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A 110-kg steel support rod in a building has a length of 2.0 m at a temperature of 20°C. The rod supports a hanging load of 5

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Answer #1

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PART (a):

Given that,

Length of the rod, L = 2 m

Coefficient of linear expansion, \alpha=11\times10^{-6}\;(^{o}C)^{-1}

Change in temperature, \Delta T=37^{o}C-20^{o}C=17^{o}C

Therefore, Change in length of the rod is given by:

\Delta L=L.\alpha.\Delta T=2\;m\times 11\times10^{-6}\;(^{o}C)^{-1}\times17^{o}C

\therefore \Delta L=3.74\times10^{-4}\;m

Also, force is given by:

F=mg=5000\;kg\times9.8\;m/s^{2}=49000\;N

Therefore, Work done on the rod is given by:

W=F.\Delta L=49000\;N\times3.74\times10^{-4}\;m

\boldsymbol{\therefore W=18.326\;J}

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PART (b):

Given that,

Mass of the rod, M = 110 kg.

Specific heat capacity, C = 448 J/kg.oC.

Therefore, Energy added to the rod is given by:

Q=MC\Delta T=110\;kg\times448\;J/kg^{o}C\times17^{o}C

\boldsymbol{\therefore Q=837760\;J}

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PART (c):

Change in internal energy of the rod is given by:

\Delta U=Q-W=837760\;J-18.326\;J

\boldsymbol{\therefore \Delta U=837741.674\;J}


__________________________________________________________________________

Hope this helped for your studies. Keep learning. Have a good day.

Feel free to clear any doubts at the comment section.


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Thank you. :)

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