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The possibility to obtain information about the substrate state and the energetic characteristics of small clusters is discussed in the case of electrochemical nucleation on a foreign substrate.
Medical relevance of the results, especially a possible interpretation of the unexpected clusters is discussed in Sect.
The possibility of the existence of single-wall carbon nanotubes (SWNTs) in organic solvents in the form of clusters is discussed.
The disjunct heredity of these clusters is discussed with consideration to multiple instances of independent cluster loss and lateral transfer of gene clusters between lineages.
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First, the effects of different max-ti compositions on the formation of clusters are discussed.
The synthetic reactions and structural features of these clusters are discussed.
Additionally, a variety of structurally related high-nuclearity molecular bismuth oxo clusters are discussed that serve as model compounds, e.g. for the sol gel process.
Possible applications of our results to the X-ray emission from compact and massive stellar objects are discussed in detail and those to the interaction of the microwave background radiation with the hot electrons in galactic clusters are discussed briefly.
The pertinent structural highlights associated with these clusters are discussed, and the lack of reactivity of the capping imido group with the bpcd ligand in Ru3 CO 7 μ3-CO)(μ3-NPh)(bpcd) duRu3 CO 7 μ3-COis is contrasted with the related benzylidyne-capped cluster PhCCo3(CO)7(bpcd).
The relative stability of clusters was discussed on the basis of binding energy per atom, fragmentation energy, and second-order difference of cluster energies.
Effect of cluster composition on the stability of Al n Si m clusters was discussed using binding energy per atom and fragmentation energy.
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