Calculate the proton separation energy ¹2C.
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A: A) Lorentz factor (γ)Since, γ=11-v2c2 ⋯⋯⋯⋯⋯⋯⋯⋯(1)Now, as already given that v=0.95 So, putting this…
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Q: Calculate the proton separation energy for C
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Q: Because of energy loss due to synchrotron radiation in the LHC at CERN, only 5.00 MeV is added to…
A: Energy added for each proton in each revolution = 5 Mev Initial energy injected Ei = 8 GeV Final…
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Q: given a sample of 14C. Calculate what fraction of 14C will remain after 10000 years?
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Q: f|u|=1,|M| = 2 and the angle between u and v is 135º, determine the magnitude and direction of…
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Q: A K0 meson (mass 497.61 MeV/c2) decays to a π+, π− pair with a mean lifetime of 0.89 ×-10s. Suppose…
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- Provide the answers in 90 minutes and count as 2 questions if necessary.A π meson (rest mass 135MeV/c2) moving through the laboratory at a speed of 0.998c decays into two gamma-ray photons. The two photons have equal energies Eγ and move at equal angles ? on opposite sides of the direction of motion of the original π meson. Calculate Eγ and θ.What do the quark compositions and other quantum numbers imply about the relationships between the Δ+ and the proton? The Δ0 and the neutron?
- To measure the muon magnetic moment a 2-T uniform magnetic field is used. How much energy is stored in the field if the experimental chamber where the field is created has dimensions of 30 cm×20 cmx65 cm? The energy, UB = 1.232E-8 X Units J How long will it take to "switch on" the field if the experiment uses a 3-kW power supply? The time, t = 4.107 E-12 X Units sThe primary decay mode for the negative pion is π− → μ− + ν-μ . (a) What is the energy release in MeV in this decay? (b) Using conservation of momentum, how much energy does each of the decay products receive, given the π− is at rest when it decays? You may assume the muon antineutrino is massless and has momentum p = E / c , justlike a photon.at t=0 just after, why are we using R3 in the numerator?
- Determine which of the following decays or reactions is not allowed and explain why. (a) p + p → p + π++Λ+-K0 (b) Λ → p + π0The Σ* particle has a rest energy of 1385 MeV and a lifetime of 2.0 × 10-23 s. What would be a typical range of outcomes of measurements of the Σ* rest energy?A nucleus traveling at speed vnucleus = c(1 - 10-5) decays with the emission of a particle of speed vdecay particle = c(1 - 2 x 10-4) at an angle of 45°, as shown in the diagram above. i) What is the velocity (speed and direction) of the decay particle on transforming to the stationary frame of reference of the nucleus. Clearly explain the quantities used in your evaluation, and show the directions and signs of quantities. Give the speed of the decay particle in the form c(1 - ?). ii) If the decay particle was an electron, what was its total energy in the rest frame of the nucleus? What was its total energy in the original frame shown in the above diagram?Give your answers in units of MeV.