. . . . "" . "Ecology" . . "Generation Service" . . . "STEF92 TECHNOLOGY LTD" . . . "bibliographic reference" . "CNR-ISMAR" . . . "European Union" . . . "hydrography" . . "water reservoir" . . "Georgia" . . "Johnson S-B distribution" . . "DISTRIBUTION" . . "ELEMENTS" . "Johnson S-B distribution" . . "31.678252234359483" . "31.9" . "reservoir" . . "5.467128027681661" . "7.9" . "statistics" . . "16.233766233766236" . "2.5" . "earth sciences" . . "50.0" . "0.42581644654273987" . "frequency distribution" . . "2.7681660899653977" . "4.0" . "water reservoir" . . "8.142999006951339" . "8.2" . "Science and technology" . . "Science and technology" . "provision value" . . "2.7805362462760677" . "2.8" . "law" . . "4.844290657439446" . "7.0" . "water quality" . . "5.242334322453017" . "5.3" . "Georgia" . . "https://www.wikidata.org/wiki/Q1428" . "hydrography" . . "24.675324675324678" . "3.8" . "Johnson S-B distribution" . . "31.777557100297912" . "32.0" . "Recently, in the engineering hydrology, Johnson S-B distribution has been increasingly used as a distribution law for average annual discharges of a flow." . . "17.819148936170215" . "20.1" . "distribution curve" . . "4.3521266073194855" . "4.4" . "Recently, in the engineering hydrology, Johnson S-B distribution has been increasingly used as a distribution law for average annual discharges of a flow." . . "17.907801418439718" . "20.2" . "frequency distribution" . . "2.7681660899653977" . "4.0" . "hydrography" . . "24.675324675324678" . "3.8" . "distribution" . . "9.480968858131488" . "13.7" . "reservoir" . . "5.467128027681661" . "7.9" . "engineering hydrology" . . "4.071499503475669" . "4.1" . "law" . . "6.330365974282888" . "6.4" . "distribution density" . . "3.2770605759682225" . "3.3" . "EVALUATION OF THE HYDROCHEMICAL ELEMENTS OF THE WATER QUALITY IN THE WATER RESERVOIRS BY USING JOHNSON S-B DISTRIBUTION." . . "20.656028368794328" . "23.3" . "Food and drink" . . "Lifestyle and leisure/Lifestyle/Food and drink" . "method of choice" . . "3.7586547972304647" . "3.8" . "law" . . "4.844290657439446" . "7.0" . "Black Sea" . . "https://www.wikidata.org/wiki/Q166" . "distribution curve" . . "2.8373702422145324" . "4.1" . "The limits of Johnson S-B distribution for hydrochemical elements were assessed by method of choice provided the distribution curve of the statistical provision values was maximally close to the even distribution, and were later assessed with the Kolmogorov criterion." . . "11.436170212765958" . "12.9" . "European Union" . . "https://www.wikidata.org/wiki/Q458" . "European Union" . . "https://www.wikidata.org/wiki/Q458" . "trade" . . "9.090909090909092" . "1.4" . "hydrology" . . "4.055390702274974" . "4.1" . "The limits of Johnson S-B distribution for hydrochemical elements were assessed by method of choice provided the distribution curve of the statistical provision values was maximally close to the even distribution, and were later assessed with the Kolmogorov criterion." . . "11.52482269503546" . "13.0" . "Johnson S-B" . . "17.903066271018794" . "18.1" . "method of choice" . . "3.8575667655786345" . "3.9" . "limit" . . "2.0761245674740483" . "3.0" . "Black Sea" . . "https://www.wikidata.org/wiki/Q166" . "chemistry and materials (general)" . . "50.0" . "0.8611488938331604" . "trade" . . "9.090909090909092" . "1.4" . "earth sciences" . . "50.0" . "0.42581644654273987" . "reservoir" . . "8.209693372898121" . "8.3" . "distribution curve" . . "2.8373702422145324" . "4.1" . "atmospheric sciences" . . "50.0" . "0.42581644654273987" . "water quality" . . "3.3217993079584773" . "4.8" . "Georgia" . . "https://www.wikidata.org/wiki/Q1428" . "hydrology" . . "2.698961937716263" . "3.9" . "distribution