38. Sad/Saad
I/We begin by the Blessed Name of Allah
The Immensely Merciful to all, The Infinitely Compassionate to everyone.
38:01
a. Saad.
b. By The Divine Qur’an - full of Remembrance and Reminders.
38:02
a. They do not have any reason to reject it.
b. Instead, those who disbelieve are lost in conceit and dissent.
38:03
a. How many generations have WE destroyed before them for the same sins!
b. Then they cried out for help when it was far too late to repent and escape the punishment.
38:04
a. Yet they are surprised that a Warner should come to them from among themselves.
b. And the disbelievers say to one another:
c. ‘This Prophet is a deceiver, a liar!’
38:05
a. How ‘has he made our worshipful entities into only One worshipful entity of Allah?
b. Surely this is very astonishing and a curious thing, indeed!’
38:06
a. And the leaders among them went about saying:
b. ‘Let us go out of here.
c. And remain faithful to your worshipful entities.
d. Indeed, this is what is extremely desirable.’
38:07
a. ‘We have not heard anything like this in the religion of these later days.
b. So this concept is nothing but a fabrication.’
38:08
a. How has the Reminder - The Qur’an - been sent down on to him alone from among all of us?
b. No!
c. Instead, they are lost in doubts about MY Reminder.
d. No!
e. In fact, they have not yet tasted MY Punishment!
38:09
a. They think that no one else deserves...
Pondok Pesantren (classical Islamic educational institution in Indonesia) uses the classic book strictly and continuously. Students (santri) fanatically follow the book used by the teacher, including in the use of the book of exegesis. Pondok Pesantren in Riau Province uses the book of tafsir differently according to the grouping of the tradition and the teacher's understanding of the Pondokmya. Most of the Pondok Pesantren in Riau Province, using a translation book that is not a yellow book (Arabic Book. This situation tends to eliminate the character of Pondok Pesantren which makes the yellow book (Arabic Book) as the basis and its main characteristic. This paper seeks to see the profile of the book of tafsir, model of understanding and that’s correlation according to relegius jurisprudence on Pondok Pesantren in Riau Province.
This research work focuses on design and analysis of low-cost, single-layer broadband reflectarrays for X-band applications. Traditionally, parabolic reflectors and phased arrays were introduced to obtain the high gain. The disadvantages associated with traditional antenna types include: narrow bandwidth, high fabrication cost and complex feed networks. Recently, reflectarray antennas have been developed to overcome the disadvantages associated with parabolic reflectors and phased arrays. High gain reflectarray antennas are typically employed in radars, satellite communication and direct broadcasting applications. Four different type of delay-lines integrated reflectarray elements which include: single circular delay-line, pair of circular delay-lines, quad-meander and T-shape delay-lines are designed to obtain a broad linear phase range, high gain and good aperture efficiency. The reflectarray unit element performance is investigated in terms of phase range, Transverse Electric (TE) and Transverse Magnetic (TM) modes and far-field radiation patterns. The reflectarray unit element is analyzed by using circuit model technique and equivalent circuit results are verified through High Frequency Structure Simulator (HFSS™). The circuit model technique replaces the lengthy full-wave simulation of FEM method. This method provides fast and accurate calculation of electromagnetic parameters i.e. magnitude and phase range. The unit element shape and configurations are used to extract the lumped parameters and reflection characteristics. The reflectarray antenna system contains a feed horn antenna and an arrangement of phase shifting array elements. A hybrid Finite Element Boundary Integral (FEBI) method is used for electromagnetic modeling of reflectarray antenna system. The FEBI method provides accurate electromagnetic analysis of complex and medium-to-large sized structures. The reflectarray far-field radiation characteristics are obtained by using the hybrid FEBI method. The reflectarray antenna system model comprises of feed horn antenna and array of phase shifting elements. The feed horn antenna and array elements are designed separately. The effect of the incident angle, feed-to-diameter ratio and transmission modes can easily be considered in the FEBI based system simulations. The proposed reflectarray prototypes are fabricated and measured on a low-cost FR-4 substrate. The reflectarray antenna measurements are made in anechoic chamber. A gain of more than 20 dBi is realized for the proposed reflectarray configurations. The simulated and measured cross polarizations and side-lobe-levels are below -20 dB in all design configurations. More importantly, simulated results are in good agreement with the measured results.