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Home > بین المسالک ہم آہنگی میں دعوة اکیڈمی اسلام آباد کے قوی تربیت ائمہ کورس کا کردار

بین المسالک ہم آہنگی میں دعوة اکیڈمی اسلام آباد کے قوی تربیت ائمہ کورس کا کردار

Thesis Info

Author

یاسر اعجاز

Supervisor

عبدالشکور ظہیر

Program

Mphil

Institute

University of Gujrat

City

گجرات

Degree Starting Year

2019

Language

Urdu

Keywords

فقہی اختلافات اور رواداری

Added

2023-02-16 17:15:59

Modified

2023-02-19 12:20:59

ARI ID

1676731663622

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سید صادقؔ حسین

سید صادقؔ حسین
سید صادقؔ حسین (۱۸۹۸۔۱۹۸۹ئ) نام اور صادقؔ تخلص کرتے تھے۔ آپ کھادڑ پاڑہ (کشمیر) میں پیدا ہوئے۔ آپ کے والدین نے کشمیر سے ہجرت کر کے شکر گڑھ (سیالکوٹ) میں سکونت اختیار کی۔ آپ کے والد صفدر کاظمی نے وفاقی سیکرٹری کے عہدے پر کام کیا۔ تعلیم مکمل کرنے کے بعد آپ نے ظفر وال سے وکالت کا آغاز کیا۔ آپ تحریکِ پاکستان میں کارکن کے طور پر کام کرتے رہے۔ ۱۹۳۶ء میں آپ صدر مسلم لیگ شکر گڑھ مقرر ہوئے۔ آپ کا واحد شعری مجموعہ ’’برگِ سبز‘‘ کے نام سے شائع ہوا۔ (۲۶۰)
صادق کو صرف ایک شعر کی وجہ سے اردو شاعر ی میں شہرت ملی۔ بعض حضرات اس شعر کو علامہ محمد اقبال سے منسوب کرتے ہیں۔ یہ شعر ان کے شعری مجموعے ’’برگ سبز‘‘ کی ایک غزل میں موجود ہے۔ شعر ملاحظہ ہو:
تندیٔ بادِ مخالف سے نہ گھبرا اے عقاب
یہ تو چلتی ہے تجھے اونچا اڑانے کے لیے (۲۶۱)
صادقؔ نظم اور غزل کے شاعر ہیں۔ نظم پر اقبال کے اثرات ہیں اور غزل میں روایت کی جھلک نظر آتی ہے۔ ان کی شاعری میں قرآن مجید کے منظوم تراجم بھی موجود ہیں۔ انہیں اسلام سے سچی محبت ہے۔ اس محبت کا اظہار وہ خدائے بزرگ و برتر کی حمد و ثنا سے کرتے ہیں۔ وہ قرآن پاک کا ترجمہ کرتے ہوئے عام فہم اور سادہ زبان استعمال کرتے ہیں۔ ان کا اسلوب اتنا اچھا ہے کہ وہ ترجمہ معلوم نہیں ہوتا۔ کچھ اشعار ملاحظہ ہوں:
خداوندِ جہاں تیرے لئے تعریف ہے ساری
کہ ہے لطف و کرم تیرا ہر انس و جان پر جاری
تو ہی ہے مالک و مختارِ کل روزِ قیامت کا
ہر اک ہم میں سے دم بھرتا ہے تیری ہی عبادت کا
تری ہی ذات سے ہوتے ہیں ہم امداد کے طالب
تو...

Incongruity in Contemporary and Shariah Compliant Current Accounts and Ijarah Operated by Islamic Banking

Current accounts and Ijarah has been foremost and important tools operated by the Islamic Financial Institutions. This study attempts to explore a few misgivings in the handling of current accounts by the Islamic banks in Pakistan. Financial management of Islamic banks is not under consideration which leads to the violation of Shariah’s fundamentals. Also in case of Ijarah, a bank’s client suffers from financial losses which must be borne in Islamic Banking system. Islamic Banks transfer the burden of some charges emerging form ownership of leased asset on their clientele which does not have any justification according to Shariah. This research has been carried out by taking unstructured interviews from some of the concerned staff of Islamic Banks. The results depict that current accounts and Ijarah is in operation and need to be revised and refined and must comply with Shariah.

Investigation of Work Surface Integrity and Process Optimization in Electrical Discharge Machining

Surface integrity is generally defined by its topological, mechanical, and metallurgical state of subsurface layers. Since the defects produced from different machining processes can affect the performance of component, experiments are conducted to understand the effect of changing operating parameters before new machining strategies are accepted. The MDS (minimum data set) data includes the basic surface topography that is normal in assessing a machining surface and some of the metallurgical measurements. High capital cost of WEDM equipment demands the need for optimal utilization of the capacity of WEDM process. Cutting speed (CS) is a basic performance indicator to meet this goal. However, WEDM process parameters have great impact on CS and as such productivity and machining efficiency. It is therefore necessary to choose appropriate combination of parameters to achieve higher CS. In this research, surface integrity was characterized by recast layer, surface morphology, microstructure and microhardness. Experimental investigation was carried out to determine significant wire electrical discharge machining (WEDM) process parameters contributing to recast layer formation and its surface roughness (SR). Additionally, an empirical relationship between process parameters and cutting speed has been developed. Five cutting parameters selected to study their effects on surface integrity and cutting speed are wire speed, pulse (spark gap), pulse-on time, pulse ratio, and power. Machining conditions were varied systematically based on factorial design of experiments to explore influence of these process parameters on hardened high-strength low-alloy (HSLA) steel using molybdenum wire. Significant WEDM process parameters were identified through analysis of variance (ANOVA). Scanning electron microscope was used for recast layer, elemental analysis, morphology, and microstructures. To illustrate the effect of microstructure and compositional changes in the recast layer, micro-Vickers hardness testing of WEDMed surface was also performed. ANOVA results showed that pulse-on time and wire speed significantly affect recast layer. Topographical images showed presence of surface irregularities like micro-voids, craters, and globules which affect morphology of WEDMed surface. Scanning electron microscope (SEM) micrographs indicated the presence of three distinct layers namely recast layer (amorphous and columnar structure), heat-affected zone(HAZ) and bulk material. Energy dispersive spectroscopy ii (EDS) revealed that recast layer is free of alloying effects from molybdenum wire electrode. Surface layer was, however, found to be oxidized. A statistical model of CS was developed and validated through residual analysis and confirmatory experiments. Pulse ratio, power and pulse were the major process parameters significantly affecting CS as determined by ANOVA. Contour plots have also been developed to choose optimal process parameters. Stability of moly wire was studied employing SEM and EDS analysis. It was found that original surface quality and dimensions of moly wire are not affected by WEDM process. By virtue of this, dimensional accuracy of parts is ensured. Keywords: Cutting speed; HSLA steel; Moly wire; Process parameters; Surface integrity