Hot Wavelength
Chapter 21 : Lens
Chapter 21 (Hot Jupiter 1): Lens
6500 million years ago, the Victoria wetlands on Earth
“Maria, I need your help.” Nikola Tesla said this the moment he saw Maria again.
“Nikola, what’s wrong now? I don’t understand astronomy or physics, what do you need me to do?” Maria asked Tesla, then teased her beloved lover, “Do you want me to help save the solar system?”
Nikola Tesla smiled wryly, pointed to the warehouse storing space debris, and said:
"I would like to ask you and your friends to help me get these things to the moon as soon as possible so that I can conduct a crucial experiment."
Maria could tell that Tesla was serious and not joking. After a moment's thought, she said:
"The space elevator is readily available, and we have sufficient manpower here, but transporting it to the moon requires a large number of spacecraft, which is something you can only solve by finding a solution yourself."
"The Alliance has given me the highest special authorization to mobilize the spaceships and necessary resources from Venus. I'm in a hurry to come to Earth because I want to understand your manpower situation first. If it's insufficient, the Alliance can send a large number of robots or even special forces," Tesla said.
Maria understood Tesla's intention and explained to him the situation on Earth as Venus's place of exile. The place of exile was not a prison; there were no guards, and the fences were not there to prevent prisoners from escaping, but rather to keep out the invasion of dinosaurs.
After arriving on Earth, the exiled prisoners are free to move around and treat each other as equals. They are self-sufficient and sometimes do work for the Venusian Alliance in exchange for living supplies that are not available on Earth.
Maria and the hundreds of clones she created lived together in a small village, where they hunted, gathered, and farmed.
Maria did not feel that being exiled to Earth was a punishment. Being with these clones who communicated only through music and singing, she seemed to have gained unprecedented physical and mental freedom and happiness.
“Nikola, not everyone here is a clone. I have a best friend named Vinu. She used to be an accountant. I’ll invite her over to help you with your calculations.” Maria said, taking out an instrument that Tesla had never seen before and playing a series of melodious notes.
Venu arrived, followed by a teenage girl. Maria introduced Tesla and Venu to each other, then took the girl's hand and said to Tesla:
“She is our Cynthia, Vinu’s daughter. Cynthia and I were exiled to Earth, and Vinu came with us of his own volition.”
Cynthia had large eyes and was a little shy around strangers, clutching Vinu's clothes tightly and hiding half her body behind her mother. If Maria hadn't told Tesla that Cynthia was a clone, it would have been impossible to tell her from a normal Venusian human based on her appearance.
Vinu was slightly plump, with straight, black hair, a rosy complexion, and eyes that showed no sorrow or sadness. She smiled and said to Tesla:
"Thank you, Mr. Tesla, for bringing me my homemade bracken pickles, a specialty of Earth. How is he?"
Tesla then realized that Brahma, Vinu, and Cynthia, whom he had met on Venus not long ago, were a family.
After exchanging pleasantries, Nikola Tesla entered the data provided by Vinu into his portable computer, including the amount of space debris, the manpower situation at the Earth's exile sites, and the maximum daily workload.
Nikola Tesla has been granted priority access to the interplanetary emergency communication band by the Alliance, which allows him to maintain video communication with Venus anytime, anywhere via relay satellites from Earth or even Mars.
The video call connected, and the image of Dean Abbott, who was far away on Venus, appeared before Tesla's eyes.
"Abbott, how are the transport ships between Earth and the Moon coming along? I've calculated that we'll need at least a thousand," Tesla asked bluntly.
Abbott shook his head slightly with a serious expression and replied, "Capacity is very tight, and we are trying to find a solution. You left in a hurry and didn't explain clearly what kind of situation we are facing."
Nikola Tesla paused for a moment, then said, "According to my theory and the calculations given by the lightning ball, the explosion of Saturn's moons will cause Jupiter to move closer to the sun."
"If Jupiter moves closer to the Sun, Mercury, Venus, Earth, and Mars will also be pushed towards the Sun, the habitable zone will cease to exist, and the structure of the solar system will be completely destroyed?" Abbott said in shock, stating the worst possible outcome.
“I, like you, do not want this situation to occur. I have never so strongly hoped that my theory was wrong, which is why I requested that the lunar mass tumor experiment be started immediately,” Tesla said to Abbott with equal helplessness.
“Nikola, whether your theory of gravity is right or wrong, I want to advise you that the experimental results cannot change our predicament. Instead of making a big fuss about conducting lunar experiments, we should work together to find a way to solve the problem,” Abbott, the dean of the Venus Academy of Sciences, said rationally and sincerely.
"I don't necessarily want to do this experiment, but my theory of gravity and the immature solution derived from it are so absurd and risky that I don't even dare to say it out loud."
Tesla frowned, then continued, "Even if I told them, neither the officials of the Venus Alliance nor the scientists of the Academy of Sciences would accept my theoretical predictions and remedial solutions; they would only think I was a madman!"
“Okay, first describe to me how this giant ice mass formed after the explosion of Saturn’s Sedna moon will affect the gravitational relationship of the solar system,” Abbott asked. Nikola Tesla’s theory of gravity was indeed incredible. He believed that the magnitude of the gravitational force on an object depended on the intensity of the energy it displaced and the form of radiation from the gravitational source (energy source). The form of radiation could be represented and calculated using the peak wavelength of radiation.
