The chemical elements in love were empathy, passion, romance, and other common elements. Some people's love was also mixed with infatuation and infatuation. In addition, when a person fell in love, the body would secrete phelethylamin, which would make the person feel excited and happy with the help of dopamine.1 From the perspective of chemical elements, elements such as ossium (Osm), astatine (At), and Niobium (Niobium) could be used to express love-related meanings. For example, Ossium (Osm), At (At), and Niobium (Niobium) could be combined to form a homonym for "I love you." Platinum (Platinum) was also known as the "love metal" in the mouth of merchants, meaning that love was always the same and eternal.
I think the main elements are the chemical reactions in our brain and body. For example, when we see someone we're attracted to, our brain may release certain chemicals that make our heart race and give us butterflies in our stomach. Also, the long - term chemicals like oxytocin that keep the relationship going strong are important elements.
Here are some chemical formulas for love: 1. [H: Even if I am small and humble, I will use all my life to restore your true nature.] 2. Helium (He): I am the element from the sun, and you are my sunshine, lighting up my dim soul. 3. [Li: If I can't keep your phone running…I will come to your side and embrace your loneliness into warmth.] 4. Be: Shattering is very bitter, soaking in acid is very painful, but if you like emeralds, I will also be crushed to pieces for you. 5. Boron (B): No one pays attention to the brown powder. It can only be used as a bag of antiseptic in the corner to ensure that it will never change its mind for the rest of its life. 6. [C: Do you know how long the half-life of carbon-14 is? It's less than one-thousandth of the time I've been waiting for you.] 7. [N]: The stable nature is your unchanging heart. Even if you don't accept me, I'm willing to protect you silently by your side. 8. [O: You are an indispensable part of my life. I can't live without you.] 9. Neon (Ne): Your "electricity" for me has aroused the "fire" in my heart. 10. [Magnetite (MG): I am willing to burn myself for you, dazzling light, just hope you can pay attention to me.] 11. [AI: I want to stay close to you, just to form a protective film that belongs to you and protect you from harm.] 12. Phosphorous (P): Your little bit of enthusiasm can make me burn happily for you. 13. H ^+ O ^= H ^O: I am a hydrogen ion, you are a hydrogen ion, and together we are the source of life, H ^O.
Brain science and psychological research showed that love was a biological program. From a biological point of view, love was dominated by the power of evolution, and it was affected by hormones. All caring behaviors stemmed from multiple attractions, and crazy behaviors were to pass on genes to future generations. Dopamine played a leading role. About one-tenth of partners who had been together for 20 years would quickly secrete a large amount of Dopamine in their brains after seeing a photo of their lover. In addition, the feeling of obsession was a hormone that secreted phelethylamin (PPA), which was similar to dopamine-induced intoxication. It was only effective for 18 to 36 months for the same stimulant.
Love was thought to be a biological program, in which chemical reactions were mainly triggered by hormones. From a biological point of view, all acts of love stem from a variety of attractive forces. These attractive forces are dominated by hormones, and their purpose is to pass on genes to future generations. In the process of love, several hormones played an important role. For example, phelethylamin (Pea), which was similar to Dopamine, was related to the secretion of this hormone. However, it was only effective for 18 to 36 months for the same stimulant. Dopamine was also one of the hormones that played a leading role in love. Some studies had found that among partners who had been together for 20 years, about one-tenth of them would quickly secrete a large amount of Dopamine in their brains after seeing a photo of their lover. In addition, it was also related to human social behavior and played a role in the physiological mechanism of love.
At present, there was no chemical formula that was generally defined as representing love. But there were some creative ways to express love using chemical elements and reactions, such as " Your magnetite stole my zincate ". These chemical formulas were more of a romantic creative expression. They symbolized certain emotions in love through the characteristics of chemical elements and the image of chemical reactions. The reaction between titanium and titanium symbolized the unique attraction of one party to the other, rather than the chemical formula that strictly defined love.
Here are some examples of expressing love using chemical reactions: 1. Mn + Mn = Mn + Mn + Mn = Mn + Mn = Mn + Mn + Mn = Mn + Mn + 2. 2NaAlO2 +CO2+ 3H2O = 2AI (Ox)3 → + Na2CO3, which can be homonym for love for life. 3. AlCl3 + 4NaOx = NaAlO2 + 3NaCl2 + 2H2O, which could be homonym for a lifetime of love. 4. CH4 + 2O2 + 2HF = K2CO3 + 3H2O. 5. Cl2 +2Ki = 2KC1 +I2, which can be homonym as a love you. 6. 3Cl2 + 2Fei = ignite = 2FeCl3, which can be understood as wanting to love you. 7. 2FeCl3 +Cu = 2FeCl2 + CuCl2, which can be understood as loving you. 8. 2Na+2H2O = 2NaOx +H2, which can be understood as love love you. 9. 2 H2O2 = Mn O2 (catalyst)= 2H2O+O2. It can be understood that I am like the Manganese Dioxidein the hydrogen Peroxidereaction. Even if the world is broken, my persistence for you will never decrease. 10. 6HF +SiO2 = H2SiF6 + 2H2O, which can be understood as you are the fluorodic acid and I am the silica. I'm willing to dissolve into your bones and blood, just like how silica is only dissolved in sulfuric acid at room temperature.
His experiments would be an important element. Shulgin carried out numerous experiments on different substances, and these would form a major part of the 'Chemical Love Story'. They were not only about the scientific process but also about his personal exploration of the substances' effects. Also, his relationship with the scientific community and how his work was received could be another key aspect. Some might have been intrigued by his findings, while others might have been skeptical or critical.
The periodic table of chemical elements was a list of chemical elements sorted according to the number of nuclear charges of the elements. It was generally rectangular, with seven horizontal rows (called periods) and 18 vertical rows (called families, including the main family, sub-family, and zero family). In the same period, the number of electron layers of each element's atom is the same, and the atomic number increases gradually from left to right. The same element has the same or similar structure of the electron layer. 118 elements have been found in the periodic table, of which 94 are natural elements and the rest are synthesized in the laboratory. The number of elements in each period was different. It could be divided into extremely short periods (the first period, two elements), short periods (the second and third periods, eight elements each), long periods (the fourth and fifth periods, eighteen elements each), and very long periods (the sixth and seventh periods, thirty-two elements each). The development of the periodic table of elements had gone through many stages. In 1789, the French pharmacist Lavoisier first grouped the known 33 elements into a classification table. In 1869, the Russian pharmacist Mendelev summarized and published the first generation of the periodic table of elements. Later, many types of periodic tables were proposed, such as rings, cubes, and other shapes to highlight the different properties of the elements. The periodic table had many applications. It could be used to deduce the general properties of elements, find new materials, find or synthesize new elements, find mineral sources, and determine whether they could be used as a catalyst. The relevant knowledge points included the law of elemental properties changing with the cycle, such as the change of radius, valency, metalicity, and non-metalicity (when describing elements, metalicity and non-metalicity were used. When describing simple substances, reduction and oxidization were used, but the essence was the ability to gain and lose electrons). In addition, there were methods to memorize the periodic table of elements, as well as information about the prices of the elements in the periodic table. For example, the most expensive natural element was Fransium (the cost of laboratory production was extremely high), the most expensive natural element that could be bought was Lutesium, the most expensive synthetic element was Uranium, and there were also some cheap and common elements such as copper, sulfur, and carbon.