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Cryo-TEM provides direct images that elucidate the basic microstructural building blocks of the system, with which an accurate physical model can be constructed for scattering data interpretation.
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We present a high order multivariate approximation scheme for scattered data sets.
We present an error analysis of advanced techniques for scattered data approximation based on truncated hierarchical B-spline (THB-spline) constructions.
Until now, no method for scattered data interpolation with a bivariate function has produced surface formats that can be directly integrated into a CAD system.
To reduce the computational cost, this paper proposes a piece-wise moving least squares approximation method (PMLS) for scattered data approximation.
In this paper we present a method for scattered data interpolation producing tensor product B-splines with high quality curvature distribution.
We present a method for scattered data approximation with subdivision surfaces which actually uses the true representation of the limit surface as a linear combination of smooth basis functions associated with the control vertices.
The interaction energy parameter (X12), and the interaction entropy parameter (Q12) of the Flory's equation-of-state theory were determined from the Flory-Huggins interaction parameter, χ, which was measured from scattering data for the miscible blend systems, polystyrene (PS /poly vinyl methyl ether) (PVME) and deuterated polystyrene (dPS /PVME blends.
Inspection of scattering data for reflectance curves that exhibit the convex biphasic behavior shows that the collected photons often experienced few (<10) scattering events.
The molecular weights determined from scattering data (∼30 kDa for TbHpHbR, ∼150 kDa for HpHb and ∼210 kDa for the TbHpHbR:HpHb complex) show the formation of a complex containing two receptors bound to a single HpHb.
This method was proposed in [31] for interpolation of scattered data and applied to the indoor radio environment map problem in [7].
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