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Appling this multi-dimensional method to a penta peptide, Met-enkephalin, we demonstrate its effectiveness.
The BMIX++ code uses a scaling based one-dimensional method to achieve large reduction in computational effort compared to a 3-D computational fluid dynamics (CFD) simulation.
A one-dimensional method to predict the acoustic waves generated by a rapid thermal expansion in a multilayer viscoelastic body (rod or plate) is presented.
Visualizing initial defects in AV cushion formation and fusion requires histological levels of resolution, but using a two-dimensional method to examine a complex, three-dimensional (3D) transformation has its own inherent limitations.
In this paper, two different two-dimensional methods to determine spreading pattern were evaluated, each consisting of a sampling method and a matching interpolation algorithm.
The basic ethos of this algorithm, known as DigiPac, is to use three-dimensional methods to digitise particle shapes, and to use this digital information directly in computations of how particles pack together without further conversion or the need for modelling.
The identification of subpicomolar amounts of protein by mass spectrometry (MS) coupled with two-dimensional methods to separate complex protein mixtures is fueling the field of proteomics, and making feasible the notion of cataloging and comparing all of the expressed proteins in a biological sample.
Axisymmetry permits extension of 2-dimensional methods to reasonable 3-dimensional estimates.
There has been tremendous growth in both the development of high-throughput microarray technology to measure gene expression in tissue and cells and in high-dimensional methods to analyze such data [ 49, 50].
As droplet mass is proportional to the cube of the diameter, the measurement imprecision in estimating individual droplet mass by this dimensional method translates to 0.38%.
Participants will be tested periodically for up to three years with angiograms and intravascular ultrasound, a three-dimensional imaging method to precisely define how much scar forms.
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