Are gravitational waves shockwave?

Updated on science 2024-05-27
17 answers
  1. Anonymous users2024-02-11

    Now to explain gravitational waves, although they are all waves, but the difference is 108,000 miles, gravitational waves are ripples that bend in space-time, and energy is transmitted in the form of waves. Gravitational waves are only more pronounced in the collision of massive stars (such as neutron stars or black holes). ‍

  2. Anonymous users2024-02-10

    Gravitational waves are ripples in space-time itself, and the transmission is not in the medium, nor does it need the medium, secondly, because the gravitational wave is the fluctuation of space itself, all matter in the place where the gravitational wave passes is equally compressed or stretched, therefore, the destructiveness brought by the gravitational wave will not be felt. It's like you don't feel the Earth moving around the sun with you at a speed of 30 kilometers per second. ‍‍

  3. Anonymous users2024-02-09

    It doesn't belong. Shock waves are mechanical waves, which are different from gravitational waves. Mechanical waves need to propagate in a medium, such as sound waves, water waves. ‍‍

  4. Anonymous users2024-02-08

    Gravitational waves also carry away the energy of the radiation source, although it is not a large proportion. You can assume that a bullet is fired in empty space, because there is no uniform motion in the universe, this bullet will produce gravitational waves, and gravitational waves can take away its kinetic energy, and the speed will slow down (this process is extremely long), in short, it will not move all the time according to Newton's first law. ‍‍

  5. Anonymous users2024-02-07

    Gravitational waves do not belong to the shock wave type, it is a field that has strength and weakness, depending on the distance.

  6. Anonymous users2024-02-06

    Gravitational waves are actually a good proof that the theory of space-time curvature is probably wrong, you know, the diameter of nebulae is calculated in light years. As long as there is a slight angle from our observation, then the observed image and wave should not reach the edge at the same time, but the result is that the edge is reached at the same time! How does this make sense?

    According to the angle on the diagram, it should be observed that the gravitational wave below arrives first, and the gravitational wave above arrives later, and the regular phenomenon should not be observed! So, either, the nebula is actually not as big as calculated! Or, gravitational waves are moving much faster than the speed of light, but even if they are surprisingly fast, the speed of light is constant?

    That's not right, right? Either we still lack understanding of the speed of light, much faster than computing. Either that, or the nebulae are not that far apart...

    time to prove non-existent. Space distortion is a common phenomenon. This is a good opportunity to estimate the size of the nebula, which is much more reliable and accurate than relying on spectra alone, and I don't know why it has not been reported, or what the difficulty is.

    In any case, it can be determined that the speed of gravitational action is much higher than the speed of electromagnetic waves...

  7. Anonymous users2024-02-05

    The wave generation is generated by the change of the shape of the form, the amount of fluctuation is determined by the dynamic variable, the dynamic velocity is determined by the force of the dynamic variant, the wave velocity is determined by the pressure equilibrium state, and the wave velocity is variable speed with the change of regional compressive intensity. For example, the process of sound waves deforming some particles due to the force of the object, and the process of the particles returning to their original state causes the equilibrium to be broken, and the process of one in and one out causing the external linkage of the object is the sound wave dynamics, and the water waves are also the same because the water equilibrium is broken, and the water is changed in the form of the water body due to the breaking of the water equilibrium pressure, and the process of non-complex equilibrium of the water under the gravitational equilibrium pressure is also called water waves, and the light wave is broken by the change of the particle pattern and the pressure balance in the region, and the process of non-complex equilibrium also forms wave dynamics.

  8. Anonymous users2024-02-04

    Gravitational waves are passive waves, and shock waves are active waves. In fact, gravitational waves are dark energy! Scientists have touched the trunk of an elephant, but they just don't admit that it is an elephant.

  9. Anonymous users2024-02-03

    We all know that shockwaves can hurt people, such as bombs, nuclear bombs, and even airplanes breaking the sound barrier, etc., can produce shockwaves. And if the amplitude and frequency of gravitational waves are high enough, it will cause the object to be distorted to a lethal degree, which is of course rare or zero (you see, even detecting gravitational waves is so difficult).

  10. Anonymous users2024-02-02

    Gravitational waves are caused by the accelerated motion of objects, because gravitational waves are very weak, and we can only detect extremely small spatial fluctuations in the extreme case of neutron stars or black holes merging (in principle, gravitational waves are generated by the movement of objects, such as if you wave your hand).

  11. Anonymous users2024-02-01

    What is Shockwave? A shock wave is a wave that propagates in a medium, and the wave has a crest, resulting in changes in the pressure, temperature, density, etc. of the medium. To manifest it is to be somewhat destructive. The key point to pay attention to in the shock wave is that the medium is required. ‍‍

  12. Anonymous users2024-01-31

    Electromagnetic waves, which can propagate without relying on the medium (that is, the vacuum state or electromagnetic waves propagate in space), while gravitational waves are more basic and directly fluctuate in space. ‍‍

  13. Anonymous users2024-01-30

    Like the ripples of a stone falling into the water, the air flow of an airplane through the sky, and the dark matter fluctuations caused by gravitational waves as stars orbit in space. It's like putting an iron ball on a plastic film supplemented with fine sand, which causes a depression, and the fine sand will slide away from the depression, which is gravity; The greater the mass, the deeper the depression, the faster the slide, and the greater the gravitational pull; If the ball rotates at high speed, the fine sand (fine enough) will swirl around it.

  14. Anonymous users2024-01-29

    Gravitational waves are not electromagnetic waves, they are not light, they are just an illusion left by the transformation of non-optical matter into light, an illusion that is lower than the speed of light. Or figuratively say that you see the shadow of a non-light matter in motion, and when you see it, it has turned into light.

  15. Anonymous users2024-01-28

    The gravitational wave is the gravitational change value of the wave source at the measurement point, and the change value of the gravitational force is measurable and measurable, uniform and stable without fluctuation! Therefore, when a massive star changes greatly (when it loses a large mass), it can be measured! This is the real concept of gravitational waves!!

  16. Anonymous users2024-01-27

    The transmission of force requires a medium, how does it manifest itself without fluctuations in the medium? How does power manifest itself?

  17. Anonymous users2024-01-26

    The principle of shock wave, I have known that shock wave for so many years, it turns out that this principle is true!

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