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Classical Fields: General Relativity and Gauge Theory

M. Carmeli

Open publisher page 306 citations

Abstract

The gravitational field the geometry of curved space-time the Einstein field equations gravitational fields of elementary mass systems properties of the gravitational field equations of motion in general relativity axisymmetric solutions of the Einstein field equations spinor formulation of gravitation and gauge fields classification of the gravitational and gauge fields gauge theory of gravitation and other fields extended bodies in general relativity.

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The gravitational field the geometry of curved space-time the Einstein field equations gravitational fields of elementary mass systems properties of the gravitational field equations of motion in general relativity axisymmetric solutions of the Einstein field equations spinor formulation of gravitation and gauge fields classification of the gravitational and gauge fields gauge theory of gravitation and other fields extended bodies in general relativity.

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OpenAlex reports 306 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

The gravitational field the geometry of curved space-time the Einstein field equations gravitational fields of elementary mass systems properties of the gravitational field equations of motion in general relativity axisymmetric solutions of the Einstein field equations spinor formulation of gravitation and gauge fields classification of the gravitational and gauge fields gauge theory of gravitation and other fields extended bodies in general relativity.

Key concepts: Two-body problem in general relativity, Introduction to gauge theory, Physics, General relativity, Classical field theory, Gravitational field, Speed of gravity, Introduction to the mathematics of general relativity

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