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hadron
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The answer HADRON has 16 possible clue(s) in existing crosswords.
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The word HADRON is VALID in some board games. Check HADRON in word games in Scrabble, Words With Friends, see scores, anagrams etc.
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Definitions of hadron in various dictionaries:
noun - any elementary particle that interacts strongly with other particles
Any of a class of subatomic particles that are composed of quarks and take part in the strong interaction.
adj - an elementary particle [n -S] : HADRONIC
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Possible Dictionary Clues |
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Any of a class of subatomic particles that are composed of quarks and take part in the strong interaction. See Table at subatomic particle. |
a subatomic particle of a type including the baryons and mesons, which can take part in the strong interaction. |
any elementary particle that interacts strongly with other particles |
A subatomic particle of a type including the baryons and mesons, which can take part in the strong interaction. |
a type of subatomic particle |
a very small piece of matter that is affected by the strong force, such as a baryon or a meson |
Hadron description |
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In particle physics, a hadron ( listen) (Greek: , hadrós, "stout, thick") is a composite particle made of quarks held together by the strong force in a similar way as molecules are held together by the electromagnetic force. * Hadrons are categorized into two families: baryons, made of three quarks; and mesons, made of one quark and one antiquark. * Protons and neutrons are examples of baryons; pions are an example of a meson. Hadrons containing more than three valence quarks (exotic hadrons) have been discovered in recent years. A tetraquark state (an exotic meson), named the Z(4430), was discovered in 2007 by the Belle Collaboration and confirmed as a resonance in 2014 by the LHCb collaboration. Two pentaquark states (exotic baryons), named P+c(4380) and P+c(4450), were discovered in 2015 by the LHCb collaboration. There are several more exotic hadron candidates, and other colour-singlet quark combinations that may also exist. * Of the hadrons, protons are stable, and neutrons bound with |