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First-year university Physics students' knowledge about direct current circuits:probing improvement in understanding as a function of teaching and learning interventions

机译:第一年大学物理学生对直流电路的了解:作为教学和学习干预措施的理解改善

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摘要

Probing university students' understanding of direct-current (DC) resistive circuits is still a field of active physics education research. We report here on a study we conducted of this understanding, where the cohort consisted of students in a large-enrollment first-year physics module. This is a noncalculus based physics module for students in the life sciences stream. The study involved 366 students enrolled in the physics (bio) 154 module at Stellenbosch University in 2015. Students' understanding of DC resistive circuits was probed by means of a standardized test instrument. The instrument comprises 29 multiple choice questions that students have to answer in ~40 min. Students were required to first complete the standardized test at the start of semester (July 2015). For ease of reference we call this test the pre-test. Students answered the pre-test having no university-level formal exposure to DC circuits in theory or practice. The pre-test therefore served to probe students' school level knowledge of DC circuits. As the semester progressed students were exposed to a practical (E1), lectures, a prescribed textbook, a tutorial and online videos focusing on DC circuits. The E1 practical required students to solve DC circuit problems by means of physically constructing circuits, algebraically using Kirchhoff's Rules and Ohm's Law, and by means of simulating circuits using the app iCircuit running on iPads (iOS platform). Each E1 practical involved ~50 students in a three hour session. The practical was repeated three afternoons per week over an eight week period. Twenty three iPads were distributed among students on a practical afternoon in order for them to do the circuit simulations in groups (of 4-5 students). At the end of the practical students were again required to do the standardized test on circuits and complete a survey on their experience of the use of the iPad and iCircuit app. For ease of reference we refer to this second test as the post-test. The students' average score on the post-test was found to be ~25% higher than their pre-test score. The results of the iPad use survey show that the majority of students felt that the iCircuit app enhanced their learning of DC circuits.
机译:探讨大学学生对直流(DC)电阻电路的理解仍是积极物理教育研究领域。我们在这里报告我们对此理解进行的研究,队列组成了大型入学第一年物理模块的学生。这是一个用于生命科学流中的学生的非钙管物理模块。 2015年,该研究涉及366名学生在Stellenbosch大学的物理学(BIO)154模块的学生。通过标准化测试仪探讨了学生对直流电阻电路的理解。该仪器包括29个多项选择题,学生必须在〜40分钟内回答。学生必须首先在学期开始完成标准化测试(2015年7月)。为了便于参考,我们称之为测试预测试。学生在理论或实践中回答了没有大学级正式接触直流电路的预测。因此,预测服务探讨了学生的学校水平电路的学校知识。正如学期的前进学生都接触到实际(E1),讲座,规定的教科书,专注于直流电路的教程和在线视频。 E1实用所需的学生通过物理构建电路,使用Kirchhoff的规则和欧姆的法律来解决DC电路问题,以及使用在iPad上运行的App Icircuit模拟电路来模拟电路。每个E1实用涉及到三个小时内〜50名学生。实际在八周的时间内每周重复三个下午。在实际的下午分发了二十三个iPad,以便他们在群体中进行电路模拟(4-5名学生)。在实际学生结束时,再次需要在电路上进行标准化测试,并完成对iPad和iCircuit应用程序使用的经验进行调查。为了便于参考,我们将第二个测试称为后测试。发现后测试的学生的平均得分比其预测分数高约25%。 iPad使用调查结果表明,大多数学生认为,icircuit应用程序增强了他们对直流电路的学习。

著录项

  • 来源
    《Physics Education》 |2017年第4期|共8页
  • 作者单位

    Physics Department Stellenbosch University Stellenbosch Matieland 7600 South Africa;

    Physics Department Stellenbosch University Stellenbosch Matieland 7600 South Africa;

    Physics Department Stellenbosch University Stellenbosch Matieland 7600 South Africa;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 教学法;
  • 关键词

    cohort; life; probed;

    机译:队列;生活;探索;

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