Search or add a thesis

Advanced Search (Beta)
Home > Multipurpose quadcopter

Multipurpose quadcopter

Thesis Info

Author

Muhammad Numan

Supervisor

Jawad Ali Shah

Program

BS

Institute

International Islamic University

Institute Type

Public

City

Islamabad

Province

Islamabad

Country

Pakistan

Thesis Completing Year

2012

Thesis Completion Status

Completed

Page

50

Subject

Software Engineering

Language

English

Other

BS 629.1 MUM

Added

2021-02-17 19:49:13

Modified

2023-01-06 19:20:37

ARI ID

1676722015780

Similar


Loading...
Loading...

Similar Books

Loading...

Similar Chapters

Loading...

Similar News

Loading...

Similar Articles

Loading...

Similar Article Headings

Loading...

ارشاد ڈیروی دی منقبت نگاری

ارشاد ڈیروی دی منقبت نگاری

شاعری وچ حمد، نعت ، منقبت تے مدح تعریف و توصیف لئی ورتے جاندے نیں تے لغوی  اعبار نال ہم معنے نیں ، پر اصطلاحی معنی وکھو وکھ نیں تے ایہناں دی ورتوں ممدوح دے اعتبار پاروں ہوندی اے، جویں جے ممدوح ربی ذات ہووے تاں حمد اے ، جے رسول اللہﷺ دی ذات ہووے تے نعت، جے کر صحاباکرامؓ   ، اہل بیعتؑ تے بزرگانِ دین نیں تے ایہناں لئی منقبت دا شبدورتیا جاوے گا، تے جے کر ہور کوئی مشہور شخصیت ہووے تے اوس لئی مدح شبددی ورتوں کیتی جاوے گئی، ڈاکٹر رفیع الدین اشفاق لکھدے نیں!

’’اصطلاح میں اگر آنحضرتﷺ کے سوا کسی دوسرے بزرگ یا صحابی یا امام کی تعریف کی جائے تو اسے منقبت کہیں گئے‘‘۔

اعجازاللغات جدید ، دے ص ا۶۸۵ اُتے لکھیا اے!

’’مناقب(م، ن، قب) مذکر، منقبت کی جمع اہل بیعت یا صحابہ کی مدح ، تعریف خوانی، منقبت ، تعریف وتوصیف ، صفت وثناء ، اصلاح میں وہ تعریف جو اہل بیعت یا صحابہؓ کی شان میں ہو‘‘

وارث سرہندی اپنی لغت اندر لکھدے نیں!

’’منقبت:(۱)کوئی چیز جس پر انسان فخر کرے یا جو اسے ممتاز بنائے ۔‘‘

(۲)تعریف، توصیف ، ثناء خصوصاً اہلِ بیعت اور صحابہ کی ۔

منقبت، صفت ، تعریف نظم وچ ۔

وکھو کھ زباناں وچ منقبت ،لئی ایہہ شبدور تے جاندے نیں!

’’پشتو، پنجابی تے کشمیری وچ ’’صفت‘‘، سندھی ’’منقبت‘‘ ، بلوچی وچ ’’سپت‘‘۔

منقبت دا سرنانواں صرف اوہ وڈیاں دینی ہستیاں ای بن سکدیاں نیں ، جہناں وچ ایہہ دو خوبیاں موجود ہوون!

۱۔ اوہ قوم دی  پیشوائی دا فرض ادا کرسکدے...

دار العلوم دیو بند کی تعلیمی و عصری خدمات کا تنقیدی مطالعہ

Purpose of the study was to reflect great contributions of Dar ul Uloom Deouband. After the end of Independence War 1857, three factors endangered the Muslims of India religiously and educationally. Firstly, the Christian missionaries who thought that after the political downfall Muslims would convert themselves to Christianity. Secondly, the missionaries were proclaiming blasphemy about Islam and the Holy Prophet Muhammad Sallalaho Alaha Wasalam. In this regard, William Mure wrote a notorious blasphemous book about which Sir Syed said, “Alas! We like to die.” Thirdly, in these circumstances the doubts of Muslims were increasing that Muslim may not be converted to Christianity but it may create hatred from Islamic ideology.  Just to cope up with these dangers, various educational movements came into being; one of them is Deouband Movement. As a result of the efforts by Dar ul Uloom Deouband, Muslims were able to save their Din and eman.

Nitrogen Doped Carbon Materials Ndcms from Organic Ionic Salts and Biopolymer Resources for Supercapcitor Application

Nitrogen doped carbon materials (NDCMs) have been successfully synthesized, characterized and investigated as an electrode material for supercapacitor application. The synthesized NDCMs exhibited remarkable capacitor performance in terms of specific capacitances, rate capability, % capacitance retention and long cycle stability in a variety of aqueous electrolytes. Firstly, organic ionic dyes namely; eriochrome black-T (EBT) and murexide (MDE) were employed as N-rich precursors for the synthesis of NDCMs via a facile high temperature carbonization route. The effect of different experimental parameters such as heating profile, annealing temperature, post chemical activation and inert atmosphere was investigated in detail on NDCMs derived from EBT. Later, waste biopolymer; chicken feathers (CFs) were used as a low cost versatile N-rich precursor for the synthesis of NDCMs. Prior to carbonization, the thermogravimetric analysis (TGA) of all precursors was performed to evaluate the yield of carbon residue. The synthesized NDCMs were characterized by Raman analysis (RA), X-ray diffraction (XRD), surface area and porosity analysis (BET and BJH), scanning electron microscopy (SEM), transmission electron microscopy (TEM) and energy dispersive X-ray spectroscopy (EDS). Afterwards, supercapacitor performance evaluation, electroanalytical techniques viz. cyclic voltammetry (CV), galvanostatic charge-discharge (GCD) and electrochemical impedance spectroscopy (EIS) were performed. After detailed physicochemical investigation of NDCMs, it was established that these NDCMs have achieved good graphitization, amorphous/crystalline phases coexistence, homogeneous distribution of nitrogen and oxygen, three different types of nitrogen configurations (pyridinic N- 6, pyrrolic N-5 and quaternary N-Q), porous sheet like morphology, and moderate surface area with hierarchical porosity (micro, meso and macroporosity). The electrochemical investigations in acidic (1.0 M H2SO4), alkaline (6.0 M KOH) and neutral (0.5 M Na2SO4) electrolytes revealed that acidic electrolyte 1.0 M H2SO4 was the most promising electrolyte for supercapacitor application because of its small ion-size and high mobility which provide pseudocapacitive contribution. Whereas, among different alkali metal sulfate solutions (Li2SO4, Na2SO4, K2SO4) studied as an electrolyte for supercapacitor study of synthesized NDCMs, Li2SO4 proved to be a good choice. In addition, among the four different concentrations of Li2SO4 (0.5 M, 1.0 M, 1.5 M and 2.5 M), the optimized concentration for supercapacitor study of NCM(CF)-700A electrode material was found to be 1.5 M Li2SO4 due to its neutral character and large hydrated Li ion size associated with low mobility. Moreover, the operational voltage window for NCM(CF)-700A material was successfully extended up to 2.0 V in 1.5 M Li2SO4 solution.