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Home > سید عبداللہ کی نثر میں اسلامی اور پاکستانی عناصر: تحقیق اور تنقیدی مطالعہ؛ مقالہ برائے پی ایچ ڈی اردو

سید عبداللہ کی نثر میں اسلامی اور پاکستانی عناصر: تحقیق اور تنقیدی مطالعہ؛ مقالہ برائے پی ایچ ڈی اردو

Thesis Info

Author

عادل سعید قریشی

Supervisor

الطاف یوسفزئی

Program

PhD

Institute

Allama Iqbal Open University

Institute Type

Public

City

Islamabad

Province

Islamabad

Country

Pakistan

Thesis Completing Year

2020

Thesis Completion Status

Completed

Page

261ص۔

Language

Urdu

Other

Classification: 928.91439 ع ا س

Added

2022-07-09 15:11:20

Modified

2023-01-06 19:20:37

ARI ID

1676729851273

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تیسرا باب: عہد اسلامی سے عصر حاضر تک

مسلم دور حکومت کے یہودی

باب سوم کے اہم نکات

  1. عہد نبویؐ کے یہودی مسلم تعلقات۔
  2. عہد عمر میں یروشلم کی حالت۔
  3. عہد عباسی میں یہودیوں کی حالت۔
  4. یہودیت کا عہد زریں۔
  5. موحدون کا یہودیوں پر جبر۔
  6. فاطمی دور کے حالات۔
  7. عثمانی دور میں یہودیوں کی خوشحالی۔
  8. یورپی یہودیوں کی بے کسی۔
  9. سامی مخالفت اور نازی جرمنی۔
  10. قیام اسرائیل کے صیہونی اقدام۔
  11.  عرب اسرائیل کشیدگی۔
          عرب کے ریگستانوں میں جہاں کبھی ابراہیمؑ کے بڑے بیٹے اسماعیلؑ کی قوم جا بسی تھی وہیں 570 عیسوی میں محمد ﷺ کی پیدائش ہوئی۔ ان کے پیروکار انہیں آخری نبی مانتے ہیں اور ان کی لائی ہوئی کتاب، قرآن مجید کو الہامی سمجھتے ہیں۔ مسیحؑ کی طرح ان کی شخصیت بھی بہت اہمیت کی حامل ہے تاہم یہودیت کی اس مختصر تاریخ میں آپؐ سے متعلق انہیں واقعات کو فوقیت دی گئی ہے جو مجموعی طور پر یہودی قوم سے متعلق ہیں۔ یہودیت اور مسیحیت ہی کی طرح آپ ﷺ کے لائے ہوئے مذہب یعنی اسلام نے بھی ایک خدا کی عبادت پر زور دیتے ہوئے شرک سے منع کیا۔ چونکہ یہ مذہب خود کو ملت ابرہیمی سے جوڑتے ہوئے ابراہیمؑ کو مسلمان گردانتا ہے، چنانچہ اس کے لیے یہودی و مسیحی بھی محترم تھے۔ قرآن مجید نے ان کے لیے "اہلِ کتاب" کی اصطلاح تجویز کی۔ مسلمانوں کے تحت یہود کے ایک بڑے طبقے نے مختلف علاقوں میں مجموعی طور پر 638 عیسوی سے لے کر تقریباً 1922عیسوی تک کا عرصہ گزارا۔

عہد نبویؐ

          آپ ﷺ کی پیدائش مکہ میں ہوئی جہاں سے وہ اپنے ہم قوموں کے مظالم کی وجہ سے ہجرت کر کے یثرب آ بسے جو بعد میں...

Comparative Analysis of AC and DC Distribution System with Respect to Harmonic Distortion Considering Daily Load Profile

Electrical energy is the most efficient and the cleanest form of energy at the moment that is being transmitted and distributed amongst end-users. From its earlier days, the AC system was preferred as an economical solution for transmission and distribution. However, the development in the power electronics technology and the evolution of highly efficient power electronic converters have established the resurgence of DC power system. Furthermore, the trend is shifting towards DC loads as various energy efficient appliances, such as DC inverter air conditioners, operate on DC nowadays. This further advocates the shift towards the DC power system. This research works is an effort to perform the comparative analysis of AC Distribution System (ACDS) and DC Distribution System (DCDS), with regards to power quality and harmonic distortion in particular. The comparison is performed considering load profile and load variation on daily basis. Simulations are performed in MATLAB. It has been concluded at the end that ACDS is better than DCDS in terms of power quality as total harmonic distortion of the DCDS under the same loading and same load variation during the whole day was significantly higher than that of ACDS.

Isolation of Pesticides Degrading Bacterial Consortium and its Application for Industrial Wastewater Treatment

Wastewater from agrochemical industries is disposed off without any treatment into nearby water bodies; hence there is a dire need to improve remediation approaches for its removal from environment. It is hypothesized that bacterial strains present in wastewater, after acclimatization, could use Chlorpyrifos (CP) as a sole source of carbon and energy and convert it into less toxic substances, both in free as well as immobilized form. Current study aimed at isolation of bacterial consortium capable of efficient CP biodegradation in mineral salt media (MSM), simulated pesticide wastewater (SWW) and real industrial wastewater (WW) in free and immobilized form. In order to produce environmentally stable immobilization matrix for bacterial consortium, potential of calcium alginate matrix coupled with polysulfone was investigated. Biodegradation potential of bacterial consortium isolated from wastewater and agricultural soil, for CP in MSM, SWW and WW was investigated. Bacterial consortium was immobilized in Calcium Alginate Microspheres (CAMs) and coated with polysulfone to produce environmentally stable macrocapsules (MCs). Bacterial strains were identified using 16S rRNA nucleotide sequence analysis as Pseudomonas kilonensis SRK1 (KT013088), Serratia marcescens SRK2 (KT013089), Bacillus pumilus SRK4 (KT013091), Achromobacter xylosoxidans SRK5 (KT013092) and Klebsiella sp. T13 (KT013093). About 98% CP removal was observed at initial CP concentration of 400 mg/L in 48 h in MSM when free cells were used as consortium. In WW bacterial consortium achieved ~29% removal efficiency of initial CP concentration (545 mg/L). After pH adjustment and addition of glucose in WW >97% CP removal efficiency was achieved in WW. MCs have high thermal, pH and chemical stability than CAMs. Complete biodegradation of CP (100-600 mg/L) was achieved using MCs within 18 h much less than free cells. CAMs and MCs retain >96% residual activity in MSM upto 5 and 13 cycles respectively. In WW >90 residual activity was maintained upto 11batches by MCs. MCs have shown unaltered biomass retention and residual activity (95%) over 16 weeks of storage. GCMS analysis has shown 3, 5, 6-trichloro-2-pyridinol (TCP), 3, 5, 6-trichloro-2methoxypyridine (TMP) and diethyl-thiophosphate (DETP) as metabolites. MCs have shown considerable benefits over free cells i.e. tolerance for higher CP concentration, complete removal in short duration, reusability, stability, protecting bacterial cells against nontargeted compounds present in wastewater. Study advances potential for field application of immobilized bacteria for biotreatment of pesticide contaminated wastewater.