Skip to main content

The universe's expansion is a mystery.


The universe's expansion accelerates. Because a particle's distance grows and that decreases the power of gravity. Dark energy is the thing that dominates the universe. When the gravity effect's strength decreases, the power of dark energy increases. Relative to gravity.

The universe's expansion is a mystery. The thing, that makes this thing interesting is that if the universe is in the middle of nothing, the universe should not expand. It should collapse. When the material is in an absolute vacuum,  it just turns wave movement. And the direction of that wave movement is out from the material entirety. So if the universe is in nothing that means, the universe should collapse from its edge. The absolute vacuum cannot interact with that wave movement. And there is no resistance. Without resistance. Opposite-traveling waves are impossible. 

But if there is a standing wave at the edge of the universe, that effect can keep material in its form. The standing wave requires something, that pushes those waves back. In that case, the standing wave limits the material turning into the wave movement. That standing wave can also make reflections from inside the universe. When energy or wave movement impacts that theoretical standing wave they will reflect into the universe. 

In that case, the reflecting waves are acting like pressure waves in the vacuum bomb. They travel in the middle of the universe and then reflect from there. That thing forms the wave packages that travel through the universe. Those waves impact with another wave that comes from the black holes. Those waves can form virtual particles in their impact points. Those quantum whirls take energy from those waves and then reflect it. 

When energy hits to particle that particle stores it. And when its energy level rises high enough, it sends or reflects that wave movement in the wavelength that is the same size as the transmitting particle. That means particles amplify wavelength. Virtual particles also re-adjust wave movements' energy levels. 


It's possible. That dark energy has two wavelengths. The "hot" and "cold" dark energy. 


1) Short Wave dark energy. That source could be in bonds between quarks and gluons.


2) Long wave dark energy that wavelength is light years. 

 

Those quantum whirls are re-adjusting wave movement that impacts them. The problem with dark energy is this: there is energy or wave movement whose wavelength is unknown. The Dark energy can be wave movement with very long wavelengths. Waving galaxies are things that can explain the dark energy. In that case, the dark energy wavelength is so long that we just cannot measure it on Earth. In this model, the dark energy wavelength can be light years. 

On the other hand, the dark energy wavelength can be so short that we cannot see it. In that case: a dark energy source could be in the strings between quarks. When other energy types like gamma, X-ray, gravitation, etc. hit the atom it conducts that energy into its smallest parts. When energy travels in the strings between quarks and gluons. They start to oscillate. That oscillation can be dark energy. 

So, can there be two dark energy wavelengths? Can there be dark energy whose wavelength is very long? And dark energy with a very short wavelength. That is possible. It's also possible that dark energy forms when cosmic superstrings oscillate. And that thing makes them send wave movement that has lower energy than those superstrings. 

https://scitechdaily.com/resolving-the-hubble-tension-webbs-precise-measurements-illuminate-the-universes-expansion-mystery/

https://en.wikipedia.org/wiki/Dark_energy

https://en.wikipedia.org/wiki/Dark_matter

https://en.wikipedia.org/wiki/Expansion_of_the_universe



Comments

Popular posts from this blog

The LK-99 could be a fundamental advance even if it cannot reach superconductivity in 400K.

The next step in superconducting research is that LK-99 was not superconducting at room temperature. Or was it? The thing is that there is needed more research about that material. And even if it couldn't reach superconductivity in 400K that doesn't mean that material is not fundamental. And if LK-99 can maintain its superconductivity in 400K that means a fundamental breakthrough in superconducting technology.  The LK-99 can be hype or it can be the real thing. The thing is, anyway, that high-voltage cables and our electric networks are not turning superconducting before next summer. But if we can change the electric network to superconducting by using some reasonable material. That thing can be the next step in the environment. Superconductors decrease the need to produce electricity. But today cooling systems that need lots of energy are the thing that turn superconductors that need low temperatures non-practical for everyday use.  When the project begins there is lots of ent

Black holes, the speed of light, and gravitational background are things that are connecting the universe.

 Black holes, the speed of light, and gravitational background are things that are connecting the universe.  Black holes and gravitational waves: is black hole's singularity at so high energy level that energy travels in one direction in the form of a gravitational wave.  We normally say that black holes do not send radiation. And we are wrong. Black holes send gravitational waves. Gravitational waves are wave movement or radiation. And that means the black holes are bright gravitational objects.  If we can use water to illustrate the gravitational interaction we can say that gravitational waves push the surface tension out from the gravitational center. Then the other quantum fields push particles or objects into a black hole. The gravitational waves push energy out from the objects. And then the energy or quantum fields behind that object push them into the gravitational center.  The elementary particles are quantum fields or whisk-looking structures. If the gravitational wave is

The CEO of Open AI, Sam Altman said that AI development requires a similar organization as IAEA.

We know that there are many risks in AI development. And there must be something that puts people realize that these kinds of things are not jokes. The problem is how to take control of the AI development. If we think about international contracts regarding AI development. We must realize that there is a possibility that the contract that should limit AI development turns into another version of the Nuclear Non-Proliferation Treaty. That treaty didn't ever deny the escalation of nuclear weapons. And there is a big possibility that the AI-limitation contracts follow the route of the Nuclear Non-Proliferation Treaty.  The biggest problem with AI development is the new platforms that can run every complicated and effective code. That means the quantum computer-based neural networks can turn themselves more intelligent than humans. The AI has the ultimate ability to learn new things. And if it runs on the quantum-hybrid system that switches its state between binary and quantum states,