The media, especially the satellite channels in our time, are one of the most important pillars of daily life, public and private, for society and people, and are considered by sociologists and sociologists as one of the most important factors of social upbringing and the most important, as a result of the technological and technological development of the media as well as increasing their numbers and vertical and horizontal expansion locally, As well as entering into the lives of individuals and people and leading them to important sites within their interests and preferences, not to mention the long time spent exposure to those media and benefit from the programs offered or broadcast. , The problem of this research is that there is a lack or weakness or ambiguity in understanding the relationship between the exposure of the public to the news channels and the levels of preference and evaluation of programs broadcast by these channels and employees of the public achieved as a result of exposure. According to the above, the problem of research in is to answer the following questions:
a. The extent to which the public is exposed to satellite news channels and the reasons for the public’s follow-up to these satellite channels or not?
B. What are the most prominent satellite news channels that the public prefers to watch their programs and what patterns and habits of exposure?
c. What are the most prominent public ratings of satellite TV favorite about some of the positions and qualities and advantages compared to other satellite channels, and what are the most prominent evaluations of programs that attract them and staff and some technical aspects?
Terrestrial laser scanners (TLSs) are 3D imaging systems that provide the most powerful 3D representation and practical solutions for various applications. Hence this is due to effective range measurements, 3D point cloud reliability, and rapid acquisition performance. Stonex X300 TOF scanner delivered better certainty in far-range than in close-range measurements due to the high noise level inherent within the data delivered from Time of Flight (TOF) scanning sensors. However, if these errors are manipulated properly using a valid calibration model, more accurate products can be obtained even from very close-range measurements. Therefore, to fill this gap, this research presents a user-oriented target-based calibration routine to
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