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Interpretation of 2-D Seismic Reflection of Line No. 904-Mwi-001

Thesis Info

Author

Yaqoob Muhammad Imran

Department

Deptt. of Earth Sciences, QAU.

Program

MSc

Institute

Quaid-i-Azam University

Institute Type

Public

City

Islamabad

Province

Islamabad

Country

Pakistan

Thesis Completing Year

2004

Thesis Completion Status

Completed

Page

45

Subject

Earth Sciences

Language

English

Other

Call No: DISS/M.Sc ES/611

Added

2021-02-17 19:49:13

Modified

2023-01-06 19:20:37

ARI ID

1676719303116

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بچپن مولانا احمد رضا بریلوی

بچپن مولانااحمد رضابریلوی
نحمدہ ونصلی علی رسولہ الکریم امّا بعد فاعوذ بااللہ من الشیطن الرجیم
بسم اللہ الرحمن الرحیم
معزز اسا تذہ کرام اور میرے ہم مکتب ساتھیو!
آج مجھے جس موضوع پر اظہار خیال کرنا ہے وہ ہے:’’بچپن مولانا احمدرضابریلوی ‘‘
صدرِذی وقار!
انسان کے تین ادوار ہوتے ہیں جو اس کی شخصیت کی ہمہ گیریت پر روشنی ڈالتے ہیں، اس کے شخصی حسن کے نکھار کا پتہ دیتے ہیں، اس کی زندگی کے نشیب و فراز کے بارے میں آگاہی بہم پہنچاتے ہیں ، اس کی معاشی، معاشرتی، سیاسی اور مذہبی حیثیت کی نشاندہی کرتے ہیں۔
جنابِ صدر!
ضروری تو نہیں کہ یہ تینوں ادوار ایک پہ آئیں۔ کسی نے بچپن میں داعی اجل کو لبیک کہنا ہوتا ہے، کسی نے جوانی میں زندگی کی بوقلمو نیوں کو خیر باد کہنا ہوتا ہے، اور کوئی ایسے ہوتے ہیں جن کو زندگی پیرانہ سالی تک مہلت دیتی ہے اور تادیر زندہ رہتے ہیں۔
صدرِذی وقار!
وہ خوش نصیب ہوتا ہے جس کے بچپن میں ، جس کی جوانی میں، جس کے بڑھاپے میں ہم آہنگی ہوتی ہے۔ جس کے یہ ایّام معاشرے کے لئے ،قوم کے لئے ،خاندان کے لئے مفید اور سودمند ہوتے ہیں، جو بچپن سے لے کر پیرا نہ سالی تک ہر شعبہ ٔحیات میں ایک نمونہ ثابت ہوتا ہے۔
جنابِ صدر!
کئی نابغۂ روزگار ہستیاں ایسی گزری ہیں جن کی زندگی پیدائش سے لے کر قبرکی لحد تک مثالی رہی ہیں۔ لیکن ان نفوسِ قدسیہ میں اعلیٰ حضرت عظیم البرکت امام احمد رضا خان بریلوی رحمۃ اللہ علیہ نے جو مقام حاصل کیا ہے وہ مہر نیم روز کی طرح متبیّن اور واضح ہے۔
معزز سامعین!
اللہ نے آپ کو دینِ اسلام کا خادم پیدا فرمایا، عشقِ مصطفیٰؐ آپ کی رگوں میں خون کی طرح...

