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- How Einstein Got His Field Equations Arxiv:1608.05752V1 [Physics.Hist-Ph]
- EPFL Lectures on General Relativity As a Quantum Field Theory
- Quantum Gravity : Motivations and Alternatives 1
- Understanding General Relativity
- The Holes Are Defined by the String Edward Witten
- Visualizing Curved Spacetime Rickard M
- A Quantum Gravity Tensor Equation Formally Integrating General Relativity with Quantum Mechanics Abstract
- Homopolar Artificial Gravity Generator Based on Frame-Dragging
- Inductive Rectilinear Frame Dragging and Local Coupling to the Gravitational Field of the Universe
- Motivations for Anti-Gravity in General Relativity
- The Post-Newtonian Approximation in Massive Gravity
- Albert Einstein’S “Miraculous Year” in Which He Published Three Papers, All Within a Few Months, Describing Ideas That Have Since Influenced All of Modern Physics
- On the Interpretation of the Redshift in a Static Gravitational Field
- General Relativity 50 Years
- Relativity the Special and General Theory
- Deconstructing Frame-Dragging
- General Relativity and Cosmology
- Diana Vaman Physics Dept, U
- The Moon As a Test Body for General Relativity
- Class 6 : General Relativity
- Evaluation of PPN Parameter Gamma As a Test of General Relativity Using SLR Data
- Spacetime Geometry and General Relativity (CM334A)
- Information Exchange on Newtonian Gravity and Einstein's Theory of General Relativity 1
- Singular General Relativity Ph.D
- Astronomical Tests of Relativity: Beyond Parameterized Post-Newtonian Formalism (PPN), to Testing Fundamental Principles
- General Relativity a Grand Tour of Physics
- Frame Dragging and the Hong-Ou-Mandel Dip: Gravitational Effects in Multiphoton Interference
- Chapter 7 Einstein's Field Equations
- Gr-Qc/0401099V1 23 Jan 2004 Iiy Ihroei Rsne Ihavr Au Elementary Vague Very a with Presented Is One Either Tivity
- General Relativity and Cosmology
- Introduction to Tensor Calculus for General Relativity C 1999 Edmund Bertschinger
- General Relativity As a Complete Theory and Its New Consequences ∗†
- Interim View from NASA Relativity Probe
- Einstein's Equivalence Principle and the Gravitational Red Shift
- An Improved Framework for Quantum Gravity
- A Case Study in General Relativity Exceptionalism Vs. Particle Physics Egalitarianism
- Hamiltonian Formulation of the Teleparallel Equivalent of General Relativity Without Gauge Fixing
- Notes on the Weyl Tensor, Decomposition of Riemann Tensor, Ruse-Lanczos Identity and Duality of the Curvature Tensor
- Relativistic Effects in Orbital Motion of the S-Stars at the Galactic Center
- General Relativity, 3
- Lesson 9 : Einstein Field Equations
- The Metaphysics of Machian Frame-Dragging
- General Relativity As a Hybrid Theory: the Genesis of Einstein’S Work on the Problem of Motion
- An Underlying Theory for Gravity
- The Einstein Field Equations on Semi-Riemannian Manifolds, and the Schwarzschild Solution
- General Relativity – Gravitational Redshift/Blueshift and Time Dilation – Curvature – Gravitational Lensing • Black Holes As a Consequence of GR Waste Disposal
- Geodetic Precession Or Dragging of Inertial Frames?
- The Redshifts in Relativity
- General Relativity and Gravitation
- A First Course in General Relativity, Second Edition
- Parameterised Post-Newtonian Formalism for the Effective Field
- Precision Tests of General Relativity in Space
- The Post-Newtonian Approximation in Gravity
- General Relativity from Scattering Amplitudes
- Empty Space-Time, General Relativity Principle and Covariant Ether Theories
- A Critique of General Relativity
- General Relativity University of Cambridge Part III Mathematical Tripos
- Closed Time-Like Curves and Inertial Frame Dragging: How to Time Travel Via Spacetime Rotation Conrad Wilson Moore Bucknell University
- Beyond General Relativity: Models for Quantum Gravity, Loop Quantum Cosmology and Black Holes
- The Embedding of General Relativity in Five- Dimensional Canonical Space: a Short History and a Review of Recent Physical Progress
- Parameterized Post-Newtonian Cosmology
- Tests of General Relativity with Gravitational Waves from Black Hole Mergers
- “The Gravitational Red-Shift” Abstract
- A Simple Physical Interpretation of the Lense- Thirring Effect Based on Emqg Theory