Solution 19.8d

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(New page: The expression for the position vector <math>\mathbf{r}</math> has been obtained in part b). <math>\mathbf{r}=\left( 40t \right)\mathbf{i}+\left( -2t+400 \right)\mathbf{j}</math>)
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Revision as of 17:09, 11 October 2010

The expression for the position vector \displaystyle \mathbf{r} has been obtained in part b).

\displaystyle \mathbf{r}=\left( 40t \right)\mathbf{i}+\left( -2t+400 \right)\mathbf{j}