Objectives: To assess patients' satisfaction to nursing care at hemodialysis units and determine the relationship
between patients' satisfaction and patients' demographic data.
Methodology: A descriptive study was carried out at hemodialysis units of Baghdad teaching hospitals from Feb.
4
th
, 2010 through Sep. 5
th, 2010. A purposive (non-probability) sample of (150) patients ta hemodialysis units ni
Baghdad teaching hospitals was selected. The data were collected through the use of constructing questionnaire
and by means of an interview technique with the patients; the questionnaire consists of two parts (1)
demographic data (2) patients' satisfaction to nursing care. The validity of the study questionnaire was
determined through the panel of experts and the reliability of the study questionnaire was determined through
the pilot study. Descriptive statistical analysis procedure (frequency, percentage and mean of score) and
inferential analysis procedure (person correlation coefficient, chi-square test and t-test) were used for data
analysis.
Results: The findings of the study indicated that there is high satisfaction to clinical nursing care, communication
/patient –nurse relationship and moderate satisfaction toward nursing health education. Not statistical
significant difference between (gender, age, educational status, marital status, occupational status, frequency of
hemodialysis and duration of hemodialysis). While there is a statistical significant difference between patients'
occupational status and their satisfaction toward communication /patient –nurse relationship.
Recommendations: Great emphasize should be directed toward the educational aspects of hemodialysis unit by
providing educational posters, guidelines, pamphlets and manuals.
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In this work, the effect of aluminum (Al) dust particles on the DC discharge plasma properties in argon was investigated. A magnetron is placed behind the cathode at different pressures and with varying amounts of Al. The plasma temperature (Te) and density (ne) were calculated using the Boltzmann equation and Stark broadening phenomena, which are considered the most important plasma variables through which the other plasma parameters were calculated. The measurements showed that the emission intensity decreases with increasing pressure from 0.06 to 0.4 Torr, and it slightly decreases with the addition of the NPs. The calculations showed that the ne increased and Te decreased with pressure. Both Te and ne were reduced by increasing
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