شمس العلماء عبدالرحمان شاطرؔ مرحوم
دکن ٹائمز مدراس میں یہ پڑھ کر بہت افسوس ہوا کہ مدراس کے مشہور و ممتاز فلسفی شاعر مولانا شاطرؔ کا وسط اپریل ۱۹۴۳ء میں انتقال ہوگیا۔
ارکاٹ احاطۂ مدراس میں اسلامی علم و تمدن کی فراموش شدہ تاریخ کا ایک ورق ہے، نواب ارکاٹ کا محل ارکاٹ کے جنگی خاتمہ کے بعد خود شہر مدراس ہے، شمس العلماء عبدالرحمان شاطر اسی برج فلکی کے آفتاب تھے، عمر ستر کے قریب ہوگی، اردو، عربی، فارسی اور انگریزی زبانوں سے واقف تھے، نواب صاحب ارکاٹ کے سکریٹری بھی تھے اور مدراس ہائیکورٹ میں مترجم بھی رہے تھے، گو وطن مدراس تھا، مگر ۱۹۰۱ء اور ۱۹۰۳ء میں حیدرآباد دکن کے بزم علمی میں اس کے شریک تھے، جب مولانا شررؔ اور داغؔ اور گرامیؔ حیدرآباد کی زینت تھے، وہ ان کی مجلسوں میں شریک ہوتے تھے اور ان سے اپنے ذوقِ ادب کی پرورش کرتے تھے اور اسی زمانہ سے وہ مولانا کے قریب رہنے والوں اور قریب سے جاننے والوں میں تھے اور ان کی وہی محبت تھی جو حضرت الاستاذ کی وراثت میں مجھے ملی تھی۔
عبدالرحمان مرحوم شاعر تھے، شاطرؔ تخلص کرتے تھے، اشعار حکیمانہ اور فلسفیانہ کہتے تھے، قطعات، رباعیات اور قصائد موزوں کرتے تھے، جدید سائنس اور فلسفہ کے مسائل کو اسلامی الٓہیات سے تطبیق دیتے تھے، زبان سخت تھی اور مشکل الفاظ کے استعمال سے ان کو پرہیز نہ تھا، ان کی سب سے مشہور فلسفیانہ نظم ’’اعجازِ عشق‘‘ ہے، جو ایک طویل رائیہ قصیدہ ہے جس میں جدید و قدیم فلسفیانہ مسائل و آراء سے الہیات اسلامیہ کی تفسیر و تشریح کی ہے یہ نظم ۱۹۰۴ء میں لکھی گئی تھی اور اس زمانہ کے تمام اکابر و مشاہیر مولانا حالی،مولاناشبلی، مولانا نذیر احمد، مولوی ذکاء اﷲ خاں، نواب عمادالملک، مولوی سیداکبر حسین، پروفیسر عبدالغفور شہباز، امجد...
Youth is no doubt the asset of Muslim world. If they are utilized in charitable activities; in the protection of respect and honor; and developmental works, they can prove to be beneficial and a blessing. While if they are taken by destructive elements in their hands they will become source of destruction and harm. By providing proper Islamic education, our future will be in safe hands and will breath in an air of respect among other nations. In young age, deterioration in manners and moral corruption are alarming and cause mischief in society. Therefore, the interest taken in the problems of youth will result in a progressive society and ummah. Islam has given a special place to youth and has declared them future architect and leaders of humanity. The holy prophet S.A.W has given much importance to the youth and focused on them during his life time. In Islamic history, Muslim youth has represented the Muslim world in golden words and has spread the message of Islam’s moral height and greatness to the coming generations and nations. Due to the importance of youth problem of the youth in current time regarding lack of education and training are particularly discussed in this article. The research article begins with the detailed study of the research done in the area of education and socialization of youth. Moreover, the importance of education and socialization has been discussed in the light of the teachings of Quran and Hadith. After this, decadence in education, factors responsible for the decadence in education and its worse consequences have been thoroughly discussed in the light of the teachings of Islam. As there are several reasons responsible for the downfall of education like: parents, teachers, education system, society, state, preachers, political parties and media, therefore, responsibility of the remedy of this lack of proper education and socialization also depend on all these stake holders. In the end of the paper, recommendations are given for the cure of decadence in education.
