Chapter 31 Energy Bubble

Style: Science Author: Wang YixianWords: 2910Update Time: 24/01/18 05:04:17
April 2027, Liangguo Rocket City

David Halsey still couldn't figure it out. Although Professor Braun had explained Tesla's ultra-light wave theory and verification experiments to him, he still couldn't find any clues about the so-called "Little Girl" plan of the Yuhan people.

But in the case of Daphne Braun's kidnapping, the Jade Khans brazenly provided multiple pieces of information relevant to their plans.

The Yuhan people have obtained a metronome and seem to have mastered Tesla's theory. They also hinted that Jupiter conjunct Regulus, an important celestial phenomenon that will appear again on May 25 this year.

There is still more than a month, time is too tight, and without any intuition, David is sure that the Yuhan people are not joking.

The Liang Navy’s exercises and salvage operations in the Zuao Sea began in 2014. Before that, the Yuhan people had fished the metronome away.

After more than ten years of planning, putting a metronome at the kidnapping scene couldn't be just a prank.

David once again made an appointment with Professor Braun and asked without any hope:

"There are rumors that Tesla, in addition to submitting the paper "Dynamic Principles of Gravity" that year, also proposed a weapon plan. Is that right?"

"Tesla's weapon plans are just some conceptual drawings. The core is to use a high-speed rotating magnetic field to concentrate a large amount of energy at a point. Tesla even claimed that high-speed magnetic fields can change the direction of gravity." Professor Braun shook his head. Then he said:

"These so-called weapons are nothing more than ball lightning, electromagnetic cannons, laser weapons, etc. We have already mastered these weapons. The Yuhan people should not use them to attack Liangguo."

"I completely agree with you. This is also what troubles me. The Yuhan people will definitely attack us, but they cannot use any of the weapons mentioned above because they are essentially no different from missiles." David also shook his head. head, then said:

"As long as the Yuhan people attack the Liang Kingdom, no matter what kind of weapons they use, it is equivalent to declaring war on us, which will not do them any good."

"In fact, the Yuhan people have clearly told us that the actions they are about to take are likely to be related to ultra-light waves. How to directly weaponize ultra-light waves does require in-depth study." Professor Braun said.

David Halsey nodded frequently, waiting for the professor's further explanation. Professor Braun found a paper on his computer. The core content of the paper was the band distribution of satellites in the solar system.

Using the solar radius as the standard unit scale, the paper calculated that 269 satellites of the six planets Earth, Mars, Jupiter, Saturn, Uranus and Neptune originate from 6 different gravitational fields.

However, according to the unified standard unit of solar radius, the semi-major axis, radius and other parameters of each satellite have a band-like distribution regularity.

The standard scale of the solar radius seems to determine the relevant parameters of planets and satellites.

Scientists have discovered that two physical events that can be mathematically described are occurring simultaneously in the solar system.

1. The mass of the sun forms the gravitational field of the solar system. The planets move around the sun in different orbits, and the acceleration toward the sun decreases with the square of the distance.

2. The energy of the sun (total luminosity) illuminates the entire solar system, forming a radiation field that approximates a black body. The radiation intensity per unit area decreases with the square of the distance.

The gravitational field belongs to the category of mechanics, and the radiation field belongs to the category of optics and thermodynamics. According to the current theoretical framework, these two events have no connection.

But what is interesting is that both the gravitational field and the radiation field decrease with the square of the distance. Multiplying the square of the planet's distance from the Sun times the centripetal acceleration gives a constant for the Sun's mass.

That is r^2 a=GM⨀.

The square of the planet's distance from the sun multiplied by the intensity of radiation it receives (the solar constant) gives us a constant for the sun's luminosity.

That is r^2 E=L⨀/4π.

In the same solar gravitational field or radiation field, the mass and luminosity of the sun are constant, so it is easy to obtain the linear relationship between acceleration and radiation intensity:

a=4πGM⨀/L⨀ E=kE.

In the above formula, k is a constant.

The gravitational force experienced by an object is equal to its mass multiplied by its acceleration, which can actually be expressed as mass multiplied by radiation intensity multiplied by a constant.

How can the force exerted on an object be equivalent to the acceleration, and at the same time be equivalent to the intensity of the radiation it is radiated?

Could it be?

To borrow a sentence from Archimedes when describing the buoyancy of water, it can be expressed like this -

The gravitational pull an object experiences depends on how strongly it displaces energy!

