Graph, Wall, Tome: Difference between revisions
→Expansion
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: $$F = \frac{G m_1 m_2}{r^2}$$ | : $$F = \frac{G m_1 m_2}{r^2}$$ | ||
'''Einstein's General Relativity equation (1):''' | |||
: $$R_{\mu v}-\frac{1}{2}Rg_{\mu v} = 8 \pi T_{\mu v}$$ | : $$R_{\mu v}-\frac{1}{2}Rg_{\mu v} = 8 \pi T_{\mu v}$$ | ||
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: $$dim\, ker \not{D}_E - dim \, coker \not{D}_E = \int_M \hat{A}(M) \cdot ch(E)$$ | : $$dim\, ker \not{D}_E - dim \, coker \not{D}_E = \int_M \hat{A}(M) \cdot ch(E)$$ | ||
'''Yang-Mills equations (2): | '''Yang-Mills equations (2):''' | ||
: $$d^*_A F_A \propto J$$ | : $$d^*_A F_A \propto J$$ | ||