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Titlebook: Obligate Pollination Mutualism; Makoto Kato,Atsushi Kawakita Book 2017 Springer Japan KK 2017 Pollination mutualism.Phyllanthaceae.Epiceph

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楼主: 摇尾乞怜
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Atsushi Kawakita,Makoto Katorange of effective temperatures from 14 200 K down to 11400 K. Comparison with mixing length theory (MLT) yields a conflicting picture: The dynamics of convection is not governed by up- and downflowing bubbles which dissolve after travelling some characteristic distance - but by the formation, advec
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Atsushi Kawakita,Makoto Katorange of effective temperatures from 14 200 K down to 11400 K. Comparison with mixing length theory (MLT) yields a conflicting picture: The dynamics of convection is not governed by up- and downflowing bubbles which dissolve after travelling some characteristic distance - but by the formation, advec
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range of effective temperatures from 14 200 K down to 11400 K. Comparison with mixing length theory (MLT) yields a conflicting picture: The dynamics of convection is not governed by up- and downflowing bubbles which dissolve after travelling some characteristic distance - but by the formation, advec
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Atsushi Kawakita,Makoto Katorange of effective temperatures from 14 200 K down to 11400 K. Comparison with mixing length theory (MLT) yields a conflicting picture: The dynamics of convection is not governed by up- and downflowing bubbles which dissolve after travelling some characteristic distance - but by the formation, advec
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Tomoko Okamotorange of effective temperatures from 14 200 K down to 11400 K. Comparison with mixing length theory (MLT) yields a conflicting picture: The dynamics of convection is not governed by up- and downflowing bubbles which dissolve after travelling some characteristic distance - but by the formation, advec
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Ryutaro Gotorly work in metacomputing focused on harnessing greater processing power than could be found at a single site or on combining heterogeneous computer architectures to exploit the best features of each for a given problem. Another compelling rationale for using metacomputing is the acquisition, manipu
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rly work in metacomputing focused on harnessing greater processing power than could be found at a single site or on combining heterogeneous computer architectures to exploit the best features of each for a given problem. Another compelling rationale for using metacomputing is the acquisition, manipu
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Atsushi Kawakitas well only for one-dimensional data In this paper we present a new access structure, called UB-tree (for universal B-tree) for multidimensional data. The UB-tree is balanced and has all the guaranteed performance characteristics of B-trees, i.e. it requires linear space for storage and logarithmic
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