Feasibility analysis of teaching reform of computer-aided for environmental art design course

被引:0
作者
Bi H. [1 ]
机构
[1] School of Art and Design, Henan Institute of Technology, Xinxiang, 453003, Henan
来源
Computer-Aided Design and Applications | 2021年 / 18卷 / S2期
关键词
Computer-aided; Environmental art design; Feasibility analysis; Teaching reform;
D O I
10.14733/cadaps.2021.S2.36-46
中图分类号
学科分类号
摘要
This article uses the dual-master learning environment design based on the problem of computer replication to apply to the teaching of environmental art design course. It can solve the problems in the teaching of environmental art design courses in colleges and universities. Instructional design theory, problem-based philosophy of science theory, distributed cognitive theory, activity theory, and situational cognitive theory is the guides. Based on the principle and components of the dual-primary learning environment teaching design based on problem-solving, the computer environment art design in universities is constructed the dual-primary learning environment model based on problem-solving that can promote the development of learners' problem-solving skills in the course. The teaching model mainly includes front-end analysis, problem-solving activity design, and teaching evaluation design. Analyze and understand the current status of the online learning platform from different perspectives and carry out design positioning, and put forward the current issues and redesign summary. Based on the results of usability analysis, specific design ideas were developed from the aspects of structural design and visual interface design, and the feasibility was analyzed. Such a disruptive teaching experience will surely set off another wave of teaching reform. © 2021 CAD Solutions, LLC,.
引用
收藏
页码:36 / 46
页数:10
相关论文
共 10 条
[1]  
Pandey S., Pandey S.-K., Miller L., Measuring innovativeness of public organizations: Using natural language processing techniques in computer-aided textual analysis, International Public Management Journal, 20, 1, pp. 78-107, (2017)
[2]  
Wang S., Liu C., Task-based flipped classroom in Chinese college EFL teaching: An empirical study in oral English course, International Journal of Contemporary Education, 1, 1, pp. 12-18, (2018)
[3]  
Cavalcante Koike C.-M.-C., Viana D.-M., Vidal F.-B., Mechanical engineering, computer science and art in interdisciplinary project-based learning projects, International Journal of Mechanical Engineering Education, 46, 1, pp. 83-94, (2018)
[4]  
Brower R.-L., Woods C.-S., Jones T.-B., Scaffolding mathematics remediation for academically at-risk students following developmental education reform in Florida, Community College Journal of Research and Practice, 42, 2, pp. 112-128, (2018)
[5]  
Violante M.-G., Vezzetti E., Guidelines to design engineering education in the twenty-first century for supporting innovative product development, European Journal of Engineering Education, 42, 6, pp. 1344-1364, (2017)
[6]  
Munoz C.-A., Guerra M.-E., Mosey S., The potential impact of entrepreneurship education on doctoral students within the non-commercial research environment in Chile, Studies in Higher Education, 45, 3, pp. 492-510, (2020)
[7]  
Moore K., Frazier R.-S., Engineering education for generation Z, American Journal of Engineering Education (AJEE), 8, 2, pp. 111-126, (2017)
[8]  
Plotka-Wasylka J., Kurowska-Susdorf A., Sajid M., Green chemistry in higher education: state of the art, challenges, and future trends, ChemSusChem, 11, 17, pp. 2845-2858, (2018)
[9]  
Tsai C.-Y., The effect of online argumentation of socio-scientific issues on students' scientific competencies and sustainability attitudes, Computers & Education, 116, pp. 14-27, (2018)
[10]  
Dick V., Sinz C., Mittlbock M., Accuracy of computer-aided diagnosis of melanoma: A meta-analysis, JAMA dermatology, 155, 11, pp. 1291-1299, (2019)