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Element odd spiral model, element chess and manufacturing method thereof

A production method and spiral model technology, applied in the field of basic chemistry, can solve the problems of lack of chemical disciplines and lack of effective technical tools for chemical enlightenment, and achieve the effects of improving interest, promoting technological progress, and reducing difficulty

Pending Publication Date: 2022-04-08
王大鹏
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0008] The subject of chemistry still lacks educational teaching aids or game software comparable to chess, checkers, animal chess, go and other educational games. Powerful technical tools

Method used

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  • Element odd spiral model, element chess and manufacturing method thereof
  • Element odd spiral model, element chess and manufacturing method thereof
  • Element odd spiral model, element chess and manufacturing method thereof

Examples

Experimental program
Comparison scheme
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Embodiment 1

[0072] A specific embodiment of the present invention discloses a method for making an odd spiral model of an element, which is characterized in that it includes:

[0073] Set a group of blocks G(x,y), and arrange the blocks G(x,y) to obtain the model body; among them,

[0074] The positive integer x is the track number of the main layer; the positive integer y is the track number of the sub-layer;

[0075] The block G(x, y) includes an element block; the setting of a group of blocks G(x, y) includes setting an element block G R (x, y); said setting element block G R Methods for (x,y) include:

[0076] Set the block G(x,y) that meets the first condition R as the element block G R (x, y); wherein, the element block G R (x, y) is used to provide the active orbit of the element conforming to the distribution characteristics of electron orbits outside the nucleus; the first condition R is {x=[1, N], y=[1, CEIL(x / 2)]}; CEIL is an upward rounding function; N is 4, 5, 6, 7, 8, 9...

Embodiment 2

[0107] On the basis of the above-mentioned embodiments, arranging the blocks G(x, y) to obtain a model volume may specifically include the following methods.

[0108] Arrange the blocks with the same main layer track number x in the order of increasing y number to obtain sector S(x); based on x=[1,N], obtain sectors S(1) to S(N).

[0109] Such as Figure 4 Shown are several optional top view schematic diagrams of the sector S(x) when N=8.

[0110] in, Figure 4 (1) shows an optional top view diagram of a block G(x, 1) to block G(x, 4) in which a block G(x, y) can be presented as a whole; Figure 4 (2), (3) show an optional block G(x, y) that can be presented as a combination of 2y-1 base grid blocks G(x, 1) to block G Schematic diagram of the top view of the arrangement of (x,4); Figure 4 (4) shows an optional block G(x, y) that can be presented as a combination of 2(2y-1) small base grids G(x, 1) to block G Schematic diagram of the top view of the arrangement of (x,4). ...

Embodiment 3

[0127] On the basis of Embodiment 1 and / or 2, the method for making the element odd spiral model may also include the following methods.

[0128] In the element block G R On (x, y), set chemical element marks of 2×(2y-1) chemical elements; wherein, the chemical element marks are used to provide active elements conforming to the electron distribution characteristics outside the nucleus, including the name of the chemical element, State diagrams, atomic numbers and / or electron orbital parameters;

[0129] The atomic numbers of the 2×(2y-1) chemical elements are continuous; in the element block G R (x,y), set to Z R (x, y) is the chemical element label of 2×(2y-1) chemical elements with the starting atomic number; among them, the element block G R The starting atomic number Z of (x,y) R (x,y) is

[0130] .

[0131]On the basis of Embodiment 1 and / or 2, the method for making the element odd spiral model may also include the following methods.

[0132] In the element block...

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Abstract

The invention relates to an element odd spiral model and a manufacturing method thereof and an element chess and a manufacturing method thereof, and belongs to the field of chemistry, and the manufacturing method of the element odd spiral model mainly comprises the following steps: setting a group of blocks G (x, y), and arranging the blocks G (x, y) to obtain a model body; setting the block G (x, y) meeting the first condition R as an element block GR (x, y); the element block GR (x, y) is used for providing an element active orbit conforming to atomic extranuclear electron distribution characteristics; and setting chemical parameters on the element blocks. According to the method, the element odd spiral model with a simple arrangement effect is obtained through a simple and automatic technical means, distribution of chemical elements in the model accords with an atom extranuclear electron orbit rule, a scientific research, education and enlightenment tool with multiple technical view research values is provided, the interestingness of chemical research and teaching is improved, and the method is suitable for popularization and application. And the technical progress in the chemical and physical fields is promoted.

Description

technical field [0001] The invention belongs to the technical field of basic chemistry, and in particular relates to an odd helix model of elements and a manufacturing method thereof, element chess and a manufacturing method thereof, an electronic device and a readable storage medium. Background technique [0002] In the "Chemistry Outline" published in 1789, the French chemist Lavoisier invented the first "Table of Elements" in history, which divided the 33 elements known at that time into 4 categories. In 1863, the British chemist Odlin published the "Table of Atomic Weight and Element Symbols", which listed 49 elements and left 9 vacancies. In 1858, Kekule observed that carbon is usually combined with other elements in a ratio of 1:4, such as methane with 1 carbon atom and 4 hydrogen atoms. This concept was later called valence; in 1865, the British chemist John Newlands divided 56 elements into 11 groups according to their properties and arranged them in the order of in...

Claims

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Application Information

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IPC IPC(8): G09B23/24A63F3/00
Inventor 王大鹏王芊媛
Owner 王大鹏
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