Consider the following decay interaction. What are the particles emitted particle that mediates the interaction? * Copper (Cu) decays to nickel (Ni) Particles emitted Mediating particle A. B and neutrino w* B* and neutrino В. B and neutrino D. B' and neutrino w* C.
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- Match these particle physics descriptions A class of particles that consist of two quarks An electron is a member of this class of particles. A proton is a member of this class of particles A class of particles that experiences the weak but not the strong nuclear force. A class of particles that consist of three quarks A class of particles that experiences strong and weak nuclear forces. 1. Hadrons 2.Mesons 3.Baryons 4.Leptons2. State any three conservation laws that restrict a reaction from happening in particle physics and explain how they restrict reactions.2. Describe Einsteins explanation for why the total starting mass is greater than the total ending mass after a nuclear reaction.
- Help.3. What magnetic field is required for the 7.0-TeV protons in the 4.25-km radius Large Hadron Collider (LHC)? 4. Show that the energy of a particle (charge q.) in a synchotron, in the relativistic limit (v z c), is given by E = Brc, where E is measured in eV, B is the magnetic field, and r is the radius of the orbit.7 mi.. of. tr. J. 0.. J.. D. e.. 8 Al 32. A baryon is a hadron composed of THREE quarks. A neutron is a baryon with the following quark designation: cbb Oudd Duud Ouss 33. Which of the following decay equations describes beta positive decay? Ouududd +e++v Oudd uud+e++v Oudduud +e+v Ouududd +e+v Written Response 34. hp BB afe FA
- The reaction below describes an antiquark decaying into other particles. The X represents an unknown particle. d → ū + e + X a. What must be the charge of X? b. What must be the baryon number of X? c. What must be the lepton number of X? d. What is particle X?Part A Some atomic masses Particle Symbol Mass (u) Part B Electron e 0.00055 Proton 1.00728 Part C Neutron n 1.00866 Hydrogen 'H 1.00783 Calculate the binding energy per nucleon of the nitrogen nucleus 4N. 7 Helium 4He 4.00260 Express your answer in megaelectron volts to three significant figures. ? MeV/nucleon5. How much energy is released in the decay + → µt + v„? 6. How much energy is required to produce a neutron-antineutron pair?