Search results for "ASYMMETRY"

showing 10 items of 1109 documents

On localization of moving objects in the visual system of cats.

1980

In cortical areas direction-specific receptive fields occur systematically. Direction specifity is based on unsymmetric coupling of neurons. Such a coupling allows an exact localization of moved stimuli. For this task, the asymmetry in the time domain is compensated for by a spatial asymmetry.

Cerebral CortexQuantitative Biology::Neurons and CognitionGeneral Computer Sciencebusiness.industrymedia_common.quotation_subjectModels NeurologicalMotion PerceptionAsymmetryCoupling (electronics)Receptive fieldSpace PerceptionTime PerceptionCatsVisual PerceptionAnimalsComputer visionTime domainArtificial intelligenceNerve NetbusinessBiotechnologyMathematicsmedia_commonBiological cybernetics
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Characterization of chromatographic peaks using the linearly modified Gaussian model. Comparison with the bi-Gaussian and the Foley and Dorsey approa…

2017

To characterize column performance in liquid chromatography, several parameters must be obtained from experimental data. These parameters can be computed through the numerical integration of the net signal to calculate the moments after subtraction of the baseline. This requires the establishment of the peak integration limits. The whole process introduces significant uncertainty. For this reason, several alternative procedures have been proposed to measure the area, mean time and variance, based on the assumption that the chromatographic peak can be described with a mathematical function. This allows the calculation of the peak position and variance making use of the values of the experime…

ChromatographyChemistryGaussianmedia_common.quotation_subject010401 analytical chemistryOrganic ChemistryGeneral MedicineVariance (accounting)010402 general chemistry01 natural sciencesBiochemistryMeasure (mathematics)Asymmetry0104 chemical sciencesAnalytical ChemistryNumerical integrationsymbols.namesakePosition (vector)Linear ModelssymbolsRange (statistics)Gaussian network modelChromatography Liquidmedia_commonJournal of Chromatography A
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New approaches based on modified Gaussian models for the prediction of chromatographic peaks

2012

Abstract The description of skewed chromatographic peaks has been discussed extensively and many functions have been proposed. Among these, the Polynomially Modified Gaussian (PMG) models interpret the deviations from ideality as a change in the standard deviation with time. This approach has shown a high accuracy in the fitting to tailing and fronting peaks. However, it has the drawback of the uncontrolled growth of the predicted signal outside the elution region, which departs from the experimental baseline. To solve this problem, the Parabolic-Lorentzian Modified Gaussian (PLMG) model was developed. This combines a parabola that describes the variance change in the peak region, and a Lor…

ChromatographyDegree (graph theory)Chemistrymedia_common.quotation_subjectGaussianParabolaCauchy distributionVariance (accounting)BiochemistrySignalAsymmetryStandard deviationAnalytical Chemistrysymbols.namesakesymbolsEnvironmental ChemistrySpectroscopymedia_commonAnalytica Chimica Acta
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Upward and Downward Limit Pricing: The Role of Post-Entry Competition

2005

Under asymmetric information, entry-deterring strategies by an incumbent monopolist can consist of deviations from its static monopoly price through downward deviations termed downward limit pricing, or upward deviations termed upward limit pricing. Our analysis shows that the mode of post-entry competition influences the range of situations in which an incumbent adopts a strategy of downward limit pricing instead of an upward one: this range is greater under price than under output competition; it is decreasing in the degree of product differentiation; and with homogeneous product only downward limit pricing emerges under price competition, while upward limit pricing can still take place w…

Competition (economics)MicroeconomicsInformation asymmetryMonopoly priceHomogeneousEconomicsProduct (category theory)Product differentiationGeneral Economics Econometrics and FinanceLimit priceThe B.E. Journal of Theoretical Economics
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Collusion constrained equilibrium

2018

We study collusion within groups in non-cooperative games. The primitives are the preferences of the players, their assignment to non-overlapping groups and the goals of the groups. Our notion of collusion is that a group coordinates the play of its members among different incentive compatible plans to best achieve its goals. Unfortunately, equilibria that meet this requirement need not exist. We instead introduce the weaker notion of collusion constrained equilibrium. This allows groups to put positive probability on alternatives that are suboptimal for the group in certain razor's edge cases where the set of incentive compatible plans changes discontinuously. These collusion constrained e…

Computer Science::Computer Science and Game TheoryClass (set theory)Group (mathematics)05 social sciencesTheoryofComputation_GENERALMicroeconomicssymbols.namesakeInformation asymmetryIncentive compatibilityNash equilibrium0502 economics and businessCollusionsymbolsEconomicsLimit (mathematics)050207 economicsSet (psychology)General Economics Econometrics and FinanceMathematical economics050205 econometrics Theoretical Economics
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"Table 2" of "Determination of A(b)(FB) using jet charge measurements in Z decays."

