DocumentCode
2316020
Title
Interactive WebGL-based 3D visualizations for situated mathematics teaching
Author
Hennig, Matthias ; Gaspers, Daniel ; Mertsching, Barbel
Author_Institution
GET Lab., Univ. of Paderborn, Paderborn, Germany
fYear
2013
fDate
10-12 Oct. 2013
Firstpage
1
Lastpage
6
Abstract
At institutions of higher education, students often lack certain mathematical knowledge required to cope with the actual course contents. This becomes particularly significant during the introductory phase of highly mathematical degree programs such as engineering sciences. Thus, based on the example of a fundamentals of electrical engineering course, the authors developed a blended learning scenario which facilitates imparting mathematical expertise within the situated context of this specialist subject. A critical element of this approach is the abundant use of interactive web application-based 3D visualizations. This allows for clarifying complex mathematical problem statements within comparably short periods of time. In this paper, the technical implementation of the web applications using JavaScript and WebGL with their corresponding advantages are described. Additionally, their utilization is discussed with regard to didactic considerations. A questionnaire-based evaluation with respect to students´ acceptance of the visualizations and its influence on examination performance was carried out and concluding results are presented.
Keywords
Internet; Java; computer aided instruction; data visualisation; educational courses; further education; mathematics computing; solid modelling; teaching; JavaScript; blended learning scenario; complex mathematical problem statements; course contents; electrical engineering course; engineering sciences; higher education institutions; interactive Web application-based 3D visualizations; interactive WebGL-based visualizations; mathematical degree programs; questionnaire-based evaluation; situated mathematics teaching; Data visualization; Education; Electrical engineering; Libraries; Mathematics; Three-dimensional displays; Visualization; JavaScript; Situated learning; WebGL; blended learning; e-learning; electrical engineering; visualization of mathematics; web applications;
fLanguage
English
Publisher
ieee
Conference_Titel
Information Technology Based Higher Education and Training (ITHET), 2013 International Conference on
Conference_Location
Antalya
Type
conf
DOI
10.1109/ITHET.2013.6671038
Filename
6671038
Link To Document