
Evolution in the Metaverse
元宇宙进化
- Status
- Completed
- Length
- 5.8M Words
- Genre
- Sci-Fi
- Subgenre
- Future World
- Updated
- 1y ago
- Source
- Qidian
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In booklists 10
Books I've Read and Am Reading
Books I've read or am currently reading (not a complete list; I'll add titles as I remember them)
For My Own Use, Just Talking to Myself
For personal use
Treading the Stars Style: A Cosmic Book List
If you like it, please bookmark the list to show your support. Thanks~
Books I Once Loved, Each Excellent in Its Own Way
I've been reading for about ten years, growing from a rookie into a jaded old reader. I hope I can share some books I've loved with fellow fans.
My Reading Room: A Classic Novel Roundup
As a longtime bookworm, first of all, thanks to Qidian, the novel platform. Novels are a great way to pass the time and stretch your imagination... Ah, looks like I've been hooked for a long time... Everything has two sides. Sometimes there are so many books that it's hard to choose. I've read plenty of novels, but only a small number really suit my tastes. So, I'll use this list to keep track of them and get things organized.
I'm in a Reading Slump!
Sharing some recommendations
Miscellaneous Books
A wide variety
Worthwhile Reads
Every book has something worth reading.
Books I'm Reading Lately
Ones I personally think are good
A Sci-Fi New-Release Shelf from an Eight-Year Veteran Reader
I've personally read every book on this list, and I think they're all pretty good. At the very least, they make logical sense. I like sci-fi, fantasy, history, urban supernatural fiction, and farming stories. The books on this list 👆 are sci-fi and fantasy.
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Reader comments 52
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"Method of traveling through parallel universes": "By incarnating as a light body, using light quantum technology to enter the microscopic world, traveling through the light quantum tunnel, reaching different timelines in parallel universes and then changing different established timelines. This is the essence of light body life traveling through time and space. Four-dimensional time, five-dimensional destiny, six-dimensional cause and effect, and seven-level wheel After all, this is the fatalism and predestination within the six dimensions. Everything can be changed causally. Within the seven dimensions, everything in the entire single universe is also an eternal reincarnation of the new and the old. " I tried desperately to escape from the light cone, trying to change their fate, but it was all like a joke. There is light everywhere in the world, and wherever there is light, there is destiny. The easiest way to escape from the light cone is to find a place where there is no light, or when light has not yet been born... DNA also stores information, genetic information. So, since it is information, the carrier of information can change. If photons, as the carrier of information, achieve quantum entanglement and can preserve information, complicate information, evolve independently, and reproduce, then light quantum life will be born. If electromagnetic waves are used as information carriers, in some complex cosmic environments, electromagnetic wave information becomes complicated and entangled, and simple electromagnetic wave life may be formed. Of course, light is also a kind of electromagnetic wave, and photon life also belongs to this category. Electromagnetic life refers to life forms based on photons, and the essence of light is electromagnetic waves. The life form of light is electromagnetic life. Electromagnetic waves can store a large amount of information and are extremely rich in form. They can also meet the conditions for the existence of life and can successfully replicate themselves, so the possibility of eventually forming life is very high. There are two important reasons why life becomes life. The first is that it can replicate itself, and the second is that it can successfully save energy. All the life we see so far is carbon-based life, that is, the basis of life is carbon-based, and genetic information needs to be stored in the form of DNA or RNA. Photons themselves do have energy, so they can successfully replicate themselves. If a single photon is regarded as a living entity, it can already reproduce itself. According to the above statement, everyone can successfully guess that there is indeed a life form based on photons. The essence of light is electromagnetic waves, and the life form of light is electromagnetic life. Electromagnetic waves can store a large amount of information and are extremely rich in form. They can also meet the conditions for the existence of life and can successfully replicate themselves, so the possibility of eventually forming life is very high. Electromagnetic waves have their own unique characteristics, so there is a big difference between electromagnetic life and the imagined iron-based life or the carbon-based life that currently exists. So what are the characteristics of electromagnetic waves if they can successfully form life. Electromagnetic wave life should be invisible and colorless, and its main form is pure energy, so everyone cannot see it. It cannot be seen where there is no light, but it can be detected with professional equipment; when there is light, a group of images can be seen. Areas with frequent electromagnetic activity are more likely to exist. Relatively advanced electromagnetic life can transform into each other, and can even successfully develop entities. Quantum life form (popular science) Quantum life form, as the name implies, is a life form composed of quantum particles. The concept of a living body has also been mentioned in electromagnetic life. First of all, it needs to have the characteristics of absorbing energy, and at the same time, it must successfully store energy. The process of releasing and absorbing energy is not continuous, but step by