0:00:04 | no i met |
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0:00:27 | i know |
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0:00:40 | you know i |
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0:00:53 | i |
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0:00:56 | for me you one |
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0:01:10 | i and |
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0:01:19 | i am i right |
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0:01:30 | i |
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0:01:31 | sorry |
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0:01:37 | you know that you |
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0:01:46 | you |
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0:01:50 | i |
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0:01:55 | one and s |
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0:02:05 | and i one |
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0:02:10 | no it's all very well |
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0:02:22 | i will |
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0:02:27 | i |
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0:02:30 | so i |
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0:02:36 | or obviously we so that evolution auditioning balanced for its component |
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0:02:43 | and in the lower ones they're the distribution along that what and |
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0:02:49 | you are the most populated one and has recently different so by the than the |
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0:02:55 | one that said to be seen that there is something we would be to use |
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0:03:01 | a situation for the small initial population imbalances of these things |
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0:03:06 | no that this component is more dry for and what and that the scale of |
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0:03:11 | the situations is your there ten miliseconds |
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0:03:19 | secondly we saw and the production of this and then used for both components |
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0:03:26 | but i think that some between different species is lower than the interaction between right |
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0:03:31 | part of the states pieces the most popular the component in this case i expect |
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0:03:36 | the other one |
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0:03:38 | these images reading case with wearable component get separated you do that x is also |
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0:03:44 | very interesting |
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0:03:46 | some trends very small right side |
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0:03:49 | these know are not taken into a no need only the one dimensional reduction to |
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0:03:53 | the roles they skip question know the two approaches |
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0:03:58 | these two cases and many more are ready in the end |
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0:04:03 | thank you very much for your attention |
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