Modeling of physical phenomena as a methodological means of forming a knowledge structure in physics and programming

N. Holovina, Mykola Holovin
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引用次数: 0

Abstract

To bring the theoretical basis to the improvement of the methodic of carrying out laboratory works in physics and computer sciences, a study of psychological and cognitive processes that accompany the corresponding educational activity was held. The important moment of the work is the research of the mental side of educational activities in the terms of formal logic. The accompanying steps to these mental activities and the talk activity are considered. The content component of the talk activity was considered in the work as an important diagnostic factor that indicates the level of understanding of the nature of the new material or the completion of the corresponding cognitive structure. The original graphical ways of formalization of the cognitive scheme of the object activity and the logic of its formation in the context of mental and materialized education activities are presented. These ideas were used to consider the processes of educational activity on the example of the creation of a simple physical model that is realized through the Python talk with the help of Visual library. Educational activities are considered through the prism of the evolution of the structural organization of mental representation of the objects of this activity. The research demonstrates the cyclical nature of the corresponding cognitive processes, materialized activities, and hierarchical character of the structure of knowledge that is formed in the process of educational activities in physics and programming. The correlation of these processes with the dynamics of the evolution of knowledge is settled. The conceptual ideas that could be useful for modifications of the methodic of realization of laboratory knowledge in the direction of modeling of physical processes and phenomena are formulated. Individual algorithmic problems of modeling of physical processes are considered in the research as components of the holistic system of problems. According to the point of view of the authors, in the course of the preparation of highly professional specialists in the domain of natural sciences, it is necessary to devote a lot of time to the conscious, goal-oriented formation of protocols of abstract logical and causal thinking. The methodology of such work is well formulated, especially in the well-known methods of descending step-by-step detailing and in modular programming
对物理现象进行建模,作为形成物理学和编程知识结构的一种方法论手段
为了给物理和计算机科学中开展实验室工作的方法的改进带来理论基础,对伴随相应教育活动的心理和认知过程进行了研究。这项工作的重要部分是从形式逻辑的角度研究教育活动的心理方面。讨论了这些心理活动和谈话活动的相应步骤。谈话活动的内容成分在工作中被认为是一个重要的诊断因素,表明对新材料性质的理解水平或相应认知结构的完成程度。提出了在心理和物化教育活动背景下客体活动认知图式形式化的原始图形化方式及其形成的逻辑。这些想法被用来考虑教育活动的过程,以创建一个简单的物理模型为例,该模型是通过Python对话在Visual library的帮助下实现的。教育活动是通过这种活动对象的心理表征的结构组织演变的棱镜来考虑的。研究论证了物理和编程教育活动过程中所形成的相应认知过程、物化活动的周期性和知识结构的层次性。解决了这些过程与知识演化动力学之间的关系。在物理过程和现象建模的方向上,对实验室知识的实现方法的修改有用的概念性思想被提出。物理过程建模的单个算法问题在研究中被视为问题整体系统的组成部分。根据作者的观点,在自然科学领域高专业人才的培养过程中,有必要花大量时间有意识地、以目标为导向地形成抽象逻辑思维和因果思维的协议。这类工作的方法学得到了很好的表述,特别是在众所周知的逐步细化和模块化编程的方法中
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