Difference between revisions of "D.Taylor"

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<math>Time=Time^{'}/\sqrt{1-\nu_{Esc}^{2}/c^{2}}</math>
 
<math>Time=Time^{'}/\sqrt{1-\nu_{Esc}^{2}/c^{2}}</math>
  
<math>Time=\frac{Time^{'}}}{\sqrt{1-\nu_{Esc}^{2}/c^{2}}}</math>
+
<math>Time=\frac{Time^{'}}}{{\sqrt{1-\nu_{Esc}^{2}/c^{2}}}</math>
  
 
<math>Time=\frac{Time^{'}}{\sqrt{1-\frac{\nu_{Esc}^{2}}{c^{2}}}}</math>
 
<math>Time=\frac{Time^{'}}{\sqrt{1-\frac{\nu_{Esc}^{2}}{c^{2}}}}</math>

Revision as of 06:31, 12 May 2019

A Relativistic Escape Velocity Maximum of Light Speed

[math]Time=Time^{'}/\sqrt{1-\nu_{Esc}^{2}/c^{2}}[/math]

[math]Time=\frac{Time^{'}}}{{\sqrt{1-\nu_{Esc}^{2}/c^{2}}}[/math]

[math]Time=\frac{Time^{'}}{\sqrt{1-\frac{\nu_{Esc}^{2}}{c^{2}}}}[/math]