Academic literature on the topic 'Biolocation'

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Journal articles on the topic "Biolocation"

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Boyko, V. I., L. P. Larycheva, A. P. Lutsenko, and V. A. Ustimenko. "Using neural networks for signal processing in echoencephalography." Electronics and Communications 15, no. 3 (2010): 112–15. https://doi.org/10.20535/2312-1807.2010.15.3.306382.

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In the article presented the main principles of echoencefalographic method of brain investigation, at based on the method of one-dimensional ultrasound biolocation. Mistakes of the method and algorithm of eliminatory false results are also represented
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Boltunov, V. A., and V. V. Boltunov. "Biolocation in hydrotechnical construction: Past, present, and future." Hydrotechnical Construction 31, no. 10 (1997): 635–42. http://dx.doi.org/10.1007/bf02767279.

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Մինասյան, Ռ. Ս․, та Աթաոլլահ Դադաշփուր. "ՆԵԿԱ ԳԵՏԻ ՋՐՀԱՎԱՔ ԱՎԱԶԱՆԻ ՍՏՈՐԵՐԿՐՅԱ ՋՐԵՐԻ ՈՒՍՈՒՄՆԱՍԻՐՈՒԹՅՈՒՆ (ԻՐԱՆ)". Proceedings of the YSU C: Geological and Geographical Sciences 46, № 3 (229) (2012): 17–21. http://dx.doi.org/10.46991/pysu:c/2012.46.3.017.

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The total discharge of the Neka River (Iran) groundwater flow and its deep laid distribution have been determined on the basis of applying water balance, biolocation and geophysical methods of research. The places of boreholes have been established for groundwater withdrawal for the purpose of water supply.
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Tagil’cev, S. N., A. V. Cherednichenko, and V. V. Melnik. "Aggregation methods hydrogeomechanical, electrical and dowsing to select areas of hydrogeological wells." Mining informational and analytical bulletin, no. 3-1 (March 20, 2020): 224–34. http://dx.doi.org/10.25018/0236-1493-2020-31-0-224-234.

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In the territories of mountain-folded regions, aquifers in rock masses are associated with tectonic disturbances. To identify promising faults and their detailing for water supply or drainage of mining enterprises, methods of electrical exploration are quite effectively applied. When choosing promising areas for laying water supply wells in rock masses, good results are obtained from a combination of exploratory techniques for hydrogeomechanics and biolocation. Analysis of the orientation of faults in the field of modern tectonic stresses from the standpoint of hydrogeomechanics makes it possi
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Boltunov, V. A., and V. V. Boltunov. "Nontraditional survey methods in hydrotechnical construction search for geopathogenic zones: Biolocation and geophysics." Hydrotechnical Construction 30, no. 7 (1996): 425–33. http://dx.doi.org/10.1007/bf02446426.

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Dzjuba, O. I., O. P. Taran, A. V. Viter, and N. V. Zaimenko. "State-of-art and some ideas for future progress of bioassays with plants." Ecology and Noospherology 31, no. 2 (2020): 70–76. http://dx.doi.org/10.15421/032011.

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Comparing with the trivial physical, physicochemical and chemical ways of the search of the agents of interest, the bioassays have the set of advantages, including the demand of less precision tools, less amounts of costs, labors and some other means. To date bioassays have formed the separate domain with its own theoretical basis, including classification, systematization, methodology, and meta-research. The present review analyzes the major spheres of the application of bioassays, such as environmental monitoring, quality control of foods. Bioassays contribute to the studies of the propertie
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Aleksandr, Kondratenko, Boikov Igor, Marenko Hennadii, Tsebriuk Ivan, Koval Oleksandr, and Koval Andrii. "METHOD OF PROTECTING SPECIALLY IMPORTANT OBJECTS BASED ON THE APPLICATION OF THE BISTATIC RADIOLOCATION TECHNIQUE." EUREKA: Physics and Engineering, no. 4 (July 31, 2019): 63–75. https://doi.org/10.21303/2461-4262.2019.00941.

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The solution of the tasks assigned to the National Guard of the state implies the presence of certain forces and means with the appropriate technical equipment. A well-known place among such tasks is security of important state facilities. Various physical effects and methods, including radar, are used to create security systems. The development of radar technology and technology made it possible to increase both the quantity and quality of the received information, as well as the use of radar stations for observing living objects. The industry today produces bioradioradars for detecting peopl
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Rogozin, M. "Natural Phenomena, Geoactive Zones and Their Use in Landscape Design." Bulletin of Science and Practice 7, no. 12 (2021): 47–63. http://dx.doi.org/10.33619/2414-2948/73/06.

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The research was carried out in the Vishersky Nature Reserve and in the adjacent territories (Perm Krai). We used methods of phyto- and bioindication and decoding of satellite images with the allocation of 8 types of geoactive zones with diameters 1, 3, 8, 16, 32, 55, 76 and 110 m. Such zones are favorable for biota and are studied by the biolocation method, the data of which have been confirmed by contact photography since 2009. It is shown that the studied 25 natural phenomena were formed on a combination of 2-3 “junior” zones with dimensions of 1–8 m when they were placed inside 2–3 “senior
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Rogozin, M. "Energy Factors of Occurrence Windows and Clearings in the Forest." Bulletin of Science and Practice 6, no. 7 (2020): 26–41. http://dx.doi.org/10.33619/2414-2948/56/02.

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In the forests near Perm, 184-year-old stands of common pine of class I Bonita were studied with a fullness of 0.93 and a reserve of 620 m3/ha. On an area of 2.2 hectares, live and dead trees over 60 years were mapped to the plan with an accuracy of ±10-35 cm. Then, using phyto-and bioindication (biolocation), more than 1200 pieces were chart small geoactive zones (hereinafter referred to as zones) with geo-linking to the centers of the bases of the trunks of nearby trees. They were classified into 7 types: pathogenic (Hartman and Kurri networks), favorable in size 1.0 and 3.0 m, and neutral i
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Rogozin, M. "Pathogenic Networks and Natural Thinning of Stands." Bulletin of Science and Practice 9, no. 12 (2023): 117–34. http://dx.doi.org/10.33619/2414-2948/97/15.

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In pine cultures on an area of 0.66 hectares, 345 trees that had fallen away by the age of 59 and 1436 pathogenic zones were studied using biolocation. The cells of their networks have sides with distance fluctuations of 69-845 cm, and north-south and west-east in the Hartman network, the distances between the zones are 360±5 and 390±6 cm, and in the Kurri network 262±2.7 and 295±3 cm. The cells can be triangular, and one side is longer than the other by a maximum of 4 times. In the Hartman network, 0.55 m zones alternate through two 0.3 m zones. There are three gradations of zone sizes in the
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Book chapters on the topic "Biolocation"

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Shokarev V.S., Shokarev A.S., Solonetz A.K, and Zhusupbekov A. "Investigation of interdependence of map and distract represented on it at engineering – geological researches in construction." In Proceedings of the 15th European Conference on Soil Mechanics and Geotechnical Engineering. IOS Press, 2011. https://doi.org/10.3233/978-1-60750-801-4-79.

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The revealing technique for detecting fractured zones in rocky massif is developed. Scheduled positions of fractured zones marked on map and directly on locality, determined with use of biolocation effect, were identical. Results, which were received with use of biolocation methods, have confirmed with devices, geophysical researches and scientific experimental works on cementation detected of fractured zones
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