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Choose a sunny day, take an appropriate amount of pigment and dissolve it in sterile water, then inject it into a syringe, and slowly inject hollyhock, lily, wood flower, hydrangea, frangipani, gardenia.
Seed flowers, vermilion red, jasmine, junzi orchid, ruixiang flower, dahlias, plum flowers and other flower stems, can make the flowers change color, especially white or light-colored flowers dyeing effect is the best.
Before and after dyeing, the potting soil should be properly watered.
Principle. There is a phloem in the skin of the plant stem, and there are tubes arranged in it, called sieve tubes, which are the main arteries that transport nutrients, and the nutrients made by the leaves are sent to the roots and various organs. The woody part of the skin is also lined with many pipes, called ducts, which are another large artery of the plant, which is responsible for transporting the water and nutrients absorbed by the roots to the leaves.
The water absorbed by the root enters the conduit, and because the conduit is very thin, the cohesion of the water is very strong, which can form a high pressure and make the water continue to rise; In addition, the roots also have a certain amount of pressure when absorbing water. So the water and nutrients can be transported from the roots to the catheters. And this is how the ink reaches the leaf surface, turning the white flowers into colored flowers.
If you cut off the roots and make a flower arrangement, the flower stems will absorb the water and take away the pigment at the same time.
The lighter the color, the easier it is to bring out the absorbed color.
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Q the principle? It is the water with color that is transported along the flower stem to the vacuoles of the cells of the flowers and leaves, so that the cells take on a certain color.
It's useless to use paint, because the particles of pigment are too big to get into the cell, so you have to use colored ink, it's a fountain pen that kind of ink, and the ink can't either...
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The water must be colored.
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The colored moisture is transported into the cells of the flower so that the flower takes on the color of the pigment, which should be more noticeable with white flowers.
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Water is transferred to the petals by the stem, and the petals change color.
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You will see flowers with a red-blue gradient.
If the stem comes into contact with the paint water, the stem will absorb water. No more than 2 days, after a few hours, cut off the stems underneath. You will see the color inside, red, blue, or green (if it's green water).
If the cup is green and the water is normal, then you are playing with words. If there is no water in the pigment and there is no water in the green cup, the flower will wither and the pigment will only enter the surface of the stem. It's a little experiment.
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In a green cup, if there is no water, the flower will wither, and if you put red and blue paint, if there is no water, the flower will also wither.
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If the flower stem comes into contact with the pigment water, it will absorb water. Don't do it for 2 days, after a few hours, cut off the flower stem underneath and you will see the color inside, red, blue or green (if it is green water). If it's just that the cup is green and the water is plain, then you're playing with words.
If there is no water in the paint, there is no water in the green cup, the flower will wither, and the paint will only enter the surface of the stem.
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And as a result, the stems of the flowers in the cups of different colors are cut with scissors, and they become the corresponding colors when they are close to the batch, and the leaves may also change color on the veins, and the green ones are not too obvious, and the red ones are the most obvious.
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It should all wilt, and if you don't have roots, you won't be able to absorb nutrients
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Because the flower is transparent, it will change color.
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The white flower is actually transparent, and there is no pigment in it. So later the pigment in the white flower is the pigment of the pigment. So how does the pigment of the pigment get into the white flower?
This involves the problem of water transport. Although the roots of the white flowers are cut off, the bottom aqueduct still exists, and the concentration of the cells in the flowers and stems is much larger than that of the water, so the water in the water will be sucked into the plant, and at the same time, the pigment pigment will be sucked in, and some pigments will be attached to the inside of the cell, so that the flower and the stem will be discolored.
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。Because the white flower was originally not said, but. The sun is golden. Absorb moisture to obtain. It will also pull all kinds of pigments, so it will change color.
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Close-up dragon girl orange red without buckles international education quotes.
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How can the flower stem be complete after it has been cut? You should have two flowers, but generally, 1, the conduit (wooden part), that is, the layer inside the flower stem, becomes the color of the water in the cup, and the sieve tube (phloem) is the outside unchanged, and it depends on whether there is a cambium in the middle, and if so, the cambium in the middle does not change color.
2. It's a brain teaser, and the answer is that the flower stem has withered.
I'm based on bioanalysis, and the code word is not easy to be satisfied with, so I will adopt it.
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It should be that it is a pigment, if it is soaked in other places, it will not be gone, the pigment is special, made of some special items, and has special effects.
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The stem of the plant will absorb water upward, the pigment is the color of the horse, and the flowers are estimated to change a little, especially the light-colored flowers.
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Because the pigment is slightly corroded, and the foam will melt and be stained by the corrosive material when it encounters heat or corrosives.
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Because flowers have water-soluble substances.
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The white flower is actually transparent, and there is no pigment in it. So later the pigment in the white flower is the pigment of the pigment. So how does the pigment of the pigment get into the white flower?
This involves the problem of water transport. Although the roots of the white flowers are cut off, the bottom aqueduct still exists, and the concentration of the cells in the flowers and stems is much larger than that of the water, so the water in the water will be sucked into the plant, and at the same time, the pigment pigment will be sucked in, and some pigments will be attached to the inside of the cell, so that the flower and the stem will be discolored.
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And as a result, the stems of the flowers in the cups of different colors are cut with scissors, and they become the corresponding colors when they are close to the batch, and the leaves may also change color on the veins, and the green ones are not too obvious, and the red ones are the most obvious.
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The stems of the flowers in the cups of different colors are cut with scissors and will change to the corresponding color when they are close to the batch.
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What color the flower stem in the cup will become.
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Well, it's actually half and half, and the color of the flowers will be red and half blue.
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Roll roll.
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The white flower is actually transparent, and there is no pigment in it. So later the pigment in the white flower is the pigment of the pigment. So how does the pigment of the pigment get into the white flower?
This involves the problem of water transport. Although the roots of the white flowers are cut off, the bottom aqueduct still exists, and the concentration of the cells in the flowers and stems is much larger than that of the water, so the water in the water will be sucked into the plant, and at the same time, the pigment pigment will be sucked in, and some pigments will be attached to the inside of the cell, so that the flower and the stem will be discolored.
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The white flower is in fact transparent, it has no color in it. So later the color inside the white flower is the color of the pigment.
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The concentration of water is much larger, so the water in the water will be sucked into the plant, and at the same time, the pigment pigment will be sucked in, and some pigments will adhere to the inside of the cell, so that the flowers and stems will be discolored.
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