Ranking of problems and solutions in the teaching and learning of object-oriented programming

被引:0
作者
Luz E. Gutiérrez
Carlos A. Guerrero
Héctor A. López-Ospina
机构
[1] Universidad del Norte,Department of System Engineering, Faculty of Engineering
[2] Universidad Santo Tomás,Faculty of System Engineering
[3] Universidad del Norte,Department of Industrial Engineering, Faculty of Engineering
来源
Education and Information Technologies | 2022年 / 27卷
关键词
Object-oriented programming; Teaching-Learning; Multi-criteria; DEMATEL; TOPSIS;
D O I
暂无
中图分类号
学科分类号
摘要
This study describes the most relevant problems and solutions found in the literature on teaching and learning of object-oriented programming (OOP). The identification of the problem was based on tertiary studies from the IEEE Xplore, Scopus, ACM Digital Library and Science Direct repositories. The problems and solutions identified were ranked through the multi-criteria decision methods DEMATEL and TOPSIS in order to determine the best solutions to the problems found and to apply these results in the academic context. The main contribution of this study was the categorization of OOP problems and solutions, as well as the proposal of strategies to improve the problem. Among the most relevant problems it was found: 1) difficulty in understanding, teaching and implementing object-orientation, 2) difficulties related to understanding classes and 3) difficulty in understanding object-oriented relationships. After doing the multicriteria analysis, it was found that the most important solutions to face the problems found in the teaching of OOP were: 1) use of active learning techniques and intrinsic rewards and 2) emphasize on basic programming concepts and introduce the object-oriented paradigm at an early point in the curriculum. As a conclusion, it was evidenced that there is coherence between the literary guarantee that gives support to the problems and solutions in the teaching of OOP presented in this study and the approaches that experts in the area of development highlight as relevant when they identify weaknesses in the process.
引用
收藏
页码:7205 / 7239
页数:34
相关论文
共 126 条
[41]  
Jordine T(2015)Object-Oriented Design and Programming ACM Transactions on Computing Education 15 1-21
[42]  
Liang Y(2018)Evaluations of JaguarCode: A web-based object-oriented programming environment with static and dynamic visualization Journal of Systems and Software 145 147-163
[43]  
Ihler E(2015)The influences of a two-tier test strategy on student learning: A lag sequential analysis approach Computers & Education 82 366-377
[44]  
Karahasanović A(2018)A Novel Method of Complexity Metric for Object-Oriented Software International Journal of Digital Multimedia Broadcasting 2018 1-9
[45]  
Levine AK(2012)Students’ Perception and Motivation Towards Programming Procedia - Social and Behavioral Sciences 59 277-286
[46]  
Thomas R(2018)Assessing Students’ Object-Oriented Programming Skills with Java: The “Department-Employee” Project Journal of Computer Information Systems 60 1-13
[47]  
Kiss G(2019)An Optimization-Evaluation Agricultural Water Planning Approach Based on Interval Linear Fractional Bi-Level Programming and IAHP-TOPSIS Water 11 1-22
[48]  
Krpan D(undefined)undefined undefined undefined undefined-undefined
[49]  
Mladenović S(undefined)undefined undefined undefined undefined-undefined
[50]  
Rosić M(undefined)undefined undefined undefined undefined-undefined