4 ms·
A gravitational constant that is the same everywhere in the universe and is incompatible with a fifth force. The fallout of this ramification is that, gr
by hymen0ptera 8y ago
A gravitational constant that is the same
everywhere in the universe and is incompatible
with a fifth force.
The fallout of this ramification is that, gravity is some sort of ambient side effect of material presence, sort of like a shadow cast, more than an emission radiated.
As a constant, that means that its invariance is significant, in the same way the speed of light is significant. There is some externality pegging the phenomena we notice, at the value we observe. Perhaps some sort of Planck-level absolute fact, which is irreducible in the same way that the concept of color doesn't exist very much beneath 400 nanometers (violet/near-ultraviolet), since color is only an abstraction of our eyeballs and the language we use to describe our sensations.
- saagarjha 8y ago> The fallout of this ramification is that, gravity is some sort of ambient side effect of material presence, sort of like a shadow cast, more than an emission radiated. But then gravity changes would be felt instantaneously rather than propagating at the speed of light.
- hymen0ptera 8y agoSince gravity is a symptom of the presence of matter, gravitational changes ride along with matter travelling as fast as the matter (responsible for this gravitational symptom) can possibly move. At best, only the destruction of matter can move at the speed of light, so a reduction of gravity may propagate, as fast as the dispersal of the dematerialization and subsequent radiation. Accumulation of mass as a knock-on pile-up of massive particles would need to be studied, to assess how quickly the shadow of newly created matter can induce its respective gravitational phenomenon. Figure star nurseries and supernovae events (and similar generative or cataclysmic reactions) would be the place to look. LIGO studies try to do exactly that, but the investigators seem to relish conflating an interpretation that favors signal transmission, and thus "particle/wave duality" because math. Gravity-as-a-wave, meanwhile would be sort of like an illusory sound-as-a-wave being a byproduct of kinetic energy in a material aggregate serving as a bystander medium of propagation. Sound is not it's own "force" although we can readily recognize the phenomenon as a principle that behaves with similar attributes, parameters and effects as observed elsewhere, in other fundamental systems. That LIGO instruments can detect gravitational influence in one part of the apparatus, before the other part of the apparatus registers the phenomenon, is really not unlike saying dominos demonstrate gravitational waves, because toppling the first domino does not topple the last domino instantaneously. That photons can be influenced by a side-effect of material accumulation, bending or altering their path of travel probably says something about the photon or the environment being travelled through, more than it does about space and time.
- millstone 8y ago> Since gravity is a symptom of the presence of matter The whole point of the paper is studying the effect of gravity on gravitational self-energy, i.e. NOT matter. You'll find no "matter term" in Einstein's equations.
- hymenopter4 8y agoThat does not invalidate the concept. Gravity has not been found to be an incidental phenomenon measurable for anything other than matter's accumulation. In the observable universe (regardless of theories and expressions penned on paper) gravitational forces are always induced by massive material objects, including the remnant artifacts of deceased stars. To suggest otherwise is to walrus the conversation.
- millstone 8y agoDark matter measurably gravitates and is not a “massive material object.”
- hymenopter4 8y agoDark matter has yet to be defined as anything other than an observed effect on the behavior of matter. Something (and indeed a thing, if anything, ergo matter) we think is probably there. Being a theoretical hypothesis, formed to explain observations, it remains a side-effect of accounting and inference, and has not been located directly. Show me why you believe it is a thing. Show me where you have found it. Tell me why it isn't actually matter.
- neuronic 8y ago> bending or altering their path of travel probably says something about the photon or the environment being travelled through, more than it does about space and time But the environment they travel through is space and time.
- 8y ago
- neuronic 8y agoShadows are cast at the speed of light and so is gravity.
- hymen0ptera 8y agoInterestingly enough, as a fun side effect of radial motion, the lateral motion of shadows can transit an object exceeding speeds faster than the speed of light constant, C. From Wikipedia: Light spots and shadows If a laser beam is swept across a distant object, the spot of laser light can easily be made to move across the object at a speed greater than c. https://en.wikipedia.org/wiki/Faster-than-light https://en.wikipedia.org/wiki/Faster-than-light Of course, the shadow must already be cast, in a continuous stream of uniquitous photons, which all need to be arriving upon the reflective surface at the speed of light, before the shadow can transit the surface within the area of effect.
- contact_fusion 8y agoI wouldn't say that general relativity suggests that gravity is an "ambient side effect" of material presence. It means precisely that the geometry of spacetime is determined by the matter-energy content within that spacetime; and that matter moves on geodesics dictated by spacetime. I suppose that I am forced to accept that whether you think gravity is more like a shadow of matter than an active participant in dynamics is somewhat up to you, provided that you get the physics correct. If you don't, then your perspective is wrong. Glancing at some of the other things you've said in the thread, you seem to be convinced that some waves, like sound waves, are somehow illusory. Let me assure you, there is nothing illusory about wave phenomena, both in general and with gravitational waves in particular. Anything that produces wave-like phenomena can be said to radiate emissions, to paraphrase, and in many cases, there is nothing really more "fundamental" than the wave. As for the concept of color, I suppose it depends on what you mean by color. Color as defined by the wavelength/frequency of light is perfectly well defined outside of the visible spectrum. As a mental concept, I don't see why it is "irreducible." I suppose you are attempting to say that the universal speed of light is somehow fundamental... but in the same way that a "redder" red is impossible? This is a dubious analogy. It confuses the limitations of the mind with fundamental physics.
- deleted 8y ago[deleted]
- hymen0ptera 8y agoSound waves are changes in the distribution of particles within a volume over time. The sound wave itself is a byproduct of the particles compressing closer together or stretching farther apart. You might be in love with the idea of describing an equation that frames the gradient of distribution, and the nature of it's propagation through a medium, but the sound wave is the manner in which the gaseous molecular constituents of the air are set in motion relative to one another. They get closer, they move apart, the changes occur at different places in the medium, at different times, and do so at a certain velocity, in sequence as interactions are forced upon the medium. Indeed, the reason sound waves travel at the speeds we observe, is because that's how fast the very molecules themselves, comprising the air, are moving at the temperature and pressure of the environment. Meanwhile, what color is a beam with a wavelength of one nanometer? Would you characterize the color as "soft x-ray"?