This study aims to study the inherited occupations which are considered to be a cultural, civilized and social legacy that effected by the Prevailing social and economic circumstances in the Iraqi society .
The study aimed to achieve several goals, including:
Identify the relationship between the urbanization and inherited occupations in the old city Al-Karkh.
Identify the relationship between the ecological construction and inherited occupations in the old city Al-Karkh.
Recognize the factors and motives inherited occupations in the study area .Identify the role of inherited occupations in promoting opportunities cohesion of the family system in the study area.
The field of the study had concentrated on a sample of families which are working in the inherited occupations, the samples were 300 families that had been choose by the intentional method of choosing samples, and also 10 Respondents as model to the case study .The study used a combination of statistical methods to achieve the objectives of the study.
Most important results that recommendation are:
Housing near the work place of the most important factors contributing to the inheritance of professions .Most of the Respondents confirmed that the inherited occupations Contribute to the cohesion of the family system .Most of the Respondents confirmed that the respect for the opinions of the family members if the occupations manners is the main reasonin the cohesion of the family.
The most important recommendations of the study are:
A recommendation to the responsible authorities to grant licenses and facilities for professional occupations popular culture and organization of the mechanisms of action in order to achieve growth opportunities for the local community.
To activate the role of social workers to monitor the problems and obstacles workers inherited occupations and problems of their families and their working conditions.
A recommendation to the competent authorities to organize courses and conferences that contribute to the development of scientific research in the field of study of local communities as to contribute in their development.
The letter also included a set of proposals that contribute to the development enhancing the developmental advancement opportunities for careers legacy and the community.
Despite widespread agreement on the beneficial nature of hydrated lime (HL) addition to asphalt concrete mixes, understanding of the effect of HL particle size is still limited. Previous investigations have focused mainly on two different size comparisons, and so certain guidance for a practical application cannot yet be produced. This study investigates three distinct sizes of HL, in the range of regular, nano, and sub-nano scales, for their effects on the properties of modified asphalt concretes. Five different percentages of HL as a partial replacement of ordinary limestone filler in asphalt concrete mixes were studied for wearing course application purposes. Experimental tests were conducted to evaluate the mechanical properties
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various methods such as retaining walls, piles, and geosynthetics may be used to increase the safety factor of slopes prone to failure. The application of stone columns may also be another potential alternative for slope stabilization. Such columns have normally been used for cohesive soil improvement. Most slope analysis and design is based on deterministic approach i.e a set of single valued design parameter are adopted and a set of single valued factor of safety (FOS) is determined. Usually the FOS is selected in view of the understanding and knowledge of the material parameters, the problem geometry, the method of analysis and the
We studied the effect of certain environmental conditions for removing heavy metal elements from contaminated aqueous solutions (Cd, Cu, Pb, Fe, Zn, Ni, Cr) using the bacterium Bacillus subtilis to appoint the optimal conditions for removal ,The best optimum temperature range for two isolate was 30-35○C while the hydrogen number for the maximum mineral removal range was 6-7. The best primary mineral removal was 100 mg/L, while the maximum removal for all minerals was obtained after 6 hrs of Cu element time and the maximum removal efficiency was obtained after 24 hrs of Cu element. The results have proved that the best aeration for maximum removal was obtained at rotation speed of 150 rpm/minute. Inoculums of 5ml/100ml which contained 1
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