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Features of Homogenous-Heterogenous Reactions in Mhd Fluid Flow With Heat Generation/Absorption

Thesis Info

Author

Qurat-Ul-Ain

Supervisor

Muhammad Farooq

Program

Mphil

Institute

Riphah International University

Institute Type

Private

City

Islamabad

Country

Pakistan

Thesis Completing Year

2019

Thesis Completion Status

Completed

Page

44 . : ill. ; 30 cm. +CD

Subject

Mathematics

Language

English

Other

Submitted in fulfillment of the requirements for the degree of Master of Philosophy in Mathematics to the Faculty of Basic Sciences and Humanities.; Includes bibliographical references; Thesis (M.Phil.)--Riphah International University, 2019; English; Call No: 510 QUR

Added

2021-02-17 19:49:13

Modified

2023-02-19 12:33:56

ARI ID

1676711229006

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مرثیہ: حضرت بابا یونس صابری سرکار

مرثیہ حضرت شاہ محمد یونس صابری سرکار
( آستانہ عالیہ صابریہ ملتان شریف)

تیرا ہے احسان زمانے تھے بابا یونس لکھ ہزار
تیرا قرض ادا نہ ہو سکیا جہڑا ویکھیا سی تساں پہلی وار
اساں خوشیاں دے وچ بھل گئے
تہاڈے باجھوں سوہنیا رل گئے
تساں چھوڑا سانوں جل گئے
اسیں روندے پئے ہاں زار و نزار
در تیرے آکے قرار ملے
تیرے جیا نہ کدھرے پیار ملے
نہ ایہہ جیا کوئی وفادار ملے
گلی کوچہ ڈھونڈیا ہر بازار
کوئی ایڈا قاصد آیا جہدے اگے پیش نہ جاندی اے
مرن توں پہلے مرگئے انہا نوں موت کدے نہ آندی اے
کم ویکھ قضاء قدر دے بناں سجناں سنج ہو جاندی اے
سنجی پئی حویلی سانوں دسدا نہ سوہنا یار

تساں چھڑ کے سانوں ہے کتھے ڈیرا لایا
اساں روندے نیر وہاندے رہے
تہاڈے ہجر فراق اندر اسان رورو ہوش گنوایا
سوہنے مکھ نورانی والی سانوں جھلک دکھا ہک وار
تہاڈے باغ باغیچے تے پھل بوٹے پئے مہکدے ہر ہر جائیں
محفل خانیاں تھیں ذکر اذکار دیاں پیئاں ہون بلند صدائیں
جہڑی راہ وکھالی اسی ٹر دے اسے راہیں
پر تہاڈی جدوں یا دستاندی نین ہوجاندے اشکبار
قادری سائیںؔ یونس بابا جی ٹرگئے پر یاد انہاندی ریہہ گئی
چار چوفیرے پین بھلیکھے پر دل وچ صورت بہہ گئی
ایڈا دکھ وچھوڑے والا نال صبر دے جندڑی سہہ گئی
وچھڑے یار نہ بھلدے بھاویں گزرن سال ہزار

MIND OVER MATTER: THE REQUIRED PHYSICAL AND SOCIAL ACTIVITIES FOR COGNITIVE ALERTNESS AMONG PAKISTANI GERIATRIC POPULATION

Background and Objective: Aging is influenced by culture, individual experiences, and socio-demographic characteristics along with societal expectations. Cognitive functioning and activity level in geriatric population may alter their participation in daily life activities thus this study aims to explore the required physical and social activities for cognitive alertness among Pakistani Geriatric population. Methodology: An observation based study of 169 aging individuals who performed on MoCA for cognitive functioning and interviewed on IPAQ for duration of physical activity in everyday life. Results: It is an observational study, conducted among the geriatric population of different areas of Pakistan. A total number of 169 individuals participated out of which 59 % were males and 40 % were females with a majority of the population 74% falling between 65-75 years of age. It was found that 59% of the male and only 19% of the female had 22 score on MoCA for cognitive functioning and these individuals were practicing physical activities such as brisk walk for 3 days a week for more than 40 minutes and are involve at least once a week in social activities. Conclusion: The research finding concluded that physical activities and social gathering both has impact on cognitive function of geriatric population to participate actively in daily activities.

Electrospun Silicon Dioxide and Bismuth Silicate Nanofibers for Sensing and Photocatalysis Applications

Metal oxide nanofibers were fabricated using electrospinning technique. Electrical measurements were used as a diagnostic tool for gas sensing application. Photocatalytic activity of metal oxide nanofibers was measured for degradation of organic contaminants in water. The synthesized metal oxide nanofibers were of titanium dioxide (TiO2), silicon dioxide (SiO2), bismuth modified silicon dioxide (Bi-modified SiO2) and bismuth silicate (Bi4(SiO3)4). The diameters of fabricated nanofibers were ~150 – 200 nm and length is of several micrometers. AC impedance spectroscopy of TiO2 nanofibers was performed in the temperature range of 333 K – 513 K. Dielectric loss peak in loss tangent confirmed the presence of relaxing dipoles. The AC conductance as a function of frequency obeys the Jonscher’s power law. The effect of metal (Ti, Ni, and Au) electrodes on humidity sensing properties of TiO2 nanofibers was investigated from 40% – 90% relative humidity (RH) at room temperature. TiO2 nanofibers RH sensor with Ti-electrode had higher sensitivity of 7.53 MΩ/∆%RH, fast response and recovery time of 3 s and 5 s, respectively, as compared to other electrode sensors. SiO2 nanofibers RH sensor was also investigated and it had sensitivity of 9.40 MΩ/∆%RH, quick response and recovery time of 5 s and 3 s, respectively. All sensors were stable, having good reproducibility and low hysteresis values. Oxygen sensing properties of SiO2, Bi-modified SiO2 and Bi4(SiO3)4 nanofibers were investigated by changing the oxygen concentration inside the chamber using different gas flow rates. The performance of the sensors was evaluated from 298 K – 400 K in oxygen rich environment. SiO2, Bi-modified SiO2 and Bi4(SiO3)4 nanofibers oxygen sensors had response time of 58 s, 51 s and 49 s, respectively (error < 5 %). The photodegradation of cationic (methylene blue (MB) and Safranin O (SO)) and anionic (methyl orange (MO)) dyes were performed using photocatalyst i.e. SiO2, Bi-modified SiO2 and Bi4(SiO3)4 nanofibers. The photodegradation rate of SiO2 photocatalyst increased from 0.008 min-1 - 0.085 min-1 (MO), 0.071 min-1 – 0.312 min-1 (SO) and 0.081 min-1 – 0.231 min-1 (MB) with increasing Bi contents from 1 % to 10 %. In case of Bi4(SiO3)4 nanofibers photocatalyst the photodegradation rate was 0.273 min-1, 0.409 min-1 and 0.406 min-1 for MO, SO and MB respectively.