step, and energy quanta is the smallest unit of energy. Quantum is the smallest unit of energy and will completely correspond to a kind of life form. This can be regarded as a corresponding kind of life form. When quantum life forms truly exist, quantum is no longer the smallest unit of energy. And everyone also knows that life can develop and reproduce indefinitely. Although all living things will die one day, life and death are always a process of constant alternation. Energy is constantly changing and can take any value. The proposal and development of quantum mechanics are of great significance to world physics. What are light quanta? Of course it's energy. Our body carrier is composed of particles such as atoms and molecules, which belongs to the category of matter. According to Einstein's mass-energy equation, matter and energy can be converted into each other, and under certain conditions, they can even be completely converted. Then, based on this, it can be inferred that light quantum is actually the universal material that constitutes living bodies. It not only plays the role of software-energy, but also can build hardware carrier-matter. Once energy and matter are combined, it is like a computer that combines software and hardware. It can work as long as it is powered on. It's just that the combination of energy and matter is assembled into a "life computer", and "consciousness" is the "computer" that allows the life computer to run. The mystery of photon quantum holographic imaging. Placing DNA molecules in a vacuum test tube that only stores disordered photons can quickly allow the disorderly distributed photons to quickly imitate the DNA structure, that is, forming a spiral photon arrangement. Even if all the DNA molecules are removed from the vacuum tube at this time, the spiral arrangement of photons will not disappear immediately. Life exists because of the cohesion of energy. The strength of human life is related to the aggregation force of light quanta, and the aggregation of light quanta uses DNA molecules as mold carriers. Just like light quanta is software code and DNA is the hardware circuit that supports the operation of software code, the combination of the two can make life "alive" and present it in three-dimensional space. Light quantum is just like the most basic binary code 0 and 1 in our computer. The spin quantum number of light quantum is 1, has two polarization states, and three orthogonal wave vector components. Is it the basic code that constitutes life? 1. The similarities and differences between the speed of light and electromagnetic waves: 1. Definition of light and electromagnetic waves: 1. Light: Light is a physical term, and its essence is a flow of photons in a specific frequency band. Usually refers to the kind of substance that shines on an object so that people can see the object, such as sunlight, light, moonlight, and invisible infrared and ultraviolet rays. Also called light waves and rays. Speed of light: The speed of light refers to the propagation speed of light waves or electromagnetic waves in a vacuum or medium. The speed of light in a vacuum is the maximum speed found so far for objects in nature. If the energy is not enough to jump to an outer orbit, the electron will accelerate and release energy in the form of a wave. If the vacancy in the orbit is just filled after the transition, and the electron reaches the stable state from the excited state, the electron stops transitioning. Otherwise the electron will jump back to its previous orbit and release energy in the form of a wave. 2. Electromagnetic wave: Electromagnetic wave is an oscillating particle wave derived and emitted in space by electric fields and magnetic fields that are in phase and perpendicular to each other. It is an electromagnetic field that propagates in the form of waves and has wave-particle duality. Electric fields and magnetic fields that oscillate in phase and are perpendicular to each other move in the form of waves in space, and their propagation direction is perpendicular to the plane formed by the electric fields and magnetic fields. The speed of electromagnetic waves in vacuum is fixed, and the speed is the speed of light. See Maxwell's equations. The electric field direction, magnetic field direction and propagation direction accompanying the electromagnetic wave are perpendicular to each other, so the electromagnetic wave is a transverse wave. When its energy level jumps past the radiation critical point, it radiates outward in the form of light. At this stage, the wave body is photon, and sunlight is a visible radiation form of electromagnetic waves. Electromagnetic waves do not propagate through media. The amount of electromagnetic radiation is related to temperature. Generally, substances or particles above absolute zero have electromagnetic radiation. The higher the temperature, the greater the amount of radiation, but most of it cannot be observed by the naked eye. In general, electromagnetic waves with electromagnetic radiation characteristics refer to radio waves, microwaves, infrared rays, visible light, and ultraviolet rays. X-rays and gamma rays are usually considered radioactive radiation. 1. Light and electromagnetic waves have all the characteristics of waves, such as reflection, refraction, interference and diffraction. Wave speed, wavelength and frequency have the same relationship. 2. They are all cyclical. Usually we use wavelength and frequency to describe waves quantitatively. 3. Their propagation rules are roughly the same. During the propagation process of waves, phenomena such as refraction, reflection, diffraction, dry radiation, scattering, absorption and polarization will occur. 4. They are all wavelike and have the basic property of wave-particle duality of microscopic particles. 5. They are all wave phenomena and can be used for the Doppler effect. B-ultrasound or color ultrasound in hospitals utilize the Doppler effect for imaging. 