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Mayfair Biscuits [Mps Advertisement and Marketing Communication]

Thesis Info

Author

By Zaeem Latif, Ertiqa Saeed, Heera Hanif and Hammad Ahmed

Department

UMT. School of Professional Advancement

Institute

University of Management and Technology

Institute Type

Private

City

Lahore

Province

Punjab

Country

Pakistan

Thesis Completing Year

2018

Thesis Completion Status

Completed

Page

54 . CD

Subject

Management & Auxiliary Services

Language

English

Other

School of Professional Advancment; English; Call No: TP 658.802 MAY-

Added

2021-02-17 19:49:13

Modified

2023-01-06 19:20:37

ARI ID

1676714041267

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مولانا ابواللیث صدیقی

مولاناابواللیث صدیقی
مِلّی،دینی اورعلمی حلقوں میں یہ خبرانتہائی رنج وغم کے ساتھ سنی گئی کہ سابق امیرجماعت اسلامی ہند حضرت مولاناابواللیث صدیقی ندوی اس ماہ دسمبر ۱۹۹۰ء میں طویل علالت کے بعد انتقال فرماگئے ۔ اِنَّالِلّٰہِ وَاِنَّا اِلَیْہِ راجعُون۔
مرحوم مولانا ابواللیث بڑے جیدعالم دین تھے۔عربی کے اسکالر تھے۔ مگراس کے باوجود سادگی وشرافت کے پیکر مجسّم تھے۔خاموش طبع تھے مگر بلاکے ذہین اوردانشوروں میں ان کاشمار ہوتاتھا۔۱۹۴۷ء کے پُر آشوب دور میں انہوں نے ہندوستان ہی میں دین اسلام اورمسلمانوں کی خدمت کرنے کابیڑہ اٹھانے کاعزم مصمم کیا۔اوران کی اعلیٰ کارکردگی ، کامیاب قیادت سے ملّت کو فیض بھی حاصل ہوا۔
مفکّر ملّت حضرت مفتی عتیق الرحمن عثمانی ؒسے ان کوبڑا گہرا لگاؤ تھا۔ان کی تعظیم وتکریم کرتے تھے اورملّی مسائل میں ان کے مشوروں سے فیضیاب بھی ہوتے رہے۔خود حضرت مفتی صاحبؒ بھی ان کی علمی قابلیت کے معترف تھے۔ مجلس مشاورت کے سلسلے میں ان کی خدمات سے انہوں نے بھرپور استفادہ بھی حاصل کیا۔ان میں متانت کُوٹ کُوٹ کربھری ہوئی تھی۔ان کے انتقال پرعظیم مذہبی رہنما وعالم دین حضرت مولانا ابوالحسن علی میاں ندوی صاحب مدظلہٗ نے صحیح کہا ہے کہ ان کے انتقال سے ملّت ہند ایک سچّے رہنما مخلص انسان سے محروم ہوگئی ہے۔اﷲ تعالیٰ کروٹ کروٹ جنّت نصیب کرے۔اٰمین! [دسمبر ۱۹۹۰ء]

 

قرآنی اصولوں کی روشنی میں معاشرتی استحکام

Islam is the religion of nature. It not only approves the social interaction among the masses, but also helps in its development towards positive ends. Islam has given natural and universal principles which help its followers to develop a harmonious society, discouraging all the attempts to divide the society into different sections. Islamic society is based upon the following fundamental principles i. E equality, harmony of thoughts, justice, amar-bilmaaruf-wa-nahi-anilmunkar (ask for good and forbid from evil), unity, sense of responsibility, virtue and evil, abolition of sectarianism & fulfillment of promises, reflecting the universality of the religion, Islam. Pakistan today, is facing various social problems like terrorism, corruption, poverty, unemployment, broken families, sectarianism, onslaught of western culture and demand of unrestricted liberty by womenfolk. The moral degradation of the society is due to the fact that the true Islamic spirit and moral teachings and trainings of Islam have not been applied with true mind and honest intentions. The moral values are ignored by the media which is the cause of great concern.

Analysis of Network of Queues With Finite Capacities and Blocking

Queueing Network Models (QNMs) with Finite Capacity provide powerful and realistic tools for the performance evaluation and prediction of discrete flow systems such as computer systems, communication networks and flexible manufacturing systems. Over recent years, there has been a great deal of progress towards the analysis and application of QNMs with finite capacity, and high quality research work has appeared in diverse scientific journals of learning and conference proceedings in the fields of Operations Research, Computer Science, Telecommunication Networks, Management and Industrial Engineering. However, there are still many important and interesting finite capacity queues and QNMs to be resolved, such as those involving multiple-job classes, bounds and theoretical properties, exact analysis, numerical solutions and approximate methods, as well as application studies to computer and distributed systems, high-speed networks and production systems. Finite capacity queueing network models (QNMs) also play an important role towards effective congestion control and quality of service (QoS) protection of modern discrete flow networks. Blocking in such networks arises because the traffic of jobs through one queue may be momentarily halted if the destination queue has reached its capacity. Exact closed-form solutions for QNMs with blocking are not generally attainable except for some special cases such as two-station cyclic ivqueues and ‘reversible’ queueing networks. As a consequence, numerical techniques and analytic approximations have been proposed for the study of arbitrary QNMs with non-Markovian (external) inter- arrival and service times under various types of blocking mechanisms. This research mainly focuses on: i) To develop and validate cost effective analytical models for arbitrary QNMs with blocking and multiple job classes. ii) To use the analytical models to evaluate the performance of QNMs under various blocking mechanisms applicable to flexible manufacturing systems and high speed telecommunication networks. iii) To develop approximate analytical algorithms for arbitrary QNMs consisting of G/G/1/N censored-type queues with arbitrary arrival and service processes, single server under Partial Buffer Sharing (PBS) and Complete Buffer Partitioning (CBP) schemes stipulating a sequence of buffer thresholds {N=N1,N2,...,NR,0< Ni ≤ Ni-1 , i=1,2,...,R} and buffer partitioning with FCFS service discipline. {chapter 4 and 5} iv) Validation of these algorithms (iii) using QNAP simulation package. v) Extension of the above algorithms for multiple servers and its validation using simulation. Determining a performance distribution via classical queueing theory may prove to be an infeasible task even for systems of queues with moderate complexity. Hence, the principle of entropy maximization may be applied to characterize useful information theoretic approximations of performance distributions of queueing systems and queueing network models (QNMs). vFocusing on an arbitrary open QNM, the ME solution for the joint state probability, subject to marginal mean value constraints, can be interpreted as a product-form approximation. Thus, the principle of ME implies a decomposition of a complex QNM into individual queues each of which can be analyzed separately with revised inter arrival and service times. Moreover, the marginal ME state probability of a single queue, in conjunction with suitable formulae for the first two moments of the effective flow, can play the role of a cost-effective analytic building block towards the computation of the performance metrics for the entire network.