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Home > ترجمہ مقبول اثنا عشریہ کے تضادات کاعلمی جائزہ

ترجمہ مقبول اثنا عشریہ کے تضادات کاعلمی جائزہ

Thesis Info

Author

محمد سلیم گیلانی

Supervisor

ابرار محی الدین مرزا

Program

Mphil

Institute

The Islamia University of Bahawalpur

Institute Type

Public

City

Bahawalpur

Province

Punjab

Country

Pakistan

Degree End Year

2011

Thesis Completion Status

Completed

Subject

Islamic Studies

Language

Urdu

Added

2021-02-17 19:49:13

Modified

2023-02-19 12:33:56

ARI ID

1676729602877

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كلمة الشكر و التقدیر

 

كلمة الشكر و التقدیر

 الحمد ﷲ ربّ العالمین والصلاۃ والسلام علیٰ أشرف الأنبیاء والمرسلین نبینا وحبیبنا محمد النبي الصادق الأمین وعلی آلہِ وأصحابہِ وأزواجہِ والتابعین ومن تبعھم بإحسان إلی یومِ الدِّین،......... أما بعد:

 مع شکري وتقدیري واحترامي العظيم أسطر ھذہِ الکلمات المتواضعۃ لأساتذتي الذین ساھموا معي لإنجاز ھذا العمل۔

 أولاً، بعد اﷲ سبحانہ وتعالی یشرفني ویسعدني أن أقدم الشکر الجزیل إلی الشخص المثالي صاحب العزۃ والمقامۃ وصاحب المکانۃ المرموقۃ والمرتبۃ العالیۃ العالم الكبير والفاضل والإنسان النبيل الأستاذ الدکتور سلیم طارق خان المحترم رئیس الجامعۃ(سابقاً)، الجامعۃ الإسلامیہ ببھاولفور وهوكان المشرف علی رسالتي(رسالة الدكتوراة) وهو شعر نازك الملائكة وبروين شاكر(دراسة مقارنة)، ولو لا فضلہ وإحسانہ ومعاونتہ لي بعد اﷲ سبحانہ وتعالی لما استطعت أن أنجز ھذا العمل ، لقد استفدتُ من علمہِ وإرشاداتہِ وخبراتہِ في کل خطوۃ من الخطوات وفي کل لحظۃ من اللحظات لصالح ھذا الكتاب۔ فھو الإنسان الذي یستحق کل التقدیر وقد شجعني لكتابة وطبع هذا الكتاب وأدعو لہ من ﷲ عزوجل أن یعطیہِ المزید من التقدم والنجاح في الدارین، و قد حصل سيادتهُ على المناصب العالية، رئيس قسم اللغة العربية (سابقاً)، وعميد الكلية (سابقاً)، ثم رئيس الجامعة الإسلامية ببهاولفور(سابقاً)، ولسيادتهِ الكثير من المؤلفات والمقالات وقدَّم الكثير من الخدمات للعلم واللغة العربية.

 كما يشرفني ويسعدني ان أقدم بكل إحترامي وتقديري خالص الشكر والتقدير لصاحب المكانة العالية للعالم الجليل والأستاذ الكبير والإنسان العظيم الذي كلهُ عِلم وخبرة وتواضع وله مكانة مرموقة بين العلم والعلماء وفضيلته قام بدراسة ومراجعة الكتاب وأضاف الكثير من أفكاره وكلماته العظيمة في المقدمة و أيضاً قام فضيلته بتقديم التقريظ الممتاز، فسيادته قام بإعطاء الوقت الكافي لكتابي المتواضع ولا أستطيع أُلخص جُهودهُ العظيمة في أسطر قليلة، وهو الأستاذ الفاضل الدكتور المحترم إبراهيم محمد إبراهيم السيد من مواليد دولة المصر العربية مصري الجنسية والحاصل على الدكتوراه في اللغة...

