ڈاکٹر ابواللیث صدیقی مرحوم
گزشتہ ستمبر میں اردو کے نامور استاد محقق و نقاد اور ماہر لسانیات جناب ڈاکٹر ابواللیث صدیقی کا کراچی میں ۸۰ سال کی عمر میں انتقال ہوگیا، اِناﷲ وَاِنا اِلَیہ رَاجِعُون۔
وہ بدایوں میں پیدا ہوئے، علی گڑھ یونیورسٹی میں اعلیٰ تعلیم حاصل کی، رشید احمد صدیقی اور مولانا احسن مارہروی وغیرہ سے اکتساب فیض کیا اور رشید صاحب کی زیر نگرانی لکھنؤ کے دبستان شاعری پر تحقیقی مقالہ لکھ کر ڈاکٹریٹ کی ڈگری حاصل کی۔ مسلم یونیورسٹی کے شعبہ اردو سے یہ اعزاز حاصل کرنے والے وہ پہلے شخص تھے، بعد میں یہ مقالہ کتابی شکل میں متعدد بار شائع ہوا اور یہی ان کی شہرت کا اصل سبب بھی بنا، مضمون نگاری کا شوق زمانہ تعلیم سے تھا چنانچہ اسی زمانہ میں ان کے مضامین معارف کے علاوہ دوسرے رسالوں میں بھی شائع ہوئے، درس و تدریس کا سلسلہ بھی مسلم یونیورسٹی سے شروع ہوا، جہاں وہ شعبہ اردو میں لکچرر مقرر ہوئے بعد میں پاکستان بننے کے بعد وہ کچھ عرصہ لاہور کے اورینٹل کالج میں اور پھر کراچی یونیورسٹی میں شعبہ اردو کے استاد ہوئے، ترقی اردو بورڈ کراچی کے معتمد ہوئے اور ریٹائر ہونے کے بعد کراچی یونیورسٹی میں پروفیسر ایمریٹس ہوئے، مضامین کثرت سے لکھے اور متعدد کتابیں بھی لکھیں۔ معلوم ہوا کہ انہوں نے خود نوشت سوانح بھی لکھے تھے جو رسالہ تہذیب میں قسط وار چھپتے رہے ہیں لیکن غالباً ابھی کتابی شکل میں طبع نہیں ہوئے، ’’سرسید احمد خاں کی اسباب بغاوت ہند‘‘ کو بھی حواشی و تعلیقات کے ساتھ کراچی سے شائع کیا، ان کے حسب ذیل مضامین معارف میں بھی شائع ہوئے۔ میر کا فارسی کلام، میرحسن کی ایک نادر مثنوی رموز العارفین، محسن کاکوروی اور ان کی خصوصیات اور مناقب ذوالنورین المعروف بہ بہارستان سخن وغیرہ، متانت اور سلاست کے...
1. The Stylistics of Holy Qur'an is way beyond human potential and capabilities. Its diction, semantics and phraseology is unique which is not found in any of man's writings.
2. The range of its stylistics is such that it impresses all and sundry simultaneously. Thus our Holy Qur'an exceeds in rhetoric and stylistics.
3. The stylistics of Qur'an is such that it holds a universal appeal for all times to come despite of the drastic evolutionary change in human society over a time period. The Holy Qur'an has not lost its relevance and freshness uptil now and neither shall it do so till the Day of Resurrection.
4. The Holy Qur'an addresses people belonging to all strata of society from a layman to a universe don. Each person may interpret and appreciate the miraculous Ayah's of Qur'an according to their own caliber and understanding. It offers straight direct teachings to the commoners whereas a scholar may
unfold and marvel at its depth and delicate intricacies.
5. The miracles of the previous prophets were sensual in nature. They could be perceived through our senses. Yet the miracle of our Holy Prophet i.e. Holy Qur'an holds its dynamic appeal rationally and logically. It shall remain so till all times to come.
6. The salient features of the stylistics of Holy Qur'an are as follows: Its simultaneous brevity as well as comprehensive nature; its universal appeal to all and sundry; its precise summation yet in other places its elaborate detailing; its unique super human stylistics; its rhythm and variety phonetically and semantically; its recurrence and repeated mentions of incidents and topics; its
In the present work fine Zinc, Manganese and Cobalt ferrites particles were prepared using the co-precipitation technique. The synthetic technique involved the co-precipitation of iron (Fe3+) and metal (zinc, manganese and cobalt) ions from aqueous solutions using NaOH base to create fine MFe2O4 particles (where M stands for metal). This technique provides greater homogeneity of the particles. The microstructural studies were performed using x-ray diffraction technique. Samples of zinc ferrites were synthesized at different digestion temperature. The concentrations kept at 0.2M. Spontaneous magnetization of the samples was determined by using permanent magnet. The Spontaneous magnetization of the samples decreased with increase in the digestion temperature of zinc (Zn2+). The maximum magnetization was found for samples having digestion temperature of 55oC. Particle sizes for the magnetic samples were determined using Sherrer’s formula. The XRD patterns of all the samples showed very close resemblance with the ICDD card data. The particle size was found to depend on the digestion temperature . Particle size of the samples increased with increase in the digestion temperature from 55oC to 85oC while it decreased for the digestion temperature of 95oC. The surface morphology and magnetic properties were also performed using SEM and VSM. The magnetic properties of zinc ferrite samples resembled those of ideal soft ferrite with almost no hysteresis loss. Fine manganese ferrite (MnFe2O4) particles were prepared using the co-precipitation technique. Samples with concentrations of 0.1 and 0.2 were prepared. The particle sizes of prepared samples were determined by using Scherrer’s formula. The surface morphology and magnetic properties showed that the particles were of narrow size distribution and have good properties of soft ferrites. In order to synthesize Cobalt ferrite particles, chemicals of FeCl3.6H2O, CoCl2.6H2O and NaOH were used. The magnetization of substituted ferrite nano particles synthesized by co-precipitation depends mostly on parameters such as reaction temperature, pH of the suspension, initial molar concentration etc. Cobalt ferrite samples were prepared from the mixed Fe2+ and Co2+ solutions, which were made from their stock solutions and had a constant initial total iron ions concentration and amounts of Co2+ ions. The size and size distribution was controlled by controlling the nucleation and growth rates. Magnetic nanoparticles of cobalt ferrite have been synthesized by wet chemical method using stable ferric and cobalt salts. X-ray Diffraction (XRD) confirmed the formation of single-phase cobalt ferrite nanoparticles in the range 15–48nm depending on the annealing temperature and time. The cobalt ferrite was also subjected to microwave which resulted in soft to semi hard ferrite transition. The size of the particles increases with annealing temperature and time while the coercivity goes through a maximum, peaking at around 28 nm In order to find the effect of variation in the metal ion to hydroxide ion ratio on particle sizes, we synthesized Cobalt ferrite particles using chemicals of FeCl3.6H2O, CoCl2.6H2O and NaOH. The magnetization of substituted ferrite nano particles synthesized by co-precipitation depends mostly on parameters such as reaction temperature, pH of the suspension, initial molar concentration etc. To find the transition temperature, the behavior of the specimen and the formation of phase of the magnetic material, resistively measurements were made on the sample. We may conclude that the co-precipitation technique has resulted in very good soft ferrites of zinc, cobalt and manganese. The crystallite sizes were varied by varying the concentration ratios, changing digestion times, varying digestion temperatures and applying microwave digestion. The magnetic properties were found to be dependent on the particle size. The surface morphology showed that the defects were not observed in the samples.