47 research outputs found
Effects of a Parish Based Heart Healthy Education Program
Cardiovascular disease is the leading cause of mortality and morbidity in the United States. Some risk factors for cardiovascular disease can be modified which include: diet; physical activity; smoking; hypertension; diabetes; and weight. Various national programs, such as “Go Red for Women” and “Let’s Move,” have been implemented to address this growing epidemic. Community programs are needed as an adjunct to these national initiatives. Thus, a parish based cardiovascular disease educational program would provide for a unique socially and spiritually supportive environment for education at the community level. Research findings indicate that parish based educational programs are effective in increasing health knowledge of participants. The Health Belief Model and the IOWA model served as frameworks to support implementation of this Evidence Based Practice (EBP) project. The National Heart, Lung and Blood Institute’s “Ten Commandments for a Healthy Heart,” was utilized as the 20 minute educational platform. A convenience sample of 20 parishioners from a Midwestern, Roman Catholic Church was obtained to assess knowledge gained from the 20 minute heart healthy education session. A cardiovascular disease knowledge questionnaire evaluated baseline and post education intervention knowledge. Resulting data were analyzed using descriptive statistics and a paired t-test to compare baseline and post education intervention knowledge scores. Results indicated a statistically significant improvement between baseline and post education intervention test scores (p\u3c.000). The findings of this EBP project support implementing parish based educational programs. The Advanced Practice Nurse, as a healthcare professional, can replicate this EBP project to provide education at the community level
The T2K Side Muon Range Detector
The T2K experiment is a long baseline neutrino oscillation experiment aiming
to observe the appearance of {\nu} e in a {\nu}{\mu} beam. The {\nu}{\mu} beam
is produced at the Japan Proton Accelerator Research Complex (J-PARC), observed
with the 295 km distant Super- Kamiokande Detector and monitored by a suite of
near detectors at 280m from the proton target. The near detectors include a
magnetized off-axis detector (ND280) which measures the un-oscillated neutrino
flux and neutrino cross sections. The present paper describes the outermost
component of ND280 which is a side muon range detector (SMRD) composed of
scintillation counters with embedded wavelength shifting fibers and Multi-Pixel
Photon Counter read-out. The components, performance and response of the SMRD
are presented.Comment: 13 pages, 19 figures v2: fixed several typos; fixed reference
Measurements of neutrino oscillation in appearance and disappearance channels by the T2K experiment with 6.6 x 10(20) protons on target
111 pages, 45 figures, submitted to Physical Review D. Minor revisions to text following referee comments111 pages, 45 figures, submitted to Physical Review D. Minor revisions to text following referee comments111 pages, 45 figures, submitted to Physical Review D. Minor revisions to text following referee commentsWe thank the J-PARC staff for superb accelerator performance and the CERN NA61/SHINE Collaboration for providing valuable particle production data. We acknowledge the support of MEXT, Japan; NSERC, NRC, and CFI, Canada; CEA and CNRS/IN2P3, France; DFG, Germany; INFN, Italy; National Science Centre (NCN), Poland; RSF, RFBR and MES, Russia; MINECO and ERDF funds, Spain; SNSF and SER, Switzerland; STFC, UK; and the U. S. Deparment of Energy, USA. We also thank CERN for the UA1/NOMAD magnet, DESY for the HERA-B magnet mover system, NII for SINET4, the WestGrid and SciNet consortia in Compute Canada, GridPP, UK, and the Emerald High Performance Computing facility in the Centre for Innovation, UK. In addition, participation of individual researchers and institutions has been further supported by funds from ERC (FP7), EU; JSPS, Japan; Royal Society, UK; and DOE Early Career program, USA
Search for short baseline nu(e) disappearance with the T2K near detector
8 pages, 6 figures, submitted to PRD rapid communication8 pages, 6 figures, submitted to PRD rapid communicationWe thank the J-PARC staff for superb accelerator performance and the CERN NA61 collaboration for providing valuable particle production data. We acknowledge the support of MEXT, Japan; NSERC, NRC and CFI, Canada; Commissariat `a l’Energie Atomique and Centre National de la Recherche Scientifique–Institut National de Physique Nucle´aire et de Physique des Particules, France; DFG, Germany; INFN, Italy; National Science Centre (NCN), Poland; Russian Science Foundation, RFBR and Ministry of Education and Science, Russia; MINECO and European Regional Development Fund, Spain; Swiss National Science Foundation and State Secretariat for Education, Research and Innovation, Switzerland; STFC, UK; and DOE, USA. We also thank CERN for the UA1/NOMAD magnet, DESY for the HERA-B magnet mover system, NII for SINET4, the WestGrid and SciNet consortia in Compute Canada, GridPP, UK. In addition participation of individual researchers and institutions has been further supported by funds from ERC (FP7), EU; JSPS, Japan; Royal Society, UK; DOE Early Career program, USA
