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Titlebook: Inverse Problems in Groundwater Modeling; Ne-Zheng Sun Book 1999 Springer Science+Business Media Dordrecht 1999 Groundwater.Likelihood.env

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ic flame temperature (. K). The flames were characterised using simultaneous Mie scattering, OH-PLIF and PIV measurements and subjected to a multi-fluid analysis (i.e. reactants and combustion products, as well as mixing, weakly reacting and strongly reacting fluids). The study quantifies the (i) ev
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Ne-Zheng Sunic flame temperature (. K). The flames were characterised using simultaneous Mie scattering, OH-PLIF and PIV measurements and subjected to a multi-fluid analysis (i.e. reactants and combustion products, as well as mixing, weakly reacting and strongly reacting fluids). The study quantifies the (i) ev
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Ne-Zheng Sunoperating conditions and swept volume of 25 cm.. The ambient air was used as the working gas which was heated by LPG at flow rate of 0.6 kg/h and cooled by water. The maximum speed of 977 rpm was attained. Recorded maximum power and torque were 0.549 W at 486 rpm and 0.014 Nm at 260 rpm, respectivel
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Ne-Zheng Sun, and some even in the ‘very active’ FAO/WHO category of 200 kJ (47 kcal)/kg. There were similar disparities in Genieri village in 1948/9 where the lowest values for women as with those in Kaul appear to have come nowhere near even the lowest FAO/WHO value, while Genieri men seem to have just about
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0924-6118 point of view of extended identifiabilities. The problem of model structure identification is also considered. .This book can be used as a textbook for graduat978-90-481-4435-8978-94-017-1970-4Series ISSN 0924-6118 Series E-ISSN 2213-6940
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