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The question of whether humans can leave the solar system and reach other habitable planets in the future involves many scientific fields, including astronomy, physics, biology, etc. At present, we do not know exactly this problem at the level of technology.
First, we are exploring other planets and moons within the solar system to see if they could become human habitation. For example, Mars is considered one of the most likely planets in the solar system to become a human colony. However, while we have sent some probes to Mars, there are many technical, scientific, and engineering challenges to overcome to build a sustainable, self-sustaining human community there.
Second, even if we can find another habitable planet within the solar system, we need to develop a means of transportation that can safely transport humans to this planet. Such vehicles need to be able to operate in the extreme environments of space, while also being able to protect humans from cosmic radiation and microscopic meteorites.
Finally, we also need to take into account the health and safety of humans in space travel. The effects of the space environment on the human body include osteoporosis, muscle atrophy, vision loss, etc. We need to develop new medical technologies and methods to overcome these problems.
Overall, the future of humanity beyond the solar system and on other habitable planets depends on our ability to overcome many technical and scientific challenges. Although we can't say for sure yet, we can foresee that future space exploration will require us to continue to innovate and progress in order to realize humanity's interstellar dream.
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The universe is composed of two celestial bodies, an innumerable number of stars and their star systems, and a cosmic web that wraps around the edges and edges of the star systems. For example, our solar system is one of the infinite cells in the universe, how big the magnetic field of the sun is, how big the solar system will be, the whole solar system is a large whole of the periodic movement of matter, which relies on the huge magnetic field of the rotating sun to produce the effect of circular traction, and independently carries out the periodic cyclic movement and change of the matter in the system, which will be effectively controlled by the magnetic nature of the solar magnetic field.
At present, all kinds of space vehicles manufactured by human beings rely on electromagnetic wave signals to command and control, and within the scope of the solar magnetic field magnetron, that is, within the space range of the solar system, the electromagnetic wave signals of space vehicles can be connected. However, once the space vehicle flies out of the solar system, the electromagnetic wave signal will be automatically shielded and unable to dock, and the vehicle will disappear without a trace like a headless fly. Moreover, the vehicle will not be able to pass through the cosmic web (black hole) object between the edge of the star system and the edge of the star system, and will be swallowed up by the powerful convection and vortex motion of the cosmic web (black hole) object and disappear without a trace.
In other words, on the earth of the solar system, artificially created space vehicles can only fly within the space range of the solar system, but cannot fly beyond the celestial bodies outside the solar system.
It can be seen that no matter how long the time is, in the future, human beings will not be able to leave the solar system and live on the habitable planet of the neighboring system. The intelligent life on the habitable planets of other star systems in the universe is also similar to the situation of the solar system, and it cannot escape the control of the magnetic field of the stars in its own system, and its aircraft can only fly within the space range of the system.
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The current level of scientific and technological development of mankind is not allowed to be reached by human beings, but it is very possible in the future.
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At present, it is not attainable, and it is necessary to improve the level of science and technology before it is possible to reach this place.
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According to the current level of technology, it is still very difficult to reach this planet, because at a distance of 100 light years, it is possible to fly for 2 million years to reach it, which is very unrealistic.
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Our solar system was formed about 4.5 billion years ago and is a cloud of very fine dust in which the dust particles stick together to form clumps.
Like the accumulation under our bed, the dust clumps gradually grow larger until they form disc-shaped clouds.
In the center of the clouds the density of matter becomes greater and the temperature increases, so the precursors of the sun are formed.
Once the dust mass reaches a diameter of about 100 meters, their collisions become more and more frequent. Due to frequent collisions, their increased size led to the formation of planets. As kinetic energy is converted into heat energy in the collision, the collision part melts, and as a result, heavy metals accumulate in the core of the planet.
And the low-density silicates become part of the mantle, and this is how the inner planets are formed as a result of the gradual cooling of the crust and solidification, while the core remains liquid.
Due to the extremely low temperature, the shape of the star is formed in a different way, and the ice particles stick together to attract "hydrogen", "helium" and other gases.
The planets of the solar system have collided countless times since they were born. These collisions changed their rotation speed and the inclination of their axis of rotation, and it was in one such collision that the material that would later form the Moon broke away from the Earth about 4 billion years ago.
About 5 billion years from now, the Sun will enter the next stage of stellar evolution.
Once its core stops nuclear fusion of hydrogen, the core shrinks, while the outer layers expand, and the sun turns into a red giant.
About 7.9 billion years from now, the Sun will reach its maximum size in its red giant phase, which will be 256 times its current size.
After engulfing Mercury and Venus, the Sun is also likely to engulf Earth.
The Sun's outer layers then gradually separate from its core, forming a planetary nebula, and the core itself shrinks further to become a white dwarf.
At this stage, the sun radiates the rest of its heat into space. In the final stages of the Sun's life, once the rest of the heat is exhausted, he will become a cold and dark black dwarf. At this point, the sun has completed its glorious life.
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