Black–Scholes–Schrödinger–Zipf–Mandelbrot model framework for improving a study of the coauthor core score.

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Title: Black–Scholes–Schrödinger–Zipf–Mandelbrot model framework for improving a study of the coauthor core score.
Authors: Rotundo, Giulia1 giulia.rotundo@uniroma1.it
Source: Physica A. Jun2014, Vol. 404, p296-301. 6p.
Subjects: Black-Scholes model, Schrödinger equation, Mandelbrot sets, Scientists, Publications, Exponents
Abstract: Abstract: The data and findings by Miskiewicz (2013) on the relationship between the number ( ) of publications ranked according to their decreasing importance, for some scientist with her/his coauthors (CA), i.e. , as found in Ausloos (2013), when specific types of publications, i.e. proceedings (in a generalized sense) and peer-review journals, are considered, are reexamined along the Zipf–Mandelbrot law Mandelbrot (1977), i.e. . The statistics are much improved. The exponent and are compared. The core value, i.e. the core number of CAs [1] is unaffected, of course. A Black–Scholes–Schrödinger model framework is proposed to describe the findings. [Copyright &y& Elsevier]
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Database: Engineering Source
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Abstract:Abstract: The data and findings by Miskiewicz (2013) on the relationship between the number ( ) of publications ranked according to their decreasing importance, for some scientist with her/his coauthors (CA), i.e. , as found in Ausloos (2013), when specific types of publications, i.e. proceedings (in a generalized sense) and peer-review journals, are considered, are reexamined along the Zipf–Mandelbrot law Mandelbrot (1977), i.e. . The statistics are much improved. The exponent and are compared. The core value, i.e. the core number of CAs [1] is unaffected, of course. A Black–Scholes–Schrödinger model framework is proposed to describe the findings. [Copyright &y& Elsevier]
ISSN:03784371
DOI:10.1016/j.physa.2014.02.011