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Nonlinear Analysis: Theory, Methods & Applications, 1984
Consider a mixed type neutral system (1) \(x'(t)=f(t,x)+\sum^{m}_{j=1}F_ j(t,x)x'(t+P_ j)\), (2) \(x(0)=x_ 0\), where f is a continuous n-vector-valued functional, each \(F_ j\) is a continuous \(n\times n\) matrix-valued function defined on \(R\times C(R,R^ n)\), each \(P_ j\) is a constant real number and \(x_ 0\in R^ n\). It is also assumed that \(|
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Consider a mixed type neutral system (1) \(x'(t)=f(t,x)+\sum^{m}_{j=1}F_ j(t,x)x'(t+P_ j)\), (2) \(x(0)=x_ 0\), where f is a continuous n-vector-valued functional, each \(F_ j\) is a continuous \(n\times n\) matrix-valued function defined on \(R\times C(R,R^ n)\), each \(P_ j\) is a constant real number and \(x_ 0\in R^ n\). It is also assumed that \(|
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2003
After the observation of direct CP violation in the neutral kaon system in 1988, it became clear that the Kobayashi-Maskawa mechanism of weak quark mixing was the most likely and most natural candidate for explaining this phenomenon. It seemed natural, therefore, that the same mechanism would also produce observable CP-violating effects in other ...
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After the observation of direct CP violation in the neutral kaon system in 1988, it became clear that the Kobayashi-Maskawa mechanism of weak quark mixing was the most likely and most natural candidate for explaining this phenomenon. It seemed natural, therefore, that the same mechanism would also produce observable CP-violating effects in other ...
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Coordination of neutral ligands to a neutral phosphorus system
Chemical Communications, 1996Structural characterization of complexes involving neutral ligands (quinuclidine and tetramethylethylenediamine) coordinated to a neutral phosphorus system shows unusually long (> 2.00 A) N → P coordinative bonds; the bidentate ligand links two phosphorus acceptors.
Neil Burford +3 more
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Detailed Atomic Structure of Neutral and Near-Neutral Systems
AIP Conference Proceedings, 2011This paper highlights the issues which need to be addressed in undertaking accurate calculations of multi‐electron atoms and ions, particularly at or near the neutral end of an isoelectronic sequence. We illustrate the processes through two calculations—of transitions in Cl I and Sn II—and discuss the convergence of our results as well as updating ...
Paul Oliver, Alan Hibbert
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2010
In this chapter we introduce the idea of neutrality as a superior objective of tax systems. We illustrate common models of neutral taxation and discuss critically how they are and can be implemented in practice. The models discussed are the cash flow tax, the allowance for corporate equity tax and the Johansson/Samuelson tax.
Deborah Schanz, Sebastian Schanz
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In this chapter we introduce the idea of neutrality as a superior objective of tax systems. We illustrate common models of neutral taxation and discuss critically how they are and can be implemented in practice. The models discussed are the cash flow tax, the allowance for corporate equity tax and the Johansson/Samuelson tax.
Deborah Schanz, Sebastian Schanz
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Absolute Stability for Neutral Differential Systems
European Journal of Control, 2002zbMATH Open Web Interface contents unavailable due to conflicting licenses.
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Stabilization of Neutral Time-Delay Systems
2009This paper addresses the stabilization problem for neutral time-delay systems. Starting from a transfer approach, we develop a general algebraic framework for the study of the stabilization. The stability considered in this paper is the exponential one.
Di Loreto, Michaël +2 more
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On a neutral Lotka–Volterra system
Mathematical Methods in the Applied Sciences, 1992AbstractSufficient conditions are obtained for the linear stability of the positive equilibrium of the neutral system magnified image in terms of the parameters of the system. The case n=2 is considered in detail and the general case is discussed briefly.
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Neutral Homoaromaticity in Some Heterocyclic Systems
The Journal of Organic Chemistry, 2005[reaction: see text] Neutral homoaromaticity has been evaluated in heterocyclic systems related to the bicyclo[3.2.1]octane skeleton with replacement of CH(2) at C-2 in bicyclo[3.2.1]octa-3,6-diene with X = BH, AlH, Be, Mg, O, S, PH, NH (12); replacement of CH at C-3 in bicyclo[3.2.1]octa-3,6-dien-2-yl anion with PH, S, NH, O (13); and replacement at C-
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