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Titanium Bar Subjected to Tensile Load P = 900 KN

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titanium bar ( (E=100GPa,v=0.33)  with square cross section (b=75 mm)  and length L=3.0 m is ( E = 100 \mathrm { GPa } , v =0.33 ) \text { with square cross section } ( b = 75 \mathrm {~mm} ) \text { and length } L = 3.0 \mathrm {~m} \text { is } subjected to tensile load P = 900 kN. The increase in volume of the bar is approximately:
 titanium bar (  ( E = 100 \mathrm { GPa } , v =0.33 )  \text { with square cross section } ( b = 75 \mathrm {~mm} )  \text { and length } L = 3.0 \mathrm {~m} \text { is }  subjected to tensile load P = 900 kN. The increase in volume of the bar is approximately:    A)   1400 \mathrm {~mm} ^ { 3 }  B)   3500 \mathrm {~mm} ^ { 3 }  C)   4800 \mathrm {~mm} ^ { 3 }  D)   9200 \mathrm {~mm} ^ { 3 }


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