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The theory of general relativity does not limit our exploration of the universe. Because it can be wrong. And that doesn't mean that even if it's right, people won't do things that involve it.
Time and length are measured at the speed of light. You may never be able to exceed the speed of light.
However, Einstein was a super-intelligent man, which does not mean that he was right. Black holes escape faster than the speed of light. Light is inherently particle motion.
If hard enough. Anything can be faster than light. (If you don't think about hardness, then you need to consider acceleration, which may take many years to safely add people to the speed of light).
Light is light, so why do you turn back time faster than light? The human eye can perceive light. This does not mean that some non-carbon-based or carbon-based life forms can perceive particles such as neutrins. Probably for them, neutrons are the elementary particles of electromagnetic waves.
Light is just a particle, a moving particle. How can it be said that light has no quality? It is estimated that it is an electronic scale, but it is accurate. It is n times lighter than electrons, and it is of course difficult to measure on electronic scales.
To sum up, faster-than-light is realistic. So we can only study hard and take exams in China. After showing your abilities, you can study how to travel the universe at N times the speed of light. This can be at the expense of generations.
The above is just a personal opinion, but I am convinced of it
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This is true in theory, and the same is true in actual observations, at least we can see that the observed matter, waves, etc., do not exceed the speed of light. It's like the maximum speed you can push it at the speed of light, and it certainly won't go any faster.
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There is no theory that can limit human development, and the general theory of relativity is just what some people think is a law, and many people question it themselves, and according to other laws, the theory of relativity, Einstein got a lot wrong.
For example, he does not know that space is not a vacuum, that vacuum is relative; Air, water, glass and many other substances are optical mediums, and the medium determines the speed of light; His definition of time does not conform to the scientific definition of objective laws.
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Yes, 100 times the speed of light, 1000 times the speed of light is not possible at the moment.
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No, it will be of great help to us in exploring the universe.
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The speed limit of the universe is the speed of light, which is 300,000 kilometers per second. That is, no matter how light is emitted on an object in any state of motion, it will not exceed 300,000 kilometers per second. Therefore, when an object moves close to the speed of light, other physical conditions change.
Something unthinkable beyond common sense will happen. The mass of matter will become infinite, and time will tend to be infinitely slow. That is, space-time will shrink.
In ancient China, there was an obscure conversation between two monks, one monk asked the other monk if the clouds in the sky were flying, were the clouds moving, or the wind moving? That high monk is neither the clouds nor the wind, but your heart. There seems to be a relativistic view of the universe here.
In general, electrons are moving around the nucleus at close to the speed of light, and it is the rate at which the electrons orbit that determines the time scale. In fact, whether it is a wriggling ant or a speeding car, the speed of their nucleus movement is negligible relative to the motion of electrons, and has no effect on the movement of electrons around the nucleus. But as the nucleus moves close to the speed of light, the electrons gradually reach the limit of their velocity and rotate more slowly.
This means that the oscillations of the electrons are slower, and life is controlled by electrons, so the life process will be delayed and time will naturally slow down. This means that humans can slow down the progress of life by increasing the speed.
If we can live 10,000 years as a day, space travel is certainly not a problem. The secret of human longevity lies in speed.
The universe, an epic of the great evolution of matter, has created an incredible creature capable of understanding it with an unsentient system of matter.
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In the universe, light does not travel in a straight line. This is the view of Einstein's general theory of relativity. The reason is that the mass of the star is too large, which causes the nearby space to distort, and when light passes by a star (such as the Sun), it will turn around in distorted space.
On May 28, 1919, just a few months after the end of World War I, in order to refute Einstein's absurd views, Britain sent two groups of people to Brazil and Africa to conduct a field survey to support Newton's views on classical mechanics.
How do you calculate it? That's what they thought:
During the day, the rays emitted by the stars pass through the sun and enter our field of vision, and these rays will be disturbed by the sun's gravity, and the position of the stars we see will be affected.
And at night, when there is no sun, we observe the position of the stars, and they are not affected by the sun, so they should be different from the daytime.
But you can't see the stars during the normal day, because the sun is too bright. Unless there is one circumstance: a total solar eclipse.
On May 29, 1915, the day of the total solar eclipse officially occurred. The British selected two observation points to ensure the accuracy of the results.
The final result surprised everyone, it turned out that the positions of the stars were really different. Einstein was right, his numbers were extremely accurate, and Newton was wrong.
There are still those who are not convinced, and scientists have done countless tests, all of which have proved that Einstein was right. Science is like that, even if it goes against common sense, the truth is the truth.
The special theory of relativity was founded by Einstein, Lorentz and Poincaré, among others, and the general theory of relativity is a theory of gravity described in geometric language published by Albert Einstein in 1916. Gauss's work reached its climax: they pointed out that Euclidean's fifth postulate could not be proved by the first four axiolates. The general mathematical theory of non-Euclidean geometry was developed by Gauss's student Riemann. >>>More
I suggest you go to "Feynman on the Theory of Relativity", which is very detailed. I had almost forgotten about the special theory of relativity that I had studied last semester, but if I were to prove it now, I would first think of the two most basic assumptions: the invariance of the speed of light and the principle of relativity. >>>More
Newton, relativity, superstrings. All of them are only summaries of the understanding of a certain stage, and although they are in line with current observations, they are not necessarily the truth. These are very mysterious things, and you don't need to fully understand them. >>>More
Einstein's theory of relativity is correct. For example, the theory of relativity has no meaning in describing black holes, or the behavior of particles in the microscopic world is not much to do with the theory of relativity, and it is full of contradictions with another great theory, quantum mechanics. The current situation of the theory of relativity is like Newton's entire classical theory, it is just some special solutions under the framework of the theory of relativity, which means that there may be more advanced theories to include the theory of relativity in the future, and the future is still waiting to be discovered.
Reading your question reminds me of a book I read when I was a teenager, and the book is entitled The Principles of Relativity. The first two articles seem to be Einstein's, which are very long and deal mainly with the relativity of motion, and thus to the relativity of time. Many of the articles in the middle talk about the many interesting phenomena produced by the speed of time and light in motion. >>>More