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Garcez, Carolina Montanha; Vitor, Davi Henrique Curia; Bortoli, Mirela Marchiori; Vieira, Lucas Augusto; Prado, Danielle Goncalves De Oliveira; Ramires, Thiago Gentil – International Society for Technology, Education, and Science, 2020
The university aims to form professionals through transmission and dissemination of knowledge, therefore, the Extension, as a tool of the universities, has a major role contributing to improvements in the learning and teaching process. The Extension projects are extremely important for The Federal Technological University of Paraná (UTFPR), since…
Descriptors: Public Schools, Private Schools, Universities, Competition
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Leahy, Keelin; Phelan, Pat – International Journal of Technology and Design Education, 2014
In Ireland, Technology Education's structure and organisation across the levels of education is not delivered or governed in a coherent manner. Technology Education in primary level education, for students between 5 and 12 years of age, does not explicitly exist as a separate subject. In primary level education, Social, Environmental and…
Descriptors: Technology Education, Foreign Countries, Design, Scientific Research
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Holstein, Krista A.; Keene, Karen Allen – Teacher Education and Practice, 2013
There have been recent calls for the integration of STEM (science, technology, engineering, and mathematics) in K-12 education. In this collective case study, we describe three teachers' implementations of a new STEM curriculum that integrates mathematics, engineering, and technology. These teachers ranged in their faithfulness to the curriculum…
Descriptors: STEM Education, Curriculum Implementation, Barriers, Performance Factors
Katehi, Linda, Ed.; Pearson, Greg, Ed.; Feder, Michael, Ed. – National Academies Press, 2009
Engineering education in K-12 classrooms is a small but growing phenomenon that may have implications for engineering and also for the other STEM subjects--science, technology, and mathematics. Specifically, engineering education may improve student learning and achievement in science and mathematics, increase awareness of engineering and the work…
Descriptors: Engineering Education, Engineering, Technological Literacy, Educational Change
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Havice, Bill; Marshall, Jerry – Technology Teacher, 2009
This article describes a symposium which promotes technological literacy through science, technology, engineering, and mathematics (STEM). The three-day symposium titled, "The Anderson, Oconee, Pickens Symposium on Teaching and Learning STEM Standards for the 21st Century," was held August 4-6, 2008 at the Tri-County Technical College…
Descriptors: Conferences (Gatherings), Technological Literacy, Engineering Education, Program Descriptions
Jones, Brent M. – Journal of Advanced Academics, 2009
Unless we sharply increase the training of homegrown math and science talents, we may suffer negative economic and technological consequences. One means of addressing this challenge has been through specialty schools devoted to science, technology, engineering, and mathematics (STEM) training. In 1980, the North Carolina School of Science and…
Descriptors: Talent, Residential Schools, Academic Achievement, Mathematics Education
Defore, Jesse J. – Engineering Education, 1974
Presents contemporary thinking on the mathematics requirements in the engineering technology curriculum. Includes a discussion of institutional practices in mathematics instruction pointing out similarities in content, quantity, scope, and nature of mathematical offerings. (GS)
Descriptors: Accreditation (Institutions), College Mathematics, Curriculum, Engineering Education
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Pendergraft, Katy; Daugherty, Michael K.; Rossetti, Charles – Technology Teacher, 2009
In an effort to develop an engineering design project that would deliver the necessary content and reach out to the English Language Learner (ELL) community, faculty in the Engineering Academy at Springdale High School in Springdale, Arkansas instituted the ELL Engineering Collaborative. The ELL Engineering Collaborative has four primary goals…
Descriptors: High Schools, Mentors, Parent Participation, Parent School Relationship
National Science Foundation, Washington, DC. – 1984
This document provides information for individuals who want to submit proposals in areas funded by the National Science Foundation (NSF). These areas include: (1) mathematical and physical sciences; (2) engineering; (3) biological, behavioral, and social sciences; (4) astronomical, atmospheric, earth, and ocean sciences; (5) scientific,…
Descriptors: Engineering, Engineering Education, Evaluation Criteria, Federal Programs
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Starkman, Neal – T.H.E. Journal, 2007
US students continue to lag behind the rest of the world in science, technology, engineering, and math--taken together, STEM. Even as the US falls further and further behind other countries in these four critical academic areas, not everyone sees it as a crisis. Fortunately, there are those who do. One organization out front on the issue is,…
Descriptors: Middle Schools, Problem Solving, Technology Education, Engineering Education
Malcom, Shirley Mahaley, Comp.; And Others – 1976
This document provides an alphabetical list of programs designed to improve the science education of minority groups and to increase their participation in science and science-related careers. Minority refers to such racial and/or ethnic groups as Blacks, Chicanos/Mexican Americans, Native Americans/American Indians, and Puerto Ricans. Programs in…
Descriptors: Agriculture, Biological Sciences, Elementary Secondary Education, Engineering
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Pinto, J. S.; Oliveira, M. P.; Anjo, A. B.; Pais, S. I. Vieira; Isidro, R. O.; Silva, M. H. – International Journal of Mathematical Education in Science and Technology, 2007
Since 1989, the Mathematics Education Project (PmatE--Projecto Matematica Ensino) has developed several strategies to improve the success of students in Mathematics. The most important of these are mathematical games for all grades above primary school. The online evaluation of Mathematics subjects is one of PmatE's goals. The implementation of an…
Descriptors: Mathematics Education, Engineering, Mathematics Achievement, Computer Assisted Testing
Mercer, Tenisha – Black Issues in Higher Education, 2002
Describes the Detroit Area Pre-College Engineering Program (DAPCEP), which places African American students on the path to careers in math, science, and engineering. As a result, 90 percent of its students go on to college, and more than 60 percent pursue technology degrees. (EV)
Descriptors: Black Students, College Preparation, Developmental Studies Programs, Engineering Education
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Beaudin, Michel – International Journal of Computer Algebra in Mathematics Education, 2000
Presents a portfolio of examples that illustrate how TI-92 technology has been used to support an undergraduate engineering mathematics course by changing it from student-passive to student-active. The instant feedback and variety of possible representations enables a concepts- and applications-driven interactive teaching approach which has led to…
Descriptors: Calculators, Computer Uses in Education, Engineering Education, Higher Education
Dorf, Richard C. – 1978
Objectives and results are given of a program designed to prepare women for employment in engineering at a level comparable to current B.S. graduates. The program endeavored to create a learning situation in which rigorous academic standards would be maintained, while at the same time taking into account the realities of the lives of re-entry…
Descriptors: Employed Women, Employment, Engineering Education, Job Development
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