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Catherine T. Amelink; Dustin M. Grote; Matthew B. Norris; Jacob R. Grohs – Innovative Higher Education, 2024
As higher education institutions look to educate and graduate degree earners that have the skills and knowledge necessary to design, communicate, and collaborate in ways that allow for innovative solutions to complex socio-technical challenges, new approaches to educational efforts are being considered and implemented. Institutional responses have…
Descriptors: Educational Opportunities, Skill Development, Thinking Skills, STEM Education
Lubna; Suhirman; Saiful Prayogi – Journal of Education and e-Learning Research, 2023
The advent of digital technology has brought about a transformation in the field of education, from traditional face-to-face learning to distance learning. Despite this shift, it is important to prioritize the development of STEM (Science, Technology, Engineering, and Math) students' critical thinking (CT) abilities as an essential skill for…
Descriptors: STEM Education, Critical Thinking, Thinking Skills, Cognitive Style
Iqbal Ainur Rizki; Nadi Suprapto – Journal of Science Education and Technology, 2024
Fostering students' critical thinking skills is an urgent issue that requires immediate attention. One viable solution to address this is the implementation of project-oriented problem-based learning (POPBL) through the SR-STEM project. This research aims to describe the implementation, effectiveness, and student perception of the POPBL model…
Descriptors: Student Projects, Problem Based Learning, STEM Education, Critical Thinking
Cui, Zhihao; Ng, Oi-lam; Jong, Morris Siu-Yung – Educational Technology & Society, 2023
Grounded in problem-based learning and with respect to four mathematics domains (arithmetic, random events and counting, number theory, and geometry), we designed a series of programming-based learning tasks for middle school students to co-develop computational thinking (CT) and corresponding mathematical thinking. Various CT concepts and…
Descriptors: Computation, Thinking Skills, Mathematics Education, Problem Based Learning
David Slavit; Amber Simpson; Kristin Lesseig – North American Chapter of the International Group for the Psychology of Mathematics Education, 2023
We articulate a framework for delineating student thinking in active, STEM-rich learning environments. Researchers have identified ways of reasoning that relate to specific content areas and practices within each of the STEM disciplines. However, attempts at characterizing student thinking in transdisciplinary STEM environments remains in its…
Descriptors: STEM Education, Active Learning, Learning Processes, Thinking Skills
Tina Michelle Valenzuela – ProQuest LLC, 2022
Gender inequalities continue into the 21st century and STEM was a major area of emphasis. Educators need to focus on female students to build their self-efficacy and critical thinking skills. The purpose of this study was to determine if problem-based learning (PBL) improves female elementary students' self-efficacy and critical thinking skills.…
Descriptors: Problem Based Learning, Females, Self Efficacy, Thinking Skills
Birney, Lauren; McNamara, Denise M. – Journal of Curriculum and Teaching, 2021
The aim of this study is to showcase the use of incorporating problem-solving in a multifaceted, long-term investigation. New York Harbor and its estuaries are undergoing a major revitalization due to the efforts of the Curriculum and Community Enterprise for Environmental Restoration Project. Comprised of a network of local educational and…
Descriptors: Problem Solving, STEM Education, Natural Resources, Conservation (Environment)
Topsaka, Irfan; Altun Yalçin, Sema; Çakir, Zehra – Science Education International, 2022
This research aimed to explore the effect of problem-based STEM activities on middle school students' perceptions related to problem-solving skills and their critical thinking tendencies. The sample consisted of 81 students. A mixed method was employed in the research. The quantitative data collection tools were the "Critical Thinking…
Descriptors: Middle School Students, STEM Education, Problem Based Learning, Problem Solving
Noviansyah Kusmahardhika; Bela Mulia Wati; Triastono Imam Prasetyo – International Society for Technology, Education, and Science, 2023
21st-century skills can be applied to STEM education. The Merdeka Curriculum also has a passion to support teachers and schools in exploring and implementing STEM as a learning approach to improve student competence. The study aims to develop learning tools consisting of the syllabus, lesson plans, and student worksheets (SLS) that are valid and…
Descriptors: Creative Thinking, Cognitive Processes, Thinking Skills, Skill Development
Nanda Putri Pertiwi; Sulistyo Saputro; Sri Yamtinah; Azlan Kamari – Journal of Baltic Science Education, 2024
One of the skills needed in the 21st century is critical thinking skills that need to be developed for secondary school students. Currently, upper-secondary students' critical thinking skills are still low. To overcome the problem, websitebased E-module learning media was developed using a STEM approach with a Problem-Based Contextual Learning…
Descriptors: Foreign Countries, Secondary School Students, Secondary School Teachers, Secondary School Science
Lilly Alejandra Flores-Fiumara – ProQuest LLC, 2021
The U.S. is deficient in producing science, technology, engineering, and math (STEM) professionals. Competent problem solving is a desirable educational outcome pertinent to STEM education. Research has demonstrated the effectiveness of teaching task-specific problem-solving skills using behavior-analytic tactics. Learners have been taught to…
Descriptors: Verbal Communication, Problem Solving, Grade 3, Elementary School Students
Evans, Tanya; Klymchuk, Sergiy; Murphy, Priscilla E. L.; Novak, Julia; Stephens, Jason; Thomas, Mike – Higher Education Research and Development, 2022
This study describes an intervention that introduced a period of solving non-routine problems into tertiary STEM lectures. The aim was twofold: to attempt to increase student engagement and to introduce them to the kind of domain-free abstract reasoning that involves critical, creative and innovative thinking. The study involved over 600 STEM…
Descriptors: STEM Education, Learner Engagement, Abstract Reasoning, Critical Thinking
Thibaut, Lieve; Ceuppens, Stijn; De Loof, Haydée; De Meester, Jolien; Goovaerts, Leen; Struyf, Annemie; Boeve-de Pauw, Jelle; Dehaene, Wim; Deprez, Johan; De Cock, Mieke; Hellinckx, Luc; Knipprath, Heidi; Langie, Greet; Struyven, Katrien; Van de Velde, Didier; Van Petegem, Peter; Depaepe, Fien – European Journal of STEM Education, 2018
The shortage of graduates in Science, Technology, Engineering and Mathematics (STEM) has led to numerous attempts to increase students' interest in STEM. One emerging approach that has the potential to improve students' motivation for STEM is integrated STEM education. Nonetheless, the implementation of this new instructional strategy is not…
Descriptors: STEM Education, Secondary Education, Teaching Methods, Problem Based Learning
Hora, Matthew T.; Lee, Changhee – Wisconsin Center for Education Research, 2020
Competencies known variously as "soft" or "21st century skills" are increasingly linked to college students' academic and career success, and faculty with industry experience are hypothesized to be uniquely qualified to teach these skills. Yet little research exists on this topic. In this paper, we report findings from a…
Descriptors: 21st Century Skills, Transfer of Training, College Faculty, College Environment
Rupnik, Denis; Avsec, Stanislav – Journal of Baltic Science Education, 2020
Technological progress, globalization and demographic changes have brought about transformations that have increased economic and social inequalities. A structural transformation in education could support economic growth and sustainability and could also be associated with common actions in science, technology, engineering and mathematics,…
Descriptors: Instructional Effectiveness, Interdisciplinary Approach, STEM Education, Technology Education
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