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Its slope (indicated in the top right corner of each panel) is called "attraction coefficient".
Regression coefficients were significant for both attraction coefficient: 0.65 (t = 5.2, P < 0.0001) and AR: 0.36 (t = 2.9, P < 0.01).
Regression coefficients were highly significant for both attraction coefficient (0.36, t = 12.7, P < 1 × 10−17) and AR (0.18, t = 6.5, P < 1 × 10−9).
We performed a multiple regression analysis of single-trial durations with 2 predictors: attraction coefficient and AR (multiple regression, R = 0.16; overall goodness of fit, F2,1075 = 101.8, P < 1 × 10−17).
We also averaged durations of synchronized intervals for each participant across trials and performed a multiple regression analysis of the averaged durations with 2 predictors: attraction coefficient and AR.
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This plot shows that, just as we found for high AR, long durations are associated with high attraction coefficients.
We used absolute values of attraction coefficients to measure "grouping sensitivity," that is, the degree to which responses of individual observers depended on the AR of dot lattices.
To understand why high ARs corresponded to longer durations of synchronized intervals, in Experiment 2, we examined how these durations related to individual grouping sensitivities reflected in attraction coefficients (Fig. 4).
If the charges have opposite signs, the force would be attractive; the attraction would be indicated in equation (1) by the negative coefficient of the unit vector r̂.
According to Dr. Shaw's interpretation of the experiments, it is the mean temperature of the system which affects the coefficient of attraction, so that in the case of extremely unequal masses it is the temperature of the larger mass only which counts.
He discovered that the magnetic coefficients of attraction of paramagnetic bodies vary in inverse proportion to the absolute temperature Curie's law.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com