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Phan Th? Ng?c L? – Interdisciplinary Journal of Problem-based Learning, 2023
In the trend of innovating university teaching methods in the direction of student-centered learning, this article proposes the application of problem-based learning (PBL) in teaching English communication skills to engineering students at University of Engineering and Technology, Vietnam National University. With a combination of qualitative and…
Descriptors: Instructional Effectiveness, Problem Based Learning, Communication Skills, Engineering Education
Bazler, Judith, Ed.; Van Sickle, Meta, Ed. – IGI Global, 2017
Curriculums for STEM education programs have been successfully implemented into numerous school systems for many years. Recently, the integration of arts education into such programs has proven to be significantly beneficial to students, resulting in a new method of teaching including science, technology, engineering, art, and mathematics.…
Descriptors: Art Education, STEM Education, Teaching Methods, Science Education
Amado, Nélia, Ed.; Carreira, Susana, Ed.; Jones, Keith, Ed. – Research in Mathematics Education, 2018
The innovative volume seeks to broaden the scope of research on mathematical problem solving in different educational environments. It brings together contributions not only from leading researchers, but also highlights collaborations with younger researchers to broadly explore mathematical problem-solving across many fields: mathematics…
Descriptors: Mathematics Education, Creativity, Teaching Methods, Problem Solving
Doorn, Neelke; Fahlquist, Jessica Nihlen – Bulletin of Science, Technology & Society, 2010
Traditionally, the management of technology has focused on the stages before or after development of technology. In this approach the technology itself is conceived as the result of a deterministic enterprise; a result that is to be either rejected or embraced. However, recent insights from Science and Technology Studies (STS) have shown that…
Descriptors: Engineering, Technology Education, Science and Society, Responsibility
Doppelt, Yaron – International Journal of Technology and Design Education, 2009
Infusing creative thinking competence through the design process of authentic projects requires not only changing the teaching methods and learning environment, but also adopting new assessment methods, such as portfolio assessment. The participants in this study were 128 high school pupils who have studied MECHATRONICS from 10th to 12th grades…
Descriptors: Portfolios (Background Materials), Engineering Education, Student Projects, Class Activities
Fagen, Adam P.; Labov, Jay B. – CBE - Life Sciences Education, 2007
This article describes a workshop, supported by the National Academy of Sciences and the National Institute of Health, that examines the current state of research about interventions that could significantly influence the participation of underrepresented minorities in pursuing research careers in the biomedical and behavioral sciences and other…
Descriptors: Careers, Scholarship, Workshops, Behavioral Sciences
Soomro, Safeeullah, Ed. – InTech, 2010
Since many decades Education Science and Technology has an achieved tremendous recognition and has been applied to variety of disciplines, mainly Curriculum development, methodology to develop e-learning systems and education management. Many efforts have been taken to improve knowledge of students, researchers, educationists in the field of…
Descriptors: Foreign Countries, Distance Education, Instructional Design, Higher Education
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
National Science Foundation, Arlington, VA. Div. of Undergraduate Education. – 1994
The Undergraduate Course and Curriculum Development Program of the National Science Foundation supports the development of courses in all disciplines to improve the quality of undergraduate courses and curricula in science, mathematics, engineering, and technology. The purpose of the program in Curriculum Development in Mathematics: Calculus and…
Descriptors: Demonstration Programs, Engineering Education, Federal Aid, Higher Education

Yager, Robert E.; Tamir, Pinchas – Science Education, 1993
Describes the Iowa science-technology-society (STS) models and goals. Characterizes and gives examples of using the STS approach in classrooms. Reports the results of four studies that have assessed the outcomes of learning with STS instruction. Identifies some problems concerning the future use of STS in schools. (PR)
Descriptors: Classroom Research, Elementary Secondary Education, Science and Society, Science Curriculum

James, Edwyn O.; And Others – Journal of Science Teacher Education, 1994
Discusses four topics: (1) provides some background to the science-technology society (STS) movement; (2) suggests an expanded STS curriculum model for topics related to energy education; (3) applies the expanded model to one example of curriculum development; and (4) draws implications from the model for developing curriculum and instruction on…
Descriptors: Curriculum Development, Energy Education, Models, Science and Society

Ramsey, John – Science Education, 1993
The premise of this report is that only the science-technology-society (STS) effort offers the potential for meeting the challenge of science for a general education. Presents the goals of STS issue-based instruction. (PR)
Descriptors: Educational Change, Elementary Secondary Education, Program Descriptions, Science and Society
Kleiner, Brian; Thomas, Nina; Lewis, Laurie – National Center for Education Statistics, 2007
This report presents findings from a 2006 national survey of all Title IV degree-granting 4- year postsecondary institutions on how teacher candidates within teacher education programs for initial licensure are being prepared to use educational technology once they enter the field. The "Educational Technology in Teacher Education Programs…
Descriptors: Preservice Teacher Education, Methods Courses, Teacher Education Programs, Institutional Characteristics
Thirunarayanan, M. O., Comp. – 1992
This handbook is intended to be a ready source of reference for educators who want to find out about STS (Science, Technology and Society). Ideas, strategies, and models for implementing STS in the classroom are provided in this volume. The articles that appear here reflect current thinking in the field of STS education. These articles encompass a…
Descriptors: Elementary Secondary Education, Environmental Education, Global Education, Integrated Activities
Nay, Fred W.; Malm, Loren D.; Malone, Bobby G.; Oliver, Brad E.; Saunders, Nancy G.; Thompson, Jay C., Jr. – 1997
College faculty can avoid investing valuable time and resources in inappropriate technologies by staying in step with technological progress. A "future proof" approach to technology recognizes and welcomes small failures, considering them part of the ongoing process of absorbing technology into the learning process. Future proofing attempts to…
Descriptors: College Faculty, Costs, Educational Technology, Faculty Development
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