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Fixed Point Theroems in Operator-Valued Metric Spaces

Thesis Info

Access Option

External Link

Author

Batul, Ms. Samina

Program

PhD

Institute

Capital University of Science & Technology

City

Islamabad

Province

Islamabad.

Country

Pakistan

Thesis Completing Year

2016

Thesis Completion Status

Completed

Subject

Mathemaics

Language

English

Link

http://prr.hec.gov.pk/jspui/bitstream/123456789/13168/1/Samina_Batul_Mathematics_2016_HSR_CUST_18.01.2017.pdf

Added

2021-02-17 19:49:13

Modified

2024-03-24 20:25:49

ARI ID

1676726213742

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Recently, Ma et al. have introduced the notions of a C∗-algebra valued metric space and C∗-algebra value contractive mappings. In this dissertation we generalize this new notion of C∗-valued contractive mappings by weakening their introduced contractive conditions in the setting of C∗-algebra valued metric spaces. Using the new notion of C∗-valued contractive type mappings, we establish some fixed point theorems for such mappings. Our result generalizes the result by Ma et al. and those contained therein except for the uniqueness. We provide an existence result for an integral equation as an application of C∗-valued contractive type mappings on complete C∗-valued metric spaces. Moreover, in the setting of C∗- algebra valued b-metric spaces, we generalize the Banach contraction principle and establish a fixed point result for a C∗-algebra valued complete b-metric spaces. Finally, for the multivalued mappings, the thesis also introduces the concept of a C∗-algebra valued metric defined on sets and then extends the result of Nadler in this setting.
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مار نہیں پیار

مارنہیں پیار
زندگی میں انسان کو کئی حوالوں سے زندگی کا احساس دِلانا ہوتا ہے اور ثابت کرتا ہے کہ وہ شاہراہ حیات پر رواں دواں ہے خواہ وہ راستے خار دار جھاڑیوں سے پر ہو یا اس پر از ہارواثمار سے لدے درخت کی ٹہنیاں سر جھکائے محوِ حمدوثناء ہوں۔ زندگی مسائل سے بھری ہوئی ہو یا اس کی رنگینیاں ، رعنائیاں اظہر من الشمس ہوں۔ انسان کو کسی نہ کسی صورت میں ان سے واسطہ رہتا ہے۔ انسان کبھی خوش وخرم ہوتا ہے اورکبھی ناراضگی کے باعث اس کی پیشانی پرشکن واضح ہوتی ہے۔
زندگی میں انسان سے کوئی اچھاعمل سرزد ہوتا ہے تو اسے انعام و کرام سے نوازا جا تا ہے اور اگر اس سے کوئی خطا سرزد ہوتی ہے تو اس کو اس کی سزا بھگتنا پڑتی ہے، اچھے کام کی انجام دہی پراچھے صلے کا سزاوار ٹھہرتا ہے اور سہواً یا عمداً کوئی غلطی ہو جائے تو وہ سزا کا مستحق ٹھہرتاہے۔ دین اسلام میں بھی جزاء وسزاء کا تصور موجود ہے، عابد اور صالح مسلمان کے لیے وعدہ ٔحورو قصورموجود ہے۔ خاطی اور گنہگار کے لیے وعید جہنم کا تصور موجود ہے۔ اگر یہ تصور ختم ہو جائے تو حصول راحت کے لیے کی جانے والی مساعی جمیلہ کی چمک ماند پڑ جائے گی اور سزا کی طرف مائل ہونے والی حرکتیں اور اعمال سیٔہ کی کثرت ہو جائے گی’ ’مار‘‘ کا تصور موجود ہے اور ’’ پیار ‘‘ کا تصور بدرجہ اتم موجود ہے۔
یہ ہماری عظمت ہوگی ’’مارنہیں پیار‘‘ کو اپنے معاملات میں جب داخل کریں گے، اور محبت و شفقت کا وتیرہ اپنائیں گے تو اس خصلت حمیدہ کی آفاقیت سے کسی طور بھی صرف نظر نہیں کر سکتے۔ یہ اسلوب ایک طالب علم کے لیے فرحت بخش ثابت ہوگا۔ اگر چہ مار کے تصور سے تاریخ...

متابعتِ رسولﷺ (تکمیلِ ایمان) کے سات درجے: مکتوبات امام ربانی مجدد الفِ ثانی کی روشنی میں

The digit seven has great importance in our life. Seven rounds of  Holy Kabah, seven heavens, seven layers of earth, seven levels of  hell, seven recitation of Holy Quran, seven interior and exterior (meanings) of holy Quran, seven stages of human life, etc. Hazrat Mujadid Alf Sani mentioned the seven degrees and their secrets of the obedience of the Holy Prophet: Say: "if you do love (obey) Allah, then follow me, Allah will (love) save you". Actually the perfect following of the Holy Prophet is the source of the completion of faith. As we adopt the following of the Holy Prophet, so and so our faith will reach to the perfection. In this article, the introduction of seven degrees of the following of the Holy Prophet and their secrets are described, in the light of 54th writing in book II. So books so that every Muslim after seeing his faith, could be able to complete the degrees of the perfection of faith and could get the nearness of God.

Boundary Element Methods for Incompressible Fluid Flow Problems

In this modern age of science and technology, the numerical methods such as Boundary Element Methods (BEMs) versus empirical methods have received great attention from researchers and have become more important for the numerical solutions of a number of physical problems in the fields of applied mathematics, physics and engineering. Boundary element method is a numerical technique in which the boundary of body under consideration is subdivided into a series of discrete elements over which the function can vary. The astonishing advances in this method have made it a versatile and powerful technique of computational methods. The method is providing a fertile research area and the field of its applications is continuously widening day by day. This method is superior to the domain type methods such as Finite Difference Method (FDM) and Finite Element Method (FEM), etc. due to its remarkable features. One of the most significant features is the much smaller size of the system of equations and considerable reduction in data, which is pre-requisite to run a computer program efficiently. Moreover, the method is ideally suited to the problems with infinite domains. Therefore, such method is computationally more efficient, accurate, time saving and economical. Boundary element methods can be usually formulated using two different approaches known as the ‘direct’ and ‘indirect’ methods. The direct method takes the form of a statement which provides the values of unknown variables at any field point in terms of the complete set of all the boundary data, whereas the indirect method uses the distribution of singularities over the body surface or the flow field and computes such distribution as the solution for an integral equation. Furthermore, this method is an active area of research in computational fluid dynamics (CFD) and it has been very useful in dealing with fluid flow problems. In this thesis, the author has used different formulations of BEM such as ‘direct’ and ‘indirect’ methods for calculating the solutions for incompressible fluid flow problems. These methods have been implemented on computer using FORTRAN 77. In chapter 0, the basic concepts necessary in the study of Fluid Mechanics are given. In chapter 1, statement of the problem, literature review and the method of solutions are given. The general equations for viscous fluid flow are presented in chapter 2. In chapter 3, equations for boundary element methods are derived. Chapter 4 deals with the discretisation of equation for boundary element method. In chapter 5, the indirect boundary element method has been used to calculate the flow field around two – and three – dimensional bodies. The direct and indirect boundary element methods have been applied to calculate viscous incompressible flow (Oseen flow) around a circular cylinder in chapter 6. Finally, in chapter 7 both the direct and indirect boundary element methods have been used to calculate three – dimensional highly viscous incompressible flow (Creeping flow) past a sphere. It has been observed that the computed results in all the above mentioned cases are in good agreement with the analytical results. At the end, the conclusion and extension for further work have been given.