من خصائص النصانية القرآنية: النسخ

Since the “text” has received attention of all modern and post modern scholars and linguists, it has been changed. This “text” has different segments, some of them are applicable to Holy Qur’ān on the one hand, on the other hand there are some un-applicable too in connection of two textual boundaries of the “text”; bounded and un-bounded. From here many scholars declare that modern defined textual theory is totally un-applicable to Holy Qur’ān. Therefore, many Qur’ānic commentators and scholars refused “Intertextuality” with its all aspects. Anyhow some other scholars allow “Intertextuality” to be applied to Holy Qur’ān because of many Qur’ānic scholars have been interpreting this sacred text using the structural methods upon which contextual and intertextual phenomena and all the relevant conceptual components of this are based, this research intends elaboration of such dimensions of Qur’ānic “Intertextulaity” and “Textuality”, in particular, the Qur’ānic textulaity; “al-Nasḵ”; abolition, deletion and abrogation.

Optimization Study of N2-H2 Mixture Pulsed Dc Plasma Ionitriding Reactor

In modern science and technology the glow discharges have a wide varity of applications. In microelectronics industry the glow discharges are used for etching of surfaces to from topographical surface features, as well as for deposition of thin films. In material processing industry the glow discharges are used extensively for deposition of various thin films, coatings and surface layers. In the present work the diagnostics of pulsed DC generated nitrogen-hydrogen mixture plasma, using an Active Screen Cage is performed so that the optimum working conditions for the purpose of material processing are obtained. Trace rare gas optical emission spectroscopy is used to investigate the effect of current density, filling pressure and hydrogen concentration for the measurement of excitation temperature, vibrational temperature, dissociation fraction and nitrogen atom density. The nitrogen plasma is generated by using 50 Hz pulsed-DC power source. The excitation temperature is determined from Ar-I line intensities, using Boltzmann’s plot method. It has been observed that the excitation temperature increases with both current density and hydrogen concentration, where as it decreases with filling pressure. In order to find out the vibrational temperature of the second positive ?ʋ(?3??,?́→?3??,?̋) system, the Δ? = -2 sequence is used due to comparatively longer lifetime (τ ~ 36 ns) using Boltzmann’s plot method. The behavior of the vibrational temperature remains similar like in the case of excitation temperature. The nitrogen dissociation fraction is calculated using actinometery and line ratio methods. It is observed that the dissociation fraction increases by adding 40% of hydrogen in the nitrogen plasma and then upon further increase of hydrogen concentration it decreases sharply. The atomic density of nitrogen is also calculated using actinometery method, which also increase with hydrogen concentration up to 40% hydrogen in the mixture. Using the optimum condition of current density, filling pressure and hydrogen concentration, different types of steels including AISI 316, AISI 304, mild steel and high xviii carbon steel are nitrided in the presence of the active screen cage. The treated samples are analysed by X-ray diffractrometery (XRD) to investigate the changes in the crystallographic structure. Scanning electron microscope (SEM) is used to investigate the surface morphology of the plasma irradiated samples, where the changes in the surface hardness are measured by Vickers microhardness tester. The XRD pattern of all the samples confirms the presence of nitrides with iron, carbon and chorimum. Microhardness results reveal a 3-7 times harder surface for different samples. The nitrogen mass transfer mechanism in active screen cage plasma nitriding process is also investigated using optical emission spectroscopy. The dominant species including NH, Fe-I, ?2+, N-I and N2 along with ??and ?? lines are observed using optical emission spectroscopy (OES). The factor of sample treatment time for both of Active screen cage and DC plasma nitriding of AISI 316 stainless steel are investigated. Increasing trend in microhardness is observed in both cases but three-fold more hardness is achieved using Active Screen Cage in comparision to direct current plasma nitriding. On the basis of metallurgical and OES observations a new phenomelogical scheme for a nitrogen mass transfer mechanism in active screen cage plasma nitriding process is proposed