Exact(14)
In Figure 2 we display the numerical solution, the error estimate and the residual for.
Figure 21 Problem (3. 18): The numerical solution, the error estimate, and the residual for.
Figure 6 Problem (3. 8): The numerical solution, the error estimate, and the residual for, and.
Figure 4 Problem (3. 8): The numerical solution, the error estimate, and the residual for, and. Figure 5 Problem (3. 8): The numerical solution, the error estimate, and the residual for, and.
The associated root is. Figure 10 Problem (3. 8): The numerical solution, the error estimate, and the residual for, and. Figure 11 Problem (3. 8): The numerical solution, the error estimate, and the residual for, and.
The associated root is. Figure 7 Problem (3. 9): The numerical solution, the error estimate, and the residual for, and.
Similar(46)
With the new solution, the errors of temperature responses can be significantly reduced, which can be 100 times lower.
Open image in new window Fig. 11 Energy of the ultrasonic response of pastes vacuum saturated with a 2.8 mol/L NaCl solutions (the error bars indicate ± one standard deviation).
We compare our numerical solution to the analytic solution using the error defined by (18).
This discrepancy in the time solution renders the error in the original solution u x,t).
The improved Jacobi polynomial solution is obtained by summing up the basic Jacobi polynomial solution and the error estimation function.
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