The plot could involve Harry being under a spell that makes him sing the periodic table involuntarily. His friends, like Hermione and Ron, try to find a way to break the spell. Along the way, they discover that the periodic table elements have some sort of connection to the magic in Hogwarts. For example, the element of gold might be related to the Galleons, and they need to understand all the elements to solve a bigger mystery in the wizarding world.
Well, it might be a really wacky plot. Maybe Harry Potter is in a magical classroom where he has to use his singing skills to remember the periodic table. He could be competing with other Hogwarts students in a sort of magical science fair where the best singer of the periodic table elements wins a special potion or a magical item.
In this fanfiction, perhaps Harry is trying to teach the younger students at Hogwarts about Muggle science through his singing of the periodic table. He realizes that understanding Muggle knowledge can also help in the wizarding world. So he creates a fun and engaging way to present the periodic table, with each element having a little magical touch in his song. For instance, when he sings about oxygen, it could be related to the air elementals in the Forbidden Forest.
Obviously, Harry Potter himself would be the main character. He's the one singing the periodic table after all. Then there would be Hermione. She would probably be either helping Harry with the correct pronunciation of the elements or trying to find a logical connection between the magic world and the periodic table. And of course, Ron would be there, making some humorous comments about Harry's singing or being completely confused by the whole Muggle science thing.
The periodic table of elements was a list of chemical elements sorted according to the number of nuclear charges of the elements. It was generally rectangular in shape, with seven horizontal rows (called periods, where the number of atomic electrons of the same period element was the same, and the atomic number increased from left to right) and 18 vertical rows (called families, which had the same or similar structure of the electron layer, divided into main family, sub-family, and zero family). 118 elements have been discovered, of which 94 are natural elements and the rest are synthetic elements in the laboratory. In 1789, the French mathematician Lavoisier grouped 33 known elements into gases, metals, non-metallic minerals, and rare earths to form the first elemental classification table. In 1869, the Russian mathematician Mendelev summarized and published the first generation of the periodic table of elements. After that, there were rings, cubes, columns, buildings, spirals, lemniscus, octagonal pyramids, spheres, and triangular-shaped periodic tables. These substitutes were mostly developed to highlight or emphasize the chemical or physical properties of the elements. The periodic table of elements was widely used to infer the general properties of elements, find new materials, find or artificially synthesize new elements, and also to find mineral sources and determine whether they could be used as a catalyst. In addition, the names of the elements in the periodic table had different characteristics in different languages. For example, the Chinese names of the elements had a corresponding word for each element. The radical represented the classification (free translation), and the radical represented the pronunciation (English translation). Compared to the Western language, it was more advantageous to remember. The Chinese periodic table of the elements could even be composed into songs for easy memorization. In terms of element collection, the radioactive elements in the periodic table (such as polinium, radon, Fransium, etc.) had a short half-life. The nucleus would decay and release high-energy particles and electromagnetic waves, which were harmful to humans. Collecting them was not only expensive but also fatal. There were also some elements (such as astine) that had low reserves and were unstable. Collecting 1 gram was almost impossible. "The Island of Life" is also a wonderful novel. Everyone is welcome to read it!
The following were some of the cliché words of the periodic table: 1. Loving you is like hydrogen forming the universe. Without you, my world is incomplete. 2. I'm like oxygen, I can't exist without you. 3. Iron knows how much I love you, just like its strong nucleus. 4. I'm willing to be with you forever. 5. I'm like Fluor, I love you forever. 6. Your love is like Stronghold, filling my life with warmth. 7. I'm like K, always with you, never to be apart. 8. I'm like copper, always keeping you in my heart. 9. You are my lithium element, bringing me abundant energy and joy. 10. You are my nitrogen element, making me feel happy and fulfilled. 11. The attraction between us is like the element of potassium, strong and cannot be ignored. 12. You are my Na element, and you bring me happiness every day. 13. You are like aluminum, stable and reliable, making me feel at ease. 14. You are like hydrogen, small but big sparks. 15. You are my phosphorous element, making me feel the importance of life and the burning passion. 16. Our relationship is like helium, stable and full of a relaxed atmosphere. 17. The chemical reaction between us was like neon, dazzling and charming. 18. You are my iron element, strong and stable to support me. 19. Our love is like oxygen, giving me a long breath and life force. 20. My mood is like silicon, full of energy and wisdom because of you. 21. You are like the element of sulfur, adding a touch of freshness and vitality to my life. 22. You are like the element of Fluor, filling me with bright expectations for the future. 23. Our love is like the element of iron, durable and precious, never fading. 24. Our love is like the element of magnetism, bright and striking. 25. You're like the element Boron, adding a hint of spice to my life. 26. Our love is like sulfur element, bringing fire like passion and warmth. 27. Our love is like the element Be, hard and durable. 28. My mood is like carbon, it becomes more alive after meeting you.