Measurement of the electron neutrino charged-current interaction rate on water with the T2K ND280 pi(0) detector
10 pages, 6 figures, Submitted to PRDhttp://journals.aps.org/prd/abstract/10.1103/PhysRevD.91.112010© 2015 American Physical Society11 pages, 6 figures, as accepted to PRD11 pages, 6 figures, as accepted to PRD11 pages, 6 figures, as accepted to PR
Measurement of the neutrino-oxygen neutral-current interaction cross section by observing nuclear deexcitation gamma rays
We report the first measurement of the neutrino-oxygen neutral-current quasielastic (NCQE) cross section gamma It is obtained by observing nuclear deexcitation. rays which follow neutrino-oxygen interactions at the Super-Kamiokande water Cherenkov detector. We use T2K data corresponding to 3.01 x 10(20) protons on target. By selecting only events during the T2K beam window and with well-reconstructed vertices in the fiducial volume, the large background rate from natural radioactivity is dramatically reduced. We observe 43 events in the 4-30 MeV reconstructed energy window, compared with an expectation of 51.0, which includes an estimated 16.2 background events. The background is primarily nonquasielastic neutral-current interactions and has only 1.2 events from natural radioactivity. The flux-averaged NCQE cross section we measure is 1.55 x 10(-38) cm(2) with a 68% confidence interval of (1.22, 2.20) x 10(-38) cm(2) at a median neutrino energy of 630 MeV, compared with the theoretical prediction of 2.01 x 10(-38) cm(2)
Measurement of the inclusive ν<sub>μ</sub> charged current cross section on iron and hydrocarbon in the T2K on-axis neutrino beam
We report a measurement of the inclusive charged current cross
sections on iron and hydrocarbon in the T2K on-axis neutrino beam. The measured
inclusive charged current cross sections on iron and hydrocarbon averaged over
the T2K on-axis flux with a mean neutrino energy of 1.51 GeV are
, and
, respectively, and their cross section
ratio is . These results agree well with
the predictions of the neutrino interaction model, and thus we checked the
correct treatment of the nuclear effect for iron and hydrocarbon targets in the
model within the measurement precisions
Measurement of the Inclusive Electron Neutrino Charged Current Cross Section on Carbon with the T2K Near Detector
The T2K off-axis near detector ND280 is used to make the first differential cross-section measurements of electron neutrino charged current interactions at energies similar to 1 GeV as a function of electron momentum, electron scattering angle, and four-momentum transfer of the interaction. The total flux-averaged nu(e) charged current cross section on carbon is measured to be (phi) = 1.11 +/- 0.10(stat) +/- 0.18(syst) x 10(-38) cm(2)/nucleon. The differential and total cross- section measurements agree with the predictions of two leading neutrino interaction generators, NEUT and GENIE. The NEUT prediction is 1.23 x 10(-38) cm(2)/nucleon and the GENIE prediction is 1.08 x 10(-38) cm(2)/nucleon. The total nu(e) charged current cross-section result is also in agreement with data from the Gargamelle experiment
14 New Light Curves and an Updated Ephemeris for the Hot Jupiter HAT-P-54 b
Here we present an analysis of 14 transit light curves of the hot Jupiter
HAT-P-54 b. Thirteen of our datasets were obtained with the 6-inch
MicroObservatory telescope, Cecilia, and one was measured with the 61-inch
Kuiper Telescope. We used the EXOplanet Transit Interpretation Code (EXOTIC) to
reduce 49 datasets in order to update the planet's ephemeris to a mid-transit
time of 2460216.95257 +/- 0.00022 BJD_TBD and an updated orbital period of
3.79985363 +/- 0.00000037 days. These results improve the mid-transit
uncertainty by 70.27% from the most recent ephemeris update. The updated
mid-transit time can help to ensure the efficient use of expensive, large
ground- and space-based telescope missions in the future. This result
demonstrates that amateur astronomers and citizen scientists can provide
meaningful, cost-efficient, crowd-sourcing observations using ground-based
telescopes to further refine current mid-transit times and orbital periods.Comment: 9 pages, 9 figure
