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Liu, Leping; Chen, Li-Ting; Li, Wenzhen – International Journal of Technology in Teaching and Learning, 2021
With new technology tools available for educators and students, effectively using these tools to improve teaching and learning has become a constant theme for research and practice in the field of education. In this study, case-analysis was conducted on 305 published studies (from 140 peer-reviewed regional, national and international journals)…
Descriptors: Educational Technology, STEM Education, Mathematics Education, Science Education
Van De Bogart, Kevin L. – ProQuest LLC, 2017
Instruction in analog electronics is an integral component of many physics and engineering programs, and is typically covered in courses beyond the first year. While extensive research has been conducted on student understanding of introductory electric circuits, to date there has been relatively little research on student learning of analog…
Descriptors: Electronics, Physics, Science Education, Engineering Education
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
Kopelevich, Dmitry I.; Ziegler, Kirk J.; Lindner, Angela S.; Bonzongo, Jean-Claude J. – Chemical Engineering Education, 2012
Because rapid growth of nanotechnology is expected to lead to intentional and non-intentional releases, future engineers will need to minimize negative environmental and health impacts of nanomaterials. We developed two upper-level undergraduate courses centered on life-cycle assessment of nanomaterials. The first part of the course sequence…
Descriptors: Curriculum Design, Engineering Education, Higher Education, Science Education
Walsh, Lynda – Written Communication, 2010
In this article, the author proposes a methodology for the rhetorical analysis of scientific, technical, mathematical, and engineering (STEM) discourse based on the common topics (topoi) of this discourse. Beginning with work by Miller, Prelli, and other rhetoricians of STEM discourse--but factoring in related studies in cognitive linguistics--she…
Descriptors: Science Education, Technology Education, Engineering Education, Mathematics Education
Schnittka, Christine G. – Journal of Pre-College Engineering Education Research, 2012
Currently, unless a K-12 student elects to enroll in technology-focused schools or classes, exposure to engineering design and habits of mind is minimal. However, the "Framework for K-12 Science Education," published by the National Research Council in 2011, includes engineering design as a new and major component of the science content…
Descriptors: Engineering Education, Track System (Education), Science Education, Elementary Secondary Education

Levin, James; And Others – Science Teacher, 1994
Discusses what high school students with an interest in engineering should know before pursuing a degree in engineering. Also provides implications for high school science teachers. (ZWH)
Descriptors: Course Content, Engineering, Engineering Education, Required Courses

Mewis, Jan – Chemical Engineering Education, 1984
Discusses aims, objectives, and content of a safety course for chemical engineering students. Course emphasizes awareness of hazards, basic concepts and principles of safety engineering, and the ability to recognize, assess, and remedy specific risks occurring in chemical plants. Course implementation is also discussed. (JN)
Descriptors: Chemical Engineering, Course Content, Course Objectives, Engineering Education

Liu, Y. A. – Chemical Engineering Education, 1980
Presents a detailed outline of topics and lectures and references for a survey course on process synthesis at Auburn University, Alabama. (JN)
Descriptors: Chemistry, Course Content, Course Descriptions, Energy
Sidey, D.; And Others – 1978
Fracture mechanics is a multidisciplinary topic which is being introduced to undergraduate engineering students in such courses as materials engineering. At a recent Conference on Fracture held at the University of Waterloo, a session was devoted to fracture education. Some of the ideas presented at that session are included and discussed here.…
Descriptors: Conference Reports, Course Content, Curriculum Design, Engineering

Tock, Richard W.; Brewer, Charles Bill – Chemical Engineering Education, 1979
Reports on a technical writing course which is conducted in conjunction with the senior-level unit operations course required of chemical engineering students. (BB)
Descriptors: Chemistry, Course Content, Engineering Education, Higher Education

Kabel, Robert L. – Chemical Engineering Education, 1978
Describes the genesis, development, implementation, and evaluation of a graduate level kinetics course based on selected influential papers in chemical reaction engineering. (BB)
Descriptors: Chemistry, College Science, Course Content, Curriculum

Kimmel, Howard S.; Lambert, Don G. – Journal of Chemical Education, 1973
Outlines a physical chemistry course which is designed for civil engineering juniors and seniors to solve environmental problems. (CC)
Descriptors: Chemistry, College Science, Course Content, Curriculum Design

Sawin, Herbert H.; Reif, Rafael – Chemical Engineering Education, 1983
Describes a course, taught jointly by electrical/chemical engineering departments at the Massachusetts Institute of Technology, designed to teach the fundamental science of plasma processing as well as to give an overview of the present state of industrial processes. Provides rationale for course development, texts used, class composition, and…
Descriptors: Chemical Engineering, Chemistry, Course Content, Course Descriptions

Soong, David S. – Chemical Engineering Education, 1981
Following a brief introduction to the origin and nature of a course in polymer rheology and melt processing, discusses course objectives, detailed content, teaching strategies, and observations/experiences from its first offering. (SK)
Descriptors: Chemistry, College Science, Course Content, Course Descriptions