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Locally measured BTCs were characterized by equivalent convection dispersion parameters: equivalent velocity, veq(x) and expected equivalent dispersivity, 〈λeq(x)〉.
The dispersion parameters, oscillator and dispersion energy were changed by boron dopant.
Dielectric dispersion parameters were identified that appear sensitive to layered silicate concentration and degree of exfoliation.
Dispersion parameters, up to the third-order, are computed for waveguides of heights 0.8 μm, 0.9 μm, and 1 μm.
Concentration distributions were determined for an experimental tracer run and the corresponding dispersion parameters were calculated.
Like silicon-on-insulator waveguides, silicon nitride rib waveguides allow us to tailor dispersion parameters at telecom wavelengths.
Using various dispersion parameters, through Monte Carlo simulations, the multilevel ZIGP yielded more accurate parameter estimates, especially for underdispersed data.
In this paper, a method for scaling the urban dispersion parameters in water channels and wind tunnels is presented.
Using the effective dispersion parameters, the overall mass balance is met in the ensemble average, whereas solute spreading is underestimated.
For both stationary and mobility scenarios, it is found that the average values of time dispersion parameters are also similar.
We have characterized diverse pores classified by types of CNT and dispersion parameters.
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CEO of Professional Science Editing for Scientists @ prosciediting.com