Wolfram Mathematica曲线和曲面可视化的函数可能性

S. Ignat'ev, A. Folomkin, E. Muratbakeev
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引用次数: 8

摘要

本文指出,当前教育系统所处的条件和信息技术的快速发展需要不断改进方法材料,同时考虑到当前软件的全部容量。给出了为高质量课程准备方法论材料所必需的程序示例。本文的目的是确定Wolfram Mathematica的教学潜力,当在一个技术高等教育机构进行几何和图形轮廓学科的课程。本文对Wolfram Mathematica系统在各学科的科学和教学中的应用进行了国内外文献资料的分析。实践证明,该方案的使用范围非常广泛,实际上是全面的,需要进一步深入研究。给出了Wolfram Mathematica在数学、物理、化学、几何、机器人、病毒学和人文学科中的应用实例。本文提供了在Moodle系统中对描述几何电子课程的仿真模型进行教学设计的实例。提供了在Wolfram Mathematica中编写的代码示例。在设计过程中开发了交互式模型,允许用户改变所构造的曲线和曲面的参数。已经定义了系统的一些功能,并揭示了Wolfram Mathematica在几何和图形学科教学中的教学潜力。已经考虑了其他作者的类似模型,这些模型可以在教育过程中使用,以增加课堂上呈现的材料的清晰度。最后指出,“画法几何”学科中的交互式可视化与经典工作实践相结合,极大地丰富了几何教学的内容。
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Wolfram Mathematica Functional Possibilities for Curved Lines and Surfaces Visualization
The paper states that the current conditions in which the education system is located, and the rapid development of IT require constant improvement of methodological materials, taking into account the full capacity of the current software. Examples of programs necessary for preparation of methodological materials for high-quality classes are given. The purpose of the paper was to identify the Wolfram Mathematica didactic potential when conducting classes in the disciplines of the geometric and graphic profile at a technical high educational institution. In this paper has been performed analysis of literature sources both domestic and foreign ones on the Wolfram Mathematica system application in science and teaching of various disciplines. It has been shown that the program use scope is very wide, in fact, it is comprehensive and requires additional and in-depth study. Examples of Wolfram Mathematica using in mathematics, physics, chemistry, geometry, robotics, virology, and the humanities are given. In the paper have been provided examples for pedagogical design of simulation models for an electronic course on descriptive geometry in the Moodle system. An example of code written in the Wolfram Mathematica is provided. Interactive models developed during the design are presented, which allow the user to change the constructed curves and surfaces’ parameters. Have been defined some functional capabilities of the system, and has been revealed the Wolfram Mathematica didactic potential for teaching geometric and graphic disciplines. Have been considered other authors’ similar models, which can be used in the educational process to increase the clarity of the material presented in the classroom. In conclusion it is pointed out that interactive visualization in the "Descriptive Geometry" discipline, together with classical working practices, significantly enriches the content of geometric education.
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Graphic Training of Students Using Forms of Distance Learning Features of Distance Learning in Geometric and Graphic Disciplines Using Methods of Constructive Geometric Modeling Geometric Locations of Points Equally Distance from Two Given Geometric Figures. Part 4: Geometric Locations of Points Equally Remote from Two Spheres Spatial Geometric Cells — Quasipolyhedra The Origins of Formation of Descriptive Geometry
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