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We present a study of the production properties of hadronic jets in Z boson events from 1.8 TeV[ital p][ital[anti p]] collisions using 106 pb[sup -1] of Run 1A and 1B CDF data. We compare distributions of several kinematic variables in the data to leading order QCD predictions generated using the VECBOS Monte Carlo program.
The production properties of jets produced in p{ovr p} collisions at (square root)s = 1.8 TeV have been measured using the CDF detector. The data are compared to predictions of leading order and next to leading order QCD predictions. Both inclusive jets and those produced in association with W and Z bosons are used for this analysis. In general, good agreement with QCD predictions is found except for very high E{sub t} inclusive jets. 10 refs., 7 figs., 2 tabs.
We have studied the production properties of {ital W} and {ital Z} bosons at CDF, and have measured the jet multiplicity cross sections and various kinematic distributions. We find good agreement with leading order QCD predictions with added gluon radiation and simulated parton fragmentation.
We have studied the properties of Z boson events produced in 1.8 TeV p{bar p} collisions using 19.3 pb−1 of integrated luminosity collected by the Collider Detector at Fermilab (CDF) during the 1992--1993 Tevatron run. We compare the characteristics of the hadronic jets associated with the Z to leading-order QCD calculations using the VECBOS Monte Carlo program. For a subsample of events, we identify B jets and compare their rates to those expected from events with generic QCD jets.
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