M1a2 System Enhancement Prog 2350-01-328-5964 (eaa Cmbt85sep) Parts

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Filter By: Hexagon Self-locking Nuts
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Part Number
NSN
NIIN
10200506 Hexagon Self-locking Nut
002416664
10635304-4 Hexagon Self-locking Nut
001984759
122-5277670 ITEM 24 Hexagon Self-locking Nut
002416664
122-5277737 ITEM 24 Hexagon Self-locking Nut
002416664
12Z2003-17 Hexagon Self-locking Nut
008140673
13014410-17 Hexagon Self-locking Nut
008140673
206M5 Hexagon Self-locking Nut
001984759
2126 2191-107 Hexagon Self-locking Nut
002416664
456720113200 Hexagon Self-locking Nut
008140673
5310001987565 Hexagon Self-locking Nut
002416664
5310002416664 Hexagon Self-locking Nut
002416664
5310008140673 Hexagon Self-locking Nut
008140673
5310PL0656713 Hexagon Self-locking Nut
008140673
903317C1 Hexagon Self-locking Nut
001984759
9419455 Hexagon Self-locking Nut
008140673
990FR12-524 Hexagon Self-locking Nut
001984759
JL4C524 Hexagon Self-locking Nut
001984759
M45913/3-10FG8C Hexagon Self-locking Nut
002416664
M45913/3-5CG8C Hexagon Self-locking Nut
008140673
MS51943-33 Hexagon Self-locking Nut
008140673
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M1a2 System Enhancement Prog 2350-01-328-5964 (eaa Cmbt85sep)

Picture of M1a2 System Enhancement Prog 2350-01-328-5964 (eaa Cmbt85sep)

Baryons are composite particles made of three quarks, as opposed to mesons, which are composite particles made of one quark and one antiquark. Baryons and mesons are both hadrons, which are particles composed solely of quarks or both quarks and antiquarks. The term baryon is derived from the Greek "βαρύς" (barys), meaning "heavy", because, at the time of their naming, it was believed that baryons were characterized by having greater masses than other particles that were classed as matter.

Until a few years ago, it was believed that some experiments showed the existence of pentaquarks – baryons made of four quarks and one antiquark. On 13 July 2015, the LHCb collaboration at CERN reported results consistent with pentaquark states in the decay of bottom Lambda baryons (Λ0 b).

Since baryons are composed of quarks, they participate in the strong interaction. Leptons, on the other hand, are not composed of quarks and as such do not participate in the strong interaction. The most famous baryons are the protons and neutrons that make up most of the mass of the visible matter in the universe, whereas electrons, the other major component of atoms, are leptons. Each baryon has a corresponding antiparticle known as an antibaryon in which quarks are replaced by their corresponding antiquarks. For example, a proton is made of two up quarks and one down quark, while its corresponding antiparticle, the antiproton, is made of two up antiquarks and one down antiquark.

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