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Showing 1 to 15 of 18 results Save | Export
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Timothy M. Shenk; Nian Liu – Chemical Engineering Education, 2024
While innovation commonly stems from the Entrepreneurial Mindset (EM), its integration within chemical engineering curricula has been notably limited. However, a shift is occurring as both private and public initiatives are now directing resources and attention toward equipping students for prosperous careers. This paper delineates the successful…
Descriptors: Chemical Engineering, Entrepreneurship, Science Instruction, Science Curriculum
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Maldonado, Victor; Castillo, Luciano; Carbajal, Gerardo; Hajela, Prabhat – European Journal of Engineering Education, 2014
This paper is a descriptive account of how short-term international and multicultural experiences can be integrated into early design experiences in an aerospace engineering curriculum. Such approaches are considered as important not only in fostering a student's interest in the engineering curriculum, but also exposing them to a multicultural…
Descriptors: Engineering, Engineering Education, Aerospace Education, Science Curriculum
LiCalsi, Christina; Reese, Kelly; Garcia-Piriz, Dionisio – American Institutes for Research, 2019
Three central Virginia school districts and engineering education researchers at the University of Virginia were awarded an Investing in Innovation development grant to design, implement, test, and nationally disseminate a project-based engineering curriculum for middle school students. Referred to as invention kits, the curriculum is developed to…
Descriptors: Physical Sciences, Science Education, Engineering Education, Middle Schools
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Khalid, Adeel – Universal Journal of Educational Research, 2013
In this paper, we explore what events, activities, and teaching styles invoke student interest in engineering courses. The research is based on inputs from some of the best and award winning faculty members across disciplines. The activities that professors use to keep students engaged are highlighted. Similarly, the actions that professors take…
Descriptors: Engineering, Engineering Education, Student Interests, College Curriculum
Lawanto, Oenardi; Stewardson, Gary – National Center for Engineering and Technology Education, 2009
The objective of this study was to evaluate grade 9-12 students' motivation while engaged in two different engineering design projects: marble-sorter and bridge designs. The motivation components measured in this study were focused on students' intrinsic (IGO) and extrinsic (EGO) goal orientations, task value (TV), self-efficacy for learning and…
Descriptors: Student Surveys, Questionnaires, Correlation, Student Motivation
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Bacon, Christopher M.; Mulvaney, Dustin; Ball, Tamara B.; DuPuis, E. Melanie; Gliessman, Stephen R.; Lipschutz, Ronnie D.; Shakouri, Ali – International Journal of Sustainability in Higher Education, 2011
Purpose: The purpose of this paper is to share the content and early results from an interdisciplinary sustainability curriculum that integrates theory and practice (praxis). The curriculum links new topical courses concerning renewable energy, food, water, engineering and social change with specialized labs that enhance technological and…
Descriptors: Foreign Countries, Student Projects, Socialization, Teamwork
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Georgiopoulos, M.; DeMara, R. F.; Gonzalez, A. J.; Wu, A. S.; Mollaghasemi, M.; Gelenbe, E.; Kysilka, M.; Secretan, J.; Sharma, C. A.; Alnsour, A. J. – IEEE Transactions on Education, 2009
This paper presents an integrated research and teaching model that has resulted from an NSF-funded effort to introduce results of current Machine Learning research into the engineering and computer science curriculum at the University of Central Florida (UCF). While in-depth exposure to current topics in Machine Learning has traditionally occurred…
Descriptors: Undergraduate Students, Undergraduate Study, Student Research, Science Curriculum
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Mosto, Patricia; Savelski, Mariano; Farrell, Stephanie H.; Hecht, Gregory B. – Chemical Engineering Education, 2007
Integrating biology in the chemical engineering curriculum seems to be the future for chemical engineering programs nation and worldwide. Rowan University's efforts to address this need include a unique chemical engineering curriculum with an intensive biology component integrated throughout from freshman to senior years. Freshman and Sophomore…
Descriptors: Elective Courses, Biotechnology, Biology, Chemical Engineering
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Venkatasubramanian, V. – Chemical Engineering Education, 1986
Describes a course on artificial intelligence (AI) in process engineering taught at Columbia University to chemical engineering students, using an AI methodology known as Knowledge-Based Expert Systems (KBES). Provides a description of the course, the lecture topics, and a synopsis of some of the student projects. (TW)
Descriptors: Artificial Intelligence, Chemical Engineering, College Science, Computer Uses in Education
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Heitmann, Gunter – European Journal of Engineering Education, 1996
Describes pedagogical and profession-oriented motivations as well as science and society-related aspects of project orientation and project-organized curricula in higher education. Argues that staff and faculties will need to establish a continuous process of organizational development in order to overcome obvious problems and constraints of the…
Descriptors: Educational Strategies, Engineering Education, Foreign Countries, Higher Education
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Gibson, Ivan S. – European Journal of Engineering Education, 1998
The development of assessment criteria for undergraduate project work in engineering design is perceived as a difficult task. Describes an innovative course that has been developed at the undergraduate level. (DDR)
Descriptors: Course Content, Design, Engineering Education, Evaluation Methods
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Kentish, Sandra E.; Shallcross, David C. – Chemical Engineering Education, 2006
This paper reviews design teaching at a total of 15 chemical engineering departments across Australia, Singapore, and the United Kingdom. The emphasis is on the capstone Design Project, which can be viewed as a major transition subject for students as they move into the workplace. The study shows that this subject has evolved to act as an…
Descriptors: Foreign Countries, Comparative Education, Chemical Engineering, Science Curriculum
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Harb, John N.; Solen, Kenneth A. – Chemical Engineering Education (CEE), 1998
Discusses the needs of freshmen chemical engineering students in terms of courses related to the field. Describes the nature and content of a course designed to involve freshmen in a chemical engineering curriculum. (DDR)
Descriptors: Chemical Engineering, Course Content, Hands on Science, Higher Education
Faghri, Amir – Engineering Education, 1987
Describes a program in which senior engineering students are given the opportunity to design, make, and test apparatus intended for an upper-level teaching laboratory. Discusses such projects as a vapor compressor test stand with refrigerant mass flow measurement, a double-walled concentric annular heat pipe, and a vacuum filling station. (TW)
Descriptors: College Science, Engineering Education, Higher Education, Science Curriculum
Woolnough, Brian E. – 1994
Effective science teaching is a topic of concern to many science educators. Throughout its six chapters, this book provides research findings of the effectiveness of science teachers in the classroom. The heart of effective teaching is the active involvement of students in scientific research projects. Chapter one, "Aims and Unresolved Tensions,"…
Descriptors: Educational Quality, Educational Research, Elementary Secondary Education, Engineering Education
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