项目方法在stem教育中运用arduino软硬件平台

Oleksii Voronkin, Sergiy Lushchin
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Methods of analysis and systematization of scientific and pedagogical literature were used; generalization of the results of domestic and foreign experience in the use of a prose method in the STEM education using the ARDUino software and hardware platform. The experimental method of creating an active physiotherapy laser device for treatment of the runny nose is presented. A software modeling is used to simulate a device with the design of the Arduino Uno board. Results. The example of the implementation of the STEM project \"Development of a physiotherapeutic laser device for the treatment of runny nose\" demonstrates how it is possible to integrate many different-level, didactic, and research tasks. A generalized description of the main structural elements of the Arduino Uno board is given. A typical algorithm for familiarizing yourself with the operation of the Arduino board is formulated. 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引用次数: 0

摘要

问题的表述。STEM教育中最有前途的培训方法之一是项目方法。STEM教育中的项目方法决定了项目主题的相关性和研究性质,确保了理论知识与实践的联系,项目成果的实际实施。该项目作为实施STEM教育的一种手段,允许您在解决实际任务时整合来自不同学科行业的知识,创建现有布局,从而使其具有实际用途。材料和方法。采用科学文献和教学文献的分析和系统化方法;总结国内外经验的成果,采用散文方法在STEM教育中使用ARDUino软硬件平台。提出了一种用于治疗流鼻水的主动物理治疗激光装置的实验方法。利用软件建模对Arduino Uno板设计的器件进行仿真。结果。STEM项目“开发用于治疗流鼻涕的物理治疗激光设备”的实施示例演示了如何整合许多不同级别,教学和研究任务。对Arduino Uno板的主要结构元素进行了概括的描述。制定了熟悉Arduino板操作的典型算法。指出了物理课程的主要部分,这些知识是实施项目的基础。它显示了如何使用激光状态的位矩阵允许周期性地改变彼此的循环辐照模式的创建。提供了处理激光状态位矩阵的代码示例。该草图控制半导体激光器的模式,在液晶显示器上显示曝光时间,并在电位器设定的曝光时间结束时发出声音信号。提出了在Tinkercad电路环境中物理治疗设备的仿真建模的一个片段。结论。在STEM教育中使用项目方法的实践经验表明,它可以让学生积极调查实际问题,将所学知识应用于实践,并培养合作,沟通和批判性思维技能。项目的实施有助于各种活动的结合,如认知、创造、实践和研究,以及思维技能、动机和行为责任的发展。实施项目方法可以为自然科学专家提供高质量的培训,这些专家可以有效地将他们的知识和技能应用于实际情况,并为乌克兰STEM领域的进一步发展做出贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
PROJECT METHOD IN STEM EDUCATION USING ARDUINO SOFTWARE AND HARDWARE PLATFORM
Formulation of the problem. One of the promising methods of training in STEM education is the method of projects. The projected method in STEM education determines the relevance and research nature of the topic of the project, ensuring the interconnection of theoretical knowledge with practice, practical implementation of the results of the project. The project, as a means of implementing STEM education, allows you to integrate knowledge from different subject industries when solving real tasks, the creation of existing layouts, which causes their practical use. Materials and methods. Methods of analysis and systematization of scientific and pedagogical literature were used; generalization of the results of domestic and foreign experience in the use of a prose method in the STEM education using the ARDUino software and hardware platform. The experimental method of creating an active physiotherapy laser device for treatment of the runny nose is presented. A software modeling is used to simulate a device with the design of the Arduino Uno board. Results. The example of the implementation of the STEM project "Development of a physiotherapeutic laser device for the treatment of runny nose" demonstrates how it is possible to integrate many different-level, didactic, and research tasks. A generalized description of the main structural elements of the Arduino Uno board is given. A typical algorithm for familiarizing yourself with the operation of the Arduino board is formulated. The main sections of the physics course are indicated, the knowledge of which is fundamental for implementing the project. It is shown how using a bit matrix of laser states allows the creation of cyclic irradiation modes that periodically change each other. An example of a code processing a bit matrix of laser states is provided. The sketch controls the modes of the semiconductor laser, displays the exposure time on the liquid crystal display, and emits a sound signal at the end of the exposure time set by the potentiometer. A fragment of the simulation modeling of a physiotherapy device in the Tinkercad Circuits environment is presented. Conclusions. The practical experience of using the project method in STEM education has shown that it allows students to investigate a real problem actively, apply the acquired knowledge in practice, and develop cooperation, communication, and critical thinking skills. Implementation of the project contributes to the combination of various activities, such as cognitive, creative, practical, and research, as well as the development of thinking skills, motivation, and responsibility for one's actions. Implementing the project method makes it possible to provide high-quality training for specialists in natural sciences who can effectively apply their knowledge and skills in practical situations and contribute to the further development of STEM fields in Ukraine.
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