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Adapting Interactive Learning Environments to Student Competences

- The Case for Complex Dynamic Systems

Adapting Interactive Learning Environments to Student Competences

- The Case for Complex Dynamic Systems
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This monograph focuses on the design of personalized and adaptive online interactive learning environment (OILE) to enhance students'' learning in and about complex dynamic systems (CDS). Numerous studies show that students experience difficulties when learning in and about CDS. The difficulties are due to challenges originating from a) the structural complexity of CDS, (b) the production of dynamic behavior from the underlying systems structure, and (c) methods, techniques and tools employed in the analysis of such systems. Despite the fact that studies have uncovered such learning challenges, it is still not well understood how we may effectively address these challenges. In this monograph, the authors provide some answers as to how we may best improve our cognitive capabilities to meet these challenges by way of effective instructional methods, techniques, and tools and their implementation in the form of an OILE. 

The OILE developed for this purpose, builds on a five-step holistic instructional design framework; identification of instructional design models, identification of authentic learning material, identification of instructional methods, identification of instructional techniques, and design of the interface and implementation of the tool. In this OILE development, six well-documented instructional design models were considered; a four component instructional design, first principles of instruction, constructivists learning environment, task centered instruction, cognitive apprenticeship, and elaboration theory.

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This monograph focuses on the design of personalized and adaptive online interactive learning environment (OILE) to enhance students'' learning in and about complex dynamic systems (CDS). Numerous studies show that students experience difficulties when learning in and about CDS. The difficulties are due to challenges originating from a) the structural complexity of CDS, (b) the production of dynamic behavior from the underlying systems structure, and (c) methods, techniques and tools employed in the analysis of such systems. Despite the fact that studies have uncovered such learning challenges, it is still not well understood how we may effectively address these challenges. In this monograph, the authors provide some answers as to how we may best improve our cognitive capabilities to meet these challenges by way of effective instructional methods, techniques, and tools and their implementation in the form of an OILE. 

The OILE developed for this purpose, builds on a five-step holistic instructional design framework; identification of instructional design models, identification of authentic learning material, identification of instructional methods, identification of instructional techniques, and design of the interface and implementation of the tool. In this OILE development, six well-documented instructional design models were considered; a four component instructional design, first principles of instruction, constructivists learning environment, task centered instruction, cognitive apprenticeship, and elaboration theory.

Produktdetaljer
Sprog: Engelsk
Sider: 66
ISBN-13: 9783030882884
Indbinding: Paperback
Udgave:
ISBN-10: 3030882888
Udg. Dato: 3 nov 2021
Længde: 0mm
Bredde: 155mm
Højde: 235mm
Forlag: Springer Nature Switzerland AG
Oplagsdato: 3 nov 2021
Forfatter(e) Erling Moxnes, Aklilu Tilahun Tadesse, Pal Ingebright Davidsen


Kategori Kybernetik og systemteori


ISBN-13 9783030882884


Sprog Engelsk


Indbinding Paperback


Sider 66


Udgave


Længde 0mm


Bredde 155mm


Højde 235mm


Udg. Dato 3 nov 2021


Oplagsdato 3 nov 2021


Forlag Springer Nature Switzerland AG

Kategori sammenhænge