电磁材料问题式学习模式辅助下的大学生批判性思维能力概况

Mas Alwis Imru'ul Qais As-syauqi, Fida Rachmadiarti, Raharjo Raharjo, Mohammad Budiyanto
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引用次数: 0

摘要

研究目的本研究旨在借助在印度尼西亚泗水一所大学实施的基于问题的学习模式,分析学生在物理学习(尤其是电磁材料)中的批判性思维能力概况。研究方法采用的研究方法包括初步研究,以 19 名学生为样本。数据收集技术包括批判性思维能力测试、学生回答问卷和讲师访谈。然后,使用定性描述对数据进行分析,以体现研究结果。结果:分析表明,学生的批判性思维能力仍然相对较低。批判性思维指标的平均得分由高到低依次为解释、分析、推理和评价。要提高学生的学习兴趣和批判性思维能力,可以采用的另一种方法是在物理学习中应用 PBL 模式。新颖性:本研究的新颖性在于它对借助 PBL 模式绘制学生批判性思维能力的初始能力图谱做出了新的贡献。该图谱有助于讲师评估物理学习,尤其是电磁材料的学习,并确定今后可采取哪些措施来提高学生的批判性思维能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Profile of College Students' Critical Thinking Skills Assisted by Problem-Based Learning Models on Electromagnetic Material
Objective: This research aims to analyze the profile of students' critical thinking abilities in physics learning, especially electromagnetic material, with the help of a problem-based learning model implemented at a university in Surabaya, Indonesia. Method: The research method used was included in preliminary research with a sample of 19 students. Data collection techniques use critical thinking skills tests, student response questionnaires, and lecturer interviews. Then, the data was analyzed using qualitative descriptions to represent the research results. Results: Analysis shows students' critical thinking skills are still relatively low. Critical thinking indicators that get an average score from high to low are interpretation, analysis, inference, and evaluation. An alternative that can be done to increase students' interest and critical thinking skills is to apply the PBL model in physics learning. Novelty: The novelty of this research lies in its new contribution to mapping students' initial abilities regarding their critical thinking skills with the help of the PBL model. This mapping helps lecturers evaluate physics learning, especially electromagnetic material, and determine what future steps can be taken to improve students' critical thinking skills.
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