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Palmer, Robert T., Ed.; Wood, J. Luke, Ed. – Routledge, Taylor & Francis Group, 2011
"Black Men in College" provides vital information about how to effectively support, retain, and graduate Black male undergraduates. This edited collection centers on the notion that Black male collegians are not a homogenous group; rather, they are representative of rarely acknowledged differences that exist among them. This valuable text suggests…
Descriptors: Academically Gifted, Black Colleges, Academic Persistence, Homosexuality
Symes, Mark; Ranmuthugala, Dev; Chin, Christopher; Carew, Anna – Online Submission, 2011
In the past, engineering programmes were developed with separate technical learning outcomes supplemented by generic attributes. The latter were in most cases a standalone set of attributes developed by academic institutions or professional societies overseeing engineering accreditation processes. Although the technical learning outcomes were well…
Descriptors: Problem Based Learning, Learning Processes, Engineering, Teaching Methods
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Stricker, David R. – Journal of STEM Teacher Education, 2011
This study was conducted to describe a high school engineering curriculum, identify teaching strategies used to increase math and science literacy, and discover challenges and constraints that occur during its development and delivery, as well as what strategies are used to overcome these obstacles. Semi-structured interviews were conducted with…
Descriptors: Curriculum Development, Interviews, Scientific Literacy, Teaching Methods
Atman, Cindy; Sheppard, Sheri; Fleming, Lorraine; Miller, Ron; Smith, Karl; Stevens, Reed; Streveler, Ruth; Loucks-Jaret, Tina; Lund, Dennis – Center for the Advancement of Engineering Education (NJ1), 2008
While engineering educators have engaged in many endeavors aimed at advancing engineering education and practice, much of this work has focused on broad curricular issues. Few studies focus on what it means to be an engineer or the process of what it takes to learn to engineer. In the last decade engineering educators have begun to focus on…
Descriptors: Undergraduate Students, Engineering, Engineering Education, College Faculty
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Keaffaber, Jeffrey J.; Palma, Ramiro; Williams, Kathryn R. – Journal of Chemical Education, 2008
Water chemistry is central to aquarium design, and it provides many potential applications for discussion in undergraduate chemistry and engineering courses. Marine aquaria and their life support systems feature many chemical processes. A life support system consists of the entire recirculation system, as well as the habitat tank and all ancillary…
Descriptors: Fundamental Concepts, Water Quality, Water, Chemistry
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Coll, Richard K.; Eames, Chris – Research in Science & Technological Education, 2008
This article sets the scene for this special issue of "Research in Science & Technological Education", dedicated to understanding higher education science and engineering learning communities. We examine what the literature has to say about the nature of, and factors influencing, higher education learning communities. A discussion of…
Descriptors: Higher Education, Technology Education, Communities of Practice, Literature Reviews
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Lillieskold, J.; Ostlund, S. – European Journal of Engineering Education, 2008
Being a modern electrical engineer does not only require state of the art skills in areas such as transfer and processing of information, electronics, systems engineering, and biomedical electrical engineering; it also requires generic engineering skills such as oral and written communication, team building, interpersonal skills, and the ability…
Descriptors: Engineering Education, Team Training, Engineering, Communication Skills
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Fredrick, Terri A. – Business Communication Quarterly, 2008
To help students develop teamwork skills, teachers should be aware of the strategies students already employ to assert authority and manage conflict. Researchers studying engineering students have identified two such approaches: transfer-of-knowledge sequences, in which students emulate teacher and pupil roles; and collaborative sequences, in…
Descriptors: Engineering Education, Teamwork, Conflict, Power Structure
Gross, Andrew C. – J Eng Educ, 1969
Descriptors: Engineering Education, Evaluation
Ahrens, Andreas; Wen, Melody Ling-Yu; Huang, Ya-Hui; Zascerinska, Jelena; Bassus, Olaf – Online Submission, 2010
The social dimension of Web 2.0 penetrates our society more thoroughly with the availability of broadband services. Aim of the following paper is to analyze the students' view on the relationship between social dimension of Web 2.0 technologies and e-learning within education. The meaning of the key concept of social dimension of Web 2.0 is…
Descriptors: Electronic Learning, Constructivism (Learning), Foreign Countries, Social Environment
Sheppard, Sheri; Atman, Cindy; Fleming, Lorraine; Miller, Ron; Smith, Karl; Stevens, Reed; Streveler, Ruth; Clark, Mia; Loucks-Jaret, Tina; Lund, Dennis – Center for the Advancement of Engineering Education (NJ1), 2010
The Center for the Advancement of Engineering Education (CAEE) began in January 2003 with a grant from the National Science Foundation (ESI-0227558). Two NSF Directorates, Engineering and Education and Human Resources, oversee the Center's work. The Academic Pathways Study (APS) is part of the Scholarship on Learning Engineering element of the…
Descriptors: Engineering Education, Longitudinal Studies, Undergraduate Students, Education Work Relationship
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Samuels, Peter – International Journal for Technology in Mathematics Education, 2010
Many developed nations have a serious problem with a shortage in the supply of numerate graduates, fuelled by their school students' negative attitudes towards their future study of mathematics. At the same time, the smart phone and other personal sensing technological devices are becoming commonplace amongst students in schools and universities.…
Descriptors: Futures (of Society), Mathematics Education, Negative Attitudes, Developed Nations
Morales, Hector – Techniques: Connecting Education and Careers (J1), 2010
Incorporating business skills such as problem-solving, public presentations, collaboration, and self-direction into STEM (science, technology, engineering and mathematics) subjects is an excellent way to build students' enthusiasm for these disciplines. When educators add workplace internships to the learning experience, they are well on their way…
Descriptors: Careers, Experiential Learning, Engineering, High School Seniors
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Dahm, Kevin; Newell, James; Newell, Heidi; Harvey, Roberta – Advances in Engineering Education, 2009
This paper discusses efforts to develop metacognition in teams of engineering students by: first, exploring personal learning patterns, and second, ongoing biweekly journaling exercises. Thirty-three junior and senior engineering students (30 chemical engineer, one each from mechanical, civil and electrical) working on semester-long projects in…
Descriptors: Metacognition, Engineering Education, College Faculty, Academic Advising
Springate, Iain; Harland, Jennie; Lord, Pippa; Straw, Suzanne – National Foundation for Educational Research, 2009
This evaluation aimed to provide: (1) findings on the effectiveness of different activities and approaches to delivering science, technology, engineering and mathematics (STEM), including leading practice and challenges; (2) a clear understanding of the impact of activities on pupils, teachers, the school and partners; and (3) a set of…
Descriptors: Foreign Countries, Program Evaluation, Science Education, Technology Education
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