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Talk:Proper Time Adjusted Special Relativity with Gravitation
From Visual Physics Wiki
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`F=m_2*a` `F=G*(m_1*m_2)/x^2 |
`m_2*a=G*(m_1*m_2)/x^2` |
`a=G*m_1/x^2` |
`upsilon=a*T` `upsilon=G*m_1/x^2*T=G*(m_1*T)/x^2` |
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`x=upsilon T` `t' = Tsqrt(1-upsilon^2/c^2)` |
`x=G*(m_1*T)/x^2 T` `t' = T sqrt(1-(G*(m_1*T)/x^2)^2/c^2)` |
`x=root3(G*m_1*T^2)` `t' = T sqrt(1-(root3(G*m_1*T^2))^2/c^2)` |
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`F=m_2*a` `F=G*(m_1*m_2)/r^2 |
`m_2*a=G*(m_1*m_2)/r^2` |
`a=G*m_1/r^2` |
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`upsilon=a*T` `upsilon=G*m_1/r^2*T=G*(m_1*T)/r^2` |
`x=upsilon T` `t' = Tsqrt(1-upsilon^2/c^2)` |
`x=G*(m_1*T)/r^2 T` `t' = T sqrt(1-(G*(m_1*T)/r^2)^2/c^2)` |

