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Boundary Detection Using Wavelet Scale Correlation

Thesis Info

Author

Imran Touqir

Department

Electrical Engineering Deptt. , UET

Institute

University of Engineering and Technology

Institute Type

Public

Campus Location

UET Main Campus

City

Lahore

Province

Punjab

Country

Pakistan

Thesis Completing Year

2004?

Thesis Completion Status

Completed

Page

iv, 71 .; HB.; ill.; diagrs.;

Subject

Engineering

Language

English

Other

Existing Techniques on Edge Detection Edge Detection in Spatial and Frequency Domain Gradient Operator Frequency Domain Filters Effects of Noise on Edge Detection Prewitt Masks Uniform Noise; Call No: 621.3104 I 1 B

Added

2021-02-17 19:49:13

Modified

2023-01-06 19:20:37

ARI ID

1676712417781

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۔ شیخو شریف کا تاریخی پس منظر

شیخو شریف کا تاریخی پس منظر

شیخو شریف

                شیخو شریف اوکاڑہ سے فیصل آباد جانے والی سڑک پر بنگلہ گوگیرہ سے 8کلو میٹر شمال مشرق میں اوکاڑہ شہر سے تقریباً 30کلو میٹر کے فاصلہ پر واقع ہے۔ رینالہ خورد سے براستہ ستگھرہ بھی تقریباًاتنا ہی سفر بنتا ہے۔یہ علاقہ کبھی ضلع ساہیوال میں شامل تھا جو ادب کے لحاظ سے مردم خیز سر زمین شمار کی جاتی ہے۔ مجید امجد، منیر نیازی، جعفر شیرازی، گوہر ہوشیار پوری، ظفر اقبال اور حاجی بشیر احمد بشیرجیسے نامور شعرا کے اس شہر کی بنیاد اس وقت رکھی گئی جب 1864میں ریلوے لائن بچھ جانے کے بعد گوگیرہ سے ضلعی ہیڈ کوارٹر منتقل کرتے ہوئے گورنر پنجاب سر رابرٹ منٹگمری کے نام سے نیا ضلع بنانے کا اعلان کیا گیااور لاہور ملتان ریلوے لائن پر واقع ساہیوال کو منٹگمری کا نام دیا گیا۔1915تک مختلف انتظامی تبدیلیوں کے بعد یہ ضلع تحصیل پاکپتن، تحصیل اوکاڑہ، تحصیل دیپالپور اور تحصیل منٹگمری کی شکل میں آچکا تھا۔ قیام پاکستان کے بعد اس ضلع کے انتظامی ڈھانچے میں تو کوئی تبدیلی نہ ہوئی البتہ عوام کے پر زور اور دیرینہ مطالبہ پر 14نومبر 1966کو ضلع منٹگمری کا نام دوبارہ ساہیوال رکھ دیا گیا۔(۱) یکم جولائی 1982کو جب ضلع اوکاڑہ کا قیام عمل میں لایا گیا تو شیخوشریف کا علاقہ ضلع اوکاڑہ میں آگیا۔

شیخو شریف کے گر د تاریخی مقامات

ستگھرہ

                شیخو شریف سے جنوب مشرق میں 8کلومیٹر کے فاصلہ پر ستگھرہ کا تاریخی قصبہ واقع ہے۔ ستگھرہ کو بعض جگہ صد گھرہ بھی لکھا گیا ہے۔ ستگھرہ اور صد گھرہ میں فرق صرف ’’س‘‘ اور ’’ص‘‘ کا ہے۔

مولانا نور احمد فریدی، قصرِ ادب ملتان والے ایک سن رسیدہ عالم اور جہاں...

Mainstreaming LSENs in a Regular Classroom: A Scoping Review

This study aims to generate thorough and comprehensive review of the teacher’s perspective and hands-on experience in mainstreaming LSENs in a regular classroom, including teachers’ attitudes and perceptions, challenges encountered, and teaching approach in handling mainstreamed classrooms. A scoping review framework by Arksey and O’Malley’s (2005) systematically analyzed the data of the different articles conducted by various scholars. Through scrupulous and through selection of related studies, 10 articles were included in the review from 6 different countries across the globe. The articles included were conducted from 6 countries and various databases. The study highlighted that: 1) teachers have positive and negative attitudes towards mainstreaming, 2) teachers experienced various challenges in handling a mainstream classroom, and 3) learner-centered approach to learning is used in the classroom. Mainstreaming LSENs in a regular classroom has pros and cons among teachers, regular students, and the LSENs themselves. Hence, a daunting responsibility for the teachers. Nevertheless, it is imperative to support teachers by giving seminars and training, especially to those non-special education majors, to be fully equipped to handle mainstreamed classrooms.

Ablatives Based on Multiple Reinforced Elastomeric Composites for Aerospace Applications

Ablatives are materials used to protect the inner hardware of aerospace structures from the inimical temperature and shear environments. Fifty six diverse compositions have been used with numerous incorporations (MWCNTs, nanokaolinite, nanomontmorillonite, fine natural cork, phenolic resin, carbon fiber, Kevlar fiber, glass fiber, Spectra fiber, and ceramic fiber) and elastomeric matrices ( ethylene propylene monomer, styrene butadiene, silicon, and nitrile butadiene rubber) to fabricate polymer ablative composites for hyperthermal/hypersonic environment encountered during the space vehicle and ballistic missiles re-entry missions. The reinforcements have been impregnated into the elastomeric matrices using internal dispersion kneader and two-roller mixing mill. Three types of mold geometries have been used according to ASTM standards to fabricate the composites on the hot isostatic press to evaluate in-situ back-face temperature elevation, linear/radial ablation resistance, and mechanical properties. High temperature ( ≈ 3000 o C) oxy–acetylene torch coupled with the temperature data logging system was used to execute the ablation measurements of the ablative composites. Thermal stability and heat absorbing capability investigations have been carried out on the TG/DTA equipment. Mechanical properties have been executed using Universal Testing Machine (UTM) and rubber hardness tester. Scanning electron microscopy coupled with the energy dispersive spectroscopy was performed to demonstrate the reinforcement’s dispersion, interface quality, char morphology, char–reinforcement interaction, and compositional analysis of the composites. The ablation, thermal, and mechanical properties of the fabricated composites have been positively influenced with increasing the concentration of the nanoclays/synthetic fibers/nanotubes in the host rubber matrices. The least backface temperature evolution under 200s flame exposure, best linear/radial/mass ablation resistance, and the utmost improvement in tensile strength and elongation at break have been observed for 30 wt% nanokaolinite and 7 wt% chopped Kevlar fiber impregnated ablative composites. High thermal stability, heat quenching capability, low thermal conductivity, mechanical strength, and remarkable reinforcement–matrix adhesion are identified as the most viiprominent factors for enhanced ablation performance. The novelty of this research work is the fabrication of new ablative formulations with augmented ablation resistance (linear ablation rate of ~ 0.002mm/s) and back-face temperatures in the vicinity of 55 o C. This compares with the ablation rates of 0.01mm/s and back-face temperatures 130 o C for contemporary work using elastomeric composites under similar conditions. A host of ablators have been ranked in terms of linear and radial ablation rate, backface temperature, and mechanical strength following head-on impingement, or radial flow conditions of oxy- acetylene flame. The designer can choose the appropriate combination of ablators for the situation at hand using the ablation data provided in consolidated form towards the end of the thesis.