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Home > Effects of Soil and Foliar Application of Different Concentrations of Npk and Foliar Application of Nh42 So4 on Different Growth Parameters in Wheat, Triticum Aestivum L.

Effects of Soil and Foliar Application of Different Concentrations of Npk and Foliar Application of Nh42 So4 on Different Growth Parameters in Wheat, Triticum Aestivum L.

Thesis Info

Author

Zafar Jamal

Department

Deptt. of Biological Sciences, QAU.

Program

Mphil

Institute

Quaid-i-Azam University

Institute Type

Public

City

Islamabad

Province

Islamabad

Country

Pakistan

Thesis Completing Year

2001

Thesis Completion Status

Completed

Page

115

Subject

Biological Sciences

Language

English

Other

Call No: DISS/M.Phil BIO/1055

Added

2021-02-17 19:49:13

Modified

2023-02-19 12:33:56

ARI ID

1676719335402

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توانائی کے مسائل

توانائی کے مسائل
نحمدہ ونصلی علی رسولہ الکریم امّا بعد فاعوذ بااللہ من الشیطن الرجیم
بسم اللہ الرحمن الرحیم
معزز اسا تذہ کرام اور میرے ہم مکتب شاہینو!
آج مجھے جس موضوع پر لب کشائی کرنی ہے وہ ہے:’’توانائی کے مسائل ‘‘
چمن میں قحط گُل ہے اور وطن میں لوڈ شیڈنگ ہے
نہ یہ بلبل کا موسم ہے نہ پروانے کا موسم ہے
صدرِذی وقار!
توانائی سے مراد طاقت ہے، اور پوری عالمی تاریخ اس بات کی گواہ ہے کہ کوئی قوم اس وقت تک ترقی کی منازل طے نہیں کرسکتی جب تک وہ اپنے جسم و جاں میں قوت پیدا نہ کرے، کیونکہ حرکت میں برکت ہے اور حرکت کے لیے توانائی کی ضرورت ہے اور کوئی ادنیٰ سے ادنیٰ کام بھی اس وقت تک پایۂ تکمیل کونہیںپہنچ سکتا جب تک اس کے لئے مناسب طاقت اور قوت فراہم نہ کی جائے۔
جنابِ صدر!
توانائی کا مسئلہ ایک بڑا اہم مسئلہ ہے۔ ہمارا ملک دیگر ممالک کی نسبت پسماندہ اور ترقی پذیر کیوں ہے، وہ صرف اور صرف توانائی کے گھمبیر مسئلہ کی بدولت ہی ایسا ہے۔ مختلف برآمدات سے حاصل ہونے والی آمدنی اس کو ترقی یافتہ ممالک کی صف میں کھڑا کرنے کے لیے ناکافی ہے۔
معزز سامعین!
کھیتوں کو کشتِ زعفران بنانے کے لیے ،فضا میں پرواز کرنے کے لئے، اپنے گلی کوچوں کوقمقموں سے روشن کرنے کے لئے ، اجناس کی کامیاب برآمد کے لیے ،فصلوں کو زیادہ اگانے کے لیے، اپنی برآمدات میں اضافہ کیلئے، انسان کا معیارِ زندگی بہتر بنانے کے لیے توانائی کی اشد ضرورت ہے۔
صدرِذی وقار!
اگر ہم کوشش کریں تو توانائی کے مسائل پر قابو پا سکتے ہیں، ہم پن بجلی کا استعمال شروع کر دیں تو ہمارے کئی مسائل حل ہو جائیں گے۔ اور ہمیں سستے داموں بجلی مہیا ہوجائے...

غریب الحدیث کی مشہور کتابوں کے مناہج تألیف کا تحقیقی جائزہ

Methodical codification of “Gharib ul Hadith” books started during second century. Abu Ubaida Mua‘mmar bin Muthanna, an Iraqi scholar, pioneered the field. Afterwards numerous scholars have written books on “Gharib ul Hadith” but they followed different methodologies for their compositions. Some of them have written Hadith's disorderly, and then explained all Gharib words appearing in the Hadith. This method appears in most part of their writings. Some of the scholars have observed jurisprudential method for their creations. Others followed methodology of explaining Gharibwords by organizing Hadith's; first from Prophet Muhammad, then from sahabas (companions of Prophet Muhammad s.a.w), and finally from Taba’een (immediate followers). However, some sorted Hadith in alphabetical order. This research article presented a detailed analytical review of different methodologies adopted in famous “Gharib ul Hadith” Books.

