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Home > Enviromental Study of Coal Deposits of Sindh, With Special Reference to Heavy and Trace Metal Study in Thar, Sonda and Meting-Jhimpir Coal Field

Enviromental Study of Coal Deposits of Sindh, With Special Reference to Heavy and Trace Metal Study in Thar, Sonda and Meting-Jhimpir Coal Field

Thesis Info

Access Option

External Link

Author

Siddiqui, Imdadullah

Program

PhD

Institute

University of Peshawar

City

Peshawar

Province

KPK

Country

Pakistan

Thesis Completing Year

2007

Thesis Completion Status

Completed

Subject

History & geography

Language

English

Link

http://prr.hec.gov.pk/jspui/bitstream/123456789/4842/1/2065.pdf

Added

2021-02-17 19:49:13

Modified

2023-01-06 19:20:37

ARI ID

1676724682810

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ڈ اکٹر محمد معظم جیراج پوری

آہ! ڈاکٹر محمد معظم جیراجپوری
دارالمصنفین کی مجلس عاملہ و انتظامیہ کے رکن ڈاکٹر معظم جیراجپوری بھی ۱۴؍ جولائی کو دہلی میں انتقال کرگئے اور وہیں جامعہ ملیہ اسلامیہ کے قبرستان میں تدفین ہوئی۔ ان کا وطن اعظم گڑھ کا معروف گاؤں جیراج پور ہے، یہیں ۱۹۲۰؁ء میں وہ پیدا ہوئے تھے، ان کا خاندان علمی، تعلیمی، اور دینی حیثیت سے ممتاز تھا، ان کے دادا مولانا سلامت اﷲ جیراجپوری مولانا سید نذیر حسین محدث دہلوی کے ارشد تلامذہ میں تھے، وہ نواب صدیق حسن خاں کی دعوت پر بھوپال تشریف لے گئے اور ریاست کے مدارس کے اہتمام کی خدمت پر مامور ہوئے، وہ جمعیۃ اہل حدیث کے سرخیل تھے ان کے اثر سے اعظم گڑھ میں اس مسلک کی ترویج و اشاعت ہوئی۔ ڈاکٹر محمد معظم کے والد مولانا حافظ محمد اسلم جیراجپوری انہی کے لایق فرزند اور ملک کے مشہور عالم و مصنف تھے جو مدۃالعمر جامعہ ملیہ اسلامیہ میں تاریخ اسلام و دینیات کے استاد رہے، ڈاکٹر محمد معظم کی تعلیم بھی جامعہ میں ہوئی۔ اس کے بعد انہوں نے طب کی تحصیل کی۔
تعلیم مکمل کرنے کے بعد انہوں نے اعظم گڑھ میں اپنا مطب کھولا۔ اپنی اصول پسندی، محنت، پیشہ میں یکسوئی و انہماک اور مریضوں کے علاج میں نہایت دلسوزی کی وجہ سے بہت جلد کامیابی نے ان کے قدم چومے اور وہ پورے ضلع میں ایک اچھے معالج کی حیثیت سے مشہور ہوگئے، صبح و شام کو مریضوں کا تانتا لگا رہتا تھا۔
علم، ادب اور شعر و سخن سے دلچسپی کی بنا پر شام کے وقت ان کے مطب میں ادیب و شاعر، شبلی کالج کے اساتذہ اور دارالمصنفین کے رفقاء کی نشست ہوا کرتی تھی، بڑے باغ و بہار آدمی تھے اپنی دلچسپ اور پُرلطف باتوں سے مجلس کو زعفران زار بنادیتے تھے، خود بھی شعر کہتے...

Karen Armstrong’s Works on the Life and Mission of the Last Prophet (S. A. W.): A Critique of Her Distortion of Historical Truths

Karen Armstrong is a well-known prolific writer on Christianity, Islam, and Prophet Muhammad. She appears in her writings very much objective. In her books on the Las Prophet (s. a. w.) “Muhammad: A Biography of The Prophet and “Muhammad: A Prophet for Our Times” she generally appears to be attempting, unlike many Orientalists, to creat soft image of the Last Prophet (s. a. w.) . Methodologically he works may be considered highly appreciable but from historical angle she seems to have distorted certain evidenc related to the Last Prophet (s. a. w.) . The basic reason for such lapse in her books is that she did not consult the original and basic authentic sources of Islamic history. This articl analyses where she faltered in her presentation of historica truths concerning the Last Prophet (s. a. w.) .

Tribological Analysis and Characterization of Hvof Sprayed Tungsten Carbide-Cobalt Coatings

Tungsten carbide cobalt coating has been extensively used for cutting and mining tools, aerospace, automotive and other wear resistance applications. These coatings not only have superior mechanical properties like high hardness, toughness and compressive strength but have also excellent controllable tribological properties. Nanocrystalline coatings can provide combination of high hardness and high toughness which otherwise are exclusive properties. But in the case of High Velocity Oxyfuel (HVOF) sprayed nanocrystalline WC-cobalt coatings, a higher degree of decarburization is reported in the published literature. This results in porosity and brittle phases formation in the coating structures. This in turn results in higher wear rate of nanocrystalline WC-cobalt coatings. In this study HVOF sprayed coatings made from duplex cobalt coated near-nanocrystalline WC-cobalt powders is used. The purpose of using these powders is to address the issue of decarburization and porosity formation in the coatings. Lower decarburization and hence porosity formation in these coatings along with the benefit of smaller WC grain sizes result in better tribological performance of these coatings. A comparison of wear behaviour is made between conventional microcrystalline and novel duplex cobalt coated near-nanocrystalline WC-17 wt% cobalt coatings. Coatings made from finer and coarser feedstock powders with same WC grain size are also compared. Optical and Scanning Electron Microscopic images show more porosity in the microcrystalline coatings than the duplex coated WC-cobalt coatings made from coarser feedstock powders while the highest porosity was observed when fine feedstock powder having agglomerate sizes 10-20 μm with 300-550nm WC grain sizes were used. Fracture toughness was 25.12 and 19.04 MPam 1/2 for near-nano and microcrystalline coatings respectively while it was only 3.01 MPam 1/2 for the coatings madeiv from fine feedstock powders. The higher toughness can be attributed to more frequent interruption in the crack propagation and only intergranular cracking in the near- nanocrystalline coatings in contrast to the microcrystalline coatings where both trans-granular and inter-granular crack propagation take place. Under similar test conditions, the wear rate was 4.0×10 -3 mm 3 /m for nearnanocrystalline and 6.6×10 -3 mm 3 /m for microcrystalline coatings. The lower wear rate in duplex cobalt coated near-nanocrystalline coatings can be attributed to its higher toughness and hardness values, the lower decarburization and porosity observed in it and the smaller fraction of brittle non-WC phases formation. In summary it is stated that the lowest porosity, W 2 C content and lower wear rate and highest hardness and fracture toughness was observed for the coatings made from duplex cobalt coated powders with near-nanocrystalline WC grains and with feedstock powder size of 45-60μm, which can be beneficial for high performance and longer tool life.