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Hallström, Jonas; Norström, Per; Schönborn, Konrad J. – International Journal of STEM Education, 2023
The literature asserts that science, technology, engineering, and mathematics (STEM) education needs to be authentic. Although models and modelling provide a basis from which to increase authenticity by bridging the STEM disciplines, the idea of authentic STEM education remains challenging to define. In response, the aim of this study is to…
Descriptors: STEM Education, Authentic Learning, Delphi Technique, Models
Fern Sakamoto – International Journal of Research & Method in Education, 2024
The flexibility of the Delphi Technique has enabled its application across a wide range of fields to facilitate problem solving, decision-making and consensus-building. However, flexibility brings with it a corresponding lack of detailed methodological guidelines, and the rigour of Delphi studies has been questioned. This paper presents a recent…
Descriptors: Delphi Technique, Q Methodology, Mixed Methods Research, Problem Solving
Jones, Vita L.; Boone, Randall; Brandon, Regina R.; Dobbins, Nicole; Higgins, Kyle – Intervention in School and Clinic, 2022
Educators recognize that parental participation is a critical factor in the success of children within a school setting. This is particularly true for parents who have children with disabilities or who are from a culturally or linguistically diverse background. However, reaching out to these families can be a difficult task even for the most…
Descriptors: Delphi Technique, Parent Participation, Participative Decision Making, Students with Disabilities
Clegorne, Nicholas A.; Simmons, Denise R.; McCall, Cassandra – Journal of Leadership Education, 2021
The national society of professional engineers has said, "engineering has a direct and vital impact on the quality of life for all people." The demand for career-ready engineering professionals has been a consistent, high priority area for the U.S. workforce for the last several decades. Specifically, this call expresses a desire for…
Descriptors: Leadership Training, Leadership Effectiveness, Engineering Education, Delphi Technique
Kallia, Maria; van Borkulo, Sylvia Patricia; Drijvers, Paul; Barendsen, Erik; Tolboom, Jos – Research in Mathematics Education, 2021
Recently, computational thinking (CT) has attracted much research attention, especially within primary and secondary education settings. However, incorporating in mathematics or other disciplines is not a straightforward process and introduces many challenges concerning the way disciplines are organised and taught in school. The aim of this paper…
Descriptors: Delphi Technique, Mathematics Education, Thinking Skills, Elementary Secondary Education
Martínez, Yolanda García; Velázquez, Claudia Alvarado; Castillo, Rolando Delgado – Universal Journal of Educational Research, 2016
This paper pursues to define the pillars for designing the specific (SC) and optional curricula (OC) of Unit Operations and Processes (UOP) Discipline in the Chemical Engineering Program. To achieve this objective a methodology was developed, which was characterized by the participation of every member in the educational process: professors,…
Descriptors: Chemical Engineering, Engineering Education, Program Descriptions, Foreign Countries
Laius, A.; Post, A.; Rannikmäe, M. – Science Education International, 2015
This study solicits views about the goals of science education from a range of stakeholders within the science education community and society. It also compares students' needs, expressed through stakeholder expectations, with the current learning situation of gymnasium graduates. The study uses a Delphi method to solicit views with 111…
Descriptors: Foreign Countries, Science Teachers, Science Education, Delphi Technique
Rayfield, John; Murphy, Tim; Briers, Gary; Lewis, Lauren – Journal of Career and Technical Education, 2012
Researchers identified innovative agricultural education programs across the United States. A Delphi study was conducted with the teachers in innovative programs. According to the teachers, innovative programs in 2020 will use hands-on activities and will be run by highly motivated teachers. The purpose of innovative programs in the future will be…
Descriptors: Agricultural Education, Educational Innovation, Experiential Learning, Teacher Motivation
Wicklein, Robert; Smith, Phillip Cameron, Jr.; Kim, Soo Jung – Journal of Technology Education, 2009
Technology education is a field of study that seeks to promote technological literacy for all students. Wright and Lauda defined technology education as a program designed to help students "develop an understanding and competence in designing, producing, and using technological products and systems, and in assessing the appropriateness of…
Descriptors: Engineering, Technology Education, Technological Literacy, Public Education
Ritz, John M. – Journal of Technology Education, 2009
To develop meaningful instructional programs for technology education, goals need to be in place to direct the outcomes of curriculum development and teaching. Goals are program terminal outcomes that focus curriculum writers or teachers who structure content for learners. Goals provide direction so content can be delivered for long-term impact to…
Descriptors: Curriculum Development, Literacy, Technological Literacy, Technology Education
Harris, Kara S.; Rogers, George E. – Journal of Industrial Teacher Education, 2008
The central purpose of this study was to expand upon previous research in relation to competencies that are desired by university engineering faculty in their incoming freshman. This study used a Delphi technique as noted by Paige, Dugger, and Wolansky (1996) and Wicklein (1993) to identify and analyze what secondary education competencies should…
Descriptors: Delphi Technique, Engineering, Engineering Education, College Faculty
Shinn, Glen C.; Briers, Gary; Baker, Matt – Journal of Agricultural Education, 2008
In this study, the researchers used a classical Delphi method to re-examine the conceptual framework, definition, and knowledge base of the field. Seventeen engaged scholars, each representing the expert agricultural education community, reached consensus on defining the field of study, 10 knowledge domains, and 67 knowledge objects. The Delphi…
Descriptors: Delphi Technique, Learning Theories, Curriculum Development, Instructional Design
Loye, David – World Future Society Bulletin, 1983
By thinking about and trying to predict the future, we force ourselves to articulate our feelings and thoughts about that future. A technique using intuitive and logical thinking based on right brain-left brain differences is proposed to aid in decision making by both groups and individuals. (Author/IS)
Descriptors: Cerebral Dominance, Decision Making, Delphi Technique, Futures (of Society)

Wicklein, Robert C.; Rojewski, Jay W. – Journal of Industrial Teacher Education, 1999
A Delphi panel of 25 engineers, scientists, and educators rated the importance of mental methods for technology education curriculum. Defining, analyzing, and communicating were rated very important; 21 others were considered important. Results could form the basis of a mental processes-based curriculum involving solution of technological…
Descriptors: Cognitive Processes, Curriculum Development, Delphi Technique, Elementary Secondary Education
Erickson, Lawrence G. – Executive Educator, 1983
Suggests combining the Delphi technique and the nominal group process technique to improve the collective decision-making of school curriculum and other committees. Both methods require group members to respond in writing. A five-step agenda with sample questions illustrates the approach. (MLF)
Descriptors: Curriculum Development, Delphi Technique, Elementary Secondary Education, Group Discussion
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