Improving engineering students’ understanding of classical physics through visuo-haptic simulations

Guillermo González-Mena, Octavio Lozada-Flores, Dione Murrieta Caballero, J. Noguez, David Escobar-Castillejos
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Abstract

Introduction: The teaching process plays a crucial role in the training of professionals. Traditional classroom-based teaching methods, while foundational, often struggle to effectively motivate students. The integration of interactive learning experiences, such as visuo-haptic simulators, presents an opportunity to enhance both student engagement and comprehension.Methods: In this study, three simulators were developed to explore the impact of visuo-haptic simulations on engineering students’ engagement and their perceptions of learning basic physics concepts. The study used an adapted end-user computing satisfaction questionnaire to assess students’ experiences and perceptions of the simulators’ usability and its utility in learning.Results: Feedback from participants suggests a positive reception towards the use of visuo-haptic simulators, highlighting their usefulness in improving the understanding of complex physics principles.Discussion: Results suggest that incorporating visuo-haptic simulations into educational contexts may offer significant benefits, particularly in STEM courses, where traditional methods may be limited. The positive responses from participants underscore the potential of computer simulations to innovate pedagogical strategies. Future research will focus on assessing the effectiveness of these simulators in enhancing students’ learning and understanding of these concepts in higher-education physics courses.
通过视觉-触觉模拟加深工科学生对经典物理学的理解
引言教学过程在专业人员培训中起着至关重要的作用。传统的课堂教学方法虽然具有基础性,但往往难以有效激发学生的积极性。整合交互式学习体验(如视觉-触觉模拟器)为提高学生的参与度和理解力提供了机会:本研究开发了三种模拟器,以探索视觉-触觉模拟对工科学生的参与度以及他们对学习基本物理概念的看法的影响。研究使用了一份经过改编的最终用户计算机满意度调查问卷,以评估学生对模拟器可用性及其在学习中的实用性的体验和看法:结果:参与者的反馈表明,他们对使用视觉-触觉模拟器持积极态度,并强调了模拟器在提高对复杂物理原理的理解方面的作用:讨论:结果表明,将视觉-触觉模拟融入教育环境可能会带来显著的益处,尤其是在传统方法可能受到限制的 STEM 课程中。参与者的积极反应强调了计算机模拟在创新教学策略方面的潜力。未来的研究将侧重于评估这些模拟器在高等教育物理课程中提高学生学习和理解这些概念的有效性。
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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