Macromolecules Branched Polymers
Macro-matter branching and aggregation
The transformation of heaven and earth, each thing has its own shape. Scholars should investigate the image of macro-matter branching and aggregation in detail.
Macro-matter, the body is large and the quality is complex, and it can be studied from an unusual perspective. Its molecular structure, if the stars are listed, has the main chain as the trunk, and the branches come out next to it, like the branches of wood. The main chain, the backbone of the macro-matter, bears the general shape and determines its fundamental direction. Branches attached to it, long or short, sparse or dense, make the form of macro-matter myriad.
The beauty of branching and aggregation is that its structural changes affect the properties of macro-matter. If the branches are short and dense, the texture of the macro may tend to be compact and rigid, like the shape of gold and iron; if the branches are long and sparse, the macro may be as flexible as silk, flexible and extendable, like animal tendons. And the state of branching is related to the interaction of macromatter. The position of the branch chain, or the attractive force between the molecules, makes the macromatter agglomerate into a regular state; or the resistance is close to each other, maintaining its dispersion.
To understand the branching of macromatter, you need to use the method of checking the material. Observe the path of its formation, or change to high temperature, or fit the technique. With the principle of chemistry, control the combination of its main branches and adjust its density, so as to obtain the required macro things. Used in the world, it can be used to build a strong ship, to ensure that it breaks the waves without being destroyed; it can be used to make light and tough tools, which is convenient for people's livelihood.
Therefore, the study of macro things and branches is a masterpiece of creation, and it is necessary to use manpower to penetrate material properties, create thousands of things, and benefit our country.
The transformation of heaven and earth, each thing has its own shape. Scholars should investigate the image of macro-matter branching and aggregation in detail.
Macro-matter, the body is large and the quality is complex, and it can be studied from an unusual perspective. Its molecular structure, if the stars are listed, has the main chain as the trunk, and the branches come out next to it, like the branches of wood. The main chain, the backbone of the macro-matter, bears the general shape and determines its fundamental direction. Branches attached to it, long or short, sparse or dense, make the form of macro-matter myriad.
The beauty of branching and aggregation is that its structural changes affect the properties of macro-matter. If the branches are short and dense, the texture of the macro may tend to be compact and rigid, like the shape of gold and iron; if the branches are long and sparse, the macro may be as flexible as silk, flexible and extendable, like animal tendons. And the state of branching is related to the interaction of macromatter. The position of the branch chain, or the attractive force between the molecules, makes the macromatter agglomerate into a regular state; or the resistance is close to each other, maintaining its dispersion.
To understand the branching of macromatter, you need to use the method of checking the material. Observe the path of its formation, or change to high temperature, or fit the technique. With the principle of chemistry, control the combination of its main branches and adjust its density, so as to obtain the required macro things. Used in the world, it can be used to build a strong ship, to ensure that it breaks the waves without being destroyed; it can be used to make light and tough tools, which is convenient for people's livelihood.
Therefore, the study of macro things and branches is a masterpiece of creation, and it is necessary to use manpower to penetrate material properties, create thousands of things, and benefit our country.

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