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Titlebook: Bottom-Interacting Ocean Acoustics; William A. Kuperman,Finn B. Jensen Book 1980 Springer Science+Business Media New York 1980 Ocean.acous

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Characteristics of World LeadershipThe marine geologist/geophysicist’s principal tools for studying the seafloor are acoustic. The first major increase in understanding the seafloor following the original Challeger Expedition came in the 1950’s with the routine application of precision echo sounding techniques from research vessels.
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Circular Structures Observed in the Deep Sea by the Swathmap Long-Range Sidescan SonarThe marine geologist/geophysicist’s principal tools for studying the seafloor are acoustic. The first major increase in understanding the seafloor following the original Challeger Expedition came in the 1950’s with the routine application of precision echo sounding techniques from research vessels.
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Characteristics of World Leadershippic. Physical models have been developed and refined which can both explain the observations and serve as a basis for predictions. Examples will be presented which contrast values determined from the physical models with measured data in order to identify problem areas and to recommend directions for future efforts.
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Directivity and Radiation Impedance of a Transducer Embedded in a Lossy Mediumr. Knowledge of these properties enables one to derive the complex reflection factor under arbitrary angles of incidence, which is an important quantity in modelling sound propagation. Though preference has been given to all methods that operate remotely, no successful breakthrough has yet been achi
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Elastic Properties Related to Depth of Burial, Strontium Content and Age, and Diagenetic Stage in Pelimestone sequence from DSDP Site 289 are viewed in light of its present depth of burial, sediment age and diagenetic stage..Changes in the elastic properties with increasing depth are more or less systematic; in general, p, V., V., A. and A. increase and a decreases. In certain cases, the depths at
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Application of Geophysical Methods and Equipment to Explore the Sea Bottomottom, and then returning into the water to the detecting sensors. The exploration for hydrocarbons usually requires deep penetration by application of low frequencies (between 5 and 150 Hz) and does not need detailed information about the sea bottom. Increased frequencies lead to higher resolution
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The Acoustic Response of Some Gas-Charged Sediments in the Northern Adriatic Seaown to a depth of about 70 m below the sediment surface. Several different structures due to high gas contents are described and explained for the first time in the northern Adriatic. They range from the so-called “basin effect” and cone-like structures to acoustic voids. Gas seeping from the bottom
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