提高化学工程专业学生学习成绩和学习动机

IF 3.5 2区 教育学 Q1 EDUCATION, SCIENTIFIC DISCIPLINES
Irene Moreno-Medina , Manuel Peñas-Garzón , Carolina Belver , Jorge Bedia
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引用次数: 0

摘要

为提高化工学位机械设备设计专业学生的学习成绩和学习动机,运用Wooclap软件,开展了基于游戏化和即时反馈的教学创新项目。在项目设计和实施后,使用两种主要工具进行评估:自己大学的机构问卷和教学团队设计的特定问卷。结果表明,在课堂上使用Wooclap对学生产生了积极的影响,一方面增加了学生的学习动机,另一方面提高了他们的学习成绩。同样,来自学生的建设性意见也为教学团队提供了发展和深化未来变革和更新的机会。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Wooclap for improving student achievement and motivation in the Chemical Engineering Degree

To improve the achievement and motivation of the students of the subject Mechanical Design of Equipment in the Chemical Engineering Degree, a teaching innovation project is carried out based on gamification and immediate feedback, specifically through the use of the Wooclap software. After the project design and implementation, it was evaluated using two main instruments: the institutional questionnaires of the own university and a specific questionnaire designed by the teaching team. The results suggested that the use of Wooclap in the classroom had a positive impact on students, allowing, on the one hand, to increase students’ motivation and, on the other hand, to improve their academic achievement. Likewise, the constructive comments from the students promoted the teaching team the opportunity to develop and deepen future changes and updates.

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来源期刊
CiteScore
8.80
自引率
17.90%
发文量
30
审稿时长
31 days
期刊介绍: Education for Chemical Engineers was launched in 2006 with a remit to publisheducation research papers, resource reviews and teaching and learning notes. ECE is targeted at chemical engineering academics and educators, discussing the ongoingchanges and development in chemical engineering education. This international title publishes papers from around the world, creating a global network of chemical engineering academics. Papers demonstrating how educational research results can be applied to chemical engineering education are particularly welcome, as are the accounts of research work that brings new perspectives to established principles, highlighting unsolved problems or indicating direction for future research relevant to chemical engineering education. Core topic areas: -Assessment- Accreditation- Curriculum development and transformation- Design- Diversity- Distance education-- E-learning Entrepreneurship programs- Industry-academic linkages- Benchmarking- Lifelong learning- Multidisciplinary programs- Outreach from kindergarten to high school programs- Student recruitment and retention and transition programs- New technology- Problem-based learning- Social responsibility and professionalism- Teamwork- Web-based learning
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