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20.6.15
The kinetic potential of the system is L = 1.5x12 + 9x22 + 6x1x2 - 6x12. From the differential equation of motion corresponding to the generalized coordinate x1, determine the acceleration x2 at the time when the generalized coordinate x1 = 0.1 m, and the acceleration x1 = 1 m / s2. (Answer -0.7)
The kinetic potential of the system is L = 1.5x12 + 9x22 + 6x1x2 - 6x12. From the differential equation of motion corresponding to the generalized coordinate x1, determine the acceleration x2 at the time when the generalized coordinate x1 = 0.1 m, and the acceleration x1 = 1 m / s2. (Answer -0.7)
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Cumulative discount
200 $ | the discount is 15% |
100 $ | the discount is 10% |
50 $ | the discount is 7% |
20 $ | the discount is 5% |
10 $ | the discount is 3% |
5 $ | the discount is 2% |
1 $ | the discount is 1% |
Check your discount
Amount of purchases from the seller: $
Your discount: %
0.04 $ gift card for a positive review