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اس سے ملی ہے کچھ خوشی تو غم بھی لیجیے

اُس سے ملی ہے جو خوشی تو غم بھی لیجیے
اس زندگی کو سر پہ ذرا کم بھی لیجیے
اک زندگی ملی ہے سکوں سے گزاریے
دوڑے کیوں جا رہے ہیں ذرا دم بھی لیجیے

حضرت عائشہؓ کے اصول استنباط : ایک تحقیقی مطالعہ

This article dealt with the description of services of Hażrat ‘Āyeshah (R. A) in the field of principles of derivation of legal rules from the legal texts of the Holy Quran and prophetic traditions, which is the second part of the series, in first part Quran was focused in this regard while in this article other sources of Islamic law as Prophetic tradition etc. Have been discussed and their applications in the juristic approach of Hażrat ‘Āyeshah, likewise, Qiyās is a method that uses analogy/ comparison to derive Islamic legal rulings for new developments due to importance and the need of society. Umm Al-Momineen Hażrat ‘Āyeshah (R. A) used to derive a ruling for new situations that are not addressed by Qur’an and Sunnah. Istiḥsān is the fourth principle of derivation of Aḥkām. Likewise, other sources considered by her including Istiḥsān, Istisḥāb, ‘Urf as principle of derivation of Aḥkām. ‘Urf is an Arabic Islamic term referring to the custom or knowledge of a given society. Furthermore, the method adopted for research is deductive. The study found that Hażrat ‘Āyeshah applied the said sources in her process of derivation of legal rules of Islam, which were followed by Muslim jurists in this regard, So it is recommended that student of Islamic Law should study efforts of the companion of Prophet peace be upon him and their principles in the field.

Study of Watermarking for Image and Text Based Applications

Due to the rapid development of multimedia and communications technologies, issues related to data vulnerability and copyrights violation has increased. Digital content can be manipulated and reproduced effortlessly. Consequently, there is a considerable requirement for techniques aimed at content protection and authentication. Watermarking techniques can provide copyrights enforcement and authentication to prevent the illegitimate use of digital content. These techniques can be classified into two categories i.e. robust watermarking and reversible watermarking. In this thesis, research work is carried out in three phases. The first phase proposes a robust watermarking technique, which is resilient against the geometrical attacks. It is helpful in executing copyright protection. In robust watermarking, watermark is able to survive in case of attack on the digital content and can be successfully retrieved on extraction. The proposed technique exploits both the robust image feature points and local Zernike moments for embedding secret information. Delaunay tessellation is employed to divide an image into distinct triangular segments based on robust features identified using Harris detector. Zernike moments are calculated for each selected triangular segment, and then the watermark is embedded in the magnitude of Zernike moments using dither modulation. In the second phase, a reversible watermarking technique is proposed. Reversible watermarking is a special type of watermarking technique in which watermark is extracted along with restoration of the host media. Whereas, in case of robust watermarking, we are not able to retrieve the original image. Such watermarking system finds its application in medical and law enforcement, etc. The proposed watermarking scheme is based on pixel value ordering. Image is divided into sub blocks and each block is assessed using a threshold value. If the block belongs to the smooth category, watermark bit is embedded. In contrast, if it is classified as rough block, then the sub block is left unchanged. This technique does not require a location map since it uses histogram shifting. In third phase, the watermarking approaches and their applications for the protection DNA sequences are explored. In DNA watermarking, which is type of text watermarking; watermark information should be embedded in DNA sequence in such a way that it should not raise any functional disorders in the living organism. A watermark is embedded in a DNA sequence through synonymous substitution of nucleotides. The proposed approach ensures Amino Acid conservation, efficient utilization of the available embedding space in DNA sequences, and achieves mutation resistance by since it employs Reed-Solomon codes. The performance of these techniques has been evaluated on the standard test datasets. In some of the cases, the proposed watermarking approaches performed better than the recent existing approaches and showed comparable performance in other cases. The first technique finds its application in protecting the copyrights of the owner. The second watermarking technique can be used in applications where significant amount of data needs to be embedded e.g. information related to the patient in medical images. The third technique related to the DNA watermarking can be used for protection of DNA sequences and also to provide biological data storage as large amount of data can be stored.
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