Search results for "dab"

showing 10 items of 1280 documents

"Table 4" of "Production of Lambda, Cascade and Omega Hyperons in ppbar Collisions at1.96 TeV Center of Mass Energy"

2011

The PT differential cross section for XI- production in two charged-particle multiplicty regions.

PBAR P --> LAMBDA XE*D3SIG/DP**32047761InclusivePBAR P --> LAMBDABAR XStrange production2047761N1960.0Invariant Cross Section
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"Table 1" of "Production of Lambda, Cascade and Omega Hyperons in ppbar Collisions at1.96 TeV Center of Mass Energy"

2011

The PT differential cross section for LAMBBA production in the |pseudorapidity| range < 1.

PBAR P --> LAMBDA XE*D3SIG/DP**32047761InclusivePBAR P --> LAMBDABAR XStrange production2047761N1960.0Invariant Cross Section
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"Table 2" of "Measurement of the forward-backward asymmetry of $\Lambda$ and $\bar{\Lambda}$ production in $p \bar{p}$ collisions"

2017

Forward-backward asymmetry $A_{FB}$ of $\Lambda$ and $\bar{\Lambda}$ in bins of $p_T$ in events $p \bar{p} \rightarrow \mu^\pm \Lambda (\bar{\Lambda}) X$.

PBAR P --> LAMBDA XInclusiveStrange ProductionPBAR P --> LAMBDABAR XAsymmetry MeasurementHigh Energy Physics::PhenomenologyHigh Energy Physics::Experiment1960.0ASYM
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"Table 1" of "Measurement of the forward-backward asymmetry of $\Lambda$ and $\bar{\Lambda}$ production in $p \bar{p}$ collisions"

2017

Forward-backward asymmetry $A_{FB}$ of $\Lambda$ and $\bar{\Lambda}$ with $p_T > 2.0$ GeV in minimum bias events $p \bar{p} \rightarrow \Lambda (\bar{\Lambda}) X$, events $p \bar{p} \rightarrow J/\psi \Lambda (\bar{\Lambda}) X$, and events $p \bar{p} \rightarrow \mu^\pm \Lambda (\bar{\Lambda}) X$.

PBAR P --> LAMBDA XPBAR P --> J/PSI LAMBDA XHigh Energy Physics::PhenomenologyPBAR P --> MU+ LAMBDABAR XInclusiveStrange ProductionPBAR P --> MU- LAMBDA XPBAR P --> LAMBDABAR XAsymmetry MeasurementPBAR P --> MU- LAMBDABAR XHigh Energy Physics::ExperimentPBAR P --> MU+ LAMBDA X1960.0PBAR P --> J/PSI LAMBDABAR XASYMMuon Production
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BIODEGRADABLE BILAYER FILMS PREPARED BY CO-EXTRUSION

2017

The sensitivity for reducing packaging waste drove academic and industrial efforts to search compostable or biodegradable bio-sourced polymeric materials. Multilayer systems represent a suitable strategy to obtain the required properties and to improve biopolymer performance. The aim of the current work is the coextrusion film blowing of a biodegradable bilayer film PLA/MaterBi with the purpose to overcome the drawbacks of the individual components.

PLA biodegradable bilayer film melt processing hydrolytic degradation pH
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Resource or waste? A perspective of plastics degradation in soil with a focus on end-of-life options.

2018

‘Capable-of-being-shaped’ synthetic compounds are prevailing today over horn, bone, leather, wood, stone, metal, glass, or ceramic in products that were previously left to natural materials. Plastic is, in fact, economical, simple, adaptable, and waterproof. Also, it is durable and resilient to natural degradation (although microbial species capable of degrading plastics do exist). In becoming a waste, plastic accumulation adversely affects ecosystems. The majority of plastic debris pollutes waters, accumulating in oceans. And, the behaviour and the quantity of plastic, which has become waste, are rather well documented in the water, in fact. This review collects existing information on pla…

