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کعبہ کی تعمیر نو

کعبہ کی تعمیر نو:
آپ ﷺ کی عمر مبارک پینتیس برس کی تھی جب قریش نے کعبہ کی تعمیر نو کا ارادہ کیا ۔ تعمیر نو کی ایک وجہ تو یہ تھی کہ ایک عورت کعبہ کو خوشبودار دھونی دے رہی تھی کہ آگ لگ گئی جس سے کافی نقصان ہوا ۔ دوسری یہ وجہ تھی کہ دیواروں میں شگاف پڑے ہوئے تھے ۔ وہ اس طرح کہ بند ٹوٹ گیا جو مکہ کو سیلاب سے بچانے کے لیے بنایا گیا تھا ۔ سیلاب کی وجہ سے صحن حرم پانی سے بھر گیا تھا ۔ پہلے کعبہ کی چاردیواری تھی مگر چھت نہیں تھی ۔ ان حالات میں از سر نو تعمیر کعبہ کا بیڑا اٹھایا گیا یہ بہت دلچسپ بات ہے کہ کسی غیر قوم کاقبضہ کر کے گرا دینے ، منہدم کرنے کا واقعہ خانہ کعبہ کے ساتھ پانچ ہزار سال سے نہیں ہوا تھا جیسا کہ ہیکل یروشلم کے ساتھ بارہا ایسے واقعات پے درپے ہوتے رہے اور یہ ایسا شرف ہے کہ دنیا کے کسی عبادت خانہ کو حاصل نہیں ۔ ( رحمت اللعالمین ۔۱۔۴۳)
دوران تعمیر حجر اسود کے نصب کرنے کا مرحلہ آیا تو اختلاف پیدا ہوا ، یکے یو سف ہزار خریداروالا معاملہ تھا یعنی ہر شخص کی خواہش تھی کہ وہ حجر اسود کو کعبۃ اللہ کی دیوار میں نصب کرے ، بالآخر ایک بزرگ کی بات پر اتفاق ہوا کہ کل جو شخص سب سے پہلے باب بنی شیبہ سے حرم میں داخل ہو اس کو حکم مان لو اور وہ جو فیصلہ کریں اس پر عمل کریں ۔ اس رائے کو بالاتفاق پسند کیا گیا اور اسی پر عمل درآمد کرنے کا فیصلہ ہوا ۔ اگلی صبح آنحضرت ﷺ سب سے پہلے باب بنی شیبہ سے حرم میں داخل ہوئے۔ آنے والوں نے آپ ﷺ کو...

جماعت احمدیہ کے مولوی عبد اللطیف بہاولپوری کی چار قرآنی سورتوں کی تفاسیر کا تحقیقی و تنقیدی جائزہ

This informative article is a vital as well as analytical analyze of the several Sūrʼas translated as well as defined by Mūlvi Abdul Latīf around the facets of the guidelines connected with Translation as well as Tafsīr set by Mirza Ghulām Ahmad Qādyāni founder of Jamʽat-e-Āḥmadiya. Who offered a brand new principle connected with Tafsīr to verify the inappropriate beliefs as well as his views that are total contrary to the principles set by authentic former Muslim scholars. Many Qādyāni Mufasrīn implemented those principles within their books connected with Tafsīr. Most notable ended up being Mūlvi Abdul Latīf Bahāwalpūri who had written this Translation as well as Tafsīr of 5 Sūrʼas i. ESūrʼa Banī ʼisraeel, Sūrʼa Kahaf, Sūrʼa Yāseen, Sūrʼa Qiyāmah and Sūrʼa Dahar. He implemented the guidelines set by Mirza Ghulām Ahmad Qādyāni. Throughout his work he created a number of alterations not only with Translation but with Tafsīr too. This article is an eye bird review of the principles of the Translation as well as Tafsīr connected with Holy Qurʼan set by authentic former scholars.

Impact of Load Modeling on Dg Integrated Distribution Systems

Renewable energy based Distributed Generation (DG) resources are crucial for sustainable energy supply infrastructure as they are non-polluting and inexhaustible. The uncertainties associated with DG resources may cause distinct economic and technical challenges which require comprehensive investigation to facilitate their integration in Distribution System (DS). Generally, DG planning studies are conducted while assuming constant generation and load models. However, such assumptions may result in misleading and inconsistent values for voltage profile, loss reduction, payback period, deferral values, and other relevant calculations.Therefore, to achieve accurate and realistic results, it is necessary to consider variations associated with generation and load. This thesis presents time varying load modeling and probabilistic solar irradiance modeling techniques and investigates their impact on Photovoltaic (PV) based DG planning. A novel Beta distribution based probabilistic generation model is proposed for solar irradiance uncertainty modeling to compute the hourly output power values produced by PV based DG. The beta distribution parameters are found by assuming the variations of irradiance patterns at consecutive time steps. Subsequently, the proposed model is employed to generate various solar irradiance generation scenarios. Then, a time varying load modeling approach is presented for PV based DG planning.Five different types of time varying load models (i.e. residential, commercial, industrial, mixed and constant) are considered. These loads are modeled by combining the time varying characteristics of residential, commercial and industrial loads with the voltage-dependent load model while assuming suitable voltage exponents. The application of these load models make the PV based DG integration more realistic as compared to the conventional model. Furthermore, a methodology has been developed to determine intermittent DG allocation for DS while considering varying load and generation. The objective is to minimize the multiobjective optimization function which involves voltage deviation, active and reactive power loss indices. Finally, the impact of time varying load modeling approach on DG integrated DS performance has been investigated. The proposed DG planning framework has been validated on IEEE 33-bus and 69-bus standard distribution test systems in MATLAB environment. A comparative assessment of different impact indices, penetration level, active and reactive power intake, active and reactive power loss and MVA support offered by the installation of PV based DG for different time varying load models has been performed. The results demonstrate that the proposed generation model is suitable for solar irradiance modeling. Moreover, time varying load modelling approach has a significant impact on DS planning studies under uncertain scenario.
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