries, Computer Science Education, Computer System Design
Zhao, Yiping; Chen, Li; Zhang, Yufeng – International Education Studies, 2008
As viewed from two sides such as teacher and student, in this article, we explore the human-based teaching reform for the college professional course of materials Science and Engineering, point out the qualities and conditions that professional teacher should possess in the process of human-based teaching reform of professional course and the…
Descriptors: Teaching Methods, Engineering Education, Engineering Technology, Teacher Qualifications
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