Programming and Computational Thinking in Mathematics Education: An Integration Towards AI Awareness

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Programming and Computational Thinking in Mathematics Education : An Integration Towards AI Awareness. / Tamborg, Andreas Lindenskov; Elicer, Raimundo; Spikol, Daniel.

I: KI - Künstliche Intelligenz, Bind 36, 2022, s. 73–81.

Publikation: Bidrag til tidsskriftTidsskriftartikelForskningfagfællebedømt

Harvard

Tamborg, AL, Elicer, R & Spikol, D 2022, 'Programming and Computational Thinking in Mathematics Education: An Integration Towards AI Awareness', KI - Künstliche Intelligenz, bind 36, s. 73–81. https://doi.org/10.1007/s13218-021-00753-3

APA

Tamborg, A. L., Elicer, R., & Spikol, D. (2022). Programming and Computational Thinking in Mathematics Education: An Integration Towards AI Awareness. KI - Künstliche Intelligenz, 36, 73–81. https://doi.org/10.1007/s13218-021-00753-3

Vancouver

Tamborg AL, Elicer R, Spikol D. Programming and Computational Thinking in Mathematics Education: An Integration Towards AI Awareness. KI - Künstliche Intelligenz. 2022;36:73–81. https://doi.org/10.1007/s13218-021-00753-3

Author

Tamborg, Andreas Lindenskov ; Elicer, Raimundo ; Spikol, Daniel. / Programming and Computational Thinking in Mathematics Education : An Integration Towards AI Awareness. I: KI - Künstliche Intelligenz. 2022 ; Bind 36. s. 73–81.

Bibtex

@article{737ba6ae73db410580e593ae893b4723,
title = "Programming and Computational Thinking in Mathematics Education: An Integration Towards AI Awareness",
abstract = "Artificial intelligence (AI) has become a part of everyday interactions with pervasive digital systems. This development increasingly calls for citizens to have a basic understanding of programming and computational thinking (PCT). Accordingly, countries worldwide are implementing several approaches to integrate critical elements of PCT into K-9 education. However, these efforts are confronted by difficulties that the PCT concepts are for students to grasp from purely theoretical perspectives. Recent literature indicates that the playful nature is particularly important when novices from both both early and higher education are to learn AI. These playful activities are characterised by setting a scene where PCT concepts such as algorithms, data processing, and simulations are meant to draw on to understand better how AI is integrated into our everyday digital life. This discussion paper analyses playful PCT resources developed around the game rock-paper-scissors developed in the UK and Denmark. Resources from these countries are interesting starting points since both have been or are in the process of integrating PCT as part of the K-9 curriculum. The central discussion raised by the paper, is the nature of the integration between mathematics and PCT in these tasks. These resources provide opportunities for discussion of how we may better integrate PCT and mathematics from the perspective of both subjects to build a solid foundation for a critical understanding of AI interactions in future generations.",
author = "Tamborg, {Andreas Lindenskov} and Raimundo Elicer and Daniel Spikol",
year = "2022",
doi = "10.1007/s13218-021-00753-3",
language = "English",
volume = "36",
pages = "73–81",
journal = "KI - K{\"u}nstliche Intelligenz",
issn = "0933-1875",
publisher = "Springer",

}

RIS

TY - JOUR

T1 - Programming and Computational Thinking in Mathematics Education

T2 - An Integration Towards AI Awareness

AU - Tamborg, Andreas Lindenskov

AU - Elicer, Raimundo

AU - Spikol, Daniel

PY - 2022

Y1 - 2022

N2 - Artificial intelligence (AI) has become a part of everyday interactions with pervasive digital systems. This development increasingly calls for citizens to have a basic understanding of programming and computational thinking (PCT). Accordingly, countries worldwide are implementing several approaches to integrate critical elements of PCT into K-9 education. However, these efforts are confronted by difficulties that the PCT concepts are for students to grasp from purely theoretical perspectives. Recent literature indicates that the playful nature is particularly important when novices from both both early and higher education are to learn AI. These playful activities are characterised by setting a scene where PCT concepts such as algorithms, data processing, and simulations are meant to draw on to understand better how AI is integrated into our everyday digital life. This discussion paper analyses playful PCT resources developed around the game rock-paper-scissors developed in the UK and Denmark. Resources from these countries are interesting starting points since both have been or are in the process of integrating PCT as part of the K-9 curriculum. The central discussion raised by the paper, is the nature of the integration between mathematics and PCT in these tasks. These resources provide opportunities for discussion of how we may better integrate PCT and mathematics from the perspective of both subjects to build a solid foundation for a critical understanding of AI interactions in future generations.

AB - Artificial intelligence (AI) has become a part of everyday interactions with pervasive digital systems. This development increasingly calls for citizens to have a basic understanding of programming and computational thinking (PCT). Accordingly, countries worldwide are implementing several approaches to integrate critical elements of PCT into K-9 education. However, these efforts are confronted by difficulties that the PCT concepts are for students to grasp from purely theoretical perspectives. Recent literature indicates that the playful nature is particularly important when novices from both both early and higher education are to learn AI. These playful activities are characterised by setting a scene where PCT concepts such as algorithms, data processing, and simulations are meant to draw on to understand better how AI is integrated into our everyday digital life. This discussion paper analyses playful PCT resources developed around the game rock-paper-scissors developed in the UK and Denmark. Resources from these countries are interesting starting points since both have been or are in the process of integrating PCT as part of the K-9 curriculum. The central discussion raised by the paper, is the nature of the integration between mathematics and PCT in these tasks. These resources provide opportunities for discussion of how we may better integrate PCT and mathematics from the perspective of both subjects to build a solid foundation for a critical understanding of AI interactions in future generations.

U2 - 10.1007/s13218-021-00753-3

DO - 10.1007/s13218-021-00753-3

M3 - Journal article

VL - 36

SP - 73

EP - 81

JO - KI - Künstliche Intelligenz

JF - KI - Künstliche Intelligenz

SN - 0933-1875

ER -

ID: 291740486