Search or add a thesis

Advanced Search (Beta)
Home > صوفیا کے منہجِ تفسیر کا تحقیقی و تنقیدی مطالعہ

صوفیا کے منہجِ تفسیر کا تحقیقی و تنقیدی مطالعہ

Thesis Info

Author

اشتیاق احمد

Program

PhD

Institute

University of the Punjab

City

لاہور

Degree Starting Year

2018

Language

Urdu

Keywords

اصولِ تفسیر , شخصیات , تذکرہ صوفیائے کرام

Added

2023-02-16 17:15:59

Modified

2023-02-16 22:08:49

ARI ID

1676729920221

Similar


Loading...

Similar Thesis

Showing 1 to 20 of 100 entries
TitleAuthorSupervisorDegreeInstitute
PhD
University of the Punjab, لاہور
Mphil
Government College University Faisalabad, فیصل آباد
Mphil
The Islamia University of Bahawalpur, بہاولپور
Mphil
The Islamia University of Bahawalpur, بہاولپور
Mphil
University of Faisalabad, فیصل آباد
MA
Government College University Faisalabad, فیصل آباد
Mphil
University of Faisalabad, فیصل آباد
MA
Government College University Faisalabad, فیصل آباد
Mphil
The University of Lahore, لاہور
Mphil
GIFT University, گوجرانوالہ
MA
Government College University Faisalabad, فیصل آباد
MA
Government College University Faisalabad, فیصل آباد
MA
Government College University Faisalabad, فیصل آباد
Mphil
Government College University Faisalabad, فیصل آباد
Mphil
Bahauddin Zakariya University, ملتان
Mphil
Allama Iqbal Open University, اسلام آباد
Mphil
University of Gujrat, گجرات
Mphil
The University of Lahore, لاہور
PhD
Allama Iqbal Open University, اسلام آباد
PhD
Allama Iqbal Open University, اسلام آباد
TitleAuthorSupervisorDegreeInstitute
Showing 1 to 20 of 100 entries

Similar Books

Loading...

Similar Chapters

Loading...

Similar News

Loading...

Similar Articles

Loading...

Similar Article Headings

Loading...

کریے جدوں فقر دیاں گلاں

کریے جدوں فقر دیاں گلاں
ہوندیاں نیں اوس گھر دیاں گلاں
پیر فرید تے سچل باہو
بلھے گنج شکر دیاں دیاں گلاں
عشقے باہجوں نہیں جی سکدے
ایہو اہلِ نظر دیاں گلاں
جیہڑی صفت نبیؐ دی ہووے
اوہ نبیؐ دے گھر دیاں گلاں
مینوں یار چھڈاندا ہیں توں
چھڈ دے پالے ٹھر دیاں گلاں
گلاں ہاں نت کردے رہندے
کریے علم ہنر دیاں گلاں
ہر ہر دے وچ ہر ہر وسدا
ہر ہر کردا ہر دیاں گلاں

Islamic Economic Concept in Poverty Alleviation

This study aims to describe the concept of Islamic economics in poverty alleviation. This research method is descriptive qualitative research using data sources from literature or library research (library research). The research approach uses a normative approach and a historical approach. The normative approach is used to examine the ideals of the Islamic Economic conception and then analyze how it is applied. Meanwhile, the historical approach is used to study empirical facts about poverty alleviation. The results showed that the stagnant distribution will cause inequality and social inequality. For this reason, the implementation of the zakat obligation is a very urgent need. The priority of poverty alleviation according to the concept of Islamic economics is to overcome the causes of poverty, namely improving the distribution of wealth. Zakat is the main instrument which is a solution to these various problems, especially in dealing with poverty and social inequality. In Islam, the state must create programs and facilities that can overcome the problem of poverty, guarantee a decent life for the poor and provide the economic means needed to become a source of livelihood for the poor. Islamic economics can be explored more deeply for the development of economics and its benefits in alleviating poverty.

Development of Energy Management Techniques for Hybrid Electric Vehicle Hev : Three-Wheeler Rickshaw

Environmental challenges and reduction of global crude oil reserves gained the attention of researchers and automobile manufacturers for exploration of novel vehicle technologies. Hybrid Electric Vehicles (HEVs) established a thought for minimizing the fuel consumption and greenhouse gases (GHG) emissions. Transportation sector consumes about 66% of total oil consumption in the world and 50% of that is utilized by small passenger cars and trucks. The main challenge for the designing of Hybrid Electric Vehicles is the coordination of onboard energy sources and optimal power flow control for both the electrical and the mechanical paths. This requires the utilization of an appropriate control strategy or energy management strategy. Energy management technique is employed, ensuring optimal power sharing between two energy sources (engine and motor) while keeping the battery state of charge in the charge-sustaining mode. On the basis of research, conducted by the industry and the academia, different energy management strategies have been proposed. These strategies can be categorized into non-implementable and implementable energy management strategies, relying on the data required for real time implementation. Normally, the non-implementable strategies formulate the energy management problem as an optimal control problem of minimizing a performance index over a finite time interval under components operational constraints. These strategies are considered as bench mark strategies providing global optimal solution. The implementable strategies have been developed for implementation in real vehicles and provide near optimal solution. The main emphasis of this research is to develop the energy management strategy of HEV (Three Wheeler Auto Rickshaw), as the energy management strategy has a key role in fuel economy and reduction of emissions. By introducing the Dynamic Programming for the evaluation of fuel economy for a particular vehicle provides a bench-mark fuel economy for other energy management strategies. The main contribution of the dissertation is to evaluate the bench-mark fuel economy for parallel hybrid electric rickshaw through dynamic programming. DP is used as a feasible technique for powertrain benchmark analysis. A parallel hybrid electric three-wheeler vehicle is modeled in Matlab/Simulink through forward facing simulator. The DP technique is employed through the backward facing simulator, x ensuring optimal power-sharing between two energy sources (engine and motor) while keeping the battery state of charge in the charge-sustaining mode. The extracted rules from DP forming near-optimal control strategies is playing a vital role in deciding overall fuel consumption. Unlike the DP control actions, these extracted rules are implementable through the forward facing simulator. From the simulation results, it can be concluded that a substantial improvement of fuel economy up to 27% through DP is achieved for HEV (33 Km/liter) in comparison with conventional vehicle (24 Km/liter) and is taken as reference value for other strategies. Equivalent Consumption Minimization Strategy is also implemented, which shows fuel economy of 31.35 Km/liter showing 5% more fuel consumption than DP. Results also indicate that there is an improvement of about 9% in fuel economy, in comparison with the heuristics based strategy (not conforming to DP rules). The rule-based strategy (rules extracted from DP) is then compared with non-optimal rules based heuristics controller. It is shown that non-optimal rule based controller has 18% more fuel consumption than DP results. The dissertation also narrates a comprehensive comparison of the different proposed energy management strategies. Additionally, an attempt is made to devise and demonstrate Energy Management Strategy (EMS) by giving full consideration to the powertrain using Atkinson cycle engine. A novel energy management strategy based on the vehicle speed for Atkinson cycle engine for HEV is proposed. The proposed EMS with Atkinson cycle engine control framework exhibits the significant improvement in the fuel economy around 12.30% for standard Manhattan driving cycle at part load conditions and 7.22% for the modified Federal Urban Driving Schedule (FUDS) driving cycle in comparison with the Otto cycle engine.