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A beam with a length L is attached to the wall with a cable as shown in Figure 3. Figure 3: Beam and cable A

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A beam with a length L is attached to the wall with a cable as shown in Figure 3. Figure 3: Beam and cable A load W-500 kg is attached to the beam. The tension force, T, in the cable is given by: Marks awarded Open a new MATLAB script file and write a code to: (a) Create a vector for x for every one hundredth of a meter throughout the length of the beam and calculate the tension force for L = 1.2 m and h 0.5 m. (5 marks) (b) Plot tension force vs. x curve. Format the plot like Figure 4 by adding title, labels and grid (5 marks) Cable tension with different x values 0.8 Figure 4 A beam with a length L is attached to the wall with a cable as shown in Figure 3. Figure 3: Beam and cable A load W-500 kg is attached to the beam. The tension force, T, in the cable is given by: Marks awarded Open a new MATLAB script file and write a code to: (a) Create a vector for x for every one hundredth of a meter throughout the length of the beam and calculate the tension force for L = 1.2 m and h 0.5 m. (5 marks) (b) Plot tension force vs. x curve. Format the plot like Figure 4 by adding title, labels and grid (5 marks) Cable tension with different x values 0.8 Figure 4

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