What's the relationship between all particles
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What's the relationship between all particles

[From: ] [author: ] [Date: 11-12-24] [Hit: ]
electrons, leptons, neutrons, quarks, etc........
So Mendeleev managed to find the relationship between all elements and actually predicted elements that will be discovered in the future.. So what is relationship between those particle that we have discovered so far? protons, electrons, leptons, neutrons, quarks, etc.. how can we relate them together? We might also witness some missing particles in the chart/table that we haven't discovered yet

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By the way, the periodic table is lousy at predicting anything. It is filled with more exceptions to the rule than rules.

Some say the Standard Model, with its three families of fermions and bosons, not to mention the anti-particle equivalents, with very little relationships among them have that in common with the periodic table. That is the Standard Model is filled with more exceptions to the rule than rules.

Bottom line, neither table is good for predicting anything. A case in point...for decades the SM showed the neutrino family as massless. Now we know they have mass, just a tiny bit (e.g., 2 eV) but mass nonetheless. And that was not predicted by the Standard Model.

You can't relate them together...not the elements in the periodic table and not the sub atomic particles in the Standard Model. You can make up a taxonomy and group some of them accordingly. But even that proves a challenge as not all the elements and not all the particles fit nicely into the groups.

To date, the only model that predicts things is string theory that predicts other particles that are yet to be found, and confirms those that have already be discovered. But string theory is only an educated guess and the physics behind it, the strings, is questionable.

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They act upon each other through 4 fundamental forces: gravity, electromagnetism, weak and strong interaction.

You'll need to check http://en.wikipedia.org/wiki/Fundamental…
to read more about it.

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They're all cousins.
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