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>> No.30516404 [View]
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30516404

>>30516302
Continuing my work on the story about the beauty of winter.

>> No.30138096 [View]
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30138096

>The Serene Republic ports are open for K.A.G and Moriji Anti-piracy forces for the purposes of repair, resupply, and rearm.

>Furthermore, the Republic Navy will cooperate with any forces that clean up the waters from foreign pirates who may threaten the trade from, to, or through the Serene Republic.

>However, there is a one request. Do not attack nasfaqg privateers unless the company they belong to has declared themselves hostile to you, or as siding with the foreign pirates. Nasfaqg inter-company rivalries include privateering so unless the foreign force is allied with one of the participants, we'd like them to not intervene in our internal matters.

>> No.29861918 [View]
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29861918

>>29858886
>>29856491
No eating for me before I get this done.

If you know how electrons behave in metal, the following should be pretty simple for you to understand, as an analogy to that is where we are going.

A new definition:
>Magic Quanta pressure
As magic quanta on some level repel each other (but not to the same extend as, say, electrons), when there are magic quanta in a closed system, the system tries to push away some of the magic quanta. This is why a full vitubium particle is more likely to release magic quanta, why the likelyhood of vitubium rejection grows as the vitubium particle becomes filled, and also why flooding a partially filled vitubium particle in magic quanta rises the probabilities of vitubium acceptance.
Imagine an isolated system with 1 vitubium particle in it. The system is a tight box which forces the magic quanta into constant contact with the vitubium particle.
>When 8 magic quanta are added to the system, the equilibrium of acceptance-release is when 4 magic quanta are bonded with the vitubium particle, and 4 magic quanta are unbonded ("free").
>When 4 more magic quanta are added to the system, the equilibrium moves to 6 bonded, 6 free.
>When 4 more magic quanta are added, the equilibrium is at 8 bonded, 8 free. the vitubium particle is full, and adding more magic quanta to the system does not increase the amount of bonded magic quanta.
If the system was not a tight box, more magic quanta to vitubium particles would be needed to meet an equilibrium, as not the magic quanta are less "pressured" to be in contact with the vitubium particle.

>Chuubanite
Chuubanite is a general name for any substance that is composed of a significant amount of vitubium particles. Anything can be chuubanite as long as it includes a significant amount of vitubium in its makeup: a diamond which has impurities of vitubium particles bonded to its carbon atoms, a liquid found inside a plant which has vitubium salts dissolved into it, and a copper alloy with small amounts of vitubium mixed in it are all types of chuubanite. For the purposes of this text, let us observe the copper-vitubium alloy:

https://files.catbox.moe/pr6ovz.png

The orange-yellow orbs are copper atoms.
The rhombuses are vitubium particles.
the purple-ish orbs are magic quanta.

In the above illustration, we have a copper-vitubium alloy where the Vitubium Acceptance and Vitubium Release are close to being in equilibrium for the amount of magic quanta in the chuubanite.

As vitubium particles spontaneously release magic quanta, and the magic quanta pressure forces magic quanta into contact with vitubium resulting in vitubium acceptance, we'll see a system where magic quanta are constantly being released and absorbed. Between each individual vitubium particle there exists a "cloud" of magic quanta in the form of probability waves (remember the wave-particle duality nature of the magic quanta!). As these magic quanta are within the "reach" of vitubium (as in, are inside chuubanite) they can exist without annihilating.

It is at the edge of the chuubanite object where the magic quanta risk being annihilated.

>The true nature of chuubanite decay
As the probability wave of a magic quanta spans the entirety of Superreality (but is at its highest near the location of the magic quanta, which is not determined yet, so its a little bit paradoxical but bear with me).

Illustration of what happens at the edge of a chuubanite object.
https://files.catbox.moe/7cm1wy.png
The image includes explanation. While saying that chuubanite is radioactive will help people understand the radiation more intuitively, it is not exactly how it works. Vitubium does not break apart and decay into other elements, it releases its bonded magic quanta, which then quantum tunnel outside of the vitubium substance / chuubanite object. This is why, unlike with radioactive decay, the absolute amount of radiation of a chuubanite object is dependent on its surface area and the number of magic quanta in relation to that surface area, and not the number of vitubium particles present.
At most, it would be accurate to say that magic quanta are radioactive and even that is a bit of a stretch, but it works while vitubium itself isnt.

An illustration of the entire decay process
https://files.catbox.moe/zgjqdx.png

Naturally, as magic quanta are being destroyed at the edge of the chuubanite object, the vitubium particles near the edge start to become empty. To remedy this, magic quanta from deeper within the chuubanite object drift outwards (guided by magic quanta pressure), so that the amount of magic quanta within the object is as close to uniform as possible. There is probably a slight gradient with there being slightly more magic quanta at the center of the object than at the edges, but you should never encounter a chuubanite object where the edge of it is empty, while the core is full.

possibly cont.
>captcha "stoxs"

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