One possibility is that Harry, feeling out of place in the wizarding world, uses the song 'This is Me' as a form of self - expression. Maybe he's at Hogwarts during a time when he's being ostracized by some students or the media because of his connection to Voldemort. Singing the song could be his way of showing that he won't be silenced and he will be true to himself, despite all the challenges.
One possibility could be that Harry discovers his love for rock music during his time at Hogwarts. Maybe he forms a secret rock band with his friends like Ron and Hermione. They could perform at the Hogwarts parties or in the Forbidden Forest when no one is around. The lyrics of their songs might be about their adventures, fighting Voldemort, or just about the magical world in general.
Well, it could be a really wild plot. Maybe Harry discovers he has the ability to use his magic to make demons sing, and he uses this as a way to defeat Voldemort. For example, the demons' singing could have some kind of magical effect that paralyzes the dark forces.
In this fanfiction, it might be that the wizarding world is in a state of chaos due to some ancient dark magic being unleashed. Harry, feeling the weight of the situation, starts singing 'This is War' as a declaration of his determination to stop it. His singing could have magical effects, like inspiring the portraits in Hogwarts to come to life and fight alongside him.
Well, it could be about Harry Potter secretly loving muggle music and one day he just starts singing it in the Gryffindor common room, much to the shock and amusement of his friends.
Maybe Harry discovers a magical opera house in the wizarding world and is drawn to sing like the Phantom. He could use his magic to enhance his singing and create a whole new experience for the wizarding audience.
The periodic table of elements had a wide range of practical applications in many fields: 1. ** Predicting the properties of elements and their compounds **: Through the position of elements in the periodic table, one can infer their highest positive valency, lowest negative valency, intermediate valency, and the properties of the highest and highest valency corresponding to the hydrates. One can also compare the ion radius, ion reduction, and so on. For example, in the fourth cycle VII A group, the highest positive valency of the element could be obtained as +7, and the lowest negative valency was-1. 2. Materials Science: Helping scientists design better materials. A deep understanding of the periodic table of elements could be used to prepare materials with special properties, such as rigid ceramic, elastic materials, etc. These materials could be used in electronic equipment, energy, aerospace, and other fields. 3. ** Medicinal Chemistry **: Medicinal pharmacists apply the periodic table knowledge in the research and development of drugs. Understanding the chemical properties of different elements and the structure of compounds could help develop safer and more effective drugs. 4. ** Geochemistry research **: Due to the regular distribution of elements on the Earth, geologists can understand the evolution process and environmental changes of the Earth through in-depth study of the periodic table, analysis of the elements 'neutrons, distribution, and transformation methods. 5. [Chemistry laboratory work: It is an important basic tool for a pharmacist in the laboratory.] With the help of the periodic table, a pharmacist could quickly and accurately understand the relationship between elements, analyze the reaction process, and prepare chemicals. 6. ** Predicting the chemical properties and reaction activity of elements **: provides a framework for predicting the physical and chemical properties of elements. The position of the surrounding elements in the periodic table could be used to infer the charge and radius of an element and the stability of the compound. This was crucial in the research of new materials and drugs. In addition, it could also predict the reaction activity of the element, that is, the reaction of the element with other elements or molecules. Usually, the element with a small atomic number was more active and sensitive, while the element with a large atomic number was relatively stable. 7. [Search for specific substances: Can be used to find materials for the manufacture of semiconductor materials, pesticide materials, as well as catalyst, high-temperature and corrosion-resistant alloy materials.] 8. ** Industrial production **: In addition to the wide application of metal elements such as copper, aluminum, lead, etc., non-metallic elements can be used to make soap, plastic, glass, etc. Inert gases have important applications in the fields of semiconductor, light bulb technology, aerospace technology, etc. The novel " Primitive Law " is equally exciting. Everyone is welcome to click and read it!