Objective: To evaluate the psychological work environment's effect on the workers’ productivity in Baghdad
City industries at Al-Rusafa and Al-Karkh Sectors.
Methodology: A descriptive evaluation design is employed throughout the present study from May 25th 2012
through January 7
th
, 2014. A purposive (non probability) sample is selected for the study which includes (500)
workers from industries at AL-Russafa and AL-Kerch sectors in Baghdad City. A questionnaire is constructed to
gather data which may assist to achieve the objective of the study. Content validity of the instrument is
determined through eliciting the opinions of a panel of (10) experts and the reliability through a pilot study by
using internal consistency reliability which is determined through the computation of the Cronbach alpha
correlation coefficient of the scale on data gathered from workers. Data are analyzed through the application
of descriptive statistical data analysis procedures of frequency, percentage, mean, weighted mean and
standard deviation and inferential statistical data analysis procedures of Cronbach alpha correlation coefficient,
relative sufficiency, and multiple regression.
Results: The findings depict that the psychological work environment is manifested as greatly psychological
problem creating one (43%); moderately psychological problem creating environment (49.4%) and problem
free environment. The vast majority of the workers has unfortunately experienced moderate (60.2%) and low
(38.8%) levels of productivity as a result of the influence of its indicators.
Recommendations: The study recommends that Occupational–oriented health education program with
emphasis on psychological work environment, and its impact upon workers’ productivity can be constructed
and implemented for workers on a wide-range scale. Further research can be conducted on large sample size
and nation-wide.
This study deals with the elimination of methyl orange (MO) from an aqueous solution by utilizing the 3D electroFenton process in a batch reactor with an anode of porous graphite and a cathode of copper foam in the presence of granular activated carbon (GAC) as a third pole, besides, employing response surface methodology (RSM) in combination with Box-Behnk Design (BBD) for studying the effects of operational conditions, such as current density (3–8 mA/cm2), electrolysis time (10–20 min), and the amount of GAC (1–3 g) on the removal efficiency beside to their interaction. The model was veiled since the value of R2 was high (>0.98) and the current density had the greatest influence on the response. The best removal efficiency (MO Re%)
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This study expands the state of the art in studies that assess torsional retrofit of reinforced concrete (RC) multi-cell box girders with carbon fiber reinforced polymer (CFRP) strips. The torsional behavior of non-damaged and pre-damaged RC multi-cell box girder specimens externally retrofitted by CFRP strips was investigated through a series of laboratory experiments. It was found that retrofitting the pre-damaged specimens with CFRP strips increased the ultimate torsional capacity by more than 50% as compared to the un-damaged specimens subjected to equivalent retrofitting. This indicated that the retrofit has been less effective for the girder specimen that did not develop distortion beforehand as a result of pre-loading. From
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