Question: Please explain the process also! Thank you! The temperature distributionin the wall of a pipe, through which a hot liquid is flowing, is given by

 Please explain the process also! Thank you! The temperature distributionin the

Please explain the process also! Thank you!

The temperature distributionin the wall of a pipe, through which a hot liquid is flowing, is given by the ODE dr2 dr If the pipe described is cooled by covection on the outer surface, then the heat conduction dconduction, at the outer wall is equal to the heat convection, dconvection, to the surroundings. Note that dT dr Iconduction-kA convection h where k is the thermal conductivity, h is the convective cooling coefficient, A is the exposed surface area, and Ta is the ambient temperature. Use finite-difference methods to determine the temperature distribution in the wall if r1 cm, router2 cm, Tinner 100 C, Ta-10 C, k-100 J/(sm K), and h-500 J/(s m2 K). Write an M-file that w calculate the temperature distribution in the wall of the pipe for any number of slices, which will be submitted on the MCS website using the Submit It! feature. Use the values above for your solution, but do not hard code these values into your equations, though they should be hard coded into your M-file. The command-line usage is below. Determine the minimum number of slices. The default number of slices is 50. Make sure your code returns column vectors. [r.vals,T.vals]huk8.pipe Cnum.slices) The temperature distributionin the wall of a pipe, through which a hot liquid is flowing, is given by the ODE dr2 dr If the pipe described is cooled by covection on the outer surface, then the heat conduction dconduction, at the outer wall is equal to the heat convection, dconvection, to the surroundings. Note that dT dr Iconduction-kA convection h where k is the thermal conductivity, h is the convective cooling coefficient, A is the exposed surface area, and Ta is the ambient temperature. Use finite-difference methods to determine the temperature distribution in the wall if r1 cm, router2 cm, Tinner 100 C, Ta-10 C, k-100 J/(sm K), and h-500 J/(s m2 K). Write an M-file that w calculate the temperature distribution in the wall of the pipe for any number of slices, which will be submitted on the MCS website using the Submit It! feature. Use the values above for your solution, but do not hard code these values into your equations, though they should be hard coded into your M-file. The command-line usage is below. Determine the minimum number of slices. The default number of slices is 50. Make sure your code returns column vectors. [r.vals,T.vals]huk8.pipe Cnum.slices)

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