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A Titanium Bar (E = 100 GPa, V = 0 1400 mm3 1400 \mathrm{~mm}^{3}

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A titanium bar (E = 100 GPa, v = 0.33) with square cross sec- tion (b = 75 mm) and length L = 3.0 m is subjected to tensile load
P =900 kN. The increase in volume of the bar is approximately: (A) 1400 mm3 1400 \mathrm{~mm}^{3}
(B) 3500 mm3 3500 \mathrm{~mm}^{3}
(C) 4800 mm3 4800 \mathrm{~mm}^{3}
(D) 9200 mm3 9200 \mathrm{~mm}^{3}
 A titanium bar (E = 100 GPa, v = 0.33) with square cross sec- tion (b = 75 mm) and length L = 3.0 m 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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