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Echoing the famous "The Limits to Growth" report from 1972, this
edited volume analyses the changes that the World System has
undergone to the present, on the fiftieth anniversary of the
original report. During the past fifty years, both the concept and
understanding of these limits have significantly changed. This book
highlights that the evolution of the World System has approached a
new critical milestone, moving into a fundamentally new phase of
historical development, when the old economic and social
technologies no longer work as efficiently as before or even begin
to function counterproductively, which leads the World System into
a systemic crisis. The book discusses the transition of
human society to a new phase state, the shape of which has not yet
been determined. New approaches are needed for both, for the
analysis of the global situation, and for forecasts. The book is
based on an integrated approach including the world-systems,
historical and evolutionary perspectives, as well as a systematic
view of society, in which changes in one subsystem cause
transformations in others. Through mathematical modeling, it
defines the main vectors of transformations of the World System;
makes a detailed forecast of the development of all the main
subsystems of the society and the World System, while presenting
horizons of changes from short-term to ultra-long-term; and
presents different development scenarios as well as recommendations
on how to achieve a transition to the most favorable
scenario. The book will appeal to members and followers of
the Club of Rome, policy-makers, as well as to scholars from
various disciplines interested in a better understanding of the
World System evolution, global futures, development studies,
climate change, and future societies.Â
Nanotechnology, biotechnology, information technology, and
cognitive sciences are contributing to the emergence of intelligent
computers and robots with elements of artificial intelligence and
intelligent machines. This book postulates that these developments
are accelerating the technological substitution of jobs and the
shift in labor demand towards high qualification levels, putting
the jobs of lower-skilled labor at risk. The digital economy is
poised to increase the demand for highly qualified specialists in
STEM fields (scientific research, innovative technologies,
engineering, and mathematics serving digital technologies). In
addition, highly skilled robotics engineers, AI and machine
learning specialists, and virtual and augmented reality architects
will be required. This book, using sector-focused mathematical
models, explores how the demand for specialized human capital will
play a decisive role in increasing the efficiency and productivity
of labor in the digital economy. Success is guaranteed to those
entrepreneurs who manage to establish a successful process of
interaction with intelligent machines, which will require a deep
restructuring of the training system for the digital economy.
Nanotechnology, biotechnology, information technology, and
cognitive sciences are contributing to the emergence of intelligent
computers and robots with elements of artificial intelligence and
intelligent machines. This book postulates that these developments
are accelerating the technological substitution of jobs and the
shift in labor demand towards high qualification levels, putting
the jobs of lower-skilled labor at risk. The digital economy is
poised to increase the demand for highly qualified specialists in
STEM fields (scientific research, innovative technologies,
engineering, and mathematics serving digital technologies). In
addition, highly skilled robotics engineers, AI and machine
learning specialists, and virtual and augmented reality architects
will be required. This book, using sector-focused mathematical
models, explores how the demand for specialized human capital will
play a decisive role in increasing the efficiency and productivity
of labor in the digital economy. Success is guaranteed to those
entrepreneurs who manage to establish a successful process of
interaction with intelligent machines, which will require a deep
restructuring of the training system for the digital economy.
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