Developing a Motion Infographic-Based Learning System for Effective Learning

The motion infographic system combines the characteristics of continuous images and the simplification of information, which can make up for the disadvantages of content in static images, and may have the advantage of deepening the impression of infographics. As Taiwan’s elementary school resource c...

Full description

Bibliographic Details
Main Authors: Shih-Ting Tsai, Hsin-Yi Huang, Teng-Wen Chang
Format: Article
Language:English
Published: MDPI AG 2020-09-01
Series:Education Sciences
Subjects:
Online Access:https://www.mdpi.com/2227-7102/10/9/247
_version_ 1827706257716281344
author Shih-Ting Tsai
Hsin-Yi Huang
Teng-Wen Chang
author_facet Shih-Ting Tsai
Hsin-Yi Huang
Teng-Wen Chang
author_sort Shih-Ting Tsai
collection DOAJ
description The motion infographic system combines the characteristics of continuous images and the simplification of information, which can make up for the disadvantages of content in static images, and may have the advantage of deepening the impression of infographics. As Taiwan’s elementary school resource classes (elementary school pupils with mild disabilities or learning challenges) do not yet have exclusive learning content, resource class teachers prepare their own teaching content, but they cannot integrate existing learning lists and network resources. Therefore, this study designed and developed a motion infographic system to assist with resource class learning. The theme of this motion infographic system uses a very rare natural phenomenon in Taiwan, the Arctic oscillation, which in early 2016 brought to Taiwan the lowest recorded temperature on the flat ground. The study analyzed the learning effectiveness of this system applied to resource classes through an experimental and control group. The final result shows that the motion infographic system was different from the original content used in the resource class. The improvement in the academic achievement and the grasp of the image shapes of the experimental group was better than the control group, which verified that the motion infographic system can improve learning outcomes in a resource class.
first_indexed 2024-03-10T16:20:02Z
format Article
id doaj.art-de27fd7dbfa145228a043b8e958b4f42
institution Directory Open Access Journal
issn 2227-7102
language English
last_indexed 2024-03-10T16:20:02Z
publishDate 2020-09-01
publisher MDPI AG
record_format Article
series Education Sciences
spelling doaj.art-de27fd7dbfa145228a043b8e958b4f422023-11-20T13:46:37ZengMDPI AGEducation Sciences2227-71022020-09-0110924710.3390/educsci10090247Developing a Motion Infographic-Based Learning System for Effective LearningShih-Ting Tsai0Hsin-Yi Huang1Teng-Wen Chang2Graduate School of Design, National Yunlin University of Science and Technology, Douliou, Yunlin 640, TaiwanGraduate School of Design, National Yunlin University of Science and Technology, Douliou, Yunlin 640, TaiwanGraduate School of Design, National Yunlin University of Science and Technology, Douliou, Yunlin 640, TaiwanThe motion infographic system combines the characteristics of continuous images and the simplification of information, which can make up for the disadvantages of content in static images, and may have the advantage of deepening the impression of infographics. As Taiwan’s elementary school resource classes (elementary school pupils with mild disabilities or learning challenges) do not yet have exclusive learning content, resource class teachers prepare their own teaching content, but they cannot integrate existing learning lists and network resources. Therefore, this study designed and developed a motion infographic system to assist with resource class learning. The theme of this motion infographic system uses a very rare natural phenomenon in Taiwan, the Arctic oscillation, which in early 2016 brought to Taiwan the lowest recorded temperature on the flat ground. The study analyzed the learning effectiveness of this system applied to resource classes through an experimental and control group. The final result shows that the motion infographic system was different from the original content used in the resource class. The improvement in the academic achievement and the grasp of the image shapes of the experimental group was better than the control group, which verified that the motion infographic system can improve learning outcomes in a resource class.https://www.mdpi.com/2227-7102/10/9/247motion infographic systeminfographic designelementary schoolresource classarctic oscillation
spellingShingle Shih-Ting Tsai
Hsin-Yi Huang
Teng-Wen Chang
Developing a Motion Infographic-Based Learning System for Effective Learning
Education Sciences
motion infographic system
infographic design
elementary school
resource class
arctic oscillation
title Developing a Motion Infographic-Based Learning System for Effective Learning
title_full Developing a Motion Infographic-Based Learning System for Effective Learning
title_fullStr Developing a Motion Infographic-Based Learning System for Effective Learning
title_full_unstemmed Developing a Motion Infographic-Based Learning System for Effective Learning
title_short Developing a Motion Infographic-Based Learning System for Effective Learning
title_sort developing a motion infographic based learning system for effective learning
topic motion infographic system
infographic design
elementary school
resource class
arctic oscillation
url https://www.mdpi.com/2227-7102/10/9/247
work_keys_str_mv AT shihtingtsai developingamotioninfographicbasedlearningsystemforeffectivelearning
AT hsinyihuang developingamotioninfographicbasedlearningsystemforeffectivelearning
AT tengwenchang developingamotioninfographicbasedlearningsystemforeffectivelearning