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Kim, Nam Ju; Belland, Brian R.; Axelrod, Daryl – Interdisciplinary Journal of Problem-based Learning, 2019
Establishing optimal challenge enhances intrinsic motivation, interest, and the probability of success in the learning activity. In K-12 problem-based learning (PBL), students may struggle to address associated tasks that are beyond their current ability levels. This paper suggested learner-centered scaffolding systems (LSS) to improve K-12…
Descriptors: Problem Based Learning, Scaffolding (Teaching Technique), Elementary Secondary Education, Independent Study
Lee, Dabae; Huh, Yeol; Lin, Chun-Yi; Reigeluth, Charles Morgan – Contemporary Educational Technology, 2022
Personalized learning (PL) has been internationally promoted as a future direction of educational reform efforts. While there is growing evidence of PL enhancing learning outcomes, teachers reported having difficulty envisioning PL in practice. This national survey study investigated how PL is practiced in K-12 learner-centered schools in the U.S.…
Descriptors: Student Centered Learning, Individualized Instruction, Career Choice, Educational Change
Zha, Shenghua; Estes, Michele D.; Xu, Ling – Journal of Peer Learning, 2019
This meta-analytic study compared the effect of peer-led learning versus non peer-led learning on students' cognitive achievement in post-secondary education. Twenty-eight studies published in English from six countries between 1993 and 2017 were identified and used in the analysis. Result of the analysis on the random-effect model showed a…
Descriptors: Meta Analysis, Peer Teaching, Academic Achievement, Comparative Analysis
Odell, Michael R. L.; Kennedy, Teresa J.; Stocks, Eric – Interdisciplinary Journal of Problem-based Learning, 2019
Project/problem-based learning (PBL) can provide an effective model for school reform when implemented with fidelity. In the report, "Rising Above the Gathering Storm," it was recommended that if the U.S. is to remain competitive in the 21st-century economy, there must be a serious effort to "enlarge the pipeline of students who are…
Descriptors: Problem Based Learning, STEM Education, Educational Change, Models
Díaz Pérez, Wendy; Fields, Donna Lee; Marsh, David – Theory Into Practice, 2018
The continued emergence of content and language integrated learning (CLIL) is linked to how it creates, adopts, and leads to the design of innovative didactic processes. In systems, theory emergence occurs when features of smaller entities are brought together through interaction to form a larger ecosystem, one that acquires qualities not readily…
Descriptors: Second Language Learning, Second Language Instruction, Innovation, Barriers
Yang, Qi-Fan; Lin, Chi-Jen; Hwang, Gwo-Jen – Interactive Learning Environments, 2021
The present study reviewed the papers in the Scopus database relevant to flipped classrooms in all mathematics subject areas published up until 2018 from various dimensions. It was found that there has been a considerable number of studies on flipped classrooms in mathematics education in these years. The majority were conducted in university…
Descriptors: Flipped Classroom, Teaching Methods, Mathematics Instruction, Databases
von Wangenheim, Christiane Gresse; Hauck, Jean C. R.; Demetrio, Matheus Faustino; Pelle, Rafael; da Cruz Alves, Nathalia; Barbosa, Heliziane; Azevedo, Luiz Felipe – Informatics in Education, 2018
The development of computational thinking is a major topic in K-12 education. Many of these experiences focus on teaching programming using block-based languages. As part of these activities, it is important for students to receive feedback on their assignments. Yet, in practice it may be difficult to provide personalized, objective and consistent…
Descriptors: Programming Languages, Programming, Grading, Outcome Measures
Indiana Department of Education, 2018
As one of the national leaders in innovative public education strategies focused on future talent development, Indiana is positioned to create a sustainable, collaborative strategy for K-12 Science, Technology, Engineering, and Mathematics (STEM) instruction, curriculum, and career exploration and exposure. To provide a comprehensive, coordinated,…
Descriptors: Strategic Planning, Educational Planning, STEM Education, Elementary Secondary Education
Wood, Charles A.; Shia, Jackie; Kudlak, Lori; Ondeck, Laura – Journal of STEM Outreach, 2020
Since 1998, educators at Wheeling Jesuit University's Challenger Learning Center and Center for Educational Technologies have created realistic live simulations of science and medical emergencies in which students act as astronauts, scientists or doctors to solve STEM problems such as diagnosing diseases, stopping epidemics, picking a safe…
Descriptors: STEM Education, Videoconferencing, Web Sites, Educational Technology
Volante, Paulo; Jeldres, Rolando; Spero, Ken; Llorente, Claudia; Johanek, Michael – Research in Educational Administration & Leadership, 2020
This article describes the process of designing and creating six computer-based simulations for school leadership training programmes, in the context of the Chilean school system. For the design and construction of the simulations, six scenarios were selected from case analysis of principals with formal training and experience in different…
Descriptors: Decision Making, Instructional Leadership, Foreign Countries, Principals
King, Barbara – Mathematics Teacher Education and Development, 2019
Many teachers' experiences in problem-based classrooms are limited, therefore, mathematics teacher educators face a significant challenge when trying to inspire in-service teachers (ISTs) to teach through problem solving. To address this challenge, the professor in a mathematics education course designed and implemented an instructional model…
Descriptors: Problem Based Learning, Teaching Methods, Mathematics Instruction, Problem Solving
McCurdy, Regina P.; Nickels, Megan; Bush, Sarah B. – Electronic Journal for Research in Science & Mathematics Education, 2020
This study examines the interaction between students' expressions of empathy and the use of STEM integration in the science classroom. Third space theory provides the context from which this classroom ethnographic qualitative study took place, as it provided an environment in which discourse among students' sociocultural perspectives, life…
Descriptors: Problem Based Learning, Empathy, STEM Education, Science Instruction
Penuel, William R.; Turner, Michael L.; Jacobs, Jennifer K.; Horne, Katie; Sumner, Tamara – Science Education, 2019
The vision for science proficiency presented in "A Framework for K-12 Science Education" calls for significant shifts in both teaching and assessment. In this paper, we describe an effort to develop and validate a set of "proximal transfer tasks" for high school biology classrooms where teachers were implementing a…
Descriptors: Teaching Methods, Science Instruction, Guidelines, Elementary Secondary Education
Ark, Thomas J. Vander; Liebtag, Emily; McClennen, Nate – ASCD, 2020
"Place: it's where we're from; it's where we're going. . . . It asks for our attention and care. If we pay attention, place has much to teach us." With this belief as a foundation, "The Power of Place" offers a comprehensive and compelling case for making communities the locus of learning for students of all ages and…
Descriptors: Authentic Learning, Place Based Education, Learner Engagement, Educational Principles
Havice, William; Havice, Pamela; Waugaman, Chelsea; Walker, Kristin – Journal of Technology Education, 2018
The integration of science, technology, engineering, and mathematics (STEM) education, also referred to as integrative STEM education, is a relatively new interdisciplinary teaching technique that incorporates an engineering design-based learning approach with mathematics, science, technology, and engineering education (Sanders, 2010, 2012, 2013;…
Descriptors: STEM Education, Faculty Development, Professional Development, Administrators

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