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Titlebook: A Study of the Fukushima Daiichi Nuclear Accident Process; What caused the core Michio Ishikawa Book 2015 Springer Japan 2015 Accident Scen

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Fukushima Daiichi Unit 1, 2 and 3 Accidents into chemical fuels. Doing so requires the protons and electrons supplied by the oxygen evolution reaction. The reaction steps constituting the oxygen evolution reaction are assumed to result in an electrochemical mechanism qualitatively distinct from the purely chemical ones familiar from thermal
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Fukushima Daiichi Unit 4 Accidentghly eccentric binary black hole mergers. Accurate templates for this class of mergers are missing although recent LIGO-Virgo observations point to their the possible astrophysical existance. Detections of these black hole mergers will be possible with future ground- and space-based experiments prov
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1) the sinking of two massive black holes in a spherical stellar system; 2) the evolution of rotating, isolated clusters of stars up to core-collapse. In the binary black hole simulations, we find a continuous hardening of the binary even in late stages, where the interaction with the stellar syste
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Tsunami and Station Blackoutc surface and subject to solvation. Functionalized gold nanoparticles show increasing potential in real-life applications. In these situations, they are exposed to different chemical environments and to mechanical tension due to contact and friction with other molecules. We have used accelerated ab
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