New Mechanism of Cavitation Damage

right quantity to yield a sufficiently homogeneous particle of 3:1 composition. This process provides the continuous pathway for shielding currents. At the other extreme of nominal composition, the smaller grains become superconducting during the diffusion stage, but upon homogenization this superconductivity is destroyed by the excess K, much as the normal state conductivity is destroyed by extended doping (5), as supported by photoemission results (10) and orbital-filling arguments (5). On the other hand, the larger than average grains, at equilibrium, can turn out to have the right

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