:<math>F_{galaxy}(r)=(G/c^2)[E_o-E_d(r)]m_{galaxy} /r^2,</math> <ref>Explanation of the above equation:
:<math>F_{galaxy}(r)=(G/c^2)[E_o-E_d(r)]m_{galaxy} /r^2,</math> <ref>Explanation of the above equation:
−
It comes from the Newtonian force being <math>F=GMm/r^2</math> and <math>M</math>, the source of gravitational "repulsive force" being replaced by <math>M=E/c^2</math> according to Einstein's physics. <math>E</math> in this equation is difference of original mass of "dust" causing the "Newtonian repulsion" adjusted by in general tiny <math>E_d(r)</math> causing "attraction" (acting in opposite direction than the "repulsive" <math>M</math>). It is similar to a gravitational effect of a buble of air "repulsing" gravitationally their sorounding water in a tank of water plus tiny effect of attraction by <math>E_d(r)</math>, the tiny gravitational energy of accumulated within the buble</ref>
+
It comes from the Newtonian force being <math>F=GMm/r^2</math> and <math>M</math>, the source of gravitational "repulsive force" being replaced by <math>M=E/c^2</math> according to Einstein's physics. <math>E</math> in this equation is difference of original mass of "dust" causing the "Newtonian repulsion" adjusted by in general tiny <math>E_d(r)</math> causing "attraction" (acting in opposite direction than the "repulsive" <math>M</math>). It is similar to a gravitational effect of a bubble of air "repulsing" gravitationally their sorounding water in a tank of water plus tiny effect of attraction by <math>E_d(r)</math>, the tiny gravitational energy of accumulated within the bubble</ref>