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Fig. 6 Distribution of the electron phase space density (PSD) as a function of energy.
Curves in Fig. 3 represent PSD as a function of inlet pressure varied in this series of experiments.
Figure 6 Measured normalized reflected power of the laser beam by the PSD as a function of the laser position in the x direction on the cantilever.
There are two types of specification for MSF error; one is RMS value after band pass filtering, and the other is a not-to-exceed line for the power spectral density (PSD) as a function of spatial frequency [16].
b C2. c C3. d C4. Figure 6 plots the sample electron pitch angle distributions for the electron phase space density (PSD) as a function of energy obtained from the pitch angle distribution (PAD) data of the PEACE instrument on board all the four spacecrafts of Cluster within two spin periods from 18 35 25 to 18 35 32 UT.
The surface area of concentric circles around the PSD, spaced by 0.125 µm (pixel size), was then used for calculating the number of subtrajectories present around the PSD as a function of distance.
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The possibility of inferring the interfacial tension between PP and PS as a function of amount of triblock copolymer added to the blend using the morphological and rheological measurements was investigated.
We report the microrheological behavior and dynamics of the suspensions of polystyrene-grafted gold nanoparticles (PGNPs) mixed with linear polystyrene (PS) as a function of the PS concentration and size asymmetry parameter, ξ (=Mg/Mm, with Mg and Mm being the grafted and free chain molecular weights, respectively) = 2.76 and 0.14.
(a) (b) Transfer curves of pentacene OFETs based on PS dielectrics with UVO treatment time ranging from 0 ~ 240 s, (c) Vth and on/off ratio of the pentacene OFETs based on UVO-PS dielectrics as a function of exposure time, and (d) μ and SS of the pentacene OFETs based on UVO-PS dielectrics as a function of exposure time.
The loss tangent of individual components in a blend of polypropylene (PP) and polystyrene (PS) is measured as a function of temperature with contact resonance atomic force microscopy.
The solubility of carbon dioxide (CO2) and dimethyl ether (DME) blends in polystyrene (PS) is studied as a function of the temperature and the pressure.
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