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Two groups of aligned sequences were statistically analyzed by the binomial test (p < 0.01) against a binomial distribution.
Instances where these proportions differ from chance (p =.50) by the binomial test are marked with an asterisk.
* P-values are obtained by the binomial test; only P-values that fulfilled an additional false discovery rate test are shown.
The one-tailed p-value for this fraction by the binomial test is 4.00E-7 4.00E-7n the assumption that only 1/4 of motif pairs would based this onientheion if they were rassumptionsthatuted.
In L1 addition, 9 of 11 subjects (81.8%) showed higher behavioral performance in Chinese approximate addition (CA) than Chinese exact addition (CE), which is significantly different from the 50% chance level as revealed by the binomial test (P = 0.033).
The differentially methylated signal sites were counted and tested for over- or under-representation in the differentially expressed genes (Fig. 5A and D) by the binomial test with an occurrence probability of 5%.
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Interchangeability of goniometers was also demonstrated by the binomial tests, which involved assessment of the inter-goniometer ≤ 5-degree agreement.
We tested whether significantly more subjects turned their head to one side than expected by chance, using the Binomial test (e.g. [13], [27]).
We then again tested whether significantly more subjects turned their head to one side than expected by chance, using the Binomial test.
Inter-group drug use was compared by means of the binomial test with Bonferroni's correction for multiple comparisons.
For PANTHER the P-value listed is calculated by the program using the binomial test for each category with a Bonferroni correction.
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