1998

The combination of the data on and off peak of Z-boson.

Condensed Matter::Quantum GasesE+ E- --> BQ BQBARInclusiveAsymmetry MeasurementE+ E- --> Z0E+ E- ScatteringHigh Energy Physics::PhenomenologyExclusiveJet ProductionE+ E- --> JETS XASYM91.0
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"Table 7" of "Measurement of the inclusive W+- and Z/gamma cross sections in the electron and muon decay channels in pp collisions at sqrt(s) = 7 TeV…

2014

Combined lepton charge asymmetry from W boson decays.

Condensed Matter::Quantum GasesP P --> W+ XInclusiveProton-Proton ScatteringAsymmetry MeasurementHigh Energy Physics::PhenomenologyP P --> W- XHigh Energy Physics::ExperimentW ProductionASYM
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"Table 2" of "Measurement of Angular Asymmetries in the Decays B->K*l+l-"

2016

$A_{FB}$ angular fit results.

Condensed Matter::Quantum GasesPOLB+ --> K*+ LEPTON+ LEPTON-Strange ProductionB --> K* LEPTON+ LEPTON-Asymmetry MeasurementHigh Energy Physics::LatticePolarizationB0 --> K*0 LEPTON+ LEPTON-High Energy Physics::ExperimentDecayASYM
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Asymmetric Tunneling Conductance and the non-Fermi Liquid Behavior of Strongly Correlated Fermi Systems

2018

Tunneling differential conductivity (or resistivity) is a sensitive tool to experimentally test the nonFermi liquid behavior of strongly correlated Fermi systems. In the case of common metals the Landau– Fermi liquid theory demonstrates that the differential conductivity is a symmetric function of bias voltage V . This is because the particle-hole symmetry is conserved in the Landau–Fermi liquid state. When a strongly correlated Fermi system turns out to be near the topological fermion condensation quantum phase transition, its Landau–Fermi liquid properties disappear so that the particle-hole symmetry breaks making the differential tunneling conductivity to be asymmetric function of V . Th…

Condensed Matter::Quantum GasesPhysicsQuantum phase transitionSuperconductivityPhysics and Astronomy (miscellaneous)Condensed matter physicsmedia_common.quotation_subject02 engineering and technologyConductivity021001 nanoscience & nanotechnology01 natural sciencesAsymmetryElectrical resistivity and conductivity0103 physical sciencesCondensed Matter::Strongly Correlated ElectronsFermi liquid theory010306 general physics0210 nano-technologyPseudogapQuantum tunnellingmedia_commonJETP Letters
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Asymmetrical tunneling in heavy fermion metals as a possible probe for their non-Fermi liquid peculiarities

2007

Tunneling conductivity and point contact spectroscopy between heavy fermion metal and a simple metallic point contact may serve as a convenient probing tool for non-Fermi liquid behavior. Landau Fermi liquid theory predicts that the differential conductivity is a symmetric function of voltage bias. This symmetry, in fact, holds if so called particle–hole symmetry is preserved. Here, we show that the situation can be different when one of the two metals is a heavy fermion one whose electronic system is a heavy fermion liquid. When the heavy fermion liquid undergoes fermion condensation quantum phase transition, the particle–hole symmetry in the excitation spectra is violated making both the …

Condensed Matter::Quantum GasesQuantum phase transitionPhysicsSuperconductivityCondensed matter physicsMechanical Engineeringmedia_common.quotation_subjectMetals and AlloysFermionAsymmetrySymmetry (physics)Landau theoryMechanics of MaterialsMaterials ChemistryQuasiparticleFermi liquid theorymedia_commonJournal of Alloys and Compounds
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