ایف آئی آر
تھانہ پرانی انار کلی اور FIRنمبر 211/81ایک ایسی ایف آئی آر جس کے ہزاروں سیاسی کارکنوں کو گرفتار کیا گیا ۔تھانہ پرانی انار کلی لاہور بی بی سی اردو آج بی بی سی کے پروگرام سیربین میں عالیہ نازنے جو رپورٹ پیش کی دلچسپ ہے ۔جس میں تھانہ کے ایس ایچ او بھگت سنگھ کیس کے متعلق بتا یا مگر جو سب سے اہم مقدمہ اس پولیس اسٹیشن کا تھا جس کا ایف آر آئی نمبر 211/81ہے بھول گئے اس کے متعلق ان کو معلوم نہیں تھا اور یہ بھی ہو سکتا ہے کہ مارشل لاء حکام نے وہ ریکارڈ ضائع کر دیا ہو کیونکہ یہ مقدمہ کیمرہ ٹرائل تھا ۔جو کہ اسپیشل ملٹری کورٹ میں چلا بی بی سی کا ریکارڈ چیک کیا جائے تو 7اگست 1948ء کو یہ مقدمہ شروع کیا تھا ۔اس کی تمام خبریں مل جائیں گی ۔مقدمہ کے آغاز سے لے کر پاکستان کی سب سے بڑی بھوک ہڑتال اور فیصلہ تک بی بی سی نے مکمل خبریں دیں ۔اس دن صبح سویرے کوٹ لکھپت جیل میں پہلے عثمان غنی شہید اور ادریس بیگ شہید کو پھانسی دی گئی اور پھر چند گھنٹوں بعد ہم 54سیاسی قیدیوں کو فو جی عدالت میں پیش کیا گیا ۔اس مقدمے میں چون افراد فوجی عدالت میں موجود تھے ۔چھیاسی افراد جن میں میر مرتضی بھٹو شہید ،شاہ نواز بھٹو شہید،مرزا اختر بیگ ،یعقوب چینا ،سہیل سیٹھی ،آغا ندیم ،عمر حیات اور بہت سے سیاسی کارکن تھے۔تھا نہ پرانی انار کلی کی ایف آئی آر 211/81میں ہی پاکستان پیپلز پارٹی کے سینکڑوں نہیں ہزاروں کارکنوں کو گرفتار کر کے لاہور کے شاہی قلعہ اور لال قلعہ (لال قلعہ بھی لاہور ہی میں ہے ) لایا گیا ۔یہ ایف آئی آر تو تھانہ انار کلی میں درج کی گئی مگر...
This article encompassed the Holy Prophet's (ﷺ) best war strategy in the conquest of Makkah and its relevance to the Modern society. The purpose of this article was to highlight the war strategy of Holy Prophet (ﷺ) in the conquest of Makkah. His strategy provided the noble example for warfare in modern world. The method used for research was historical. The review of literature revealed that the war, humanity for love the showed (صلى الله عليه وسلم) Muhammad Prophet of strategies concern for the safety of the lives and avoided bloodshed as far as possible. Because of his noble strategies, Makkan tribes surrendered without any resistance in front of the army of Islam. Consequently, (صلى الله عليه وسلم) Prophet Holy the and idolatry from freed became Makkah conquered the last and the most solid stronghold of the enemy. In Modern era, Muslim faced so many war problems. Through the war war the learn can commanders military, (صلى الله عليه وسلم) Prophet Holy of strategies ethics and overcome their problems. It is recommended to Muslim army that they should take guidance from the war strategy of Prophet pressure psychological putting by enemy defeat and (صلى الله عليه وسلم) Muhammad upon them.
The use of mathematical programming for short term (10-day) operation of Indus River System under uncertainty was investigated. A two stage mix optimization procedure was proposed for the stochastic optimization of the Indus River System. The first stage of the proposed procedure cycles through three main programs, a transition probability matrix (tmp) computation algorithm, a DDP-SDP (Deterministic-Stochastic Dynamic Programming) model and a simulation program. In DDP-SDP program, four model types and three objective types were investigated for multiresevoir system. These non-linear objectives were calibrated for the large scale complex system to minimize the irrigation shortfalls, to maximize the hydropower generation and to optimize the flood storage benefits. Simulation program was used for the validation of each policy derived through this cycle. The accumulation of these programs is called 10 day reservoir operation model of the multireservoir Indus River System. Various model types in SDP/DDP formulation may produce different results in different reservoir conditions and different hydrologic regimes. The model types are therefore system specific. For the Indus Reservoir System best fit SDP model type was identified, alternate multi objective functions were proposed and analysed. Taking one or two objectives and ignoring other or considering all the objectives to optimize, produced different results in different model types. Especially the results were significantly different in terms of storage contents of the reservoir during simulation. The proposed procedure identifies the best stochastic operational policies for the system under uncertainty. The second stage of proposed procedure uses advantages of the stochastic optimal policies derived in the first stage of the optimization with a Network Flow programming (NFP) model developed for the Indus River System for 10 day operation. The whole system was represented by a capacitated network in which nodes are reservoirs, system inflow locations or canal diversion locations. The nodes are connected with the arcs which represent rivers, canal reaches or syphons in the system. The maximum and minimum flow conditions were defined from the physical data. The NFP model was solved with the help of two main programs, the out of kilter algorithm and on line reservoir operation model with stochastic operating policies. The accumulation of these programs is called 10 day stochastic network flow programming (SNFP) model of the multireservoir Indus River System. The proposed SNFP model provides two main benefits. First, the incorporation of the stochastic operating policies at reservoir nodes controls the uncertainty and improves the system operation performance. The stochastic behaviour of the inputs and non-linear objectives in the linear programming model is incorporated in this way. Second, the complete system is under control and presents acomplete physical picture of the system. The results obtained from the above two stage procedure were verified with help of simulating the system with forecasted inflows and comparing these results with actual historic data record. For this purpose, 10 day forecasting models were investigated, calibrated and verified. The results also proved the methodology effective for the test case. The reservoir operation model is characterized as generalised and flexible model, and can be used for any other reservoir. The SNFP model is system (the Indus River System) specific to and needs minor modifications to be used for other water resource systems.ii The proposed optimization procedure presents the optimum operation of reservoirs for irrigation water supplies, hydropower production and flood protection, optimal allocation of water resources in the canal network of Indus River System and identifies the resource limitations at various locations in the system. While comparing with the historic data records, the model performance was found to be better than the historic data at all locations in the system during simulation. The complete model may be used as a guiding tool for the optimum 10 day operation of the Indus River System. A two stage frame work consisting of a steady state SDP 10 day reservoir operation model followed by a Network Flow model appears to be promising for the optimization of Indus River System. The model has also been used for future planning of water resources in Pakistan. The methodology developed provides a viable way of applying stochastic optimization into deterministic optimization procedure under multireservoir, multiobjective water resource system with 10 day operation under uncertainty.