b) A cylindrical shaft with 380 mm length, having a diameter of 10.0 mm, is to be subjected to a tensile load. If the rod is to experience neither plastic deformation nor an elongation of more than...

NO CURSIVEb) A cylindrical shaft with 380 mm length,<br>having a diameter of 10.0 mm, is to be<br>subjected to a tensile load. If the rod is to<br>experience neither plastic deformation nor an<br>elongation of more than 0.9 mm when the<br>applied load is 24,500 N, which of the four<br>metals or alloys listed in Table 1 below are<br>possible candidates? Justify your choice(s).<br>Modulus<br>Yield<br>Tensile<br>of<br>Material<br>Strength Strengt<br>Elasticity<br>(Мра)<br>(Мра)<br>(GPa)<br>Aluminum<br>70<br>255<br>420<br>alloy<br>Brass<br>100<br>345<br>420<br>alloy<br>Сopper<br>110<br>250<br>290<br>Steel<br>207<br>450<br>550<br>alloy<br>Table 1<br>

Extracted text: b) A cylindrical shaft with 380 mm length, having a diameter of 10.0 mm, is to be subjected to a tensile load. If the rod is to experience neither plastic deformation nor an elongation of more than 0.9 mm when the applied load is 24,500 N, which of the four metals or alloys listed in Table 1 below are possible candidates? Justify your choice(s). Modulus Yield Tensile of Material Strength Strengt Elasticity (Мра) (Мра) (GPa) Aluminum 70 255 420 alloy Brass 100 345 420 alloy Сopper 110 250 290 Steel 207 450 550 alloy Table 1

Jun 11, 2022
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