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Gropper, George L. – Educational Technology, 2015
Proliferation of prescriptive models in an "engineering" field is not a sign of its maturity. Quite the opposite. Materials engineering, for example, meets the criterion of parsimony. Sadly, the very large number of models in "instructional design," putatively an engineering field, raises questions about its status. Can the…
Descriptors: Instructional Design, Models, Engineering, Research Needs
Horiguchi, Tomoya; Tomoto, Takahito; Hirashima, Tsukasa – Research and Practice in Technology Enhanced Learning, 2015
In science education, conventional problem practice hardly helps students reach "conceptual understanding" with which they can solve various problems by making appropriate models of target systems. Students often superficially read the solution of a problem and apply it wrongly to others without understanding the model. It is difficult…
Descriptors: Concept Formation, Problem Solving, Models, Guidelines
Castro, Francisco Enrique Vicente; Adjei, Seth; Colombo, Tyler; Heffernan, Neil – International Educational Data Mining Society, 2015
A great deal of research in educational data mining is geared towards predicting student performance. Bayesian Knowledge Tracing, Performance Factors Analysis, and the different variations of these have been introduced and have had some success at predicting student knowledge. It is worth noting, however, that very little has been done to…
Descriptors: Models, Student Behavior, Intelligent Tutoring Systems, Data Analysis
Assmus, Daniela; Förster, Frank; Fritzlar, Torsten – North American Chapter of the International Group for the Psychology of Mathematics Education, 2014
The aim of the paper is to provide a process model to evaluate mathematical problem solving by analogy, in order to better determine at which point and under what conditions a learner is prompted to use analogies. The model is a theoretical construct. Qualitative results of an empirical study are used to underline and illustrate core aspects of…
Descriptors: Mathematics Education, Mathematics Skills, Problem Solving, Logical Thinking
Little, Priscilla M.; Irby, Merita; Borah, Poonam; Pittman, Karen – Forum for Youth Investment, 2021
Because researchers know so much more about the brain and development than they did when the 20th-century U.S. education system was designed, this knowledge can now be used to design a system in which all individuals are able to take advantage of high-quality opportunities for transformative learning and development. This playbook suggests a set…
Descriptors: Transformative Learning, Educational Innovation, Models, Critical Thinking
Colby, Jolie Chrisanne – ProQuest LLC, 2021
This dissertation explored the roles schools can play in the successful outcomes of large carnivore or keystone reintroduction projects. Schools are more than centers for knowledge acquisition--they connect their community and disseminate information quickly to a wide audience. This study took place in California's Eastern Sierra Nevada, a…
Descriptors: Environmental Education, Wildlife, Units of Study, Grade 6
Farmer, Elizabeth M. Z.; Seifert, Heather; Wagner, H. Ryan; Burns, Barbara J.; Murray, Maureen – Journal of Emotional and Behavioral Disorders, 2017
Group homes are a frequently used but controversial treatment setting for youth with mental health problems. Within the relatively sparse literature on group homes, there is some evidence that some models of treatment may be associated with more positive outcomes for youth. This article explores this possibility by examining differences across…
Descriptors: Outcomes of Treatment, Mental Health, Intervention, Youth
Neumann, Yoram; Neumann, Edith; Lewis, Shelia – Contemporary Issues in Education Research, 2017
This study integrated the Spiral Curriculum approach into the Robust Learning Model as part of a continuous improvement process that was designed to improve educational effectiveness and then assessed the differences between the initial and integrated models as well as the predictability of the first course in the integrated learning model on a…
Descriptors: Masters Programs, Integrated Curriculum, Models, Online Courses
Saucerman, Jenny; Ruis, A. R.; Shaffer, David Williamson – Journal of Learning Analytics, 2017
Learning to solve "complex problems"--problems whose solutions require the application of more than basic facts and skills--is critical to meaningful participation in the economic, social, and cultural life of the digital age. In this paper, we use a theoretical understanding of how professionals use reflection-in-action to solve complex…
Descriptors: Reflection, Problem Solving, Automation, Skill Development
Abrahamson, Dor; Kapur, Manu – Instructional Science: An International Journal of the Learning Sciences, 2018
Whereas some educational designers believe that students should learn new concepts through explorative problem solving within dedicated environments that constrain key parameters of their search and then support their progressive appropriation of empowering disciplinary forms, others are critical of the ultimate efficacy of this discovery-based…
Descriptors: Discovery Learning, Educational Research, Instructional Design, Educational Philosophy
Newman, Dina L.; Stefkovich, Megan; Clasen, Catherine; Franzen, Margaret A.; Wright, L. Kate – Biochemistry and Molecular Biology Education, 2018
The essence of molecular biology education lies in understanding of gene expression, with subtopics including the central dogma processes, such as transcription and translation. While these concepts are core to the discipline, they are also notoriously difficult for students to learn, probably because they cannot be directly observed. While nearly…
Descriptors: Models, Molecular Biology, Hands on Science, Manipulative Materials
Hanyak, Michael E., Jr. – Advances in Engineering Education, 2015
In an introductory chemical engineering course, the conceptual framework of a holistic problem-solving methodology in conjunction with a problem-based learning approach has been shown to create a learning environment that nurtures deep learning rather than surface learning. Based on exam scores, student grades are either the same or better than…
Descriptors: Chemical Engineering, Problem Solving, Teaching Methods, Problem Based Learning
Nicolaou, Chr. Th.; Evagorou, M.; Lymbouridou, Chr. – Science Education International, 2015
Despite the belief that emotions are important in the learning process, research in the area of emotions and learning, especially in science, is scant. Modelling and SSI argumentation have shared with respect to the emphasis in recent science standards reports as core scientific practices that need to be part of science teaching and learning. Even…
Descriptors: Elementary School Students, Science Instruction, Elementary School Science, Interviews
Cutucache, Christine E.; Luhr, Jamie L.; Nelson, Kari L.; Grandgenett, Neal F.; Tapprich, William E. – International Journal of STEM Education, 2016
Background: The Nebraska Science, Technology, Engineering, and Mathematics 4U (NE STEM 4U) program was initiated at the University of Nebraska at Omaha (UNO) in 2013. NE STEM 4U is a student-run, faculty-led program facilitating problem-based learning (PBL) sessions in science, technology, engineering, and mathematics (STEM) for socioeconomically…
Descriptors: STEM Education, Disadvantaged Youth, Problem Based Learning, Partnerships in Education
Rasi, Päivi M.; Poikela, Sari – Interdisciplinary Journal of Problem-based Learning, 2016
Higher education faces the challenges of bridging education and authentic work. In addition, it needs to respond to the highly multimodal and participatory communication and content creation practices, preferences, and cultures of present and future students. The aim of our article is to discuss how the use of video triggers and video production…
Descriptors: Problem Based Learning, Higher Education, Continuing Education, Video Technology

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