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Each reaction was assumed to occur if a generated random number was greater than its probability, which had been determined by fitting the distribution of monomeric scission products in prior simulation.
Then, the mean nanocrystal size was determined by fitting the distribution curve with the Gaussian distribution function.
The formula to calculate expected score for limiting the alignment is ({text{eScore}} = K*m*n*mathbf {{e}^{-text{s}*uplambda }},) where n is the length of the query sequence, m is the length of the subject sequence, K and λ are statistical parameters estimated by fitting the distribution of local alignment scores and s is the current score.
The means were determined by fitting the distribution histograms with the Gaussian function.
Labeling efficiency was determined by fitting the distribution of incorporated fluorophores with a statistical model and verified by independent experiments.
The mean step size was determined by fitting the distribution with where which takes into account the asymmetric distance distribution due to noise.
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The peak dwell times were calculated by fitting the distributions to a sum of single exponential and Gaussian functions.
By fitting the distributions as a linear combination of open and closed states, the fraction of closed state can be accurately estimated ('Materials and methods').
Such a threshold was obtained by fitting the distributions of the "exposed" and "unexposed" log2-ratios with a normal distribution and calculating upper bound of the 99% confidence interval.
The values of τon (the mean interevent interval) and τoff (the mean residence time) for DNA polymers were obtained from the dwell time histograms by fitting the distributions to single exponential functions by the Levenberg Marquardt procedure.
We obtained this lognormal distribution by fitting the size distribution of 127 rearrangements observed in evolving cultures of Escherichia coli (D. Schneider, personal communication) and Salmonella enterica (Nilsson et al. 2005; Sun et al. 2012).
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by fitting the exponentially
by fitting the time
by integrating the distribution
by examining the distribution
by fitting the strain/time
by fitting the painting
by considering the distribution
by fitting the linear
by fitting the decay
by fitting the amplitude
by fitting the sorption
by acquiring the distribution
by fitting the sample
by fitting the instruction
by fitting the survival
by fitting the logδ φ
by fitting the model
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