The purpose of this paper is to identifying the relationship between some visual functions and the level of achievement of air rifle shooting among young Iraqi female, and identifying the relationship between some functional variables of the respiratory and nervous systems at the level of achievement of air rifle shooting among young Iraqi female. The researchers used the descriptive approach in the correlative relationships style for its suitability and the research problem. The researchers determined the research community by the intentional method represented by (10) young female shooters who represent the national team with air rifle shooting effectiveness, and who represent (100%) of the research community. One of the most important results reached by the researcher is that: There is a significant correlation between all visual function tests (visual acuity, static and moving visual field, bilateral visual efficiency, visual reaction time, color visual sensitivity variation, and visual search) with the level of achievement of air rifle shooting, there is a significant correlation between all functional tests of the respiratory system (breath-holding, vital capacity, anaerobic step test (lactic anoxygenic capacity), and Harvard step test) with the level of achievement of air rifle shooting, there is a significant correlation between all functional tests of the nervous system ( Ashner test (eye-cardiac reaction -pre-test), Romberg test (keeping balance), and horizontal linear space sensation test) with the level of achievement of air rifle shooting. One of the most important recommendations recommended by the researchers is that: The trainers’ interest in developing training programs that include visual function tests and functional tests of the respiratory and nervous systems because of their importance in the development of achievement among shooters, and re-tests all the variables that were dealt with in the current study and try to find the relationship with the level of achievement of air pistol shooting.
Traffic management at road intersections is a complex requirement that has been an important topic of research and discussion. Solutions have been primarily focused on using vehicular ad hoc networks (VANETs). Key issues in VANETs are high mobility, restriction of road setup, frequent topology variations, failed network links, and timely communication of data, which make the routing of packets to a particular destination problematic. To address these issues, a new dependable routing algorithm is proposed, which utilizes a wireless communication system between vehicles in urban vehicular networks. This routing is position-based, known as the maximum distance on-demand routing algorithm (MDORA). It aims to find an optimal route on a hop-by-ho
... Show MoreThe dynamic behavior of laced reinforced concrete (LRC) T‐beams could give high‐energy absorption capabilities without significantly affecting the cost, which was offered through a combination of high strength and ductile response. In this paper, LRC T‐beams, composed of inclined continuous reinforcement on each side of the beam, were investigated to maintain high deformations as predicted in blast resistance. The beams were tested under four‐point loading to create pure bending zones and obtain the ultimate flexural capacities. Transverse reinforcement using lacing reinforcement and conventional vertical stirrups were compared in terms of deformation, strain, and toughness changes of the tes
Although the axial aptitude and pile load transfer under static loading have been extensively documented, the dynamic axial reaction, on the other hand, requires further investigation. During a seismic event, the pile load applied may increase, while the soil load carrying capacity may decrease due to the shaking, resulting in additional settlement. The researchers concentrated their efforts on determining the cause of extensive damage to the piles after the seismic event. Such failures were linked to discontinuities in the subsoil due to abrupt differences in soil stiffness, and so actions were called kinematic impact of the earthquake on piles depending on the outcomes of laboratory