Yer altı hareketlerini inceleyen bilim dalı
Coal includes trace amounts of U, Th and K according to the conditions of formation. Since the coal-fired power plants are known as the most important source of technologically enhanced natural radioactivity the investigation of radiologic characteristics of coals that are used as fuel in the power plants and their ashes has crucial importance. The investigation of uranium ion transition to ground water and development of a new adsorbent to concentrate the uranium ions present in the ground water are also aimed, yer altı hareketlerini inceleyen bilim dalı.
Ground Penetrating Radar GPR is a radar which detects objects and interfaces buried beneath the earth's surface. It is considered as a very effective tool for non-destructively sensing of the subsurface environment, since the radar can detect any object that has different electrical properties than the surrounding soil. Thus it senses both metallic and nonmetallic targets as opposed to metal detectors. The GPR system usually contains a receiver and transmitter antennas. Transmitter connected with a source, and receiver connected with signal processing. Civil and military sections are the most popular areas for the GPR applications.
Yer altı hareketlerini inceleyen bilim dalı
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Radiological risk evaluation of the ground water and soil samples taken from the contaminated region and ash deposition field were also held out. In military area, it is commonly used for finding unexploded bombs, underground warehouses, bomb shelters, discovering enemy communication channels, secret rooms.
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Yer altı hareketlerini inceleyen bilim dalı
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The mobility of U radionuclide was determined by the help of colon studies in which the rain waters of the corresponding region was used as eluent. Therefore, Vivaldi antenna is one of UWB Antenna that used to build GPR , because it has some properties like great bandwidth , end-fire radiation, moderate gain , small dimension and easy to fabricate. Civil and military sections are the most popular areas for the GPR applications. Radiological risk evaluation of the ground water and soil samples taken from the contaminated region and ash deposition field were also held out. It is considered as a very effective tool for non-destructively sensing of the subsurface environment, since the radar can detect any object that has different electrical properties than the surrounding soil. Having better antenna efficiency depends on the optimization works in antenna's physical features. The usage of raw and activated silica gel for uranium adsorption were also investigated simultaneously by using synthesized solid sorbents and the results were compared. Coal includes trace amounts of U, Th and K according to the conditions of formation. Together with these, GPR is used to find people behind the rubble also. The GPR system usually contains a receiver and transmitter antennas.
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The high efficiency provides reliable and more information. The investigation of uranium ion transition to ground water and development of a new adsorbent to concentrate the uranium ions present in the ground water are also aimed. The GPR system usually contains a receiver and transmitter antennas. Transmitter connected with a source, and receiver connected with signal processing. For this purpose optimum conditions for desorption were determined and recovery yield of adsorbed U VI ion was achieved at high levels. The mobility of U radionuclide was determined by the help of colon studies in which the rain waters of the corresponding region was used as eluent. In civil life GPR is commonly applied for finding, buried pipes and undetected voids. U VI ion selectivity of sythesized solid support were investigated in the presence of other interferent ions. We were also investigated the activity concentration of uranium that is present in ground water. Having better antenna efficiency depends on the optimization works in antenna's physical features. The usage of raw and activated silica gel for uranium adsorption were also investigated simultaneously by using synthesized solid sorbents and the results were compared. It is considered as a very effective tool for non-destructively sensing of the subsurface environment, since the radar can detect any object that has different electrical properties than the surrounding soil. Coal includes trace amounts of U, Th and K according to the conditions of formation. Then U activity concentrations of these samples were determined by using High purity Germanium HPGe dedector equipped gamma spectrometer. H were calculated for the determination of the absorption mechanism of U VI ion by this sorbent.
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