Search results for "Proton"

showing 10 items of 5886 documents

"Table 10" of "First observation of strong OZI rule violation in pi N interactions."

1996

No description provided.

PI- P --> P OMEGA PI-PI- P --> P PHI PI-Integrated Cross SectionExclusiveCross Section4.839SIGPion-Proton Scattering
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"Table 8" of "First observation of strong OZI rule violation in pi N interactions."

1996

No description provided.

PI- P --> P OMEGA PI-PI- P --> P PHI PI-Integrated Cross SectionExclusiveCross Section4.839SIGPion-Proton Scattering
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"Table 4" of "First observation of strong OZI rule violation in pi N interactions."

1996

No description provided.

PI- P --> P PHI PI-Integrated Cross SectionExclusiveCross Section4.839SIGPion-Proton Scattering
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"Decay Phase-Space Volume of Partial Waves" of "Light isovector resonances in $\pi^- p \to \pi^-\pi^-\pi^+ p$ at 190 GeV/${\it c}$"

2018

Decay phase-space volume $I_{aa}$ for the 14 selected partial waves as a function of $m_{3\pi}$, normalized such that $I_{aa}(m_{3\pi} = 2.5~\text{GeV}/c^2) = 1$. The wave index $a$ represents the quantum numbers that uniquely define the partial wave. The quantum numbers are given by the shorthand notation $J^{PC} M^\varepsilon [$isobar$] \pi L$. We use this notation to label the decay phase-space volume in the column headers. The labels are identical to the ones used in the column headers of the table of the transition amplitudes. $I_{aa}$ is calculated using Monte Carlo integration techniques for fixed $m_{3\pi}$ values, which are given in the first column, in the range from 0.5 to 2.5 Ge…

PI- P --> PI2(2005)- PLight-Meson SpectroscopyIsobar ModelPI- P --> PI- F2(1270) PAmplitude AnalysisPI- P --> PI1(1600)- PDiffractivePI- P --> A1(1420)- PPI- P --> A1(1260)- PPI- P --> A2(1320)- PPI- P --> A1(1640)- PPI- P --> A4(2040)- PPI- P --> PI- RHO0 PPI- P --> PI- F0(980) PPI- P --> PI- PI- PI+ PPI- P --> PI2(1670)- PPI- P --> A2(1700)- PExclusivePI- P --> PI(1800)- PPI- P --> PI2(1880)- PPion-Proton Scattering
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"Transition Amplitudes" of "Light isovector resonances in $\pi^- p \to \pi^-\pi^-\pi^+ p$ at 190 GeV/${\it c}$"

2018

Real and imaginary parts of the normalized transition amplitudes $\mathcal{T}_a$ of the 14 selected partial waves in the 1100 $(m_{3\pi}, t')$ cells (see Eq. (12) in the paper). The wave index $a$ represents the quantum numbers that uniquely define the partial wave. The quantum numbers are given by the shorthand notation $J^{PC} M^\varepsilon [$isobar$] \pi L$. We use this notation to label the transition amplitudes in the column headers. The $m_{3\pi}$ values that are given in the first column correspond to the bin centers. Each of the 100 $m_{3\pi}$ bins is 20 MeV/$c^2$ wide. Since the 11 $t'$ bins are non-equidistant, the lower and upper bounds of each $t'$ bin are given in the column he…

PI- P --> PI2(2005)- PLight-Meson SpectroscopyIsobar ModelPI- P --> PI- F2(1270) PAmplitude AnalysisPI- P --> PI1(1600)- PDiffractivePartial-Wave AmplitudePI- P --> A1(1420)- PPI- P --> A1(1260)- PPI- P --> A2(1320)- PPI- P --> A1(1640)- PPI- P --> A4(2040)- PPI- P --> PI- RHO0 PPI- P --> PI- F0(980) PPI- P --> PI- PI- PI+ PPI- P --> PI2(1670)- PPI- P --> A2(1700)- PExclusive19.0PI- P --> PI(1800)- PPI- P --> PI2(1880)- PPion-Proton ScatteringAMP
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Energy management of a thermally coupled fuel cell system and metal hydride tank

2019

International audience; Being produced from renewable energy, hydrogen is one of the most efficient energy carriers of the future. Using metal alloys, hydrogen can be stored and transported at a low cost, in a safe and effective manner. However, most metals react with hydrogen to form a compound called metal hydride (MH). This reaction is an exothermic process, and as a result releases heat. With sufficient heat supply, hydrogen can be released from the as-formed metal hydride. In this work, we propose an integrated power system of a proton exchange membrane fuel cell (PEMFC) together with a hydride tank designed for vehicle use. We investigate different aspects for developing metal hydride…