تفسیر جلالین میں اسرائیلی روایات کا تجزیاتی مطالعہ

Holy Quran is the most sacred scripture bestowed by Allah Almighty upon his bellowed prophet Muhammad (PBUH). Unlike other scriptures, Allah Almighty himself took the responsibility of safety and safe custody of the Holy Quran. That is why, despite passage of more than 1400 years, the Holy Quran remained intact, wordwise as well as meaningwise and will remain intact till the end of the world. Such a unique status of the Holy Quran could not be tolerated by the enemies of Islam and Prophet of Islam. Therefore, they decided to present Holy Quran as a defective document before its readers. For this purpose, they chose to highlight and exploit the short and abbreviated incidents, described by the Holy Quran, under the term of “Muthashalihat”, by adding and narrating false, nonsense and most astonishing stories, just to divert attention of the readers from the basic learning of Holy Quran, towards un-realistic and bogus stories. Accordingly majority of the readers have shown great interest in these stories, which fall under the title of Israiliat Unfortunately, the said stories are included in dozens of Translations Tafaseer of the Holy Quran. In order to acquaint readers of the actual status of Israiliat, the undersigned has started working on the subject. Since Tafseer-e-Jalalain is included in the Syllabus of Maddaris and being taught for the last many years, therefore, I have chosen the same in the first instance, and pray Allah Almighty to help me out in completing my assignment.

Effect of Doping of Various Metal Cations on Structural, Electrical and Magnetic Properties of Nano Cobalt Ferrites

Cobalt ferrite, having an inverse spinel structure and the inherent properties of high coercivity, moderate saturation magnetization and high electrical resistivity, is a potential candidate for magnetic storage devices and high frequency applications. In the present study, cobalt ferrite has been doped with various dopants like Cr, rare earths (Sm, Ho, Er, Dy and Pr) and Zr co-doped with Mg, Mn and Ni, in order to improve the electrical and magnetic properties while maintaining a spinel structure and moderate saturation magnetization values a micro-emulsion method of preparation in which a cheap surfactant, namely polyethylene glycol, has been used. The formation of spinel phase occurs between 573 and 673K as indicated by the thermal analyses (TG/DTA), but a well crystalline and stable spinel phase is achieved at 1073K as evident from the powder X-ray diffraction studies of the synthesized samples. All the doped cobalt ferrite samples are in single spinel phase as confirmed by XRD and magnetic susceptibility measurements. The average crystallite sizes of the doped cobalt ferrite samples are in the range of 13 nm to 70 nm. The elemental composition of doped cobalt ferrites is confirmed by energy dispersive X-ray fluorescence analysis which shows an agreement between the theoretical and experimental compositions of the prepared samples. Electrical resistivity as measured at 293K the by two point probe method is found to have a value of 1.25 × 106 Ωm for un-doped cobalt ferrite which is enhanced by doping with Cr, Zr-Mg, Zr-Mn and Zr- Ni. For small contents of rare earth metal cations introduced into spinel lattice of cobalt ferrite the electrical resistivity (at 293K) increases to a larger extent due to insulating nature of rare earth oxides. The variation in electrical resistivity with composition and temperature has been discussed on the basis of hopping model of electron conduction in ferrites. The activation energy of hopping and drift mobility of the charge carrier is calculated from the resistivity data. The dielectric properties are measured by inductance capacitance resistance (LCR) meter in the frequency range of 100Hz – 1MHz and dielectric constant (έ), dielectric loss angle (tanδ) and dielectric loss factor ( ε ′′ ) are calculated from the capacitance data. These dielectric parameters are found to decrease with increasing frequency. This behaviour is typical of ferrites as explained by Koop’s model. The dielectric constant (έ) and the dielectric losses of the un-doped cobalt ferrite have been reduced by doping in the present work. Curie temperature has been determined from the low field AC-magnetic susceptibility measurements and was found to increase for specific contents of dopants as compared to the un-doped cobalt ferrite while for others a lower value of Curie temperature was observed. Saturation magnetization has been increased by doping with Cr up to x = 0.5, Zr-Mn content x = 0.1, Sm content x = 0.04 and Er content x = 0.08 while for the rest of compositions the saturation magnetization has been decreased as compared to the un-doped cobalt ferrite sample. Beside this, the coercivity of the materials prepared in the present study has been increased by doping rare earth metal cations, while it has been reduced by Cr and Zr co-doped with Mg, Mn and Ni, in cobalt ferrites. The reduction in magnetization has been discussed in terms of dilution of magnetization, crystallite size effects and the spin canting introduced by the dopants at octahedral sites.