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This is the question of Applied Partial Differential Equations . Thanks! Which of these could NOT be a matrix of values in Matlab representing a
This is the question of Applied Partial Differential Equations. Thanks!
Which of these could NOT be a matrix of values in Matlab representing a solution function u to uzt = 0, sampled over a 4 x 4 grid? Give a numerical reason. Remember: In Matlab, the matris entry in row i column j corresponds to the value u(I;,t;). In other words, u increases from left to right while t increases from top to bottom in the array. A. B. C. 0 0.33 0.66 0.99 0 0 0 0 0 0.11 0.44 0.98 0.33 0.66 0.99 1.32 0 0.11 0.22 0.33 0.33 0.44 0.77 1.31 0.66 0.99 1.32 1.65 0 0.22 0.44 0.66 0.66 0.77 1.10 1.64 0.99 1.32 1.65 1.98 0 0.33 0.66 0.99 0.99 1.10 1.43 1.97 Which of these could NOT be a matrix of values in Matlab representing a solution function u to uzt = 0, sampled over a 4 x 4 grid? Give a numerical reason. Remember: In Matlab, the matris entry in row i column j corresponds to the value u(I;,t;). In other words, u increases from left to right while t increases from top to bottom in the array. A. B. C. 0 0.33 0.66 0.99 0 0 0 0 0 0.11 0.44 0.98 0.33 0.66 0.99 1.32 0 0.11 0.22 0.33 0.33 0.44 0.77 1.31 0.66 0.99 1.32 1.65 0 0.22 0.44 0.66 0.66 0.77 1.10 1.64 0.99 1.32 1.65 1.98 0 0.33 0.66 0.99 0.99 1.10 1.43 1.97Step by Step Solution
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