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  • Scalar–tensor–vector gravity - Wikipedia
    Scalar–tensor–vector gravity (STVG) [1] is a modified theory of gravity developed by John Moffat, a researcher at the Perimeter Institute for Theoretical Physics in Waterloo, Ontario The theory is also often referred to by the acronym MOG (MOdified Gravity)
  • [gr-qc 0506021] Scalar-Tensor-Vector Gravity Theory - arXiv. org
    A covariant scalar-tensor-vector gravity theory is developed which allows the gravitational constant G, a vector field coupling ω and the vector field mass μ to vary with space and time
  • Tensor-vector-scalar gravity - (Principles of Physics IV) - Vocab . . .
    Tensor-vector-scalar gravity is a theoretical framework that extends general relativity by incorporating additional fields, specifically a vector field and a scalar field, alongside the traditional tensor field that describes gravitational interactions
  • Scalar-Tensor-Vector Gravity - an overview - ScienceDirect
    Scalar-tensor gravity refers to a theory in physics that combines scalar fields and tensor fields to describe gravitational interactions You might find these chapters and articles relevant to this topic 2011, Physics Reports Shin’ichi Nojiri, Sergei D Odintsov
  • Scalar–tensor–vector gravity theory - IOPscience
    A covariant scalar–tensor–vector gravity theory is developed which allows the gravitational constant G, a vector field coupling ω and the vector field mass μ to vary with space and time
  • Scalar–tensor–vector–gravity and NGC-1277 - Oxford Academic
    Scalar–tensor–vector gravity (STVG) is a modified theory of gravitation (MOG) based on an action principle In addition to the Einstein–Hilbert term, the theory postulates the existence of a vector field that results in a repulsive force of finite range, which partially cancels out attractive gravitation
  • Scalar-tensor-vector gravity theory - INSPIRE
    A covariant scalar-tensor-vector gravity theory is developed which allows the gravitational constant G G, a vector field coupling \omega ω and the vector field mass \mu μ to vary with space and time
  • The Scalar-Tensor Theory of Gravitation
    The topics will cover the weak equivalence principle (WEP), parameters of the prototype BD model, conformal transformation, Mach’s principle and variable G, and a question about whether there is any advantage to be gained from sticking to a complicated scalar–tensor theory instead of less constrained theories of scalar fields, like the


















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