Search results for "Z0"

showing 10 items of 712 documents

"Table 22" of "Measurements of the line shape of the Z0 and determination of electroweak parameters from its hadronic and leptonic decays"

1994

LEPTON+ LEPTON- cross sections from the 1990 data set. Data are corrected for t-channel subtraction, and to full solid angle but not for momenta and accollinearity cuts. Additional systematic uncertainty, excluding luminosity, is 0.6 pct.

E+ E- --> Z0E+ E- ScatteringHigh Energy Physics::PhenomenologyIntegrated Cross SectionExclusive88.223-94.218High Energy Physics::ExperimentE+ E- --> LEPTON+ LEPTON-Cross SectionSIG
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"Table 5" of "Update of electroweak parameters from Z decays"

1993

Data from 1990 running period.

E+ E- --> Z0E+ E- ScatteringIntegrated Cross SectionExclusiveE+ E- --> LEPTON+ LEPTON-Cross SectionSIG88.223-94.202
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"Table 1" of "Measurement of the production rates of eta and eta-prime in hadronic Z decays"

1992

No description provided.

Electron productionE+ E- --> HADRONSE+ E- --> Z0E+ E- --> ETAPRIME XIntegrated Cross SectionDeep Inelastic Scattering91.2Cross SectionE+ E- --> ETA XSIGInclusiveE+ E- ScatteringExclusiveR measurement
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"Table 30" of "Studies of quantum chromodynamics with the ALEPH detector"

1997

Measured fragmentation function at the ETA meson. Additional 6pct systematic error.

Electron productionHigh Energy Physics::LatticeE+ E- --> Z0High Energy Physics::PhenomenologyNuclear TheoryDeep Inelastic Scattering91.2E+ E- --> ETA XDSIG/DXInclusiveSingle Differential Cross SectionE+ E- ScatteringExclusiveHigh Energy Physics::ExperimentNuclear Experiment
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"Table 31" of "Studies of quantum chromodynamics with the ALEPH detector"

1997

Measured fragmentation function at the ETAPRIME meson. Additional 8pct systematic error.

Electron productionHigh Energy Physics::LatticeE+ E- --> Z0High Energy Physics::PhenomenologyNuclear TheoryE+ E- --> ETAPRIME XDeep Inelastic Scattering91.2DSIG/DXInclusiveSingle Differential Cross SectionE+ E- ScatteringExclusiveHigh Energy Physics::ExperimentNuclear Experiment
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Drifting Down the Technologization of Life: Could Choreography-Based Interaction Design Support us in Engaging with the World and our Embodied Living?

2013

The development of interactive technology is often based on the assumption of need to reduce the physical action and cognitive load of the user. However, recent conceptualizations, supported by research in various fields of science, emphasize human physical action in cognitive processes and knowledge formation. In fact, physical and closely related imaginary movement can be seen as the quintessence of humanity. Acknowledging this should imply a new approach to the design of interactive technology. In the current study, we propose a choreographic approach for shifting the focal point of interaction design to the aspects of human activity and movement within a technologized context. Hence, th…

Engineeringjel:A00Context (language use)Interaction designjel:C00lcsh:Technologyihminen-teknologia koreografiavuorovaikutussuunnitteluManagement of Technology and Innovationta616lcsh:Science (General)The Imaginarykehollisuusembodimentta113Cognitive sciencejel:Z00lcsh:Tbusiness.industryinteraction designtechnologizationCognitionteknologisaatioChoreographyhuman-technology choreography; interaction design; embodiment; technologizationAction (philosophy)Embodied cognitionhuman-technology choreographyArtificial intelligencebusinessCognitive loadlcsh:Q1-390Challenges
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N=2 topological gauge theory, the Euler characteristic of moduli spaces, and the Casson invariant

1991

We discuss gauge theory with a topological N=2 symmetry. This theory captures the de Rham complex and Riemannian geometry of some underlying moduli space $\cal M$ and the partition function equals the Euler number of $\cal M$. We explicitly deal with moduli spaces of instantons and of flat connections in two and three dimensions. To motivate our constructions we explain the relation between the Mathai-Quillen formalism and supersymmetric quantum mechanics and introduce a new kind of supersymmetric quantum mechanics based on the Gauss-Codazzi equations. We interpret the gauge theory actions from the Atiyah-Jeffrey point of view and relate them to supersymmetric quantum mechanics on spaces of…

High Energy Physics - Theory58Z05PhysicsInstantonFOS: Physical sciencesStatistical and Nonlinear PhysicsRiemannian geometry58D2958G26TopologyCasson invariant58D27Matrix modelModuli spaceHigh Energy Physics::Theorysymbols.namesakeHigh Energy Physics - Theory (hep-th)81Q60Euler characteristic57R20symbolsSupersymmetric quantum mechanicsGauge theoryMathematical PhysicsCommunications in Mathematical Physics
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"Table 1" of "Investigation of the splitting of quark and gluon jets."

1998

Scaled energy distribution of charged hadrons produced in Quark jets in 'Y'topology 3-JET events.

High Energy Physics::LatticeAstrophysics::High Energy Astrophysical PhenomenaE+ E- --> Z0Nuclear TheoryHigh Energy Physics::Phenomenology91.2Jet ProductionE+ E- --> CHGD-HADRONS XDSIG/DXInclusiveSingle Differential Cross SectionE+ E- --> 3JETE+ E- ScatteringExclusiveHigh Energy Physics::Experiment
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"Table 3" of "Investigation of the splitting of quark and gluon jets."

1998

Scaled energy distribution of charged hadrons produced in Quark jets in 'Mercedes' topology 3-JET events.

High Energy Physics::LatticeAstrophysics::High Energy Astrophysical PhenomenaE+ E- --> Z0Nuclear TheoryHigh Energy Physics::Phenomenology91.2Jet ProductionE+ E- --> CHGD-HADRONS XDSIG/DXInclusiveSingle Differential Cross SectionE+ E- --> 3JETE+ E- ScatteringExclusiveHigh Energy Physics::Experiment
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"Table 3" of "The scale dependence of the hadron multiplicity in quark and gluon jets and a precise determination of C(A)/C(F)."

1999

Twice the difference of the multiplicity in three jet events and in qqbar events of comparable scale 2(N_3jet-N_qqbar). The three-jet event multiplicity isequal to the data of Fig. 3c), the qqbar-multiplicity is taken from a fit of th e e+e- data corrected for the varying b-quark contribution. This multiplicity can be identified with the multiplicity of a hypothetical gluon-gluon event. Thereis a normalization uncertainty (i.e. a scale independent constant) of the gluon -gluon event multiplicity which should not influence the slope of the gg-multiplicity with scale (see paper). The errors shown are statistical only.

High Energy Physics::LatticeE+ E- --> 2JET GAMMAE+ E- --> HADRONSE+ E- --> Z0High Energy Physics::PhenomenologyE+ E- --> CHARGED XJet ProductionMULTInclusiveDijet ProductionE+ E- --> 3JETE+ E- ScatteringExclusive0.216High Energy Physics::Experiment
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