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Magnetic measurements at variable temperature show an overall antiferromagnetic behavior of the compound.
Obviously, the type and stoichiometry of the hard coating influence the fatigue behavior of the compound.
Electrochemical behavior of the compound (1) was also studied by cyclic voltammetry (CV) in sodium acetate buffer solution.
Other parameters, including the polarity of the compound can help to predict the partitioning into the membrane and the behavior of the compound.
In this investigation, the cavitation erosion behavior of the compound and of the diffusion layer of ion-nitrided 34 CrAlNi 7 steel was studied.
Understanding of these parameters can enable one to predict the behavior of the compound before hand and thus reduce the number of optimization experiments.
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Iron has different impact on the behavior of the compounds toward RRs.
The micellization behavior of the compounds, evaluated from surface tension measurements, is presented and compared to more conventional ionic amphiphiles.
An amorphism of [M cyclam)]3[Re(CN)7]2 (M=Ni, Cu) polymers does not allow to define strictly their dimensionality and to model anisotropic magnetic behavior of the compounds.
Diffraction maxima obtained by SAXS and WAXS, refer the behavior of the compounds 18C6-NaDS and 18C6-NaDBS as smectic liquid crystalline.
These results suggest that the major influence from solvent dipolarity takes part in a prominent role on changing the emission behavior of the compounds.
More suggestions(18)
pattern of the compound
performance of the compound
behavior of the camp
behavior of the substance
behavior of the component
behavior of the composite
behavior of the building
behavior of the complex
behavior of the buildings
violations of the compound
behavior of the region
behavior of the government
behavior of the error
behavior of the behavior
behavior of the inequality
behavior of the duopoly
behavior of the trend
behavior of the entity
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com