1. The stress field due to so-called edge dislocation is given by the three following equations:…

1. The stress field due to so-called edge dislocation is given by the three following equations: Generate on the one page three plots sxx(x, y), s yy (x,y) and t xy (x, y) as follows: the s xx (x, y)- plot in the left top pane; the s yy (x, y)-plot in the left bottom pane, and the t xy (x, y)-plot in the two joined right panes. The x range is -5.10 -9 5.10 -9 m, y range is -5.10 -9 -1.10 -9 m, G=79.3*10 9 Pa, b=0.248m, and v=0.27 dimensionless (steel). Add axis labels, a grid, and caption to each plot. 2. In the Langmuir adsorption model, the solid surface coverage O is function of an

1. The stress field due to so-called edge dislocation is given by the three following equations: Generate on the one page three plots sxx(x, y), s yy (x,y) and t xy (x, y) as follows: the s xx (x, y)- plot in the left top pane; the s yy (x, y)-plot in the left bottom pane, and the t xy (x, y)-plot in the two joined right panes. The x range is -5.10 -9 5.10 -9 m, y range is -5.10 -9 -1.10 -9 m, G=79.3*10 9 Pa, b=0.248m, and v=0.27 dimensionless (steel). Add axis labels, a grid, and caption to each plot. 2. In the Langmuir adsorption model, the solid surface coverage O is function of an equilibrium pressure P and the Langmuir coefficient b: where b is the constant given for a substance at a certain temperature. Build two plots in two separate Figure windows (using the two figure commands): the ?(P,b) graph for P and b are in the ranges 0, , 3 (make 50 equally spaced values) and 0.2, , 50 (make 25 equally spaced values ) respectively; the ?(P) graph for three b constants5, 15, and 50. Add axis labels, a grid, and caption to each plot, and add a legend to the ?(P) plot.

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