An antimuon with 1000 MeV total energy crosses a 10 cm long silicon target. Calculate the energy loss.
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An antimuon with 1000 MeV total energy crosses a 10 cm long silicon target. Calculate the energy loss.
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- According to the article Alien Antimatter Crashes into Earth 2 : More than 60 years ago, future Nobel laureate Sheldon Glashow predicted that if an collided with an antineutrino the antimatter answer to the nearly massless neutrino electron, it could produce a cascade of other particles. The "Glashow resonance - phenomenon is hard to detect, in large part because the antineutrino needs about 1,000 %3D times more energy than what's produced in the most powerful colliders on Earth. Let's compare this event to an ordinary baseball with a mass of 146 g. Please use three significant figures in your calculations.4. Typical measurements of the mass of a A particle (1230 MeV/c²) are shown in the figure. Although the lifetime of the delta is much too short to measure directly, it can be calculated from the energy- time uncertainty principle. Estimate the lifetime from the full width at half-maximum of the mass measurement distribution shown. 25 MA Le 1000 1100 1200 1300 1400 1500 Mass of the delta particle M/ Number of mass me amare in each binA D-T pellet is heated by intense laser beams with wavelength of 2 μm. (1) Find the D-T plasma density at which the parametric decay instability (PDI) can occur. (2) Explain how the PDI-generated hot electrons can change ion damping.
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