Search results for "Lambda"

showing 10 items of 632 documents

"Table 10" of "K^0_S and {\Lambda} production in Pb-Pb collisions at sqrt(sNN) = 2.76 TeV"

2016

pT spectra of Lambda in the rapidity range -0.5

InclusiveStrange production2760.0Rapidity DependenceD2N/DPT/DYRAPDouble Differential DistributionTransverse Momentum DependencePB PB --> LAMBDA X
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"Table 11" of "K^0_S and {\Lambda} production in Pb-Pb collisions at sqrt(sNN) = 2.76 TeV"

2016

pT spectra of Lambda in the rapidity range -0.5

InclusiveStrange production2760.0Rapidity DependenceD2N/DPT/DYRAPDouble Differential DistributionTransverse Momentum DependencePB PB --> LAMBDA X
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"Table 8" of "K^0_S and {\Lambda} production in Pb-Pb collisions at sqrt(sNN) = 2.76 TeV"

2016

pT spectra of Lambda in the rapidity range -0.5

InclusiveStrange production2760.0Rapidity DependenceD2N/DPT/DYRAPDouble Differential DistributionTransverse Momentum DependencePB PB --> LAMBDA X
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"Table 18" of "A study of strange particle production in nu/mu charged current interactions in the NOMAD experiment."

2002

Efficiency corrected PT**2 distributions for LAMBDA production in two Feynman X regions. Note: this data does not appear in the paper.

InclusiveStrange production9.266Deep Inelastic ScatteringSingle Differential DistributionCharged CurrentTransverse Momentum DependenceNUMU NUCLEON --> MU- LAMBDA XMuon productionDN/DPT**2
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"Table 2" of "Inclusive Lambda/c production in e+ e- annihilations at s**(1/2) = 10.54-GeV and in Upsilon(4S) decays."

2008

The integrated number of LAMBDA/C+'s per hadronic event for the continuum at cm energy 10.54 GeV.

InclusiveStrange productionE+ E- ScatteringHigh Energy Physics::Phenomenology0.073-10.54E+ E- --> LAMBDA/C+ XHigh Energy Physics::ExperimentUpsilonNNuclear Experiment
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"Table 2" of "Production of the charmed baryon Lambda(c)+ in pi- Cu and K- Cu interactions at 230-GeV"

1990

No description provided.

InclusiveStrange productionIntegrated Cross SectionK- NUCLEUS --> LAMBDA/CBAR- XCross SectionSIGK- CU --> LAMBDA/CBAR- X
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"Table 3" of "Spectra and correlations of Lambda and Lambda produced in 340-GeV/c Sigma -+C and 260-GeV/c n+C interactions"

2002

Total inclusive LAMBDA LAMBDA and LAMBDABAR LAMBDABAR pair production crosssections for the SIGMA- beam on the Carbon target.

InclusiveStrange productionIntegrated Cross SectionPhysics::Accelerator PhysicsHigh Energy Physics::ExperimentSIGMA- NUCLEUS --> LAMBDABAR LAMBDABAR XCross SectionSIGSIGMA- NUCLEUS --> LAMBDA LAMBDA XSIGMA- C --> LAMBDABAR LAMBDABAR XSIGMA- C --> LAMBDA LAMBDA X
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"Table 1" of "Spectra and correlations of Lambda and Lambda produced in 340-GeV/c Sigma -+C and 260-GeV/c n+C interactions"

2002

Total inclusive LAMBDA and LAMBDABAR production cross sections for the SIGMA- beam on the Carbon target.

InclusiveStrange productionSIGMA- NUCLEUS --> LAMBDABAR XfungiSIGMA- NUCLEUS --> LAMBDA XIntegrated Cross SectionbacteriaPhysics::Accelerator PhysicsHigh Energy Physics::ExperimentCross SectionSIGSIGMA- C --> LAMBDABAR XSIGMA- C --> LAMBDA X
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Attālināts automašīnu monitorings, izmantojot lietu interneta un bezservera tehnoloģijas

2020

Ikvienā modernā automašīnā notiek milzīgs daudzums ar elektroniskiem un mehāniskiem procesiem, kas vajadzīgi, lai automašīna veiktu optimālu funkcionēšanu. Daļu no iekšējiem procesiem iespējams no ārpuses novērot, izmantojot automašīnu pašdiagnostikas sistēmu (OBD). Bakalaura darba mērķis ir izveidot risinājumu attālinātai OBD datu monitorēšanai. Darba ietvaros tiek izpētīts, kas ir vajadzīgs, lai pieslēgtos OBD. Kā notiek komunikācija ar OBD. Darba gaitā izstrādāta “Flutter” mobilā lietotne, kas, izmantojot “Bluetooth” zemās enerģijas tehnoloģiju, no automašīnas pašdiagnostikas sistēmas spēj iegūt aktuālos datus. Lietotne nolasītos datus nogādā “AWS Lambda” bezservera metodei, kas rezultāt…

IoTELM327DatorzinātneAWS LambdaFlutterOBD
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Lambda-doublet specificity in the low-temperature capture of NO(X Π21/2) in low rotational states by C+ ions

2009

Following our general approach to Lambda-doubling specificity in the capture of dipolar molecules by ions [M. Auzinsh et al., J. Chem. Phys. 128, 184304 (2008)], we calculate the rate coefficients for the title process in the temperature range 10(-4)<T<10(2) K. Three regimes considered are as follows: (i) nonadiabatic capture in the regime of high-field Stark effect with respect to the Lambda-doubling components, (10(-1)<T<10(2) K), (ii) adiabatic capture in the regime of intermediate Stark effect (10(-3)<T<10(-1) K), and (iii) adiabatic capture in the limit of very low temperatures (T<<10(-3) K) in the regime of quadratic Stark effect with respect to the Lambda-doubling and hyperfine compo…

IonsRotationElectron captureChemistryGeneral Physics and AstronomyAtmospheric temperature rangeNitric OxideLambdaCarbonIonCold TemperatureKineticsDipolesymbols.namesakeStark effectsymbolsPhysical and Theoretical ChemistryAtomic physicsAdiabatic processHyperfine structureThe Journal of Chemical Physics
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