Investigation of Plasma Parameters in Ne-N 2 Mixture Discharge With 13. 56 Mhz Rf Generator

Non- LTE Ne-N 2 (Local thermal equilibrium) mixture plasma is characterized to evaluate the electron temperature ( T e ) and Excitation temperature ( T exc ). The investigated plasma is of density range (10 9 to 10 10 cm -3 ), thus it belongs to corona balance. Optical emission spectroscopy (OES) is used to calculate the electron temperature and excitation temperature. Ne-I lines are employed to calculate the electron temperature and excitation temperature. The effective principal quantum numbers ‘ p k ’ of the selected Ne-I lines, are less than 7 for the above mentioned density range, which confirm that the corona balance is the most probable balance. Modified Boltzmann plot is employed to estimate the electron temperature, whereas simple Boltzmann plot is used to calculate the excitation temperature. Langmuir probe has also been used to measure the plasma parameters e.g., electron temperature ( T e ), electron number density ( n e ), plasma potential ( V p ) and electron energy distribution function (EEDF). Electron temperature ( T e ) measured from Ne-I lines, by employing modified Boltzmann plot technique, is also compared with Langmuir probe results. In both techniques the trend is same i.e., electron temperature increases with increase in Ne % and RF power in the mixture and it decreases with increase in filling pressure. It is also observed that electron temperature ( T e ) measured with Langmuir probe is slightly greater than electron temperature ( T e ) measured with modified Boltzmann plot method. Generally, excitation temperature ( T exc ) is greater than electron temperature ( T e ). This fact is also observed in the characterization of the Ne-N 2 mixture plasma. EEDFs in Ne-N 2 mixture plasma are measured as a function of Ne %, filling pressure and RF power. It is observed that the tails of the EEDF gain height and extend towards the higher energy with increase in Ne %, which confirms that population of high energy electrons increases with increase in Ne % in the mixture. Electron number density ( n e ) is also calculated and results show that ‘ n e ’ decreases with Ne %. Optical emission spectroscopy (OES) is used to investigate the effect of neon mixing on the vibrational temperature of second positive N 2 ( C 3 Π u , ν ′ → B 3 Π g , ν ′ ′ ) and first negative + ( ) N 2 B 2 ∑ u + , ν ′ → X 2 ∑ + g , ν ′ ′ system of nitrogen plasma generated by 13.56 MHz RF xvi+ generator. The relative changes in vibrational population of N 2 ( C 3 Π u ) and N 2 ( B 2 ∑ u + ) states with neon mixing are monitored by measuring the emission intensities of second positive and first negative system of nitrogen molecules. Vibrational temperature is calculated for the sequences ∆ν = 0, -1 and -2, that follows the Boltzmann distribution. It is found that electron temperature as well as vibrational temperature of second positive and first negative system can be raised significantly by mixing of neon in the nitrogen plasma. Vibrational temperature of second positive system is raised up to 0.67 eV at 90 % neon whereas for first negative system it is raised up to 0.78 eV at 0.5 mbar pressure and 250 watt RF power. It is also found that vibrational temperature increases with the gas pressure up to 0.5 mbar. The over population of the levels of N 2 ( C 3 Π u , ν ′ ) states with neon mixing are monitored by measuring the emission intensities of second positive system of nitrogen molecules. Since, over populations of levels of N 2 ( C 3 Π u , ν ′ ) e.g., 1 and 4, effect the calculus of vibrational temperature of N 2 ( C 3 Π u , ν ′ ) state, therefore, a linearization process is employed to such distributions allowing us to calculate the vibrational temperature of the N 2 ( C 3 Π u , ν ′ ) state. Vibration temperature ( T ν ) measured from different linear adjust gives different value of ‘ T ν ’, which in turns reflects the effect of over population of levels of N 2 ( C 3 Π u , ν ′ ) state.