Science, Volume 319, Issues 5859-5864John Michels (Journalist) American Association for the Advancement of Science, 2008 |
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Page 98
... Node motions appeared uncorrelated , because the slopes of relative MSD between pairs of nodes ( Fig . 2E , gray , and fig . S2B ) were on average equal to the sum of the slopes of individual node MSD curves . Diffusive behav- ior ...
... Node motions appeared uncorrelated , because the slopes of relative MSD between pairs of nodes ( Fig . 2E , gray , and fig . S2B ) were on average equal to the sum of the slopes of individual node MSD curves . Diffusive behav- ior ...
Page 99
... node in the upper right corner and stops . Node 2 ( open arrowhead ) moves toward node 1. ( E ) MSD of newly formed nodes . Black curves , MSD of three nodes in the same cell versus time ; gray lines , relative MSD between the three nodes ...
... node in the upper right corner and stops . Node 2 ( open arrowhead ) moves toward node 1. ( E ) MSD of newly formed nodes . Black curves , MSD of three nodes in the same cell versus time ; gray lines , relative MSD between the three nodes ...
Page 100
... nodes to condense 50 % versus number of nodes . ( B ) Largest circumferential gap between nodes 500 s after the onset of condensation versus number of nodes . ( C ) As ( A ) , but as a function of the initial half - width of the broad ...
... nodes to condense 50 % versus number of nodes . ( B ) Largest circumferential gap between nodes 500 s after the onset of condensation versus number of nodes . ( C ) As ( A ) , but as a function of the initial half - width of the broad ...
Contents
GE Healthcare BioSciences AB encro | 10 |
General Electric c | 12 |
CLIMATE CHANGE | 22 |
Copyright | |
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