Difference between revisions of "File:DSC01693bangkokA.JPG"
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+ | Fragment from http://tori.ils.uec.ac.jp/TORI/index.php/File:DSC01693bangkok.JPG |
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+ | Presentation of [[Regular iteration]] method at the conference 2012.09.27.AMSE |
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+ | (see [[AMSE 2012 report]] ), photo by [[Devchonka]]: |
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+ | .. In order to get $a_3$, we equalize coefficients with $\varepsilon^3$, and so on, getting the asymptotic series. The series gives the good approximation at small values of $\varepsilon$. |
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+ | Small $\varepsilon$ corresponds to large negative values of $x$. For these values we have good primary approximation. |
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+ | For moderate values of $x$, apply to the primary approximation the iteration shown at the bottom of the screen. .. |
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+ | [[Category:2012.09.27.AMSE]] |
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+ | [[Category:Superfunction]] |
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+ | [[Category:Regular iteration]] |
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+ | [[Category:Bangkok]] |
Latest revision as of 09:43, 21 June 2013
Fragment from http://tori.ils.uec.ac.jp/TORI/index.php/File:DSC01693bangkok.JPG
Presentation of Regular iteration method at the conference 2012.09.27.AMSE (see AMSE 2012 report ), photo by Devchonka:
.. In order to get $a_3$, we equalize coefficients with $\varepsilon^3$, and so on, getting the asymptotic series. The series gives the good approximation at small values of $\varepsilon$. Small $\varepsilon$ corresponds to large negative values of $x$. For these values we have good primary approximation.
For moderate values of $x$, apply to the primary approximation the iteration shown at the bottom of the screen. ..
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