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Econophysics is an emerging interdisciplinary field that takes
advantage of the concepts and methods of statistical physics to
analyse economic phenomena. This book expands the explanatory scope
of econophysics to the real economy by using methods from
statistical physics to analyse the success and failure of
companies. Using large data sets of companies and income-earners in
Japan and Europe, a distinguished team of researchers show how
these methods allow us to analyse companies, from huge corporations
to small firms, as heterogeneous agents interacting at multiple
layers of complex networks. They then show how successful this
approach is in explaining a wide range of recent findings relating
to the dynamics of companies. With mathematics kept to a minimum,
the book is not only a lively introduction to the field of
econophysics but also provides fresh insights into company
behaviour.
Econophysics is an emerging interdisciplinary field that takes
advantage of the concepts and methods of statistical physics to
analyse economic phenomena. This book expands the explanatory scope
of econophysics to the real economy by using methods from
statistical physics to analyse the success and failure of
companies. Using large data sets of companies and income-earners in
Japan and Europe, a distinguished team of researchers show how
these methods allow us to analyse companies, from huge corporations
to small firms, as heterogeneous agents interacting at multiple
layers of complex networks. They then show how successful this
approach is in explaining a wide range of recent findings relating
to the dynamics of companies. With mathematics kept to a minimum,
the book is not only a lively introduction to the field of
econophysics but also provides fresh insights into company
behaviour.
The concepts of statistical physics and big data play an important
role in the evidence-based analysis and interpretation of
macroeconomic principles. The techniques of complex networks, big
data, and statistical physics are useful to understand theories of
economic systems, and the authors have applied these to understand
the intricacies of complex macroeconomic problems. Recent research
work using tools and techniques of big data, statistical physics,
complex networks, and statistical science is covered, and basic
graph algorithms and statistical measures of complex networks are
described. The application of big data and statistical physics
tools to assess price dynamics, inflation, systemic risks, and
productivity is discussed. Chapter-end summary and numerical
problems are provided to reinforce understanding of concepts.
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