Wireless Sensor Network (WSN) consists of a large number of tiny sensor nodes capable of being deployed in a range of environments in random or regular fashion. These networks are getting attention of the research community due their broad application domain. They can be applied in many fields like health care, homes, military, environment monitoring or in any commercial environment. Due to resource constrained nature of the nodes, these networks need energy efficient solutions. Since a network operation is many times more expensive than local operation, therefore very efficient and highly adaptable communication systems need to be developed for these networks in order to increase a node’s life time. To avoid resource limitation and achieve energy efficiency collaborative communication combines the power of multiple sensor nodes to transmit the same data at the same time to a base station. This research focuses on energy efficiency in Body Area Networks, sensor networks with multipath and wideband channels. All these models are investigated in the presence of Rayleigh Fading Additive White Gaussian Noise (AWGN). The received signals from collaborative nodes at the base station are considered to be out-of-phase (imperfect phase synchronization). The ultimate goal is to investigate the effect of collaborative communication on energy efficiency, channel capacity gain, received power, BER in Wireless Sensor Networks using narrow-band, multipath and wideband channels. A synchronization process is designed to reduce the phase and frequency synchronization errors among the transmitter (Collaborative) nodes and the receiver (base station). A theoretical model for unsynchronized phase using collaborative communication in the presence of Additive White Gaussian Noise (AWGN) and Rayleigh fading is proposed, analyzed and simulated. The performance of collaborative communication system is evaluated by investigating several figures of merits including “received power”, “BER”, “energy efficiency” and “channel capacity”. The theoretical findings of collaborative communication system are verified using Monte Carlo simulation by considering the parameters of “off-the-shelf” products i.e. “CC2420” and “AT86RF212”. Theoretical analysis of the derived models for received power gain, BER, energy efficiency and capacity gain show that an increase in the number of collaborative nodes also increases the gain in received power and capacity of the system whereas inversely effect BER. Simulation results for phase error intervals f?0:1 0:1g; f?0:2 0:2g; f?0:3 0:3g and f?0:4 0:4g in case of BAN show a 0:475N2 to 0:8N2 gain in received power whereas to achieve a BER of 10?3, the required transmited power decreases from 12:5dB to 10dB with an increase Anwar Ghani: 70-FBAS/PHDCS/F11 Page viii of 153 in the number of nodes from 5 to 11 over the phase error interval f?0:2 0:2g. This required power to achieve the desired BER raises 15dB to 12:5dB in case of phase error f?0:4 0:4g. In multipath communication the gain in received power improves from 0:49N2 to 0:83N2 whereas required power for BER of 10?3 in case of f?0:1 0:1g decreases from 10dB to 7:5dB and for f?0:3 0:3g the decrease is from 12dB to 9dB. In case of wideband communication the gain in received power ranges from 0:51N2 to 0:93N2 and the required power for BER of 10?3 for single node is 7:5dB and for nodes from 5 to 11 it is 3dB to 2dB. For trade-off-analysis of energy saving and transmission distances performed for off-the-shelf devices “CC2420” and “AT86RF212”, shows in all scenarios “CC2420” stabilizes before “AT86RF212”. On the basis of these results it can be concluded that collaborative communication is energy efficient and suitaWireless Sensor Network (WSN) consists of a large number of tiny sensor nodes capable of being deployed in a range of environments in random or regular fashion. These networks are getting attention of the research community due their broad application domain. They can be applied in many fields like health care, homes, military, environment monitoring or in any commercial environment. Due to resource constrained nature of the nodes, these networks need energy efficient solutions. Since a network operation is many times more expensive than local operation, therefore very efficient and highly adaptable communication systems need to be developed for these networks in order to increase a node’s life time. To avoid resource limitation and achieve energy efficiency collaborative communication combines the power of multiple sensor nodes to transmit the same data at the same time to a base station. This research focuses on energy efficiency in Body Area Networks, sensor networks with multipath and wideband channels. All these models are investigated in the presence of Rayleigh Fading Additive White Gaussian Noise (AWGN). The received signals from collaborative nodes at the base station are considered to be out-of-phase (imperfect phase synchronization). The ultimate goal is to investigate the effect of collaborative communication on energy efficiency, channel capacity gain, received power, BER in Wireless Sensor Networks using narrow-band, multipath and wideband channels. A synchronization process is designed to reduce the phase and frequency synchronization errors among the transmitter (Collaborative) nodes and the receiver (base station). A theoretical model for unsynchronized phase using collaborative communication in the presence of Additive White Gaussian Noise (AWGN) and Rayleigh fading is proposed, analyzed and simulated. The performance of collaborative communication system is evaluated by investigating several figures of merits including “received power”, “BER”, “energy efficiency” and “channel capacity”. The theoretical findings of collaborative communication system are verified using Monte Carlo simulation by considering the parameters of “off-the-shelf” products i.e. “CC2420” and “AT86RF212”. Theoretical analysis of the derived models for received power gain, BER, energy efficiency and capacity gain show that an increase in the number of collaborative nodes also increases the gain in received power and capacity of the system whereas inversely effect BER. Simulation results for phase error intervals f?0:1 0:1g; f?0:2 0:2g; f?0:3 0:3g and f?0:4 0:4g in case of BAN show a 0:475N2 to 0:8N2 gain in received power whereas to achieve a BER of 10?3, the required transmited power decreases from 12:5dB to 10dB with an increase Anwar Ghani: 70-FBAS/PHDCS/F11 Page viii of 153 in the number of nodes from 5 to 11 over the phase error interval f?0:2 0:2g. This required power to achieve the desired BER raises 15dB to 12:5dB in case of phase error f?0:4 0:4g. In multipath communication the gain in received power improves from 0:49N2 to 0:83N2 whereas required power for BER of 10?3 in case of f?0:1 0:1g decreases from 10dB to 7:5dB and for f?0:3 0:3g the decrease is from 12dB to 9dB. In case of wideband communication the gain in received power ranges from 0:51N2 to 0:93N2 and the required power for BER of 10?3 for single node is 7:5dB and for nodes from 5 to 11 it is 3dB to 2dB. For trade-off-analysis of energy saving and transmission distances performed for off-the-shelf devices “CC2420” and “AT86RF212”, shows in all scenarios “CC2420” stabilizes before “AT86RF212”. On the basis of these results it can be concluded that collaborative communication is energy efficient and suitable for resource limited networks like WSN.ble for resource limited networks like WSN.