دہر میں اسم محمد سے اُجالا کر د ے
نحمدہ ونصلی علی رسولہ الکریم امّا بعد فاعوذ بااللہ من الشیطن الرجیم
بسم اللہ الرحمن الرحیم
معزز اسا تذہ کرام اور میرے ہم مکتب شاہینو!
آج مجھے جس موضوع پر اظہار خیال کرنا ہے وہ ہے: ’’دہر میں اسمِ مُحمَّدؐ سے اُجالا کردے‘‘
کی محمد سے وفا تو نے تو ہم تیرے ہیں
یہ جہاں چیز ہے کیا لوح و قلم تیرے ہیں
صدرِ ذی وقار!
ہم مسلمان ہیں، ہم کلمہ گو ہیں ، ہم اللہ اور رسولؐ پر ایمان رکھتے ہیں، ہم زباں سے بھی کہتے ہیں اور دل سے بھی تصدیق کرتے ہیں کہ اللہ ایک ہے اور محمدرسول اللہؐ اس کے آخری رسول ہیں۔
جنابِ صدر!
اس کے باوجود ہم پستی کا شکار کیوں ہیں ، ہماری صفوں میں اتحاد کیوں نہیں ہے، ہم متحد کیوں نہیں ہیں، ہماری زندگی میں عروج کیوں نہیں ہے، ہماری حیات پستی کی طرف کیوں مائل ہے۔
جنابِ صدر!
اس کا سبب یہ ہے کہ ہمارا اعتقاد صرف زبان کی حد تک رہ گیا ہے، ہماری محبت صرف زبانی ہے، ہمارا انس صرف عارضی ہے، ہمارا پیارصرف جزوقتی ہے۔ ہم نام کے مسلمان ہیں ہمارا ظاہر اور باطن یکسانیت کا مظہر نہیں ہے۔
جنابِ صدر!
اگر ہم چاہتے ہیں کہ اقوام عالم میں ہمارا نام ہو، ہماری دنیوی و اُخروی زندگی بہتر ہو، ہم معاشرتی لحاظ سے پسماندگی کا شکار نہ ہوں تو محمد رسول اللہؐ سے اپنی محبت کے معیار کو بلند کرنا ہوگا، رسول اللہؐ کی سنتوں پر عمل کرنا ہو گا، اسی سے ہم پستی سے نکل کر بلندی پرپہنچ سکتے ہیں۔
قوت عشق سے ہر پست کو بالا کر دے
دہر میں اسمِ محمد سے اجالا کر دے
والسلام
Library research, namely the authors collect data related to the theory of financing or lending to economically weak entrepreneurs. Field research, namely field research activities, in which the author looks for data that is the object of research, to obtain data the author conducts local observations and direct interviews with the leadership. Observation techniques were carried out by conducting direct observations in the process of distributing credit to economically weak entrepreneurs. Based on the description above, so the authors chose the title "Analysis of Internal Control in Distribution of Farmers Business Credit"
This thesis presents the out comings of research work carried out to study some Schiff bases and their transition metal complexes from their prospect biological perspective. Six Schiff bases and their twenty four new complexes of Co+2, Ni+2, Cu+2 and Zn+ were synthesized, characterized and evaluated for antibacterial, antifungal, antioxidant, α-glucosidase inhibition and urease inhibition potentials. In order to characterize synthesized compounds, various physical and analytical methods were employed including CHN micro analysis, EI Mass spectroscopy, 1H-NMR spectroscopy, AAS, FTIR spectroscopy UVVis., scanning electron microscopy, conductivity measurements and magnetic susceptibility studies. It was determined that complexes of Cu+2 and Zn+2 had tetrahedral and distorted tetrahedral geometries respectively while complexes of Co+2 and Ni+2 acquired octahedral geometries. The complexes were found better antimicrobial agents than their parent Schiff base ligands. The antimicrobial activity of complexes was observed to be dose dependent, as the test concentration was increased the activity was also increased. Similar pattern was found for antifungal activity as well. The mechanism of antimicrobial action of complexes was suggested as the reduced polar metal center increases the lipophilic characteristic which is favorable for antimicrobial inhibition potential. Schiff base ligands were found more potent antioxidant agents than the complexes. The complexes showed less or no antioxidant potential and it was associated with deprotonation of hydroxyl group upon chelation. In the case of α-glucosidase inhibition potency, the metal complexes were noticeably more potent than the corresponding ligands. The ligand SBLC and their complexes were found most potent. The inhibition strength of the ligand SBLC was found to be 51%, best among all ligands while for the complexes of SBLC, the inhibition potential were between 51% and 64%. For urease inhibition, the ligands were found almost inactive against the enzyme. Complexes of all ligands showed however excellent inhibition strength. Complexes of copper for all ligands were particularly better inhibitors among all. The [Cu(SBLN)(OAc)] was found to be the best urease inhibitor with 88% inhibition against the enzyme and was much better than standard. On the bases of results obtained and literature reports, some suggestions are also proposed to produce new potential antibiotic drugs in current global scenario of the "post-antibiotic era".