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It is known that magnetic field strength decreases as a function of 1/distance2.
The correlation length decreases as a function of the applied field amplitude and grows nearly linearly with the system size.
Since the temperature of the plasma rapidly decreases as a function of distance, the droplets rapidly solidify and form deposits.
The thermoelectric measurements as displayed in Fig. 2 confirmed the relatively high resistivity, which decreases as a function of temperature.
One can see in Fig. 3a that the hysteresis loop area rapidly decreases as a function of the parameter η.
The dielectric constant decreases as a function of applied frequency due to the multiple polarizations occur in polymer nanocomposites.
Although the coefficient of friction decreases as a function of the post-oxidation time, the friction force is under a relative great dispersion at intermediate post-oxidation times.
The results showed that the tensile and compressive modulus increases while strain at break and strain at yield decreases as a function of glass bead volume fraction.
The adsorption affinity indicated by the Langmuir pressure for the total adsorbed molecule number in all cases decreases as a function of increasing pore size.
From the experimental and numerical results, it was confirmed that the peak shear strength of the discontinuity decreases as a function of the discontinuity length.
As Fig. 3b shows, the SAR decreases as a function of η due to an increase of the intensity of magneto-dipole interaction within the clusters.
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CEO of Professional Science Editing for Scientists @ prosciediting.com