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The sum of all the digits is 21.
Pi looks random only because the pattern in the digits is fantastically complex.
This eccentricity of the digits is dubbed Benford's law, because it was made famous by Frank Benford, a physicist at the General Electric Company in New York.
Therefore, these task conditions could be easier than a task where the position of the digits is always the same as performed in previous studies of grasp control in PD (e.g., [22] [24]) which limits the number of successful strategies.
In NF1, the enlargement is typically related to more proximal sensory nerves (rather than the distal nerves) and overgrowth of the digits is rare (Fig. 2B).
The above model can explain why a reversed DE appears when numerical information is task-irrelevant, provided that the physical size difference between the digits is the same in the case of both large and small numerical distance.
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Now the digits are easier to share.
You could tape it without affecting the flexibility because the digits are free.
If the digits were printed in ordinary type, they would stretch from New York to Southern California.
Yet in Dehaene's experiments, while subjects answered quickly and accurately when the digits were far apart, like 2 and 9, they slowed down when the digits were closer together, like 5 and 6.
The digits are large wooden characters attached to the dome-like ceiling.
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Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com