This is the core point of Tesla's "Dynamic Principles of Gravity". Existing theories certainly do not agree with Tesla's statement.

Both the classic law of universal gravitation and the gravitational field in general relativity believe that gravity is caused by mass and has nothing to do with energy radiation events.

"Tesla's principle of gravity really shocked me, but after verifying the ultra-light wave, I thought from a different angle." Professor Braun seemed to be talking to himself:

"The solar system is centered on the sun, with planets, comets and gas haloes on the periphery. So is the size of the entire solar system determined by mass gravity, or by energy radiation?"

Existing theories believe that the size of the solar system depends on the mass gravity of the sun, and the range of gravity is infinite.

As long as there are no other nearby stars to interfere, the Sun's gravity can push the boundaries of the solar system very far away.

Another factor is the total amount of objects around the sun (star) and up to the clear air. The total amount has a certain regularity.

But it is generally a chance event. In other words, there is no inevitable deterministic limit to the size of a star system.

But the blackbody radiation event of the sun (every star) has a deterministic boundary!

The sun is approximately a black body, and a light sphere can be drawn with the radius from the center of the sun to any distance.

The total luminosity on the surface of this virtual photosphere is always equal to the total luminosity of the sun, and the energy intensity on the surface of the photosphere decreases with the square of the distance.

If the energy intensity in a vacuum is zero, then the sun's photosphere radius can also be infinite.

However, observational evidence shows that the energy intensity in the vacuum is not zero, but is filled with uniform cosmic microwave background radiation.

The temperature converted into blackbody radiation is 2.725 Kelvin (approximately minus 270 degrees Celsius).

Therefore, when the solar radiation intensity decreases with distance to the radiation intensity E_min represented by the temperature, the corresponding distance is the boundary of the solar effective radiation field.

That is r_max^2 E_min=L⨀/4π.

Considering non-perfect circular orbits such as comets, the eccentricity is not 0, but approaches 1.

(r_max)^2=π^e (L⨀/(4πE_min )).

Taking e=1, the maximum effective distance of solar radiation is about 65530 astronomical units, which is about 1 light-year, that is, the diameter of the solar system is about 2 light-years.

This is consistent with current observations of the Oort cloud in the outer solar system.

In other words, the boundary of the solar system's gravitational field is completely consistent with the boundary of the solar radiation field, which should have nothing to do with it.

To put it more vividly, the clear temperature of the outer solar system is 2.725 Kelvin, which is like the "sea level" height of the energy ocean.

The surface temperature of the sun is 5770 Kelvin. When its radiation temperature decreases to the same as the ambient temperature, that is, 2.725K, it is the radiation boundary of the solar system.

The intensity of solar radiation is high in the center and low in the periphery. The effective radiation intensity is higher than the "sea level", just like a big "energy bubble" upside down on the "sea level".

The boundary of this "energy bubble" is right at the junction with sea level. The background temperature value of "sea level" is known, and the size of the "energy bubble" can be accurately calculated!

Because the total luminosity of the Milky Way is also known, all parameters except the distance at which the radiation intensity decreases to the background radiation intensity are known constants.

Therefore, using the same formula, it can be calculated that when the Milky Way radiation temperature decreases to 2.725 Kelvin, the corresponding boundary radius is about 55,000 light-years and the diameter is about 110,000 light-years, which is consistent with observations.

The Andromeda Galaxy (M31) has a calculated diameter of about 136,000 light-years, and the Virgo A Galaxy (M87) has a calculated diameter of about 156,000 light-years, both of which are consistent with observations.

So there is the boundary law of gravitational field:

(r_max)^2=π^e (L/(4πE_min ))

"Professor, I'm almost asleep. I understand the metaphor of the energy bubble. Can you explain the boundary law of the gravitational field in a more simple way?" David said.

"Then let me translate the above mathematical formula into language. Any mass body can be described as an energy body. The size of its gravitational field can also be said to be the size of its influence and the space it occupies. What about the relationship?"

Professor Braun looked at David confidently. He believed that David would agree with the gravitational field boundary law expressed in language, and he would definitely feel the simple and universal beauty of this law.

A summary of astronomical observations,

Using physical principles,

Through mathematical derivation,

I actually came up with one——

Universal laws of nature and humanity.

Professor Braun said loudly:

"Whether you are as big as the sun or the Milky Way,

Or are you as small as an atom or a proton?

Or are you an organization or a person?

You will all follow the gravitational field boundary law:

How much energy do you have?

There is so much space! "