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Pellegrino, James W. – Educational Measurement: Issues and Practice, 2020
Professor Gordon argues for a significant reorientation in the focus and impact of assessment in education. For the types of assessment activities that he advocates to prosper and positively impact education, serious attention must be paid to two important topics: (1) the conceptual underpinnings of the assessment practices we develop and use to…
Descriptors: Educational Assessment, Teaching Methods, Learning Processes, Validity
Peretz, Roee; Tal, Marina; Akiri, Effrat; Dori, Dov; Dori, Yehudit Judy – Instructional Science: An International Journal of the Learning Sciences, 2023
As science and technology create an ecosystem that is becoming increasingly more knowledge-intensive, complex, and interconnected, the next generation science standards include systems thinking and systems modeling among 21st skills that should be fostered. We examined the effect of an online cross-disciplinary learning process on the development…
Descriptors: Engineering Education, Science Education, Assignments, Interdisciplinary Approach
Klyce, Ann Marie – ProQuest LLC, 2023
Spatial skills, which represent the ability to mentally manipulate objects (Schneider & McGrew, 2012; Atit et al., 2020) have been shown to be correlated with entrance, persistence and success in STEM (Shea et al., 2001; Wai et al., 2009). Specifically, these skills have been shown to be necessary to geologists and geoscientists (Hegarty,…
Descriptors: Geology, Science Education, Spatial Ability, Concept Formation
Ezechiel Nsabayezu; Aloys Iyamuremye; Jean Pierre Nahimana; Janvier Mukiza; Edwige Kampire; Theophile Nsengimana – Discover Education, 2022
21st century teaching and learning emphasize the full engagement of students for improving their critical thinking and cooperation and the construction of the knowledge that demonstrates deep understanding. However, significant studies reported chemistry as a challenging subject caused of abstract concepts, phenomena and ways used in teaching and…
Descriptors: Chemistry, Science Instruction, Scoring Rubrics, Teaching Methods
Crawford, Angela R. – Investigations in Mathematics Learning, 2022
Learning trajectories are built upon progressions of mathematical understandings that are typical of the general population of students. As such, they are useful frameworks for exploring how understandings of diverse learners may be similar or different from their peers, which has implications for tailoring instruction. The purpose of this…
Descriptors: Learning Trajectories, Mathematics Instruction, Student Diversity, Guidelines
Johansson, Maria – History Education Research Journal, 2021
The aim of this article is to explore the processes of learning when students are engaged in intercultural historical learning (IHL), specifically how spaces of learning were, or were not, opened by students' struggle to construct meaning. Since IHL is complex, involving both intrinsic disciplinary and extrinsic curricular goals, it is vital to…
Descriptors: History Instruction, Learning Processes, Case Studies, Secondary School Students
Minshew, Lana Marie; Barber-Lester, Kelly Johnson; Derry, Sharon J.; Anderson, Janice L. – AERA Online Paper Repository, 2018
It is difficult to explore and understand how student knowledge develops with regard to complex systems, such as ecosystems. This study proposes the use of a Knowledge in Pieces(KiP) framework to analyze student knowledge and development in the domain of life sciences. The aim was to utilize quantitative and qualitative analyses of student…
Descriptors: Learning Processes, Guidelines, Physical Sciences, Middle School Students
Bossé, Michael J.; Bayaga, Anass; Fountain, Catherine; Lynch-Davis, Kathleen; Preston, Ron; Adu-Gyamfi, Kwaku – International Electronic Journal of Elementary Education, 2018
This study applies the Mathematics Acquisition Framework (MAF) (Bossé, Ringler, Bayaga, Fountain, & Young, 2018) to investigate fifth- through seventh-grade students' comprehension of fractions and decimals and examines how students build understanding of mathematical principles and concepts regarding fractions and decimals. Based on case…
Descriptors: Mathematics Education, Grade 5, Grade 6, Grade 7
Khosa, Deep K.; Volet, Simone E. – Metacognition and Learning, 2014
This paper addresses the nature and significance of productive engagement in cognitive activity and metacognitive regulation in collaborative learning tasks that involve complex scientific knowledge. A situative framework, combining the constructs of social regulation and content processing, provided the theoretical basis for the development of a…
Descriptors: Cooperative Learning, Metacognition, Science Instruction, Scientific Concepts
Nuttall, Dan – Teaching History, 2013
How can we help pupils integrate history into coherent "Big Pictures" or mental frameworks? Building on traditions of classroom research and theorising reported in earlier editions of Teaching History, Dan Nuttall reports how his department set out to help Year 9 build a coherent big picture of twentieth-century history that would…
Descriptors: Guidelines, Futures (of Society), History, History Instruction
Tytler, Russell; Prain, Vaughan – International Journal of Science Education, 2010
Recent accounts by cognitive scientists of factors affecting cognition imply the need to reconsider current dominant conceptual theories about science learning. These new accounts emphasize the role of context, embodied practices, and narrative-based representation rather than learners' cognitive constructs. In this paper we analyse data from a…
Descriptors: Concept Formation, Cognitive Psychology, Science Education, Learning Processes
Peer reviewedRowe, Bobby L. – Studies in Art Education, 1974
A brief survey of the investigations of concept learning in the behavioristic trend in psychology offers some guidelines for clarity in studies of visual concept learning in art. (Author/RK)
Descriptors: Art Education, Behavior Patterns, Concept Formation, Definitions
Baggett, Patricia – 1983
This paper outlines four principles for preparing multimedia instructional sequences and, where necessary, the experimental methods for applying the principles successfully. Covered first are the criteria for good terminology for unfamiliar objects, actions, and situations, with methods for deriving such terminology. In the next section guidelines…
Descriptors: Audiovisual Aids, Audiovisual Instruction, Classroom Techniques, Concept Formation

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