Enhancing programming learning environment with physical computing and robotics: a case study of the American University of Kuwait

A. Rababaah, Ahmad A. Rabaa'i
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Abstract

Physical computing provides numerous possibilities of interaction with the physical world, providing students with high-impact feedback through tangible data, enhancing the sense of responsibility by having to be cautious not only about a red-highlighted error message on the screen but much further to real problems with real systems. In this paper, we will present our case at the Department of Computer Science and Information Systems at the American University of Kuwait in introducing hardware devices, sensors, actuators, effectors, circuits and robots through a series of designed labs and experiences that progress from basic through intermediate to advanced skills. Further, we present the results of a course exist survey that shows the responses of all participating students. The analysis of the survey showed significant positive impact on many aspects including: student engagement, programming skills, hardware and physical computing exposure and student future retention. The overall mean of positive responses was 92.04%.
利用物理计算和机器人技术改善编程学习环境:以科威特美国大学为例
物理计算提供了许多与物理世界交互的可能性,通过有形的数据为学生提供了高影响力的反馈,增强了责任感,不仅要小心屏幕上红色突出的错误信息,还要进一步注意实际系统中的实际问题。在本文中,我们将在科威特美国大学计算机科学与信息系统系介绍我们的案例,通过一系列设计的实验室和经验,从基础到中级再到高级技能,介绍硬件设备、传感器、执行器、效应器、电路和机器人。此外,我们提出了课程存在调查的结果,显示了所有参与学生的反应。对调查的分析显示,在许多方面都有显著的积极影响,包括:学生参与度、编程技能、硬件和物理计算曝光率以及学生未来的留存率。总体平均阳性应答率为92.04%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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