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Richter, David M.; Paretti, Marie C. – European Journal of Engineering Education, 2009
In addition to developing deep knowledge of a single discipline, engineers must also be able to collaborate across disciplinary boundaries and develop interdisciplinary expertise to successfully address the complex challenges of the contemporary workplace. While numerous descriptions of interdisciplinary courses and projects appear in the…
Descriptors: Interdisciplinary Approach, Engineering, Engineering Education, Teaching Methods
Stier, Kenneth; Laingen, Mark – Technology and Engineering Teacher, 2010
Today's engineers and technologists are more frequently thrust into the role of problem solver. Some would argue that, if this is the case, then using simulation is a more acceptable way to educate students for the work environment they will enter. The authors wanted to introduce entry-level university students to advanced engineering concepts…
Descriptors: Sequential Learning, Engineering Technology, Technology Education, Concept Teaching
Yelamarthi, Kumar; Drake, Eron – IEEE Transactions on Education, 2015
This paper describes a flipped and improved first-year digital circuits (DC) course that incorporates several active learning strategies. With the primary objective of increasing student interest and learning, an integrated instructional design framework is proposed to provide first-year engineering and technology students with practical knowledge…
Descriptors: Engineering Education, Active Learning, Teaching Methods, Undergraduate Students
Ernest, Kissi; Matthew, Somiah K.; Samuel, Ansah K. – Higher Education Studies, 2015
This paper sought to discuss entrepreneurial learning competencies by determining the outcome of entrepreneurial learning on the views of built environment students in the university setting. In this study, three relevant competencies were identified for entrepreneurial learning through literature, namely: entrepreneurial attitude, entrepreneurial…
Descriptors: Entrepreneurship, Questionnaires, Indexes, Graduate Students
Velegol, Stephanie Butler; Zappe, Sarah E.; Mahoney, Emily – Advances in Engineering Education, 2015
Engineering students benefit from an active and interactive classroom environment where they can be guided through the problem solving process. Typically faculty members spend class time presenting the technical content required to solve problems, leaving students to apply this knowledge and problem solve on their own at home. There has recently…
Descriptors: Engineering Education, Blended Learning, Educational Technology, Homework
Gupta, Anju – Journal of STEM Education: Innovations and Research, 2015
This one-day workshop for pre-service teachers was aimed at implementing a uniquely designed and ready-to-implement chemical engineering curriculum in high school coursework. This educational and professional development opportunity introduced: 1) chemical engineering curriculum and career opportunities, 2) basic industrial processes and flow…
Descriptors: Chemical Engineering, Science Instruction, High Schools, Secondary School Teachers
Berland, Leema; McKenna, William; Peacock, Stephanie Baker – Advances in Engineering Education, 2012
Engineering notebooks are a pervasive practice across high school, college, and professional contexts. Within this consistency, there are two basic forms: process-based notebooks serve as a complete record of the engineer's work and are used by the authors to support their endeavors, while product-based notebooks represent a record of final form…
Descriptors: Engineering Education, Documentation, Student Journals, Interviews
Wendell, Kristen B. – Science and Children, 2012
Structural engineering can be a rich and exciting context for exploring and learning about the properties of materials. Even a structure as commonplace as a house requires careful consideration of important properties such as strength, stability, and insulation. As a former engineer and current elementary science teacher educator, the author has…
Descriptors: Engineering, Science Teachers, Elementary School Science, Grade 5
Cole, Jonathan S.; Spence, Stephen W. T. – European Journal of Engineering Education, 2012
The authors have developed a first-year fluids course for a class of around 230 aerospace, civil and mechanical engineering students. This paper aims to show how the teaching and assessment methodology was applied to the challenge of a large class. The lectures featured formal teaching interspersed with active learning elements. Smaller group…
Descriptors: Student Evaluation, Learner Engagement, Lifelong Learning, Engineering
Ibrahim, Bashirah; Rebello, N. Sanjay – Physical Review Special Topics - Physics Education Research, 2012
Previous studies have reported that students employed different problem solving approaches when presented with the same task structured with different representations. In this study, we explored and compared students' strategies as they attempted tasks from two topical areas, kinematics and work. Our participants were 19 engineering students…
Descriptors: Prior Learning, Physics, Problem Solving, Calculus
Liu, Yi-hui; Lou, Shi-jer; Shih, Ru-chu – South African Journal of Education, 2014
This study employed social cognitive theory and social cognitive career theory (SCCT) as foundations to explore the influence of high school students' beliefs about female gender roles and female engineer role models on science, technology, engineering, and mathematics (STEM) self-efficacy and professional commitment to engineering. A total of 88…
Descriptors: STEM Education, Self Efficacy, Student Projects, Questionnaires
Zhan, Wei; Porter, Jay R.; Morgan, Joseph A. – IEEE Transactions on Education, 2014
This paper discusses the design and implementation of laboratories and course projects using LabVIEW in an instrumentation course. The pedagogical challenge is to enhance students' learning of digital communication using LabVIEW. LabVIEW was extensively used in the laboratory sessions, which better prepared students for the course projects. Two…
Descriptors: Experiential Learning, Virtual Classrooms, Courseware, Database Management Systems
Carlone, Heidi; Smithenry, Dennis – Science and Children, 2014
Imagine two fourth-grade classes. Both contain students of comparable demographics and highly respected teachers each with four to five years of experience. Both classes engage in science curricula that emphasize science and engineering practices as outlined in the "Next Generation Science Standards" (NGSS Lead States 2013). Both classes…
Descriptors: Elementary School Students, Elementary School Teachers, Science Curriculum, Elementary School Curriculum
de Salas, Kristy; Lewis, Ian; Dermoudy, Julian – Australian Educational Computing, 2014
Within existing ICT degrees there is a widely-held belief that content must be tailored for different "kinds" of students--often two differing student groups: a technical group requiring detailed Computer Science knowledge and a separate group requiring less technical, more strategic ICT knowledge and skills. Our institution has produced…
Descriptors: Cognitive Style, Computer Science, Information Technology, Technological Literacy
Whitaker, Stephen – Chemical Engineering Education, 2009
Chemical engineering students begin their studies of mechanics in a department of physics where they are introduced to the mechanics of Newton. The approach presented by physicists differs in both perspective and substance from that encountered in chemical engineering courses where Euler's laws provide the foundation for studies of fluid and solid…
Descriptors: Mechanics (Physics), Chemical Engineering, Scientific Principles, Science Education

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