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Model Switching in a Learning Environment based on Multiple Models

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Model Switching in a Learning Environment based on Multiple Models. / Sime, Julie-Ann.
In: Interactive Learning Environments, Vol. 5, No. 1, 1998, p. 109-124.

Research output: Contribution to Journal/MagazineJournal articlepeer-review

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Sime J-A. Model Switching in a Learning Environment based on Multiple Models. Interactive Learning Environments. 1998;5(1):109-124. doi: 10.1080/1049482980050108

Author

Sime, Julie-Ann. / Model Switching in a Learning Environment based on Multiple Models. In: Interactive Learning Environments. 1998 ; Vol. 5, No. 1. pp. 109-124.

Bibtex

@article{1fe989e1874544969d75fd976abb0c70,
title = "Model Switching in a Learning Environment based on Multiple Models",
abstract = "The introduction of qualitative modelling techniques into learning environments, and intelligent training systems, requires not just the development of tools and techniques for modelling and simulation but also some guidance on how to use qualitative models in learning environments. This paper describes the rationale behind the design of a simulation based learning environment, the Model Switching PROcess rig Demonstration System (MS-PRODS). Three qualitative and three quantitative simulations of the behavior of the physical system have been implemented using the ITSIE tools (Scott et al, 1990). The design of the learning environment is presented from the point of view of instruction and how the models are to be used to promote learning, in particular examining the model switching mechanism. This mechanism determines how to select and sequence the presentation of models to the learner during guided explorations of the domain. A knowledge based an alysis of the domain knowledge is combined with principles derived from Cognitive Flexibility Theory (Spiro 6 Jehng, 1990) to produce a generic design for a learning environment based on multiple models. The design and implementation of the learning environment is illustrated and a sample sequence of models presented. Finally, related work such as White & Frederiksen (1990) on model progression is discussed.",
author = "Julie-Ann Sime",
year = "1998",
doi = "10.1080/1049482980050108",
language = "English",
volume = "5",
pages = "109--124",
journal = "Interactive Learning Environments",
issn = "1049-4820",
publisher = "Routledge",
number = "1",

}

RIS

TY - JOUR

T1 - Model Switching in a Learning Environment based on Multiple Models

AU - Sime, Julie-Ann

PY - 1998

Y1 - 1998

N2 - The introduction of qualitative modelling techniques into learning environments, and intelligent training systems, requires not just the development of tools and techniques for modelling and simulation but also some guidance on how to use qualitative models in learning environments. This paper describes the rationale behind the design of a simulation based learning environment, the Model Switching PROcess rig Demonstration System (MS-PRODS). Three qualitative and three quantitative simulations of the behavior of the physical system have been implemented using the ITSIE tools (Scott et al, 1990). The design of the learning environment is presented from the point of view of instruction and how the models are to be used to promote learning, in particular examining the model switching mechanism. This mechanism determines how to select and sequence the presentation of models to the learner during guided explorations of the domain. A knowledge based an alysis of the domain knowledge is combined with principles derived from Cognitive Flexibility Theory (Spiro 6 Jehng, 1990) to produce a generic design for a learning environment based on multiple models. The design and implementation of the learning environment is illustrated and a sample sequence of models presented. Finally, related work such as White & Frederiksen (1990) on model progression is discussed.

AB - The introduction of qualitative modelling techniques into learning environments, and intelligent training systems, requires not just the development of tools and techniques for modelling and simulation but also some guidance on how to use qualitative models in learning environments. This paper describes the rationale behind the design of a simulation based learning environment, the Model Switching PROcess rig Demonstration System (MS-PRODS). Three qualitative and three quantitative simulations of the behavior of the physical system have been implemented using the ITSIE tools (Scott et al, 1990). The design of the learning environment is presented from the point of view of instruction and how the models are to be used to promote learning, in particular examining the model switching mechanism. This mechanism determines how to select and sequence the presentation of models to the learner during guided explorations of the domain. A knowledge based an alysis of the domain knowledge is combined with principles derived from Cognitive Flexibility Theory (Spiro 6 Jehng, 1990) to produce a generic design for a learning environment based on multiple models. The design and implementation of the learning environment is illustrated and a sample sequence of models presented. Finally, related work such as White & Frederiksen (1990) on model progression is discussed.

U2 - 10.1080/1049482980050108

DO - 10.1080/1049482980050108

M3 - Journal article

VL - 5

SP - 109

EP - 124

JO - Interactive Learning Environments

JF - Interactive Learning Environments

SN - 1049-4820

IS - 1

ER -