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We compared the observed 5'UTR intron position distributions with the distributions that would be expected if introns were distributed uniformly (i.e. constant insertion probability after any given nucleotide) throughout 5'UTRs – calculated using Monte-Carlo simulations (see Methods).
Fig. 8 a d Throughput for various levels of unevenness in user position distributions.
Different styles of shock wave propagation for each crystallographic orientation make macro-breaking position distributions with various characters.
When the strain rate is less than 0.26% ps-1, macro-breaking position distributions exhibit the structural anisotropy.
Thus, macro-breaking position distributions at the two ends of the nanowires show symmetric characters at high strain rates.
When the strain rate is less than 0.26% ps-1, macro-breaking position distributions exhibit the anisotropy of micro-atomic fluctuation.
Similar(28)
The Monte-Carlo simulation program – written in C++ – was used to calculate the expected position distribution of 5'UTR introns if introns were distributed uniformly (i.e. constant insertion probability after any given nucleotide) throughout 5'UTRs.
Therefore, we conclude that the relay position distribution is important to the system transmission rate.
The performance was evaluated for various levels of unevenness in user position distribution.
The position distribution is limited by a minimum allowed interspacing between the pores.
In addition, we consider the effect of the position distribution of users.
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