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حد کا اصطلاحی مفہوم

حد کا اصطلاحی مفہوم
ایسے امور جن کی حلت و حرمت اللہ تعالیٰ نے خود بیان فرما ئی ہے اور ان سے تجاوز کرنے سے منع فرما دیا ہے۔ یہ امور " حدود اللہ " کہلاتے ہیں۔ اہل علم نے حد کی اصطلاحی تعریفیں مندرجہ ذیل بیان کی ہیں:
ایسے کام جن کی حلت و حرمت اللہ تعالیٰ نے بیان فرمائی ہو، جیسا کہ ابن منظور افریقی تحریر کرتے ہیں
"وحُدُود الله تعالى الأَشياء التي بيَّن تحريمها وتحليلها وأَمر أَن لا يُتعدى شيء منها۔"8
"حدود اللہ سے مراد ایسی اشیاء ہیں کہ جن کی حلت و حرمت اللہ تعالیٰ نے بیان فرما دی ہے اور یہ حکم دیا ہے کہ ان سے آگے نہ بڑھا جائے۔ "
علامہ زبیدی ؒ (م:1205ھ)حدود کی اقسام اور اس کا مفہوم بیان کرتے ہیں
"فَحُدُودُ ا الله عزّ وجلّ ضَرْبَانِ : ضَرْبٌ منها حُدودٌ!حدَّها للنّاسِ في مَطَاعِمِهم ومَشارِبِهم ومَنَاكِحِهِم وغيرها ممّا أَحَلّ وحَرَّم،وأَمَرَ بالانتِهَاءِ عمّا نَهَى عنه منها ونَهَى عن تَعَدِّيهَا ، والضَّرْب الثانِي عُقوباتٌ جُعِلَتْ لمنْ ركِبَ ما نَهَى عنْه ، كحَدّ السّارِق۔"9
"حدود اللہ کی دو اقسام ہیں: ایک تو ایسی حدود جو لوگوں کے لیے ان کے ماکولات ، مشروبات اور مناکحات وغیرہ میں بسبب حلال اور حرام متعین کی گئی ہیں یہ ان اشیاء سے رکنے کا سبب ہیں جن سے تجاوز کرنے سے روکا گیا ہےاور دوسری قسم وہ سزائیں ہیں جو ممنوع کام کرنے والوں کو دی جاتی ہیں جیسا کہ چور کی حد ۔ "
امام سرخسی ؒ (م:483ھ)حد کی اصطلاحی تعریف کرتے ہوئے لکھتے ہیں
"في الشرع الحد اسم لعقوبة مقدرة تجب حقا لله تعالى ولهذا لا يسمى به التعزير لأنه غير مقدر ولا يسمي به القصاص لأنه حق العباد وهذا لأن وجوب حق العباد۔"10
"شریعت میں حد اس مقررہ سزا کا نام ہے جو بطور حق اللہ...

EFEKTIVITAS DAN EFISIENSI PEMBELAJARAN BERBASIS BLENDED LEARNING DI MADRASAH TSANAWIYAH NEGERI MODEL PALU

The learning process in the Palu State Islamic Education Madrasah has run as it should, although in terms of strategies, methods, and learning media used varies according to the conditions, both the material and the condition of the students, and the ability of the teacher itself is different from one another. Blended learning based learning at the Palu Model State Islamic Education Madrasah is considered effective and efficient because teachers are not preoccupied with making material designs, simply accessing the internet is needed including practice in the form of videos so that it will facilitate teachers, both in terms of time, effort and cost. The challenge of blended learning is that teachers are required to be more creative and able to use internet networks. While the opportunity is the Madrasah Tsanawiyah Negeri Model Palu already equipped with network facilities and infrastructure that can support blended learning.

Assessment of Anti-Proliferative and Anti-Inflammatory Potential of Thymoqunione Tq and Thymohydroquinone Thq Coupled With Poly Lactide-Co-Glycolide Nanoparticles

Current study was designed to extract phytochemical compounds, thymoquinone (TQ) and thymohydroquinone (THQ) from indigenous herbs i.e., Nigella sativa (seeds) and Thymus vulgaris (aerial parts). Extracted compounds were further subjected to evaluate their anti-proliferative and anti-inflammatory activities and loaded in novel biodegradable drug carrier system including pectin and poly lactide-co-glycolide (PLGA) to achieve a controlled drug release system. Drug carrier system was synthesized by extracting pectin from waste peels of citrus fruits (lemon, orange and grape fruit). To enhance the stability, FDA approved PLGA drug carrier was physically cross-linked with pectin hydrogel. This may potentially introduce an opportunity to utilize organic waste in pharmacology.Results showed that soxhlet extraction at ratio of n-hexane: methanol (1:4) has been the appropriate combination to extract maximum yield of TQ from N. sativa (56.13%) and T. vulgaris (22%). THQ extraction was not achievable due to its very less stability. HPLC quantification of essentials oil of N. sativa showed higher amount of TQ i.e., 368.55±0.12 mg/kg (Mean±SEM) and T. vulgaris had 197.58±0.7 mg/kg. The pectin was successfully extracted in maximum yield from waste peels of lemon as compared to other two samples i.e., 35.3±0.66 g (Mean±SEM). Characterization of pectin extracted from each samples showed orange pectin potentially more suitable for hydrogel formation. SEM analysis confirmed the nanoparticles of TQ efficaciously produced loaded in PLGA-PEG at average size of 280 nm. TQ has been proved to be potent anti-proliferative and anti-inflammatory agent by in-vivo antioxidant assays (DPPH and FRAP assay), MTT assay against HeLa cancer cell line and SRB assay against HCT116 colon cancer cell line. Inhibition concentration (IC50) of TQ against HeLa and HCT116 cancer cell lines showed less significant difference (p > 0.05) to the IC50 of control commercial anti-cancer drug (cisplatin). TQ and its nanoparticles loaded in pectin hydrogel showed delayed release of TQ thus enabling the controlled drug release from 24 to 72 hours. TQ thus obtained can be utilized against early treatments of variety of cancers as can be observed from IC50 obtained against HeLa and HCT116 cancer cell lines. Findings of the current study indicate the potential of local resources in effectiveness against cancer. Therefore, increased incidences of cancer can be reduced among impoverished areas.
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