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matlab 3) The velocity components below a linear wave are given by the following equations: Hcosh kh + ) cos(kx-at) 2 sinh kh H sinh
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3) The velocity components below a linear wave are given by the following equations: Hcosh kh + ) cos(kx-at) 2 sinh kh H sinh k( + =), sin (kr-a) (3) 2 sinh kh where a = 2x/T, u is the x-velocity component, and w is the y-velocity component. These equations define velocity components as a function of time (1) and space (x). By holding one or the other constant, velocities can be computed Create a function to compute the x-velocity and y-velocity components below a wave as a function of x by holding 1 - 0 in the above equations. Allow the user to specify how many points they would like to use in both the x and z directions. Create a 2x2 subplot of the results using 20 points in the x-direction and 10 points in the 2-direction. Please note that in these equations starts at 0 and goes to h. 3) The velocity components below a linear wave are given by the following equations: Hcosh kh + ) cos(kx-at) 2 sinh kh H sinh k( + =), sin (kr-a) (3) 2 sinh kh where a = 2x/T, u is the x-velocity component, and w is the y-velocity component. These equations define velocity components as a function of time (1) and space (x). By holding one or the other constant, velocities can be computed Create a function to compute the x-velocity and y-velocity components below a wave as a function of x by holding 1 - 0 in the above equations. Allow the user to specify how many points they would like to use in both the x and z directions. Create a 2x2 subplot of the results using 20 points in the x-direction and 10 points in the 2-direction. Please note that in these equations starts at 0 and goes to h Step by Step Solution
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