PILE A COMBUSTIBLEMaterials scienceHydrogenExothermic processHYDROGEN TANKIntermetallicEnergy Engineering and Power Technologychemistry.chemical_elementProton exchange membrane fuel cellENERGIE02 engineering and technology010402 general chemistry7. Clean energy01 natural sciences[SPI.MAT]Engineering Sciences [physics]/Materials[SPI.AUTO]Engineering Sciences [physics]/AutomaticHydrogen storage[SPI]Engineering Sciences [physics]Operating temperatureTHERMAL COUPLINGENERGY MANAGEMENT[PHYS.MECA.MEFL]Physics [physics]/Mechanics [physics]/Fluid mechanics [physics.class-ph][SPI.NANO]Engineering Sciences [physics]/Micro and nanotechnologies/Microelectronics[SPI.ACOU]Engineering Sciences [physics]/Acoustics [physics.class-ph]COUPLAGE[PHYS.MECA.MEFL]Physics [physics]/Mechanics [physics]/Mechanics of the fluids [physics.class-ph]Renewable Energy Sustainability and the Environmentbusiness.industryHydride[SPI.NRJ]Engineering Sciences [physics]/Electric power021001 nanoscience & nanotechnologyCondensed Matter PhysicsFUEL CELL0104 chemical sciencesRenewable energyFuel TechnologyChemical engineeringchemistryHYDROGENE[PHYS.MECA.THER]Physics [physics]/Mechanics [physics]/Thermics [physics.class-ph]0210 nano-technologybusiness
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"Table 9" of "Inclusive double-helicity asymmetries in neutral pion and eta meson production in $\vec{p}+\vec{p}$ collisions at $\sqrt{s}=200$ GeV"

2014

The best fit value of the gluon polarization where the uncertainty is that at a chi-squared value of 9 when considering only statistical experimental uncertainties.

POLInclusiveP P --> PI0 XProton-Proton ScatteringPolarizationHigh Energy Physics::Phenomenology200.0
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"Table 1" of "Measurement of the transverse polarization of $\Lambda$ and $\bar{\Lambda}$ hyperons produced in proton-proton collisions at $\sqrt{s}=…

2015

Transverse polarization POL of LAMBDA and LAMBDABAR hyperons averaged over PT and XF.

POLInclusiveProton-Proton ScatteringStrange productionPolarization7000.0P P --> LAMBDA X
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SPEEK membrānu hidratācijas – dehidratācijas pētījumi

2015

SPEEK membrānu hidratācijas-dehidratācijas pētījumi. Sala, E., zinātniskais vadītājs Dr. ķīm., pētnieks Veldre, K. Bakalaura darbs, 45 lappuses, 30 attēli, 7 tabulas, 56 literatūras avoti. Latviešu valodā. Darbā ir veikti dažādu SPEEK membrānu ūdens satura pētījumi, izmantojot termogravimetriju un diferenciāli termisko analīzi. Pētītas SPEEK membrānu sastāva un fizikālo īpašību izmaiņas dažādos gaisa relatīvos mirumos. Ar infrasarkano spektrometriju, pulvera rentgendifraktometriju un viļņu disperso rentgenfluorescenses spektrometriju pārbaudīts membrānu sastāvs. SPEEK membrānām uzņemtas hidratācijas līknes un apskatīti piemērotākie cietās fāzes kinētiskie modeļi. Darbs izstrādāts Latvijas U…

POLI(ĒTERĒTERKETONS)TERMOGRAVIMETRIJAHIDRATĀCIJAINFRASARKANĀ SPEKTROMETRIJAPROTONUS VADOŠA MEMBRĀNAĶīmija
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The stability and functional properties of proteoliposomes mixed with dextran derivatives bearing hydrophobic anchor groups

1992

Liposomes composed of Escherichia coli phospholipid were coated with polysaccharides bearing hydrophobic palmitoyl anchors. The effect on the stability of liposomes without or with integral membrane proteins was investigated. A high concentration of hydrophobized dextrans protected the liposomes against detergent degradation, decreased the fluidity of the membranes, prevented fusion of the liposomes and enhanced their stability. Proteoliposomes containing beef heart cytochrome-c oxidase and the lactose transport carrier of E. coli were similarly affected by coating with the dextrans. Under these conditions both membrane proteins were still active. Long-term stability of the coated liposomes…

PROTEINMembrane FusionBiochemistryMembrane Potentialschemistry.chemical_compoundFUSIONINTEGRAL MEMBRANE PROTEINBINDINGIntegral membrane proteinLiposomeSymportersEscherichia coli ProteinsVesiclePROTEOLIPOSOMEDextransDEXTRAN DERIVATIVEBIOLOGICAL-MEMBRANESFluoresceinsMembraneCarbohydrate SequenceESCHERICHIA-COLIMonosaccharide Transport ProteinsCations DivalentMembrane FluidityProteolipidsMolecular Sequence DataBiophysicsPhospholipidFluorescence PolarizationLactose transportOXIDASECYTOCHROME-CVESICLESElectron Transport Complex IVHYDROPHOBIC ANCHOR GROUPEscherichia coliAnimalsKINETICSChromatographyMyocardiumMembrane ProteinsMembrane Transport ProteinsBiological membraneCell BiologyPROTON-MOTIVE FORCEMembrane proteinchemistryLiposomesCalciumCattleBiochimica et Biophysica Acta (BBA) - Biomembranes
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