The study aimed to reveal the level of knowledge and tendencies of high- study students specializing in curriculum and teaching methods at King Khalid University towards harmonious strategies with brain-based learning (BBL). And Then, putting a proposed concept to develop knowledge and tendencies of high-study students specializing in curriculum and teaching methods at King Khalid University towards harmonious strategies with Brain-based learning (BBL). For achieving this goal, a cognitive test and a scale of tendency were prepared to apply harmonious strategies with brain-based learning. The descriptive approach was used because it suits the goals of the study. The study sample consisted of (70) male and female students of postgraduate students (MA and Ph.D.) who are attending regularly at the Department of Curriculum and Teaching Methods for the academic year 1440/1441 AH. The study has shown a lot of results, the most important one is that the cognitive level and tendency to apply for postgraduate students (MA and Ph.D.) specializing in curriculum and teaching methods for harmonious strategies with brain-based learning principles was Average, and there are statistically significant differences at the level of significance (0.05) between the average of postgraduate students’ degrees in the cognitive level and the tendency towards applying harmonious strategies with brain-based learning which due to the difference in the academic degree, and in the light of the results of the study. A proposed concept was developed to enhance the knowledge and tendencies of postgraduate students specializing in curriculum and teaching methods at King Khalid University for the harmonious strategies with brain-based learning (BBL). The study was ended with a set of suggested recommendations that would activate the use of the harmonious strategies with brain-based learning.
Recently, wireless communication environments with high speeds and low complexity have become increasingly essential. Free-space optics (FSO) has emerged as a promising solution for providing direct connections between devices in such high-spectrum wireless setups. However, FSO communications are susceptible to weather-induced signal fluctuations, leading to fading and signal weakness at the receiver. To mitigate the effects of these challenges, several mathematical models have been proposed to describe the transition from weak to strong atmospheric turbulence, including Rayleigh, lognormal, Málaga, Nakagami-m, K-distribution, Weibull, Negative-Exponential, Inverse-Gaussian, G-G, and Fisher-Snedecor F distributions. This paper extensive
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