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Notice that while the lower scale (0.25 CPO) clearly provides significantly more information about the underlying linguistic message, the MI peak in Figure3c (bottom) is centered at 1 CPO, highlighting the significance of pitch and harmonically-related frequency channels in representing speaker-specific information.
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An increase of 114 cPo in μ from 1.01 to 115 cPo in glycerol solutions saturated with UG = 1.73 cm s−1 led to a reduction of 96% in kLa (α = 0.04), while a comparable raise from 115 to 229 cPo implied a reduction of 52% (α = 0.02).
In analogy with CH4 CPO, the rate of total oxidation of C3H8 and the rate of steam reforming of C3H8 were found to be proportional to the concentration of fuel, but independent from the concentration of the co-reactant.
We applied an isothermal microreactor to collect kinetically relevant data with the aim of identifying the prevalent kinetic dependences and extending our C1 molecular kinetic scheme to the description of the C3H8 CPO process.
Notice the consistency of formant peaks around 1 and 4 KHz and of harmonic energies at 2 CPO and 4 CPO despite the additive noise distortion.
An experiment was run on clean data with Ω c ={0.25,0.5,1.0,2.0} CPO and yielded a 3.4% EER a decrease of performance compared with 2.7% EER for the system that used Ω c ={0.5,1.0,2.0,4.0} CPO.
cIn addition to the MI analysis, we performed an empirical test regarding use of 0.25 CPO filter.
When all of the process is finished, a kind of quasi-3D CPO is achieved on the BK7 glass substrate.
The quasi-3D CPO are fabricated on a BK7 glass substrate through four-step Ag deposition on a monolayer of PS array.
where Ωmax is the highest spectral modulation frequency (set at 12 CPO given our spectrogram resolution of 24 channels per octave).
In this paper, we have demonstrated that a kind of quasi-3D CPO can be easily achieved through the stepwise colloid sphere lithography technology.
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