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Home > قبولیتِ حدیث کے بارے میں محدثین اور فقہا کے نقطہ نظر کا تقابلی جائزہ

قبولیتِ حدیث کے بارے میں محدثین اور فقہا کے نقطہ نظر کا تقابلی جائزہ

Thesis Info

Author

قرة العین تیمور

Supervisor

شمس البصر

Program

Mphil

Institute

The Islamia University of Bahawalpur

City

بہاولپور

Degree Starting Year

2007

Language

Urdu

Keywords

اصولِ حدیث

Added

2023-02-16 17:15:59

Modified

2023-02-19 12:20:59

ARI ID

1676731206427

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صبح کی سیر

صبح کی سیر
اللہ تعالیٰ نے دنیا کی ہر نعمت سے مستفید ہونے کے لیے بنی نوع انسان کو وافر مقدار میں مواقع فراہم فرمائے اور اسے یہ باور کرانے کی ترغیب دی کہ وہ زمین پر نکلے اور مظاہر فطرت کا بغور مشاہدہ کرے، دیکھے کہ شجر دحجر، بحرو بر ،کو ہ و دامن کا وجود کس طرح اللہ تعالیٰ کی موجودگی کا واضح ثبوت پیش کر رہا ہے۔ صبح کی سیر اگر چہ ظاہراً تو جسمانی صحت کو بحال رکھنے کے لیے ناگزیر ہے لیکن حقیقتاًیہ مظاہر فطرت سے بالمشافہ گفت و شنید کا نام ہے یہ جسمانی صحت کے ساتھ ساتھ روحانی طور پربھی انسان کو پاکیزہ اور فعال بناتی ہے۔
صبح کی سیر سے انسان کا دل اور دماغ تروتازہ ہو جاتا ہے، کام کرنے کی صلاحیت بڑھ جاتی ہے، طبیعت میں تساہل اور غفلت کی انگڑائیاں لیتے ہوئے جذبات کا فور ہونا شروع ہو جاتے ہیں۔ دماغی صلاحیت میں اضافہ ہونا شروع ہو جاتا ہے۔ یہ نسیمِ صبح جب اٹھکیلیاں کرتی ہوئی قریب سے گزرتی ہے تو فہم و ادراک کے آنگن میں بہار آ جاتی ہے، نظریات و تصورات کا تفاوت ختم ہونا شروع ہو جاتا ہے۔ گراں خوابی کے دور سے پیدا ہونے والے زخم آفتاب کی مسیحائی کرنوں سے مُندمل ہونا شروع ہو جاتے ہیں۔
دلیل صبح روشن ہے ستاروں کی تنک تابی
افق سے آفتاب اُبھرا گیا دورِ گراں خوابی
صبح کا وقت سہانا ہوتا ہے، شب کے بحرِ ظلمات میں ہچکولے کھاتی ہوئی نائو اُجالے کے ناخدائوں کے طفیل سنبھلنا شروع ہو جاتی ہے۔ صبح کا منظر پہاڑوں کی فلک بوس چوٹیوں پر ہو، دریاؤں اور سمندروں کی خونی موجوں اور لہروں پر ہو، چٹیل میدانوں پر ہو، کھیتوں اور کھلیانوں پر ہو، ہمیشہ بھلاہی نظر آتا ہے۔صبح کی سیر چھوٹے قد کا شخص کرے، یا...

آداب معاشرت، سورة حجرات کی گیارهویں اور بارهویں آیات کے تناظر میں

Dr. Shari'ati is a revolutionary intellectual personality of this century. He regarded Islamic values ​​as the guarantee of salvation and success for humanity. He sought to mobilize and revive frozen Islamic ideas. That is, tried to bring the Islamic concept out of the boundaries of formal and congested boundaries into common and general thoughts. Dr. Shari'ati also presented a unique view that divine Imam transcends than worldly governments and this divine leadership cannot be determined by (Shuraiet). Rather, it can be diagnosed by an obvious reason (Nass). This doctrine of Dr. Shari'ati is contrary to the ideology of the Sunni and the Shi'ite’s concept of Imamat and Khilafat because the Sunni sect believes that Khilafat Or Imamt should be determine by the Shurait (Council) and Shiites by the will(Nass). According to Dr. Shairathi, Imamat cannot be determining through Shourait or Nass but it can be identified by the superior attributes of the Imam. He believes that Imamat is not an external factor which can gain by attainment or by choice; rather, it is an Inherit object.  In accepting this doctrine of Dr. Shari'ati, than the Imamat becomes a part of the system of naturalism (Takveeni). That makes the Imamat not a model process for humanity. So it would be a complicated issue to discuss and discover either the theory of Dr. Shari'ati is a applicable idea of Imamat or it is a just onlyu idialogy which cannot be practiced. The dissertation has been written to examine the reality of these two cases either Imamat is inherit case or it can be attainment case through Shouriat or Nass.   

