在中学数学教学中,反比例函数的教学是一项非常重要的教学内容,也是中学生要掌握的重要知识点。由于中学反比例函数知识点比较抽象,对学生的画图能力和函数理解要求较高。网络画板在中学反比例函数中的应用在很大程度上为教师教学提供了便利。基于此,本文针对网络画板在中学反比例函数教学中的应用进行分析,希望能够为相关的教育工作者提供有力的参考意见。In middle school mathematics teaching, the teaching of inverse proportional functions is a very important teaching content and also an important knowledge point that middle school students need to master. Due to the abstract nature of knowledge about inverse proportional functions in middle school, there is a high demand for students’ drawing ability and understanding of functions. The application of online drawing boards in middle school inverse proportional functions has greatly provided convenience for teachers’ teaching. Based on this, this article analyzes the application of online drawing boards in teaching inverse proportional functions in middle schools, hoping to provide strong reference opinions for relevant educators.
网络画板是数学教学和学习辅助工具,在中学数学二次函数教学中的应用效果比较显著。在中学二次函数教学中应用网络画板,能更加清晰地呈现图形的一个动态变化过程,从而帮助学生直观了解学习思路。网络画板能有效吸引学生的注意力,增强课堂教学内容的趣味性,并实现知识的拓展,进而提高数学教学水平。The online drawing board is an auxiliary tool for mathematics teaching and learning, and its application effect in the teaching of quadratic functions in middle school mathematics is quite significant. The application of online drawing boards in secondary school quadratic function teaching can present a dynamic process of graphical changes more clearly, thereby helping students to intuitively understand their learning ideas. Online drawing boards can effectively attract students’ attention, enhance the fun of classroom teaching content, and expand knowledge, thereby improving the level of mathematics teaching.
本文主要研究拓扑空间中同伦的相关性质,进而讨论道路的逆及乘法运算,由此得到基本群,通过证明知基本群为拓扑不变量,最后利用基本群证明二维球面S2不同胚于环面T2。This article mainly studies the relevant properties of homotopy i...
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本文主要研究拓扑空间中同伦的相关性质,进而讨论道路的逆及乘法运算,由此得到基本群,通过证明知基本群为拓扑不变量,最后利用基本群证明二维球面S2不同胚于环面T2。This article mainly studies the relevant properties of homotopy in topological spaces, and then discusses the inverse and multiplication operations of roads, thereby obtaining the fundamental group. By proving that the known fundamental group is a topological invariant, the fundamental group is finally used to prove that the two-dimensional sphere S2 is different from the torus T2.
为了解云南省固定资产投资情况对GDP的影响程度,文章以云南省2008~2022年共15年的固定资产投资和GDP数据为基础,建立三次产业固定资产投资与国内生产总值(GDP)的多元线性回归模型,分产业分析固定资产投资在经济发展中的拉动作用;之后,根据云南省2018~2022年的各州(市)的GDP总额,采用系统聚类和K-均值聚类方法进行分析,最终将云南省划分为三个类别,得到相关结论;最后,根据分析结果为促进云南省经济可持续发展提出可行性建议。In order to understand the impact of fixed assets investment on GDP in Yunnan Province, based on fixed assets investment and GDP data of Yunnan Province for 15 years from 2008 to 2022, this paper establishes a multiple linear regression model between fixed assets investment in three industries and Gross Domestic Product (GDP), and analyzes the pulling role of fixed assets investment in economic development by industry;afterwards, based on the total GDP of various states (cities) in Yunnan Province from 2018 to 2022, systematic clustering and K-means clustering methods were used for analysis, and Yunnan Province was finally divided into three categories to obtain relevant conclusions;finally, based on the analysis results, feasible suggestions are proposed to promote sustainable economic development in Yunnan Province.
共享AI小车,是在共享单车和共享汽车以及无人驾驶的技术上,针对汉江师范学院内部的快递与外卖配送难题的设计。通过无人驾驶技术实现校园内高效送达,覆盖宿舍、图书馆及教学楼等场所,提升师生生活的便利度。首先从共享AI小车的安装方式、外观设计两方面入手,制作出小车的模型结构。再分别从小车充电问题和路线问题两大方面展开研究,结合校园的实际路线,规划出小车的行径路线以及所停靠的站点位置和制作出选择路径的代码;利用太阳能蓄电池和充电插口两种方式相结合,解决了小车充电问题和工作状态中和极端天气所带来的不利影响。分析表明,共享AI小车顺应科技进校园趋势,具备广阔应用前景,满足社会需求。The shared AI vehicle is a design specifically aimed at addressing the challenges of package and food delivery within the Hanjiang Normal University, building upon the technologies of shared bicycles, shared cars, and autonomous driving. Through the application of autonomous driving technology, it achieves efficient deliveries across the campus, reaching dormitories, libraries, and teaching buildings, enhancing the convenience of life for both teachers and students. Initially, the approach focuses on the assembly method and aesthetic design of the shared AI vehicle, crafting the model structure of the mini-car. Subsequently, the research delves into two critical areas: the charging mechanism and navigation routes. By integrating the real campus layout, an optimal route for the vehicle is mapped out, including designated docking stations, and an algorithm for path selection is developed. Utilizing a combination of solar-powered batteries and charging ports, the paper addresses both the charging issues and the adverse effects posed by extreme weather conditions on the vehicle’s operational status. Analysis reveals that the shared AI vehicle aligns with the trend of integrating technology into campus life, boasting a broad application horizon and fulfilling societal demand.
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