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81.
Gabriela Petruşel 《Central European Journal of Mathematics》2009,7(3):520-528
The purpose of this article is to present fixed point results for multivalued E
≤-contractions on ordered complete gauge space. Our theorems generalize and extend some recent results given in M. Frigon [7],
S. Reich [12], I.A. Rus and A. Petruşel [15] and I.A. Rus et al. [16].
相似文献
82.
Ghenuche P Cherukulappurath S Taminiau TH van Hulst NF Quidant R 《Physical review letters》2008,101(11):116805
We present spatially resolved spectral mode mapping of resonant plasmon gap antennas using two-photon luminescence microspectroscopy. The obtained maps are in good agreement with 3D calculations of the antenna modes. The evolution of the modal field with wavelength, both in the gap and along the two coupled gold nanowires forming the antenna, is directly visualized. At resonance, the luminescence for the gap area is enhanced at least 80 times and a comparison with the antenna extremities shows a dynamical charge redistribution due to the near-field coupling between the two arms. 相似文献
83.
84.
Sanford S Miller Petru T Mocanu 《Journal of Mathematical Analysis and Applications》1978,65(2):289-305
Let w(z) be regular in the unit disk U and let h(r, s, t) be a complex function defined in a domain of C3. The authors determine conditions on h such that implies and such that Re h(w(z), zw′(z), z2w″(z)) > 0 implies Re w(z) > 0. Applications of these results to univalent function theory, differential equations and harmonic functions are given. 相似文献
85.
86.
We study minimizers of the Ginzburg–Landau functional in an annular type domain with holes. We assume degrees 1 and ?1 on the boundary of the annulus, degree 0 on the boundaries of the holes. Two types of qualitatively different behavior of minimizers occur, depending on the value of the H1-capacity of the domain. We also describe the asymptotic behavior of minimizers as the coherency length tends to ∞. To cite this article: L. Berlyand, P. Mironescu, C. R. Acad. Sci. Paris, Ser. I 337 (2003). 相似文献
87.
Ljupčo Pejov Gjorgji Ivanovski Vladimir M. Petruševski 《Journal of mathematical chemistry》1999,26(4):317-326
A perturbation theoretical method is proposed that allows determination of the function describing the dependence of the intramolecular
XH(D) potential on the hydrogen bond strength. Treating the XH(D) oscillators as mixed cubic–quartic oscillators in which
the stretch–stretch couplings of the ν(X–H(D)) mode with the internal modes of the radical X may be neglected, and introducing
the hydrogen bonding influence through the changes in the harmonic diagonal force constants (as proposed by Sceats and Rice
[41]), it is possible to extract the analytical form of the function
) from the experimental
versus
correlations. The other parameters obtained by the empirical correlations, within this model, also have an exact physical
meaning. The method is applicable to weak hydrogen bonds as well as to hydrogen bonds of intermediate strength, and, strictly
speaking, to linear X–
systems. However, extension to arbitrary geometry may be easily done.
This revised version was published online in July 2006 with corrections to the Cover Date. 相似文献
88.
This paper reports the development of an analytical approach for speciation analysis of mercury at ultra-trace levels on the basis of solid-phase microextraction and multicapillary gas chromatography hyphenated to inductively coupled plasma-time-of-flight mass spectrometry. Headspace solid-phase microextraction with a carboxen/polydimethylsyloxane fiber is used for extraction/preconcentration of mercury species after derivatization with sodium tetraethylborate and subsequent volatilization. Isothermal separation of methylmercury (MeHg), inorganic mercury (Hg2+) and propylmercury (PrHg) used as internal standard is achieved within a chromatographic run below 45 s without the introduction of spectral skew. Method detection limits (3 x standard deviation criteria) calculated for 10 successive injections of the analytical reagent blank are 0.027 pg g(-1) (as metal) for MeHg and 0.27 pg g(-1) for Hg2+. The repeatability (R.S.D., %) is 3.3% for MeHg and 3.8% for Hg2+ for 10 successive injections of a standard mixture of 10pg. The method accuracy for MeHg and total mercury is validated through the analysis of marine and estuarine sediment reference materials. A comparison of the sediment data with those obtained by a purge-and-trap injection (PTI) method is also addressed. The analytical procedure is illustrated with some results for the ultra-trace level analysis of ice from Antarctica for which the accuracy is assessed by spike recovery experiments. 相似文献
89.
Departures from Raoults law are often found in liquid mixtures resulting in volume nonadditivity. Modifications are proposed for experiments demonstrating volume contraction of water/ethanol and volume expansion of ethyl acetate/carbon disulfide liquid mixtures. A layer of paraffin oil or water is used to prevent mixing of the liquids at an earlier stage then desired. A demonstration of volume expansion in a CS2/ethyl acetate system is proposed as well. The modifications significantly improve the ease of the demonstrations, which can be made even more impressive by coloring the liquids. A reaction vessel of simple construction is offered for a more vivid demonstration of the phenomenon. 相似文献
90.
Alexandru T. Balaban Petru Filip Teodor-Silviu Balaban 《Journal of computational chemistry》1985,6(4):316-329
A new approach is presented for identifying all possible cycles in graphs. Input data are the total numbers of vertices and edges, as well as the vertex adjacencies using arbitrary vertex numbering. A homeomorphically reduced graph (HRG) is constructed by ignoring vertices of degree less than three. The algorithm is based on successive generation of possible edge-combinations in the HRG. If a combination yields a cycle, it is either printed or stored and then finally printed in a list of all possible cycles arranged in the order of increasing ring size. A unique numbering of the cycle is used. The computer program is listed and exemplified. Computing times are given. 相似文献