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A few hydroxyl megamasers, including Arp 220, have been observed with very long baseline interferometry (VLBI), which allows sources to be studied at higher angular resolution.
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In that domain the data rates are sufficiently high to obtain time series that can be studied at high frequencies, i.e. above 1000 Hz.
Weakly interacting ligands should therefore be utilized in conjunction with catalysts such as 4 that contain inequivalent hydride ligands and be studied at high polarisation transfer fields.
The spatial development of displacement speeds is studied at higher Ka than previous DNS.
The identical range of film deposition range was studied at higher annealing temperature (750 °C), which shows distinctive evolution of Ag nanostructures as a result of thickness-dependent characteristics of dewetting phenomena as well as the significant sublimation of Ag.
It is, however, peculiar to the direct nitrosation reaction, as it disappeared when the reaction was studied at higher DEA/NO concentrations, at which autoxidation-mediated nitrosation predominates.
Two-dimensional dislocation dynamics and the resulting strain fields are studied at high resolution in graphene.
The structure of spherically expanding premixed n-decane/air flames has been studied at high temperatures and pressures.
Two catalytic systems have been studied at high pressures on the Pt(1 1 0) surface on an atomic level.
The electrochemical (COOH 2 oxidation reaction was studied at high potentials (i.e. in the region where O2 is evolved) in acidic, aqueous solutions using conductive WOx based anodes.
(The inset of Figure1 shows an SEM image of the NW1 device taken from[22]. In[22], the electrical transport properties of the two NW1 and NW2 nanowire devices had been studied at high temperatures of 30 to 300 K).
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