ڈاکٹر عبدالستار الجواری
عربی زبان کے عاشق شیدائی اور اسلامی علوم خصوصاً قرآنیات کے خادم کی حیثیت سے ڈاکٹر احمد عبدالستار الجواری کا نام عرب کے علمی حلقوں میں تعارف کا محتاج نہیں۔ ۲۲؍ جنوری ۸۸ء کو وہ نماز جمعہ کی تیاری کررہے تھے کہ اچانک ان کا پیمانہ عمر لبریز ہوگیا، انتقال کے وقت ان کی عمر ۶۲، ۶۳ سال تھی اور وہ علم کے بام عروج پر پہنچے ہوئے تھے۔
وہ ۱۹۲۵ء میں بغداد کے قدیم تاریخی محلہ کرخ میں پیدا ہوئے، اس محلہ کے خانوادے اور گھرانے آج بھی قدیم عربی روایات و خصوصیات کے حامل ہیں، ڈاکٹر احمد نے بھی ایک شریف و معزز خاندان میں آنکھیں کھولیں، بی اے تک کی تعلیم بغداد میں حاصل کی اور طہ الراوی، مہدی البصیر، عبدالوہاب عزام اور زکی مبارک جیسے ممتاز اساتذہ سے استفادہ کیا، بعد میں قاہرہ سے ایم اے کیا وہاں ان کو طہ حسین، احمد امین، احمد الشائب، مصطفی السقا اور امین الخولی جیسے مشاہیر فضلا کی عنایات بھی حاصل رہیں۔ تعلیم کے بعد وہ عراق کی مختلف اعلیٰ تعلیمی و انتظامی ذمہ داریوں سے عہدہ برآ ہوتے رہے، ۱۹۷۹ء تک وہ کئی محکموں کے وزیر بھی رہے لیکن یہ انتظامی سرگرمیاں ان کی علمی و تحقیقی راہ میں کبھی حائل نہ ہوئیں، عالم عرب کے اہم سمیناروں اور باوقار علمی مجلسوں میں برابر شریک ہوتے رہے۔ ان کے مقالوں اور خطبوں میں عموماً اسلامیات اور امت عربی کے مسائل زیر بحث آتے جو علمی متانت و سنجیدگی کی وجہ سے بڑی توجہ سے سنے جاتے۔ ان علمی خدمات کے اعتراف میں ۶۵ء میں ان کو عراق کی المجمع العلمی کا رکن بنایا گیا، بعد میں وہ دمشق اور قاہرہ کی علمی اکیڈمیوں کے بھی رکن مقرر ہوئے، ۶۹ء میں عرب کی یونیورسٹیوں اور کالجوں کے اساتذہ کی انجمن اتحاد معلمین عرب...
E-Commerce in today’s world is playing an important role in global business. A quantitative and quantitative research was conducted with professional members, employees working in organization which are dealing with E-Business or online working via internet and their views gave an empirical and dynamic approach to make business efficient and effective. Connectivity with market to find best manufacture for goods and for manufacture to finds its buyer for their finished goods. Flow of information become faster and gathering of data become easier to make activities of business to get optimal results. Numbers of goods are available complications to finds goods are removed by complimentary goods. Supplies of goods at proper time in order to meet demand by consumer plays win to win game. Improved methods of technology like RFID make work easier and accessible information about goods to management. Manpower in forms of labor is reducing which leads to decrease in the cost of goods. Ordering cost saves time and gives a specified time both producers to make commodity and consumer for delivery of goods. E-Commerce with contrast of components of supply chain in the form of ware house, logistics, number of listing suppliers, number of listing items on one web in the form of website on one platform give dynamic image to businesses in the race of competitive world. Business transactions done with internet not only reduce time but also make documents or records for longer time able to send data from distant parts of the world. Through websites we can get completive price information and other relevant information for goods.
The idea of wave packet, that clarified many conceptual difficulties, has more recently been revisited to address interferometric and dynamical issues. Present work focuses on the spatio-temporal dynamics of the quantum wave packets in the Fermi-Ulam Accelerator Model. The specific system considered here is a one-dimensional box under periodic oscillations at one boundary. Such a seemingly simple system can be mapped to non-trivial problems like BEC trapped in an oscillating cavity or dynamics of atomic wave packet in different potential in presence or absence of gravitational field. The system is shown to display rich dynamical features including transitions from regular to stochastic and further to chaotic domain in classical phase space. We have obtained the approximated eigen-value solutions of the problem through time dependent Schrodinger’s equation under rescaling transformations that effectively replace moving boundary with a static one. Consequently the running time becomes a nonlinear function of the continuously changing boundary. Based on these solutions, revivals or the resurrection of the original wave packet, in the driven and un-driven Fermi-Ulam model are presented. Such revivals correspond to the constructive interference whereas the wave packet’s collapse owes to destructive interference. Furthermore, interplay of constructive and destructive interferences also readily mimics the fractional revivals. It is further demonstrated that initial position and momentum play a highly crucial role in the emergent revival and fractional revival patterns. It is shown that the symmetries exhibited by such structures in un-driven systems are usually lost under driven conditions and the revival/fractional revival times can only be predicted through a transcendental equation whose solution mainly depends on the strength of the external driving force. In present thesis we have proposed a comprehensive mathematical technique to calculate these hitherto unpredictable times. In addition, a graphical method is also suggested to observe these asymmetric revival/fractional revival times. This apparent asymmetry, do display an overall periodicity over a comparatively long span covering many times of revivals. It is found that whenever the ratio between the period of wall oscillation and quantum revival time `α/β'' is a rational number then the revivals time shows a periodicity after β viinumber of revival times over α wall oscillation. Standard tools of autocorrelation and quantum carpets, a consequence of quantum interference, have been employed for visual manifestation of these revivals. These carpets amply demonstrate the explicit asymmetric shifting of revival times for the driven case. These micro changes exhibited in quantum carpet morphologies consequently yield amended phase velocities associated with the canals and ridges in the driven framework. Furthermore, to grasp the quantum phase space dynamics in its entirety, we have also utilized the more sophisticated techniques of the Wigner function and information entropy. It is demonstrated mathematically that revivals not apparent via autocorrelation become prominent in the Wigner phase space description along with the appearance of smooth mini wave packets in the fractional revivals. These interference patterns emerge due to the state vector formed through the linear combination of Gaussians with different positions and momenta having pure Gaussian as well as oscillatory terms. Moreover, the information entropy, like the Wigner function also predicts the revivals when and where they happen. Thus a rich pattern of fractional revivals, including some altogether new ones, are observed through this tool in both driven and un-driven situations. Finally we have elucidated various scenarios including cold atoms in magneto-optical traps where such a system can be experimentally realized along with the suggestions for future work in this specific domain.