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Performance of Eucalyptus Camaldulensis on Salt Affected Soil at Farmers Field

Thesis Info

Access Option

External Link

Author

Iqbal, Mohammad Saeed

Program

PhD

Institute

University of Agriculture

City

Faisalabad

Province

Punjab

Country

Pakistan

Thesis Completing Year

2008

Thesis Completion Status

Completed

Subject

Applied Sciences

Language

English

Link

http://prr.hec.gov.pk/jspui/bitstream/123456789/5663/1/2395.pdf

Added

2021-02-17 19:49:13

Modified

2023-01-06 19:20:37

ARI ID

1676726856930

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تنقید کی ضرورت و اہمیت

موضوع5:تنقیدکی ضرورت و اہمیت
تنقید:
تنقید عربی زبان کا لفظ ہے۔جس کے معنی جانچنا، پرکھنا ، کھرے اور کھوٹے کو الگ کرنا ہیں۔
تنقیدکی ضرورت و اہمیت:
تنقید کا سلسلہ تخلیق آدم سے شروع ہوا۔ جب اللہ تعالی نے حضرت آدم ؑکو پید اکیا تو فرشتوں نے اللہ سے گزارش کہ کہ یہ انسان دنیا میں جاکر فساد اور لڑائی جھگڑے کرے گا۔ اس کی تخلیق کی ضرورت کیوں پیش آئی؟عبادت کے لیے تو ہم کافی ہیں۔ اس کی تخلیق پر نظر ثانی کی جائے۔اللہ نے فرشتوں کوغرض تخلیق آدم? سے آگاہ کیا۔سب سے پہلے آدم? پر تنقید کی گئی یعنی تخلیق پر تنقید ہوئی۔اس سے یہ بھی واضع ہوا کہ تنقید کے لیے تخلیق کا ہونا ضروری ہے۔
تنقید تخلیقی ذہن کو جلا بخشتی ہے جس کی وجہ سے صحت مند تخلیق وجود میں آتی ہے۔تنقید تخلیق کے فن کے لیے سازگار ماحول مہیا کرتی ہے۔مثلا ایک شاعر نظم میں بے ہودہ الفاظ استعمال کرتا ہے تونقاد اس کو دھوڈالتا ہے۔اس لیے آئندہ لکھنے والے اس تنقید کو مدنظر رکھیں گے تنقید کا دوسرا کام فن پاروں کی تشریح و توضیع کرنا ہے مثلا نقادکیا کہنا چاہ رہا ہے۔تخلیق کار تخلیق کردیتا ہے اور نقاد کا کام یہ ہے کہ وہ وضاحت کرکے بتاتا ہے کہ کیا صحیح ہے اور کیا غلط ہے۔ایک انگریز مفکر "ڈیوڈ ڈیشن "کہتے ہیں:
" نقاد ادب کے بارے میں کئی قسم کے سوالات اٹھاتا ہے۔تاہم اگر وہ کوئی سوال نہ بھی اٹھائے تووہ فن پارے کے مختلف طریقوں سے شرح کرکے وضاحت کرکے قاری کے حسن فن میں اضافہ کرتا ہے۔نقاد ادب کے بارے میں کئی سوالات اٹھا تا ہے۔"
تنقید کی ضرورت:
• تنقید سے کسی فن پارے کے محاسن و معائب سامنے آئیں گے یعنی خوبیاں اور خامیاں وغیرہ۔
• شاعروں اور ادیبوں کو دوبارہ زندہ کرنے کے...

قرآن پاک کی روشنی میں اسلاموفوبیا کی سدباب کے لئے حکمت عملی

In Western, countries there is a great fear of Islam and Muslims leading to a great hatred which in turn makes them think that Islam is a religion of violence that it allows the massive killing of people. After the incident of 9/11, Islamophobia has taken another turn. In this regard, it is the utmost duty of every Muslim to find the solution to this problem collectively as well as individually. It is therefore necessary, to think of a solution which favors the teachings of Islam without harming the humanity. It is a pressing need of the day that the true picture of Islam be brought forth through practice upon Shariah. We as muslims should play our role in changing the perception of our religion as the religion of ‘peace’ and preserver of humanity.

Genome Wide Mapping of Chromatin States Based on Histone Combinatorics for Determination of Epigenetic Expression

Histone proteins wrap DNA around in small globular entities commonly known as nucleosomes. The post translational modifications to the histone tails are referred as histone modifications (HMs). The regulation of DNA in order to access the transcription machinery is epigenetically programmed by specific DNA and chromatin covalent modifications. HMs could either be present or absent at particular genomic loci and the combinatorial patterns of the specific modifications being addressed as ‘histone codes’, are believed to co-regulate significant biological processes. Regions defined by combinatorial patterns of marks can be referred to as chromatin states. Chromatin states associated with genomic locations correlate with specific functional elements as enhancers, transcription start sites, which can be exclusively inferred from successive combinations of chromatin marks in their contiguous locations. Biologically significant combinatorics of epigenetic modifications and their subsequent functional interplay are still mostly unrevealed. We aimed to use ChIP-Seq data of Histone modifications at different genomic loci to highlight the unbiased genomic grouping and to decode the complex biological network of HMs in association with other chromatin players in defining various chromatin states. We used different tools and techniques to accomplish our task. Complex biological networks underlying the hidden chromatin states were revealed via merging machine learning and graph theory existing approaches. Histone modification efficient and simple combinatorics was studied at a global and local scale by developing and implementing a clustering and biclustering tool. Results have been compared with the existing approaches. Meanwhile a simple and efficient computational methodology for efficient chromatin states identification for ChromHMM (HMM based chromatin segmentation) has also been developed by utilizing Hidden Markov Models components. As a result of above study we revealed the role of various factors in maintaining the chromatin state connectivity via focusing chromatin state networks. Our studies highlighted the minimum dominating nodes set and various hubs in chromatin state networks focusing their interaction patterns. Along with we developed and tested a clustering tool ChromClust and a biclustering tool ChromBiSim to highlight histone combinatorics in binarized signal data in an efficient and interactive way. ChromClust operates at global level while ChromBiSim mines local patterns of histone modifications associations. We conclude that epigenomic landscape is portrayed as interplay of various factors including histone combinations, transcription factors, chromatin modifiers and most importantly the underlying DNA motifs. Each chromatin state has a specific set of these factors which interact with each other to mark that state hence creating the whole chromatin states network.