Physics, asked by dharitrimajhi13, 10 months ago

Range of weak nuclear forces is nearly​

Answers

Answered by SanviTripathi
2

Heyy mate your answer is....

10^-18

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dharitrimajhi13: infinite,
dharitrimajhi13: is one option
dharitrimajhi13: u write 10^-18
dharitrimajhi13: this option is not written in this question
SanviTripathi: you can confirm it from google
SanviTripathi: mine is correct
dharitrimajhi13: okk
SanviTripathi: hmmm
SanviTripathi: thnx for marking my answer as Brainliest
dharitrimajhi13: wlcm
Answered by king149476
0

Answer:

The weak nuclear force is a force of interactions between quarks and leptons, both of which are fermions with spin 1/2. The force only affects particles which are spinning counter-clockwise while going away. In other words, the weak nuclear interaction affects left-handed particles. (and right-handed anti-particles) Leptons come in electron, muon, and tau flavors of charge -1, each with associated neutrinos of neutral charge. Quarks appear as the up and down, charm and strange, and top and bottom flavors. The flavors are conserved, and weak interactions transform leptons to other leptons and quarks to other quarks, while preserving this conservation.

The weak nuclear force is a force of interactions between quarks and leptons, both of which are fermions with spin 1/2. The force only affects particles which are spinning counter-clockwise while going away. In other words, the weak nuclear interaction affects left-handed particles. (and right-handed anti-particles) Leptons come in electron, muon, and tau flavors of charge -1, each with associated neutrinos of neutral charge. Quarks appear as the up and down, charm and strange, and top and bottom flavors. The flavors are conserved, and weak interactions transform leptons to other leptons and quarks to other quarks, while preserving this conservation.The weak nuclear force has a limit in range of only 10 to the -18th meters. This means that the carrier particles must indeed have mass. The weak nuclear force is found to have three carrier particles, two W bosons, one charged -1 and one charged +1, and the electrically neutral Z boson.

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