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Punjab Assembly Resolution to Condemn Media [Ma Programme] [+Cd]

Thesis Info

Author

Saira Shahzad; Adnan Yousaf

Supervisor

Mujahid Mansoori; Tayyab Bhatti

Department

University of Management and Technology

Program

MA

Institute

University of Management and Technology

Institute Type

Private

City

Lahore

Province

Punjab

Country

Pakistan

Thesis Completing Year

2011

Thesis Completion Status

Completed

Page

175 . CD

Language

English

Other

Report presented in partial requirement for MA degree Advisor: Mujahid Mansoori and Tayyab Bhatti; EN; Call No: TP 070.954914 SAI-P

Added

2021-02-17 19:49:13

Modified

2023-01-06 19:20:37

ARI ID

1676713122654

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۴۔ زہر رگوں میں اتارنا پڑتا ہے

زہر رگوں میںاتارنا پڑتا ہے

تپتے سورج کی کرنوں کے نوکیلے پتھر

فگار دن کے برہنہ سر پر برس رہے تھے

ریل کی پٹری کو کاٹتی ہوئی کہنہ سڑک پر

انبوہِ آدم رواں دواں

قریب ہی پُل کے نیچے بیٹھے دھوئیں میں پریشاں حال

اپنے وجود کو تلاشتے چند انسان

موت کی آغوش میں پلتے ہوئے

دشت نما چہروں پر بے خوابی کی جھریاں

بد قسمتی کی دھول میں اٹے ہوئے بال

بوسیدہ پیراہن سے جھانکتا استخواں

آنکھوں میں خمارِ آشفتگی

جس میں ٹھکرائے جانے کا غمِ جاوداں پنہاں

 اس ہجومِ آشفتگاں سے ایک ژولیدہ مو

اپنی رگوں میں زہر اتارنے لگتا ہے

 زندگی بے اختیار چیخنے لگتی ہے

اے دشمنِ جاں یہ کیا۔۔۔؟

آشفتہ نوا گویا ہوا

سن اے زندگی!

’’خدا نے فقط تجھے عطا کر کے

بدلے میں مجھ سے کیا کچھ نہیں چھینا

اُس کے بے اماں جہان میں

رشتے بکتے ہیں

جذبات کا بیوپار ہوتا ہے

محبت بھیک مانگتی، تلوے چاٹتی ہے

جھوٹ مسکراتا ہے

سچ دریوزہ گر ہے

ہر کوئی نفرت کا خریدار ہے

اپنے بیگانے ہیں

یہ سب دیکھنے اور سہنے کے لیے

زہر رگوں میں اتارنا پڑتا ہے‘‘

امت مسلمہ کى عالمگیریت قرآنى تعلیمات کى روشنى میں

The spirit of Islam binds Muslims into an Ummah. This bonding of a unique feature of any Muslim Society. As Muslims, we should defy splits or differences within our societies to avoid factions or divisions. There must prevail tolerance peaceful co-existence to promote the universal brotherhood amongst Muslims. Only then, the Muslims may rise to supremacy and lead the nations of the world.

Fabrication of Ceramic Oxide Thin Films for Photo- Electrochemical Applications

Some unique monometallic and homo-heterobimetallic complexes [Cu (dmae)2(H2O)]1,[Cu(dmae)(OAc)(H2O)]22,[Sn(dmae)(OAc)]23,[Cu4Y2(dmae)6(OAc )6(H2O)2] 4 and [Cu6Y2Cl0.7(dmae)6(OAc)7.3(OH)4(H2O)2].3H2O.0.3CH3C6H5 5 were successfully synthesized and analyzed for their stoichiometry and structure by physiochemical methods such as melting point, microanalysis, fourier transform infra red (FT-IR), proton nuclear magnetic resonance (1HNMR), thermogravimetric analysis (TGA/DTA) and X-ray single crystal diffraction analysis. The thermo gravimetric analysis ascertains that all the precursors undergo facile thermal decomposition at relatively low temperatures ranging from 400 to 600 oC to yield metal oxide residues. All the designed precursors except 2 were applied for the deposition of ceramic oxide composite thin films on plane and fluorine doped tinoxide (FTO) coated glass substrates by aerosol assisted chemical vapor deposition (AACVD). The precursor 1, 4 and 5 were found suitable for deposition of Cu2O and nanocomposites oxide Cu- YO2-0.5Cu2O and Y2CuO4–5CuO thin films respectively under inert ambient of argon gas. All the deposited thin films were characterized by field emission scanning electron microscopy (FESEM), energy dispersive X-ray (EDX) and powder X-ray diffraction (PXRD) for their surface morphology, elemental composition and phase crystallinity. XXIII The precursor 3 was applied for deposition of fullerene-like structured mesoporous SnO2 nanoball thin films on FTO and plane glass substrates by using an in-house built electro-spun aerosol spray pyrolysis (ESASP) technique. The field emission scanning electron microscopic (FESEM) and focused ion beam (FIB) images of the exterior and interior surfaces of the SnO2 nanoball thin films disclose the presence of fullerene-like structures having mesopores of the sizes ranging from 33.5 to 35.0 nm in exterior and 8.0 to 160 nm in interior surfaces respectively. All the fabricated films were found to be impurity and crack free, have good adhesion to the substrate and nanocrystalline in nature ensuring clear grain boundaries with average particle size ranges from 28 nm to 40 nm thus making them suitable for photo electrochemical (PEC) applications. The PEC measurements carried out by three-electrode electrochemical set-up with Ag/AgCl as a reference electrode and a platinum mesh as a counter electrode show an increase of photocurrent observed under illumination of 150W halogen lamp as compared to dark at potentials of 0.6 V and 0.8 V respectively. The performance of the fabricated SnO2 nanoball thin films for application in super capacitors was evaluated by capacitance measurements and all the results provide exciting new opportunities towards mesoporous ceramic nanomaterials for application in energy sector