3. The difference between light and electromagnetic waves is: 1. The wavelength range of electromagnetic waves is very wide, and the wavelength range of light is included in it. Light can be considered as a kind of electromagnetic wave. 2. Light has characteristics that are different from general electromagnetic waves, so light has wave-particle duality, that is, light has both wave characteristics, such as interference, derivation and other phenomena; 3. Light also has the characteristics of general particle beams, that is, light has particle characteristics. Electromagnetic waves are not particles. According to modern physics theory, light should belong to electromagnetic waves. Because there is physical evidence that all phenomena and laws such as reflection, refraction, diffraction, and interference of light exist in electromagnetic waves. Therefore, light is considered to be electromagnetic waves. 2. What is the difference between light and electromagnetic waves? Is light an electromagnetic wave? The difference between light and electromagnetic waves is: 1. The wavelength range of electromagnetic waves is very wide, and the wavelength range of light is included in it. Light can be considered as a kind of electromagnetic wave. 2. Light has characteristics that are different from general electromagnetic waves, so light has wave-particle duality, that is, light has both wave characteristics, such as interference, derivation and other phenomena; 3. Light also has the characteristics of general particle beams, that is, light has particle characteristics. Electromagnetic waves are not particles. According to modern physics theory, light should belong to electromagnetic waves. Because there is physical evidence that all phenomena and laws such as reflection, refraction, diffraction, and interference of light exist in electromagnetic waves. Therefore, light is considered to be electromagnetic waves. The electromagnetic radiation that the human eye can receive has a wavelength between approximately 380 and 780 nanometers, which is called visible light. The essence of electromagnetic waves and light is the same, but the frequencies of different electromagnetic waves are different. Extended information: Light generally refers to visible light, specifically electromagnetic waves that can cause normal human vision, and is naturally a type of electromagnetic wave. The range of electromagnetic waves is wider than that of visible light. Arranged from small to large in frequency range, there are radio waves (very long wave, long wave, medium wave, short wave, ultrashort wave, microwave), infrared rays (far infrared rays, near infrared rays), visible light (monochromatic light from red to purple), ultraviolet rays (near ultraviolet, far ultraviolet), Roentgen rays (X-rays), gamma rays, etc. But the frequency of visible light only accounts for a very small part of all electromagnetic waves. Usually, "light" in a broad sense is a general term for electromagnetic waves (such as infrared light, visible light, ultraviolet light, X-ray, γ light) that are obviously particle-like, not obviously volatile, have high frequency (infrared rays or above), and are not prone to significant fluctuations such as diffraction, but do not include radio waves. Therefore, it is wrong to say "light is electromagnetic waves" because it is synonymous with "electromagnetic waves are light". Light contains electromagnetic waves. But it's not just electromagnetic waves, that's just one of its properties. What our eyes can see is only a small wavelength range of electromagnetic waves, that is, about 400 nanometers to 700 nanometers. The electromagnetic waves in this range are called visible light. Electromagnetic waves are oscillating particle waves derived and emitted in space by the same and mutually perpendicular electric fields and magnetic fields. They are electromagnetic fields that propagate in the form of waves and have wave-particle duality. Electromagnetic waves are composed of electric fields and magnetic fields that oscillate in phase and are perpendicular to each other. They move in the form of waves in space, and their propagation direction is perpendicular to the plane formed by the electric fields and magnetic fields. Understanding of the relationship between photons and electromagnetic waves: Photons are the excited state of the photon quantum field, while electromagnetic waves are the energy that excites the photon quantum field; The ground state photon quantum field is the dormant photon quantum resonator, which behaves as a zero-point energy field (ZPE); When electromagnetic waves propagate, they resonate with photon quantum resonators of the same frequency and are activated into photons; > The amplitude of the electromagnetic wave is converted into the number of activated photons. The stronger the electromagnetic wave, the more activated photons; The electromagnetic wave propagates forward at the speed of light and is represented by the activated photons passing by. The photons do not move. The light quantum field is like the medium in which the electromagnetic wave propagates; The spin of the activated photon comes from its resonator, and its spin direction is related to the vibration direction (polarization) of the electromagnetic wave. The above understanding can explain the following physical phenomena: Since electromagnetic waves are propagating, photons are just appearances, and double-slit interference can be a good explanation; The photon spin comes from its resonator, and the photon spin can appear as a superposition state (uncertainty). The interaction between electromagnetic waves and particles is still represented by photons, so the light in the photoelectric effect manifests as particle behavior; The zero-point energy term in the blackbody radiation formula is the representation of the ground state light quantum field. The biggest difference between light and electromagnetic waves: 1) Light has wave-particle duality, having both the properties of electromagnetic waves and particle properties. Electromagnetic waves have no particle properties, only wave properties. 2) Different modes of propagation: During the propagation process, electromagnetic waves will generate a vertical electric field, and the electric field will generate a vertical magnetic field, alternating continuously. However, the propagation of light does not produce a magnetic field or an electric field, which is different from electromagnetic waves. Summary: Light has the characteristics of electromagnetic waves. In some calculations, the formula of electromagnetic waves can be shared. However, light has its own characteristics. For example, it is also a particle beam, and it is not an electromagnetic wave at this time. Therefore, light cannot be completely equivalent to electromagnetic waves, but only has the characteristics of electromagnetic waves. [Picture]
