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In this paper, we present the basic theory and applications of ICA, and our recent work on the subject.
For basic theory and applications of difference equations we refer the reader [8 16] and references therein.
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The objective, basic theory and application of a new DTLRM (Differential Thickness Layer Resistance Measurement) method of contact resistance Rc (resistance of interface) and contact resistivity measurements are described.
Great progress has been made in basic theory and application of nanooptical materials, nanosemiconductor materials, nanobiomedical materials, nanoenhanced materials, nanomodified surface, etc. (Lin et al. 2012; Cormick and Hunter 2014; Kearnes et al. 2014).
The aim of this paper is to present the basic theory and preliminary applications of a newly developed formulation for the modal analysis of two-dimensional vibrating structures.
That is, in fact, rather unique to it, that once you've done your field study, you bring experience back to the field to further develop basic theory and future applications.
For the basic theory and different applications of derivatives and integrals of fractional order in various domains, we refer the readers to [1].
In general agreement to the basic theory and the application developed in [ 14], was used the following general formula for the correlation coefficient: (3) R = 1 N ∑ i x i y i − ∑ i x i ∑ i y i 1 N ∑ i x i − 1 N ∑ i x i 2 ∑ i y i − 1 N ∑ i y i 2 where: xi, yi with i = 1, 2, … N, are sample values of the measured quantities (physical values) for which the correlation coefficients are calculated.
Students and faculty review and present recent research papers on basic theories and economic applications of decision theory, game theory and mechanism design.
Recent developments in the basic theory, algorithms, and applications for curves with rational rotation-minimizing frames (RRMF curves) are reviewed, and placed in the context of the current state-of-the-art by highlighting the many significant open problems that remain.
The papers address all aspects of distributed computing, and were organized in topical sections on cooperative design, cooperative applications, cooperative engineering, cooperative visualization, and basic theory and technology.
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