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A model of teaching electronics, programming and mechanics in robotics for youth

机译:面向年轻人的机器人技术电子,程序设计和力学教学模型

摘要

The main purpose of the work was to develop an effective teaching model of teaching electronics, programming and mechanics in robotics for youth as well as to evaluate the model’s learning outcomes. In technical education robotics may have significant impact on the improvement of technological literacy of young people - which is very important for successful life of any individual in today's scientific and technological world. Therefore, robotics should be included in primary education. Robotics is an area, where interdisciplinarity of several subjects such as: electronics, computer science and mechanics is significant. In the Slovenian primary school program the Robotics is found in the elective course of the subject called Robotics in Technology. Since the robotics combines at least three areas mentioned above, one would expect that the contents of these areas are equally included in the educational process. However, several studies show that the effects are good in the field of computer science and mechanics, and even support the development of higher cognitive levels in these two areas. On the other hand the electronics is often ignored and knowledge is rarely verified or tests are limited to the lowest level of thinking skills. The reason for this discrepancy lies in the use of commercial learning kits, which are not designed to educate such contents. Therefore, one of research objectives was to develop appropriate learning resources, designed for introducing electronics contents trough implementation of Kolb's experiential learning cycle. In designing the aids we had to take into account several analyses: examine existing learning materials and devices in various forms of education, the need to fulfil the subjects curriculum and the teachers’ recommendations about what aspects are important. Designed learning material and devices were tested in several versions of the learning model for teaching robotics. The models were implemented in technical days of the elementary education process. Teaching model for teaching electronics, programming and mechanics in robotics for youth confirms good teaching effects. Its effects were estimated in the summer school of robotics and electronics, which proved positive results in knowledge that require higher cognitive levels of thinking skills. The learning model has also great applicative value because of its low-cost learning aids, freely available learning materials and is also appropriate for direct implementation of learning process into the optional subject Robotics in Technology.
机译:这项工作的主要目的是开发一种有效的教学模型,该模型可以为青年机器人技术教授电子学,编程和力学,并评估该模型的学习成果。在技​​术教育中,机器人技术可能会对年轻人的技术素养的提高产生重大影响-这对于当今科学技术世界中任何人的成功生活都非常重要。因此,机器人技术应包括在初等教育中。机器人技术是一个领域,其中多个学科的交叉学科非常重要,例如:电子学,计算机科学和力学。在斯洛文尼亚小学计划中,在称为“技术中的机器人”的选修课程中发现了机器人。由于机器人技术至少结合了上述三个领域,因此人们希望将这些领域的内容平等地纳入教育过程中。但是,一些研究表明,这种效果在计算机科学和力学领域是很好的,甚至支持了这两个领域中更高的认知水平的发展。另一方面,电子设备经常被忽略,知识很少得到验证或测试仅限于最低水平的思维能力。这种差异的原因在于使用了商业学习工具包,这些工具包并非旨在教育此类内容。因此,研究目标之一是开发适当的学习资源,旨在通过实施Kolb的经验学习周期来介绍电子内容。在设计辅助工具时,我们必须考虑以下几种分析:检查各种形式的教育中现有的学习材料和设备,完成学科课程的必要性以及老师对哪些方面很重要的建议。设计的学习材料和设备已在用于教学机器人的学习模型的多个版本中进行了测试。这些模型是在基础教育过程的技术日内实施的。用于青年机器人技术的电子学,编程学和力学的教学模型证实了良好的教学效果。在夏季的机器人技术和电子学学校中估计了它的影响,事实证明,这些知识在需要更高认知水平的思维技能的知识中取得了积极的成果。该学习模型因其低成本的学习辅助工具,可免费获得的学习材料而具有很大的应用价值,并且还适合将学习过程直接实施到可选学科“技术机器人”中。

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    Rihtaršič David;

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  • 年度 2017
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