Author
As a setting flow, it's okay, but when I read the IQ online, I feel it's a bit reluctant. It's not that the author's character's IQ is not good, it's mainly about the details of the plot, Zha Zhahui! The plot framework is okay. After reading a lot, I think the plot is generally okay, but when it comes to details, author, you can really look into Lord of the Stars. It is also a setting novel. The plot is okay and the details are there, but many people can't stand it. The key element of your book is the practice of cosmic brain big data. You can pluck it out as hard as you can, no problem. However, the main character's sense of business success in practicing cultivation is okay for readers to watch once or twice, or to watch it all the time, but the plot interspersed in the middle is very boring, which becomes a minus point. I won't say how many genuine copies I ordered and how many pirated copies I watched. In short, the plot always gave me a weird sense of childishness and felt a bit awkward. If you want to learn from the Flying Tiger City chapter, I suggest the author to read "This Game is Too Real". If you compare it, you will know that your group portrait writing is insufficient. The author is still a traditional single-thread, with many supporting characters not being described in detail, few group portrait elements, and not very full descriptions of language and psychology (this can only be compensated by reading more novels with strong language descriptions, such as: "Building a Thousand-Year Family from King Wu's Defeat of Zhou"). The details of the supporting characters are few, and it is difficult to establish a character (the author can take a look at "Rebirth of the Apocalypse: Win 30 Million at the Start". If you want to make progress, read more books!). The disadvantages are mentioned, and then the advantages. The author's book has a good setting and polishing. There is a certain gap compared with "Yusha". It is not extremely complicated and gorgeous, nor is it polished to the extreme mellowness. But there is a sense of logical and self-consistent rationality, a sense of mystery, a sense of novelty, and a sense of brain-growing! Other than that, I feel like there is nothing else. Really, the copy is quite satisfactory. I can only say that the IQ of the characters in the novel is limited to the author's intelligence. Otherwise, the intrigues of these characters would definitely be interesting. Overall, a small boutique. Interesting, but it feels a bit like driving high and going low. It is a high-quality product that will not be popular. I feel that the author has relatively high cultural literacy, but it is just a wink for a blind person. There are many things that readers do not need to know too much about. At most, some readers will have a sense of pride: I don't read novels for leisure. Didn't I still learn knowledge? ! Hilbert space, Fourier transform, fractal geometry, timing, primary matrices, vectors... Then I liked this book. From then on, I used the knowledge in the book to show off. However, it is useless for everyone to learn this. When readers read novels, they only need to know that there is such a thing. When seeing so many proper nouns, at most they feel that the author put a lot of effort into writing the book, but they don't understand it at all. If the author's novel wants to be universal and compatible, it is best to deal with the plot. There are many elements of online literature, but the plot taking up one-third of the world is definitely not too much. If the plot is well written, you must have strong adaptability. The protagonist himself is well-versed in human relations, and many plots can fly far with imagination. As the author said: Logic cannot take him from point A to point B, but imagination can take him to any corner of the world! If the protagonist has a strong imagination and strong execution ability, naturally all roads will lead to Rome, and there is no need to just go all the way. However, the protagonist's execution ability cannot be achieved by imagination. Execution ability = ability + imagination. So the protagonist must have great execution power. Strong execution power can create all kinds of miracles (even if the protagonist waves his hand and a person in the toilet obeys the order and pulls Dad out of the bizarre plot, as long as the protagonist is eloquent and has a superior IQ, it can be planned out. There is nothing unimaginable, but it is just that you dare not think about it, and it is just a waste of thinking. If you are awesome, how can you not get things done). Although that is said, this requirement is very demanding, which means that the protagonist must have one or two excellent eloquence, IQ, emotional intelligence, adaptability, literacy, etc. Doesn't this mean that the author has to be so awesome? But the problem is, if the author is so awesome, he still writes novels to experience life, right? Like Qi Peijia? That guy made The Super Mechanic popular, and the next one was discontinued in the blink of an eye. After all, great people write novels part-time. Ahem, I'm going too far. In short, come on, author!