density" . . "3.2770605759682225" . "3.3" . "distribution curve" . . "4.451038575667655" . "4.5" . "Johnson S-B" . . "18.100890207715132" . "18.3" . "chemistry and materials" . . "50.0" . "0.8611488938331604" . "method of choice" . . "2.422145328719723" . "3.5" . "hydrology" . . "4.154302670623145" . "4.2" . "EVALUATION OF THE HYDROCHEMICAL ELEMENTS OF THE WATER QUALITY IN THE WATER RESERVOIRS BY USING JOHNSON S-B DISTRIBUTION." . . "20.656028368794328" . "23.3" . "distribution" . . "9.480968858131488" . "13.7" . "chemistry and materials" . . "50.0" . "0.8611488938331604" . "hydrology" . . "2.698961937716263" . "3.9" . "method of choice" . . "2.422145328719723" . "3.5" . "Food and drink" . . "Lifestyle and leisure/Lifestyle/Food and drink" . "atmospheric sciences" . . "50.0" . "0.42581644654273987" . "water reservoir" . . "8.04369414101291" . "8.1" . "statistics" . . "16.233766233766236" . "2.5" . "distribution" . . "14.048442906574394" . "20.3" . "distribution" . . "14.048442906574394" . "20.3" . "service-account-enrichment" . . . "http://rohub.org/performedtask/c8b0c47adc91347dabce5f6d8555b07a" . . . "8507"^^ . "https://api.rohub.org/api/ros/dad21775-a219-4b6c-ba0b-cb540271ad3f/crate/download/" . . "http://rohub.org/ext/c21de46765183f28acb8f627b37e7890" . . "2018-06-20 11:20:35.458000+00:00" . "2025-03-05 00:51:35.033779+00:00" . "2018-06-20 11:20:35.458000+00:00" . "Recently, in the engineering hydrology, Johnson S-B distribution has been increasingly used as a distribution law for average annual discharges of a flow. It is the first time the authors of the present paper have taken Johnson S-B distribution as a distribution law for different elements of the water quality in the water reservoirs of Georgia including coastal waters of the Black Sea. The research has been conducted with the help of EU funded project \"PERSEUS\" and taking into account the principles of MSFD to diversify the methods of hydrochemical parameters analysis. Compared to other types of distribution, the advantage of Johnson S-B distribution is that the given distribution describes the process of variation of different hydrochemical elements in the water pretty well, can take various forms, while plotting the curves of distribution density and provision is much easier with Johnson S-B distribution than with other types of distribution. Besides, Johnson S-B distribution has a simple relation with normal sequence and it is simple and convenient to model artificial series. One of the major issues with using Johnson S-B distribution is the identification of the upper and lower limits of a random variable. Therefore, it is assessed in detail for different hydrochemical elements in a water reservoir. The limits of Johnson S-B distribution for hydrochemical elements were assessed by method of choice provided the distribution curve of the statistical provision values was maximally close to the even distribution, and were later assessed with the Kolmogorov criterion." . "application/ld+json" . "2014-01-01" . "https://w3id.org/ro-id/dad21775-a219-4b6c-ba0b-cb540271ad3f" . . "EVALUATION OF THE HYDROCHEMICAL ELEMENTS OF THE WATER QUALITY IN THE WATER RESERVOIRS BY USING JOHNSON S-B DISTRIBUTION" . "Open access" . . . . . . "2014-01-01" . "https://w3id.org/ro-id/0fdf97e1-d50f-4cf6-9c71-eca6e9b18a47" . "https://w3id.org/ro-id/2769879b-c5d4-40f3-85a9-30e4a90f2e17" . "https://w3id.org/ro-id/3b778cdf-8d2c-413d-8f0c-6b5e323c3bda" . "https://w3id.org/ro-id/59cd56b2-fe97-4647-a420-4301058ca1b5" . "https://w3id.org/ro-id/79faf139-0e63-4d6b-822f-ef606eed51fc" . "https://w3id.org/ro-id/d150dad8-ca82-44cb-8abe-86a63f1b319d" . "https://w3id.org/ro-id/59a2c116-2fd4-43e7-b693-de3a469b4fac" . 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