Within the solar system, the peak wavelength of the Sun's radiation is a constant. The magnitude of the acceleration of the planets towards the Sun depends only on the strength of their respective displaced energy, which is supported by mathematical formulas, and the calculation results are exactly the same as the law of universal gravitation.
According to the blackbody radiation law, energy intensity decreases with the square of the distance. The acceleration of a planet pointing towards the sun also decreases with the square of the distance.
The unit of energy intensity is watts per square meter. With the semi-major axis of the planet as the radius and the center of the sun as the center of the sphere, the total energy of the sphere is exactly equal to the total energy of the sun. Ignoring eccentricity, the orbit of the planet is a closed circle of equal energy on the surface of this sphere.
For example, Earth is closer to the Sun than Mars, and its energy intensity E is higher than that of Mars. Therefore, Earth's acceleration toward the Sun is proportionally higher than that of Mars.
The laws of physics and mathematics are so amazing; the linear relationship between energy intensity and acceleration can also be converted into a linear relationship between the temperature of the hypothetical photosphere of a planet and the planet's average orbital speed.
The effective surface temperature of the sun is 5772K. When it radiates to Earth, it reaches 395K, but when it reaches Mars, it decreases to 319K. 319/395 = 0.8076.
This ratio is the ratio of the average orbital speeds of Mars and Earth! Earth's average orbital speed is 29.78 kilometers per second, and multiplying that by 0.8076 gives us Mars' average orbital speed, which is 24 kilometers per second.
The effective radiation temperature from the sun is equal to the average orbital speed of a planet? That's amazing!
According to Tesla's theory of gravity, energy transfer is the fundamental cause of motion. Hyperlight waves have extremely long wavelengths (170360 kilometers) and extremely high frequencies, on the order of 10 to the 16th power. If the diameter of an object (such as the sun) is greater than 18 kilometers, it will be incident on the hyperlight waves.
The sun absorbs enormous amounts of energy, which in turn triggers high-frequency resonance in the hydrogen nuclei inside, creating nuclear reactions and releasing tremendous energy.
In the solar system, the largest celestial body besides the Sun is Jupiter, with a diameter of approximately 143000 kilometers. This diameter is smaller than the wavelength of superluminal light, which cannot penetrate Jupiter completely and instead diffracts it. Therefore, it does not trigger strong nuclear reactions in the microscopic particles inside Jupiter.
A weak nuclear reaction does not mean there is none. Nikola Tesla discovered a strange phenomenon in the solar system: among all the celestial bodies in the solar system, only Jupiter and Saturn showed a weak nuclear reaction.
The evidence is that the amount of solar energy absorbed by a celestial body should be exactly equal to the amount of energy it releases into space, and observational data from Venus, Earth, and Mars confirm this conclusion.
However, observations have revealed that Jupiter and Saturn release twice as much energy into the atmosphere as they absorb from the Sun. Venus scientists explain this by saying that Saturn and Jupiter, with their large mass and volume, experienced slight nuclear reactions in their cores under pressure.
The flaw in the above explanation is that the pressure inside a gas giant is closely related to its density. Neptune and Uranus, both gas giants, have densities of 1.6 and 1.3, respectively, which are higher than or close to Jupiter's 1.3 and much higher than Saturn's 0.7. However, the nuclear reactions on Neptune and Uranus are much weaker than those on Jupiter and Saturn.
Tesla explained that although the diameter of a star is smaller than that of a hyperluminescent object, its surface is spherical. When the arc length of the hemisphere on its surface is greater than the wavelength of the hyperluminescent object, it will also hinder the diffraction of the hyperluminescent object, absorb some energy, and produce a weaker resonance reaction.
The hemispherical arc lengths of Saturn (18.3 km) and Jupiter (22.5 km) are greater than the wavelength of hyperlight, while the hemispherical arc lengths of Uranus (8 km) and Neptune (7.7 km) are still less than the wavelength of hyperlight.
When two planets are in conjunction with the Sun, the outer planet blocks ultraviolet (UV) light. As UV light diffracts towards the Sun, the outer planet acts like a lens, focusing the UV light onto the inner planet instead of the inner one. In simpler terms: Saturn becomes larger, and Jupiter suffers!
If the hemispherical arc length of the inner planet (Jupiter) is greater than the wavelength of the superluminal wave, it will receive more superluminal energy and produce a stronger energy response.
"Three years from now, Jupiter and Saturn will align along the line connecting the Sun and Regulus. This massive ice mass spanning millions of kilometers between Regulus and Saturn will become a super lens, allowing Jupiter to absorb even more superluminal energy." Abbott understood Tesla's logic and then exclaimed in surprise:
"As Jupiter's internal temperature rises, the intensity of its energy emissions also increases, and its acceleration toward the sun becomes greater. Its orbit will tighten and move closer to the sun. Jupiter takes about 12 years to complete one revolution around the sun. Starting in three years, it won't take many more revolutions before it pushes all of us inner rocky planets toward the sun!"
“Then we’ll have nowhere to go?” Maria murmured.
&
The poem composed of collected verses at the end of the chapter:
Overlooking the ravine, a silver wave crashes down; Song Dynasty, Zhu Xi
The wild goose, startled, dodges the arrow high above. (Song Dynasty, Yang Yi)
But he disliked the dust obscuring the mirror, and Jin, Li Kui reported.
A meteor streaked across the sky overnight. (Song Dynasty, Su Song)
(End of this chapter)
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