It feels like I'm changing my skin to become an immortal. In a place that emphasizes scientific training, you can't see the connection between science and life technology. Biological sciences, physical sciences, humanities, all the creations I have seen so far (about a hundred chapters) seem to have jumped out of a black box, and you can't see the upstream and downstream of any industry, except for hunting, cooking and manufacturing. Various creations require a large number of production links to operate (the cars and electromagnetic guns shown in the article). I can understand that you can pick up potion production equipment when picking up garbage, but I can't understand it if you pick up heavy industry production chains. This can't be workshop-style production, right? How many people are needed to spend money? The author's description of the city is really a bit thin, so is there only one road in the city? You can just bring a few things about the city. Just write down whether the people in the city have weapons and equipment, whether they carry vegetables or food when walking, and whether they use integrated chip chopsticks or intubation to eat rice noodles. Wouldn't this be enriching? 🐶 There is also the matter of scientific training. The protagonist is always thinking alone. If he buys a server to run AI, what can he do with limited data? Streamline the process? What you need to play big data is to have testers, and you need predecessors to help you learn the tricks of big data to make progress. Playing big data by yourself is like playing a sparrow, although it is small and has all the internal organs. The protagonist's 10,000 calculations per second are comparable to hundreds of ordinary people who do hundreds of calculations per second. I hope the protagonist will stop being so fussy after he levels up. How many people can he support if he earns tens of millions at a time? Isn't scientific cultivation just about gathering the strength of all people into one? (If someone prepares leeks in the sky, then pretend I didn't say it🐶) It is said to be a science, but there is no practical application at present. I hope it can be enriched Don't act like a group of barbarians with high technology.
It's quite funny. After reading more than a hundred chapters, I realized that the author has been scolding others for being lickers for a long time. The author himself is a standard licker, and he licks every woman he meets.
Author, do you know about tribulation? When a system introduces variables and gets feedback, when changes occur, the balance is no longer balanced, causing an imbalance. They can all be called tribulations, and tribulations are accompanied by luck, or they may occur one after the other. According to the author, the peak of material civilization touches the cosmic brain and high dimensions, causing disasters. Is this a disaster? Some people rob you, others covet you. Either contact with high dimensions does not fully lead to imbalance, or variables cause turmoil, or it is feedback from the system.
Computers are designed to imitate the structure of the human brain. The protagonist tries to imitate the structure of the computer again. Isn't this a bit of a waste of time? Of course, the human brain is very mysterious to modern science and cannot be completely controlled. The protagonist learns the architecture of the computer probably because the computer is completely controllable.
Based on the computing power of the people in the book, it feels like ten years can take them all over the solar system. People who have been working for a hundred years will kneel down and call daddy. However, it turns out that those earthlings are still trapped on the earth after a thousand years, and they can't defeat those carbon-based monsters. It's really a bit useless.
The creativity is first-rate, but he fights with sticks. According to the settings, artificial intelligence can be used to explode troops. There is an insect nest, and humans actually do not use bionics to create artificial insect nests, nor do they create chemical weapons. In a situation where the death of human beings will increase the strength of the enemy, the unscrupulous rulers did not install bombs that can sense life status at the bottom, and the industrial chain did not collapse, but they were unable to crush low-level alien species.
The setting is quite interesting at the beginning. It is quite interesting to watch the protagonist upgrade in the academy. Later, when he goes on a mission to fight monsters, it immediately turns into a story about fighting monsters and upgrading. It is no different from a fantasy novel. For science fiction themes, I prefer to see the development of science and technology and future fantasy, rather than this kind of fantasy novel that is slightly related to realm setting and science fiction. After leaving school, it is about fighting monsters and upgrading, and inheriting by chance, which is very boring. The realm setting is It's quite novel, but later I found that it was similar to the traditional realm setting, with the addition of knowledge, formulas, etc., It looked superior. When I saw that the protagonist has been breaking through the limits in the semi-awakened state, striving for a more perfect foundation, I knew that this was no different from the half-step to the peak of Dzogchen in the fantasy novel of immortality. In order to prepare for leapfrogging, the protagonist's semi-awakened limit has exceeded the accumulation of most awakened people.
The first few dozen chapters are like gods, and the follow-up is like shit. The first awakened person looked like a big boss, and the fully awakened person that appeared next looked like a minion, and he vomited