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i was able to solve this problem but I need help inputting the notes in MATLAB as a script so that the computer can solve

i was able to solve this problem but I need help inputting the notes in MATLAB as a script so that the computer can solve that problem. if anyone can help create a script in MATLAB that could solve this problem that would be great.
***my answer for part A:
stress in x direction= stress in y direction=16.154 MPA
strain in z direction = -8.472*10^-3 mm
****my answer for part B:
stress to strain ratio = 3541.076 MPA image text in transcribed
image text in transcribed
image text in transcribed
6. For the situation of Fig. 6 (below), where a rigid die prevents deformation in both the x-andy directions, the material is an ABS plastic, and the stress in the 2-direction is 30 MPa compression a. Determine the stresses in the x- and y-directions and the strain in the 2-direction. b. Evaluate the ratio of stress to strain for the 2-direction, E'=0;/ Ex, and comment on the value obtained Figure 6 material rigid die olution Ez Ey = , 0 -300 Pa (-ve becaute compres zno --- Cuppare) For ABS plastic wa 0:35. Cloison's rabo Young's Modukes, E = 32000 s I = 22063M [-l tu] + MX30 = 0 0-C-1 +0:35] + 30X0:31 = 0 0 654 MPa. Compressive . Stres in X-directions Stress in ydirection! 16:154 MPa Compresive Stroin in Z-direction, Ezz o gues za+0:35 X 1.4 +0:3x12:47 2206:3 - - 8.472 x 10 mm (b) Stress to strain ratio in 2-direction - -30 -8.472x 10-) = 35411076 MPa. " 02 F E (because on = only in care of uniaxial load, whereas here the lood applied is Triaxial load). Ez

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