Normal Basis of the Maximal Real Subfield of a Circular Field of the
field ℚ(α); we show that this normal basis at the same time is
fundamental.
PROBLEM OF QUANTIZING OF THE GRAVITATIONAL FIELD AND THE MIE–EINSTEIN FIELD PARADIGM of quantizing the gravitational
field does not arise since the particles are considered as bunched
fundamental PROBLEM OF QUANTIZING OF THE GRAVITATIONAL FIELD AND THE MIE-EINSTEIN FIELD PARADIGM of quantizing the gravitational
field does not arise since the particles are considered as bunched
fundamental Diophantine Equation Generated by the Maximal Subfield of a Circular Field© 2020, Allerton Press, Inc. Using the
fundamental basis of the
field $L_9=\mathbb{Q} (2\cos(\pi/9
Exact solutions in gravity and cosmology with extra dimensions of gravitation as the
fundamental interaction are also analyzed. Results of integrable gravitational
Graphene Oxide: Fundamentals and Applications systematically describes the
fundamental aspects and applications of graphene oxide. The book is designed
Physical theories in hypercomplex geometric description to be represented by direct products of 2D vectors of a local basis defined on a
fundamental surface. In this math
Self-dual connections and the equations of fundamental fields in a Weyl–Cartan space–Mills
fields associated with the irreducible components of the connection also turn out to be self-dual, so