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Home > Role Conflicts and Constraints of Female Supervisors in School Administration: A Survey Study

Role Conflicts and Constraints of Female Supervisors in School Administration: A Survey Study

Thesis Info

Author

Naeem Akhtar

Supervisor

Shamim Haider Tirmizi

Institute

Allama Iqbal Open University

Institute Type

Public

City

Islamabad

Country

Pakistan

Thesis Completing Year

2010

Thesis Completion Status

Completed

Page

90

Subject

Education

Language

English

Other

Call No: 371.2 NAR; Publisher: Aiou

Added

2021-02-17 19:49:13

Modified

2023-01-06 19:20:37

ARI ID

1676710365206

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حاجی اقبال احمد

حاجی اقبال احمد
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اسلامی تعلیمات کی روشنی میں مروجہ پاکستانی ٹریفک قوانین کی پاسداری کی اہمیت

Islam is a comprehensive code of conduct which encompasses to each sphere of human life. This also owns and endorses those manmade rules which serve the cause of humanity and not entering to its fundamentals. Adherence to Pakistani Traffic rules also falls under the preview of the same doctrine. It is very pertinent to note here, that the same traffic rules such as fastening of seat built, proper use of indicators, speed control etc. Have been devised to ensure the safety which starts from a pedestrian and ends up to a rider of any vehicle class. Any violation of traffic rules is an indirect breech of divine discipline imposed by Allah the Almighty. If the violation costs any damage, injury or fatal accident, this will directly be dealt under the principles set by Islam. This study aims at highlighting the significance of adherence to traffic rules which is directly linked to the ground safety. This ultimately serves the main purpose of saving any precious human life. If the same is ensured, no doubt the purpose of the holy verse would be fulfilled

Utilization of Industrial Waste Cheese Whey for the Biosynthesis of Β-Galactosidase

The dairy industry is associated with the production of contaminated waste water. The whey disposal remains a serious pollution problem for dairy industry, particularly in developing countries. Direct disposal of whey in the environment creates serious pollution problems, it destroys the physical and chemical structure of soil which decreases the crops yield and if discarded in water bodies, it reduces the aquatic life. The best solution to this environmental problem is the enzymatic hydrolysis of whey by using β-galactosidase which catalyses the hydrolysis of lactose (main constituent of whey) into its basic monomers, glucose and galactose. β-galactosidase can be obtained from different sources like plants, animals and microorganisms whereas bacterial β-galactosidase is generally regarded as safe. The basic aim of present research is to investigate the utilization of dairy industrial waste (cheese whey) as a substrate for the biosynthesis of β-galactosidase to convert environmental waste into useful biomaterial from a noval β-galactosidase producing bacterial isolate from Antarctica. Two hundred and thirty five isolates were obtained from five samples (ice, water and microbial mats) collected from different sites of Antarctica and screened for their ability to produce β-galactosidase by using X-gal. A total of 61 bacterial isolates which turned blue on X-gal were then cultured in R2 medium and Marine medium aseptically at 10˚C for one month. The most potent bacterial isolates were identified using a polyphasic taxonomical approach. Cells were found strictly aerobic, Gram negative, rod shaped, motile and formed creamy white, half transparent colonies. Growth occurred at 4°C to 28°C with an optimum at 20°C, with 0 – 5.0 % (w/v) NaCl (optimum at 0 - 1.0 %) and at pH 4.0 – 11.0 (optimum at pH 7.0 - 9.0). The major fatty acid was C18:1 ω7c. Respiratory quinone was ubiquinone 10 (Q-10). The DNA G+C content was 60.7 %. The polar lipids were phosphatidylglycerol, phosphatidylethanolamine and phosphatidylmethanolamine in addition to three unidentified lipids, one unknown glycolipid, and five unidentified phospholipids. Comparative analysis of 16S rRNA gene sequences showed highest sequence similarity (98.1 %) to Pararhizobium giardinii H152T, P. herbae CCBAU 83011T, and “P. polonicum” F5.1T. In silico average nucleotide identity (ANI) and genome-to-genome distance calculator (GGDC) showed 81.1 % identity (ANI) and 22.6 % identity (GGDC) to the closest relative, “P. polonicum” F5.1T. On the basis of phenotypic, phylogenetic, genomic and chemotaxonomic data, the two strains xii represent a novel species of the genus Pararhizobium, for which the name Pararhizobium antarcticum sp. nov. is proposed. The type strain is NAQVI 59T LSRP00000000 (=DSMZ 103442T = LMG29675T). Strains NAQVI-58 and NAQVI-59T showed the highest enzyme production (0.21 U/ml) for strain NAQVI-58 and (0.33 U/ml) for strain NAQVI-59 with cheese whey as a substrate at pH (7), 28 ˚C and after 48 hours of incubation respectively. In this study, a new Pararhizobium sp. is discovered by using dairy industrial waste cheese whey as a substrate which is further used for the production of β-galactosidase.