Vytautas Štuikys Renata Burbaitė Štuikys Smart STEM-Driven Computer Science Education

Smart STEM-Driven Computer Science Education

von Vytautas Štuikys Renata Burbaitė

Theory, Methodology and Robot-based Practices

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Beschreibung

At the centre of the methodology used in this book is STEM learning variability space that includes STEM pedagogical variability, learners’ social variability, technological variability, CS content variability and interaction variability. To design smart components, firstly, the STEM learning variability space is defined for each component separately, and then model-driven approaches are applied. The theoretical basis includes feature-based modelling and model transformations at the top specification level and heterogeneous meta-programming techniques at the implementation level.

Practice includes multiple case studies oriented for solving the task prototypes, taken from the real world, by educational robots. These case studies illustrate the process of gaining interdisciplinary knowledge pieces identified as S-knowledge, T-knowledge, E-knowledge, M-knowledge or integrated STEM knowledge and evaluate smart components from the pedagogical and technological perspectives based ondata gathered from one real teaching setting. Smart STEM-Driven Computer Science Education: Theory, Methodology and Robot-based Practices outlines the overall capabilities of the proposed approach and also points out the drawbacks from the viewpoint of different actors, i.e. researchers, designers, teachers and learners.


At the centre of the methodology used in this book is STEM learning variability space that includes STEM pedagogical variability, learners’ social variability, technological variability, CS content variability and interaction variability. To design smart components, firstly, the STEM learning variability space is defined for each component separately, and then model-driven approaches are applied. The theoretical basis includes feature-based modelling and model transformations at the top specification level and heterogeneous meta-programming techniques at the implementation level.

Practice includes multiple case studies oriented for solving the task prototypes, taken from the real world, by educational robots. These case studies illustrate the process of gaining interdisciplinary knowledge pieces identified as S-knowledge, T-knowledge, E-knowledge, M-knowledge or integrated STEM knowledge and evaluate smart components from the pedagogical and technological perspectives based ondata gathered from one real teaching setting. Smart STEM-Driven Computer Science Education: Theory, Methodology and Robot-based Practices outlines the overall capabilities of the proposed approach and also points out the drawbacks from the viewpoint of different actors, i.e. researchers, designers, teachers and learners.  


Reviews exhaustively trends and challenges of the STEM paradigm in the context of K-12 education Provides a framework of integrating STEM into Computer Science (CS) education based on using robotics Treats from the automation perspective theoretical, methodological and practical aspects in designing, preparing and using of smart components to support STEM-driven CS education effectively Components include the smart generative learning content, smart generative scenario, personal generative libraries for students and teachers, all together integrated within the smart educational environment

Autor*in

Vytautas Štuikys

Themen in »Smart STEM-Driven Computer Science Education«

STEM-driven CS Education Robot-based Smart Educational Environment Generative Learning Scenarios Personal Generative Library STEM-driven CS Learning Practice

Stimmen zu »Smart STEM-Driven Computer Science Education«

Details

ISBN: 9783319784854
Verlag: Springer International Publishing
Erscheinung: 28.06.2018

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