Objective: The study aimed to evaluate knowledge and practices of nursing staff at the orthopedic units
regarding the existing care of patient with skin traction.
Methodology: The sample consists of (40) nurses, (20) of them from Emergency Teaching Hospital in Duhok
and the other (20) of them from Erbil Teaching Hospital in Erbil from 1st Dec. 2004 to the end of June 2005 in
Kurdistan Region.
Two instruments were constructed to evaluate knowledge and practices. Evaluation of knowledge was done by
using of multiple choice questions composed of (25) questions, and evaluation of practice was done by using the
observational check list which consist of four main category (pre skin traction, during skin traction, post skin
traction and follow up of patient have skin traction).
Validity of questionnaire was determined through the expert.
Results: Indicated that the nurses knowledge scores was satisfied about patient have skin traction in Duhok and
Erbil.
In relation to the evaluation of nurses’ practice, it was found that the practices of the nurses were inadequate in
Duhok and Erbil Hospitals.
The study founded there was no significant difference between Duhok and Erbil of knowledge and practices.
The finding indicated that there was no significant relationship between nurses’ knowledge and practices and
years of experience in orthopedic units.
Recommendation: The number of staff should be increased in orthopedic units, education and special training
programs for these nurses in orthopedic units should be designed and presented through how to provide nursing
care, how to prevent complications and management of complications if present.
In this work, a weighted H lder function that approximates a Jacobi polynomial which solves the second order singular Sturm-Liouville equation is discussed. This is generally equivalent to the Jacobean translations and the moduli of smoothness. This paper aims to focus on improving methods of approximation and finding the upper and lower estimates for the degree of approximation in weighted H lder spaces by modifying the modulus of continuity and smoothness. Moreover, some properties for the moduli of smoothness with direct and inverse results are considered.
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Now-a-days the Flexible AC Transmission Systems (FACTS) technology is very effective in improving the power flow along the transmission lines and makes the power system more flexible and controllable. This paper deals with the most robust type of FACTS devices; it’s a Unified Power Flow Controller (UPFC). Many cases have been taken to study how the system behaves in the presence and absence of the UPFC under normal and contingency conditions. The UPFC is a device that can be used to improve the bus voltage, increasing the loadability of the line and reduce the active and reactive power losses in the transmission lines, through controlling the flow of real and reactive power. Both the magnitude and the phase angle of th
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