PLA polylactic acidPS polystyreneETS European Emissions Trading schemePOM polyoxymethyleneHMC heat melt compactor technology02 engineering and technology010501 environmental sciencesNHV net habitable volumeLDPE low-density polyethylene01 natural sciencesPC polycarbonateResin identification codeLCP liquid crystal polymerslcsh:Social sciences (General)PAC pro-oxidant additive containingPET polyethylene terephthalateEPR Extended Producers ResponsibilityMultidisciplinaryWaste managementNatural materials021001 nanoscience & nanotechnologyPU or PUR polyurethaneSettore AGR/02 - Agronomia E Coltivazioni ErbaceeEPS expandable polystyreneRIC resin identification codeSettore AGR/14 - PedologiaPVDF polydifluoroethylenelcsh:H1-990210 nano-technologyBiogeoscienceGPPS Polystyrene (General Purpose)PVC polyvinyl chlorideResource (biology)Polymethyl methacrylatePA polyamidePBT polybutylene terephthalatePSU polyarylsulfonePTFE polytetrafluoroethylenePMMA polymethyl methacrylatePHA polyhydroxyalkanoateMicrobiologyPEEK polyaryletheretherketoneArticleEnvironmental scienceEnvironmental science Biogeoscience Industry MicrobiologyPPA polyphthalamideTPE thermoplastic polyester elastomerNatural degradationIndustryPPS polyphenylene sulphidelcsh:Science (General)ABS acrylonitrile-butadiene-styrene0105 earth and related environmental sciencesbusiness.industryPP polypropyleneHDPE high-density polyethyleneBPA bisphenol AHBCD hexabromocyclododecaneFuture studyAgricultureDOM dissolved organic matterDegradation (geology)Environmental sciencebusinesslcsh:Q1-390Heliyon
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"Table 2" of "Measurement of the Antilambda polarization in nu/mu charged current interactions in the NOMAD experiment."

1993

Lambdabar polarization in regions of the Bjorken scaling variable X.

POLInclusiveNUMU NUCLEON --> MU- LAMBDABAR XStrange productionPolarizationDeep Inelastic ScatteringCharged CurrentMuon production0.938-29.07
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"Table 1" of "Measurement of the Antilambda polarization in nu/mu charged current interactions in the NOMAD experiment."

1993

Lambdabar polarization in regions of Feynman X (XL).

POLInclusiveNUMU NUCLEON --> MU- LAMBDABAR XStrange productionPolarizationDeep Inelastic ScatteringHigh Energy Physics::ExperimentCharged Current31.872Muon production
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"Table 1" of "Measurement of the polarization of Lambda0, anti-Lambda0, Sigma+ and Xi- produced in a Sigma- beam of 330-GeV/c"

1995

Target Consisted of a copper and a carbon block arranged side by side.

POLStrange productionSIGMA- C --> XI- XSIGMA- CU --> SIGMA+ XSIGMA- C --> LAMBDABAR XSIGMA- C --> LAMBDA XSIGMA- CU --> LAMBDABAR XInclusiveSIGMA- CU --> LAMBDA XSIGMA- NUCLEUS --> LAMBDABAR XSIGMA- CU --> XI- XPolarizationSIGMA- C --> SIGMA+ XSIGMA- NUCLEUS --> LAMBDA XExclusiveSIGMA- NUCLEUS --> X XI-SIGMA- NUCLEUS --> SIGMA+ X
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Projektu metode dabaszinību apguvei 5-6 gadu vecumā

2018

Projektu metode dabaszīnību apguvei 5-6 gadu vecumā Darba autore: Uļjana Rovedere Darba vadītāja: docente, Dr. Paed. Ilze Šūmane Bakalaura darba apjoms: 60. lpp, 2 tabulas, 7 attēli, 26 avoti. Bakalaura darbā veikta teorētisko avotu analīze: projektu metodes jēdziena izskaidrošana, dotās metodes jēga, projektu metodes organizācijas process, dabaszinību metodikas apraksts pirmsskolas izglītības iestādē, kā arī 5-6 gadu vecu bērnu vispārējais raksturojums. Darba metodiskajā daļā izstrādāts didaktiskais materiāls tēmas “Kukaiņi” apgūšanai. Praktiskajā daļā izstrādāti kritēriji, pēc kuriem tika veikta pedagoģiskā vērošana projektu nedēļas sākumā un beigās, tika novadītas sarunas ar bērniem, kā …

PROJEKTU METODEPedagoģijaDABASZĪNĪBASPROJEKTS5-6 GADI
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