Nonlinear Dynamics of Large-Scale Vortical Motions in Electron-Positron Plasmas and Other Multiple Components Plasmas

The possibility of zonal flows generation by low-frequency waves in magnetized space and laboratory plasmas is studied. Namely the zonal flows generation in the Earth’s ionospheric E- and F-layers by Rossby waves and in electron-positron-ion (EPI) plasmas by electrostatic drift waves is investigated. The modified parametric approach is used considering the arbitrary spectrum of primary modes. The driving forces of zonal flows are Reynolds stresses. An important nonlinear mechanism for the transfer of spectral energy from small-scale pumping waves to large-scale enhanced zonal flows (inverse cascade) is investigated. The dynamics of Rossby waves in the electrically conducting ionospheric layers strongly depends on the interaction of inductive currents with the geomagnetic field. Such interaction in the ionospheric E-layer due to the prevalent effect of Hall conductivity gives rise to, so called magnetized Rossby (MR) waves to be propagating. But in the ionospheric F-layer, under such interaction dissipation arises due to Pedersen conductivity acting as the inductive (magnetic) inhibition. Modified by the interaction of inductive currents with the geomagnetic field Charney equation is used as the basic nonlinear equation. Considering comparatively short-scale perturbations only vector nonlinearity is responsible for the coupling between different modes in Charney equation. The nonlinear interaction of short-scale pump Rossby waves, two satellites of the pump waves (side-band waves) and a large-scale shear zonal flow is studied. Propagating in the ionospheric E-layer MR waves do not significantly perturb the geomagnetic field. Zonal flow dispersion relation for an arbitrary spectrum of MR waves is obtained. Monochromatic and non-monochromatic wave packets of primary modes are discussed. In the case of monochromatic wave packet the instability is of the hydrodynamic type. It is found that the broadening of the wave packet spectrum of pump MR waves leads to a resonant interaction with a growth rate of the order of the monochromatic case. In the case when zonal flow generation by MR modes is prohibited by the Lighthill stability criterion, the so-called two-stream-like mechanism for the generation of sheared zonal flows by finite-amplitude MR waves in the ionospheric E- layer is possible. The growth rates of zonal flow instabilities and the corresponding conditions are determined. The possibility of zonal flow generation and appropriate distinctive properties are revealed when Rossby waves are propagating through the dissipative ionospheric F-layer. To describe the nonlinear propagation of electrostatic drift waves the generalized Hasegawa-Mima (HM) equation containing one vector (Jacobian) and two scalar nonlinearities of different nature for the case of EPI plasma is obtained. The drift waves are supposed to have arbitrary wavelengths (as compared with the Larmor radius of plasma ions at the plasma electron temperature). Temperature inhomogeneity of electrons and positrons is taken into account, while ions are considered to be cold. The new space structure of drift waves is obtained. Spatial increase of the linear plasma-potential perturbations in the direction of density and temperature inhomogeneities is shown. As long as under the zonal flow action different vortical structures can be maintained, possibility of the existence of drift vortical motions and the appropriate properties also are investigated in case of EPI plasma. It is shown that the vector nonlinearity is responsible for the existence of small-scale dipole-type solitary vortical structures. One of the scalar nonlinearities of KdV-type is responsible for the existence of the intermediate-scale vortical structures. The other scalar nonlinearity under the time derivative creates intermediate and large-scale monopole vortical structures and plays an essential role in different possibilities of zonal flows generation. It causes nonlinear interaction with vector and KdV-type nonlinearities and itself also. It is shown that the dynamics of low-frequency waves studied in usual electron-ion (EI) plasmas is generally modified in EPI plasmas. A new self-organization mechanism of formation of large-scale electrostatic drift vortical structures in EPI plasmas based on the competition between scalar and vector nonlinearities has been discussed. Generation of large-scale zonal flows by relatively small-scale electrostatic drift waves of arbitrary wavelength in a nonuniform EPI plasma is studied. To describe the generation of zonal flow the generalized Hasegawa-Mima equation containing both vector and two scalar (of different nature) nonlinearities is used. The system of coupled equations describing the nonlinear interaction of drift waves and zonal flows is derived. Enriched possibilities of zonal flow generation with different growth rates are revealed. Explicit expressions for the appropriate maximum growth rates are obtained. Obtained results may be useful to explain different observations on zonal flows and vortical motions in laboratory and astrophysical plasmas.