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Showing 1 to 15 of 243 results Save | Export
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Peter Hu; Yangqiuting Li; Chandralekha Singh – Physical Review Physics Education Research, 2024
Quantum information science and engineering (QISE) is a rapidly developing field that leverages the skills of experts from many disciplines to utilize the potential of quantum systems in a variety of applications. It requires talent from a wide variety of traditional fields, including physics, engineering, chemistry, and computer science, to name…
Descriptors: Quantum Mechanics, Computer Science Education, Inquiry, Teaching Methods
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Wesley A. Stroud – Journal of College Science Teaching, 2025
This paper highlights the design process and implementation for an "all majors" undergraduate course that allows students a chance to reconnect with the natural world. During this course students explore a wide range of biological and physical science based topics that seek to highlight human intervention and our impacts on the planet.…
Descriptors: Scientific Principles, Science Education, Honors Curriculum, Majors (Students)
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Andrea L. Schuman; Alaa Abdalla; Jennifer Case; David B. Knight – Chemical Engineering Education, 2025
Study abroad attempts to prepare students to effectively work in a multi-national environment. This study compares students' experiences in a unit operations laboratory course offered in multiple modalities: at students' home university, and four- and eight-week study abroad. The results examine the impact of support on students' learning and…
Descriptors: Study Abroad, Program Length, Comparative Analysis, Educational Experience
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Piergiovanni, Polly R. – Chemical Engineering Education, 2012
Sophomore liberal arts and engineering students enrolled in a course to learn and practice some basic chemical engineering side by side. The course was developed around the theme of indigo dyeing, which has an interesting history, fascinating chemistry and is accessible to all students. The students participated in a variety of active learning…
Descriptors: Liberal Arts, Active Learning, Engineering Education, Interdisciplinary Approach
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Bartholomew, Scott – Technology and Engineering Teacher, 2015
STEM (Science, Technology, Engineering, and Math) is a buzzword in America (Ames, 2013; Woodruff, 2013). With recent pushes from the federal government (Obama, 2013) the educational landscape is changing, with an increased emphasis on STEM (Noddings, 2013; Obama, 2013). However, a clear definition of who teaches each aspect of STEM does not exist…
Descriptors: STEM Education, Teacher Qualifications, Science Education History, Academic Standards
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Nordstrom, Katrina; Korpelainen, Paivi – Teaching in Higher Education, 2011
Problem solving is a critical skill for engineering students and essential to development of creativity and innovativeness. Essential to such learning is an ease of communication and allowing students to address the issues at hand via the terminology, attitudes, humor and empathy, which is inherent to their frame of mind as novices, without the…
Descriptors: Learner Engagement, Video Technology, Engineering Education, Creativity
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Wilkes, Garth L. – Chemical Engineering Education, 2012
This article addresses the importance of oral communication and many of its fundamental underlying principles. Emphasis is placed on oral presentations, particularly those used in science and engineering. Following this, the author provides a brief outline of an elective graduate level oral communications course that was developed and utilized to…
Descriptors: Graduate Study, College Instruction, Course Descriptions, College Science
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Šorgo, Andrej – European Journal of Educational Research, 2012
Creativity is regarded as one of the cornerstones for economic and social progress in every society. There are two possible ways to get creative people to work for an enterprise or community. The first is by attracting creative employees by good working conditions--a solution for those who can afford such an approach. For communities that are not…
Descriptors: Science Education, Creativity, Scientists, Entrepreneurship
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Aucoin, Marc G.; Jolicoeur, Mario – Chemical Engineering Education, 2009
Undergraduate and graduate engineering training differ significantly. The former looks to established protocols and formulas to design and control processes while the latter often involves questioning established protocols and formulas to better suit and describe phenomena. Although we do not dispute the benefits of practical hands-on approaches,…
Descriptors: Engineering Education, Graduate Students, Research Problems, Research Design
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Borsen, T. – European Journal of Engineering Education, 2008
Many philosophers and sociologists of science have tried to understand the profound changes that have occurred in science, engineering and technology. In the first part of this paper, I present the work of one such scholar: Jerome Ravetz who, in collaboration with Silvio Funtowicz, has characterised what he calls "postnormal science".…
Descriptors: Biochemistry, Engineering, Scientists, Ethics
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Dai, Lenore L. – Chemical Engineering Education, 2007
Six Sigma is a buzz term in today's technology and business world and there has been increasing interest to initiate Six Sigma training in college education. We have successfully incorporated Six Sigma methodology training into a traditional chemical engineering course, Engineering Experimentation, at Texas Tech University. The students have…
Descriptors: Engineering Education, Chemical Engineering, Teaching Methods, Course Descriptions
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Tutunji, T. A.; Saleem, A.; Rabbo, S. A. – IEEE Transactions on Education, 2009
Mechatronics is a branch of engineering whose final product should involve mechanical movements controlled by smart electronics. The design and implementation of functional prototypes are an essential learning experience for the students in this field. In this paper, the guidelines for a successful mechatronics project class are presented,…
Descriptors: Undergraduate Study, Student Projects, Foreign Countries, Teaching Methods
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Dullien, F. A. L. – Chemical Engineering Education, 1982
Describes a course designed to introduce the average chemical engineer, who has only a minimum familiarity with the concepts of capillarity and flow through porous media (and none at all with reservoir engineering concepts) to petroleum production engineering. Includes course outline indicating technical content of the course. (Author/JN)
Descriptors: Chemical Engineering, College Curriculum, Course Descriptions, Engineering
Ketchum, Lloyd H., Jr. – Engineering Education, 1981
Describes a three-credit elective course at Notre Dame, Design of Environmental Health Control Systems, offered to senior civil engineering students and graduate students in health engineering. (CS)
Descriptors: Civil Engineering, College Curriculum, Course Descriptions, Engineering
Neumann, Edward S. – Engineering Education, 1981
Describes a two-semester project course required of all seniors at West Virginia University in the Department of Civil Engineering which involves team effort and encompasses four major areas of civil engineering: structures, geotechnical, transportation, and soils. (CS)
Descriptors: Civil Engineering, College Curriculum, College Seniors, Course Descriptions
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