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Student learning in an electric circuit theory course: critical aspects and task design

机译:电路理论课程中的学生学习:关键方面和任务设计

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Understanding time-dependent responses, such as transients, is important in electric circuit theory and other branches of engineering. However, transient response is considered difficult to learn since familiarity with advanced mathematical tools such as Laplace transforms is required. Here, we analyse and describe a novel learning environment design, the problem-solving lab, for learning transient response. This design merges problem-solving classes and labs, allowing students to engage in deep learning through the integrated use of tools like paper and pencil, MATLAB~®, simulations, and experiments. A key element in this design is the systematic use of variation in line with variation theory. We describe critical features for learning transient response, and ways to facilitate the establishment of links between the 'worlds' of theories/models and objects/events for students. We contend that an integrated use of tools, and systematic use of variation, is crucial for learning and establishing these links.
机译:在电路理论和工程的其他分支中,了解瞬态等随时间变化的响应非常重要。但是,由于需要熟悉高级数学工具(例如Laplace变换),因此瞬态响应被认为很难学习。在这里,我们分析和描述了一种新颖的学习环境设计,即解决问题的实验室,用于学习瞬态响应。该设计将解决问题的课程和实验室融为一体,使学生能够通过集成使用纸笔,MATLAB〜®,模拟和实验等工具来参与深度学习。该设计中的关键要素是根据变化理论对变化进行系统的使用。我们描述了学习瞬态响应的关键功能,以及促进在理论/模型的“世界”与学生的对象/事件之间建立联系的方法。我们认为,工具的综合使用和变体的系统使用对于学习和建立这些联系至关重要。

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