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Physics, 20.08.2019 21:20 nyceastcoast

Asmall sample of nickel has a mass of 2.60 g (about the same mass as a small coin). assume all the nickel atoms in the sample have 28 protons and 34 neutrons. imagine that this sample collides with an identical mass of antimatter which consists of anti-atoms, each with nucleus of 28 antiprotons and 34 antineutrons surrounded by 28 positrons. a) how much energy (in j) would be released in the collision, assuming that all of the matter-antimatter particle pairs get converted to radiant energy? () imagine all of this energy could be converted to electricity with 100% efficiency. if we assume the average retail rate for energy from an electric company is $0.15/kwh (a typical value for most states in the u. what i the total value (in dollars) of this amount of energy? is $ need ? read serpse 10 442.0p004 m my netes o12.5 points a photon with an energy e 2.12 gev creates a proton-antiproton pair in which the proton has a kinetic energy of 96.0 mev. what is the kinetic energy of the antiproton? note: m, c2 =938.3 mev. mev read maser need ? submit answer pracice another version my notes 12.5 points serpse 10 44.3p003. one mediator of the weak interaction is the w boson, with mass 80.4 gev/c2. use this information to calculate the range of the weak interaction. read need ? o -12.5 points serpse10 44.5p005. my notes when a high-energy proton or pion traveling near the speed of light collides with a nucleus, it may travel 2.5 10-15 m before interacting. from this information, find the time interval required for the strong interaction to occur.

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Asmall sample of nickel has a mass of 2.60 g (about the same mass as a small coin). assume all the n...
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