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The dynamic mechanical properties of nanocomposites of functionalized single-walled carbon nanotubes dispersed in polystyrene are reported as a function of temperature.
Quantitative mole fraction profiles are reported as a function of burner distance.
MFIS levels are reported as a function of temperature, magnetic field and external bias stress.
Systematic differences in Cr segregation are reported as a function of grain boundary character and irradiation conditions.
The mitigation potential is reported as a function of both soil fertility and carbon intensity of the type of energy being offset (in the MSTP scenario).
Results of the operating friction trials are reported as a function of integrated and quantified angular and linear bracket movements.
The ESR signal integral was then multiplied by the temperature to account for the change in electron spin polarization and reported as a function of temperature (Fig. 1).
Good and stable adhesion properties of the protective metallization stack on SiC and on SiO2 were reported as a function of duration of annealing as well.
The critical magnetic fields for variant reorientation, first cycle effect and cyclic evolution of MFIS are reported as a function of stress level.
The stored energy as well as the accumulated plastic strain are reported as a function of the final crystallographic orientation of the grains.
The thermal diffusivity and elastic modulus as measured by photothermal techniques and three-point bending, respectively, are reported as a function of the ageing time.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com