Background: A basic knowledge and understanding
of first aid can be invaluable for individuals to be
able to provide emergency care in the event of an
accident, possibly saving lives and minimizing
injury. Since injury is the fifth leading cause of death
and children at the age of primary school are liable
for accidents and lack of knowledge and good
judgment of their teachers may lead to dangerous
consequences when emergencies occur. Training
teachers how to deal with accidents is of obvious
importance.
Objectives: To estimate the adequacy of primary
school teachers’ knowledge of first aid concerning
external bleeding and fractures and Whether there's a
difference in knowledge in regard to years spent in
teaching or the teaching subject and to decide
whether primary school teachers need training or not.
Methods: This study is a cross-sectional Study was
done over 5 months (from 01/Dec/2010 to 01/May/
2011) in five randomly chosen primary schools in
different regions in Baghdad/ Al-Rusafa,carried out
on 100 primary school teachers without inclusion or
exclusion criteria.
Statistical analysis: Chi-Square was calculated by
MiniTab Program to estimate significance. The
significance level was set at P<0.05.
Results: Of the 100 participants, 4% had good
knowledge, 19% had fair knowledge and 77% had
poor knowledge, 26% were science teachers, 9%
were social studies teachers, 43% were literature
teachers and 22% were sport/art teachers. No
significant difference was found for their knowledge
(p value=0.41).Also participants were classified
according to the years they spent in teaching. No
significance was found for their knowledge (p
value=0.82).
Conclusions: Primary school teachers' knowledge of
first aid concerning external bleeding and fractures is
poor and certainly inadequate.No difference was
found in regard to how many years spent in teaching
and difference in teaching subjects also has no effect
on their knowledge.
Over the past decades, several studies have examined the subcellular localization of the cauliflower mosaic virus (CaMV) P6 protein by tagging it with GFP (P6-GFP). These investigations have been essential in the development of models for inclusion body formation, nuclear transport, and microfilament-associated intracellular movement of P6 inclusion bodies for delivery of virions to plasmodesmata. Although it was shown early on that the translational transactivation function of P6-GFP was comparable to wild type P6, it has not been possible to incorporate a P6-GFP gene into an infectious clone of CaMV. Consequently, it has not been possible to formally prove that a P6-GFP fusion is comparable in function to the unmodified P6 protein. Here w
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... Show MoreThe nucleon momentum distributions (NMD) and elastic electron scattering form factors of the ground state for some 1f-2p-shell nuclei, such as 58Ni, 60Ni, 62Ni, and 64Ni
isotopes have been calculated in the framework of the coherent fluctuation model (CFM) and expressed in terms of the weight function lf(x)l2 . The weight function (fluctuation function) has been related to the nucleon density distribution (NDD) of the nuclei and determined from the theory and experiment. The NDD is derived from a simple method based on the use of the single particle wave functions of the harmonic oscillator potential and the occupation numbers of the states. The feature of the l
This paper presents a computer simulation model of a thermally activated roof (TAR) to cool a room using cool water from a wet cooling tower. Modeling was achieved using a simplified 1-D resistance-capacitance thermal network (RC model) for an infinite slab. Heat transfer from the cooling pipe network was treated as 2-D heat flow. Only a limited number of nodes were required to obtain reliable results. The use of 6th order RC-thermal model produced a set of ordinary differential equations that were solved using MATLAB - R2012a. The computer program was written to cover all possible initial conditions, material properties, TAR system geometry and hourly solar radiation. The cool water supply was considered time
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