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Material Requirement Planning

Thesis Info

Author

Hussain Syed Shahid

Department

Deptt. of Computer Sciences, QAU.

Program

MSc

Institute

Quaid-i-Azam University

Institute Type

Public

City

Islamabad

Province

Islamabad

Country

Pakistan

Thesis Completing Year

1993

Thesis Completion Status

Completed

Page

46

Subject

Computer Sciences

Language

English

Other

Call No: DISS/M.Sc COM/312

Added

2021-02-17 19:49:13

Modified

2023-01-06 19:20:37

ARI ID

1676716283173

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ڈاکٹر عبدالستار صدیقی

ڈاکٹر عبدالستار صدیقی
افسوس ہے پچھلے ماہ ڈاکٹر عبدالستار صاحب صدیقی کاالہٰ آباد میں انتقال ہوگیا۔ مرحوم ہندوستان کے ان مغربی تعلیم یافتہ اکابراساتذہ عربی وفارسی میں سے تھے جن کی نسل اب چراغ سحری ہے۔مرحوم علی گڑھ کے اس زمانے کے پڑھے ہوئے تھے جب کہ ابھی وہ صرف کالج تھا۔انہوں نے یہاں پروفیسر یوسف ہورووتس(JOSEF HOREVITZE)جو صدر شعبۂ عربی تھے ان کی شاگردی میں عربی میں ایم۔اے کیااور جب ان کوحکومت ہند کی جانب سے اعلیٰ تعلیم کے لیے وظیفہ ملا توموصوف کے ہی مشورے سے۱۹۱۲ء میں جرمنی چلے گئے۔اس زمانے میں جہاں تک عربی اور فارسی میں ریسرچ کاتعلق ہے فرانس کے ساتھ جرمنی کے نام کابھی دنیا میں غلغلہ بلند تھا۔جرمنی میں جو مستشرقین علم و تحقیق کے جوئے شیر کے کوہکن مشہور تھے ان میں پروفیسر تھیوڈور نولڈیکی اورپروفیسر انولتمان(ENNO LITTMAN)(۱۸۷۵ء۔۱۹۵۸ء) سرخیل گروہ تھے۔ان دونوں کااورخصوصاً موخرالذکر کاخاص فن سامی لسانیات تھا۔خوش قسمتی سے مرحوم کوجرمنی میں ان اساتذہ سے استفادہ کاپورا موقع ملا۔پروفیسر انولتمان ان کے استاد خصوصی تھے۔جن کی خدمت میں وہ مسلسل سات برس یعنی۱۹۱۹ء تک رہے۔استاد نہایت شفیق اورعلم وتحقیق کے بحر ناپیداکنار کا کامیاب شناور اور شاگرد نہایت ذہین اورہمہ طلب وجستجو! پھر کمی کس چیز کی تھی۔ڈاکٹر عبدالستار صدیقی نے فن لسانیات میں وہ کمال پیداکیا کہ یورپ تک میں مشہور ہوگئے۔ جرمنی سے آنے کے بعد وہ علی گڑھ،حیدرآباد اورڈھاکہ رہے لیکن آخرکار الہٰ آباد یونیورسٹی میں عربی کے پروفیسر اورصدر شعبۂ کی حیثیت سے ایسے جمے کہ یہیں سے ۱۹۴۶ء میں ریٹائرڈ ہوئے اوریہیں مستقل طورپررہ پڑے۔اپنے علم و فضل اورلسانیات میں خصوصی وسعت وقت نظر کے باعث جامعات اورارباب علم کے حلقوں میں بڑی وقعت کی نگاہ سے دیکھے جاتے تھے جرمنی زبان میں ان کے مقالہ فضیلت کے علاوہ غالباً کوئی مستقل تصنیف ان کی یادگار نہیں ہے۔تاہم جو مضامین(عربی کے علاوہ...

تفسیر الدر المنثور فی التفسیر با لماثور میں بعض موضوعی روایات کا علمی اور تحقیقی جائزہ: سورۃ النساء تا سورۃ المائدہ

Jalal-ud-Din Abdur  Al Rahman ibn Bakr-Suyuti who has written a well-known Tafseer Al-Durr Al-Man’thur  fi al-tafsir Bil-Ma’thur. This is a big treasurer of explanatory traditions but unfortunately he has quoted some fabricated narrations in this tafseer which caused doubt about the validity of his commentary. This article deals with the some fabricated report.

Role of Foliar and Soil Application of Potassium in Salt Tolerance and Quality Enhancement of Tomato Lycopersicon Esculentum

Salinity is among major threats to crop production and food security worldwide. World population is increasing at an alarming rate especially in the third world countries like Pakistan. So it requires more food production to ensure food security for this ever increasing world population. As the area under cultivation is limited and cannot be increased, we must resort to extensive salt affected areas worldwide to ensure food security. To utilize these salt affected areas we must devise strategies to able the crop plants to tolerate salinity and give economical yields. To accomplish this current research was planned to identify salt tolerant genotypes and alleviating the salinity stress by potassium application. In the preliminary experiment two salt-tolerant (Indent-1 and Nagina) and two salt-sensitive (Peto-86 and Red Ball) tomato genotypes were identified from fifteen genotypes based on the higher growth, lower Na + and higher K + accumulation at three NaCl levels (Control, 75 and 150 mM) in hydroponics experiment. Subsequently in the second experiment, the alleviating effects of potassium in foliar and solution form (0, 4.5 and 9 mM) on salt tolerant and sensitive genotypes were studied at same NaCl levels combined with. Results showed that response of tolerant genotypes was higher to potassium application compared to sensitive genotypes. It can also be concluded that salt tolerance of Indent-1 and Nagina might be due to higher value of antioxidant enzymes (SOD, CAT, GR), photosynthetic gas exchange, membrane stability index (MSI), Chlorophyll contents (Chl a and b), K + , K + /Na + and lower values melon dialdehyde (MDA) and Na + . Third experiment was conducted in pots under control, 7.5 and 15 dS m -1 salinity and control, 180 and 360 kg ha -1 (in soil) and 4.5 and 9 mM (foliar) potassium treatments to check the interactive effect of salinity and potassium on tomato fruit quality and yield. Potassium treatments significantly increased the fruit yield in tomato genotypes with highly significant values in tolerant genotypes than sensitive genotypes. Both salinity and potassium positively affected the fruit quality characteristics (TSS, TA, pH, DM %) in both tolerant and sensitive genotypes, however the fruit quality was higher in tolerant compared to sensitive genotypes. In the fourth experiment involvement of phytohormones (ABA, ethylene) in salt tolerance of tomato genotypes and changes in xiiistomatal morphological characteristics in response to NaCl and potassium application were studied. The experiment was conducted under controlled conditions in a climatic chamber with three NaCl (0, 75 and 150 mM) and two potassium levels (0, 4.5 mM) in hydroponics using salt-tolerant (Indent-1) and salt-sensitive (Red Ball) genotypes. The results revealed that salt-tolerant genotype had higher values of ABA and ethylene and correspondingly higher growth, chlorophyll content index (CCI), stomatal conductance (gs), lower Na + and higher K + as compares salt-sensitive genotype. Stomatal density (SD) and stomatal aperture size (SA) were significantly decreased by NaCl, with non-significant differences between the salt tolerant and sensitive genotypes suggesting these characteristics were not genetically controlled rather influenced by the environment. Based on the results of this research it was concluded that application of potassium increases yield and quality of tomato fruits under soil salinity and it could be used as an effective practice to produce even a salt sensitive species like tomato under saline conditions.