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Consider a long, homogeneous, hollow cylinder with internal and external radii r 1 and r 2 , respectively. The temperature is kept constant at the

Consider a long, homogeneous, hollow cylinder with internal and external radii r1 and r2, respectively. The temperature is kept constant at the cylinder walls as Ts1 and Ts2.
a) Starting from the heat conduction equation in cylindrical coordinates, and using the thermal diffusivity D = k /(\rho Cp) as the only parameter of interest, develop the steady state solution for temperature T(r) for r1< r< r2.
b) For Ts1=0 and Ts2= To plot the solution.
c) With the solution in part b) as initial condition, and assuming Ts1=0 and Ts2=0 develop and plot the transient solution for T(r, t). UseConsider a long, homogeneous, hollow cylinder with internal and external radii r1 and r2, respectively. The temperature is kept constant at the cylinder walls as Ts1 and Ts2.
a) Starting from the heat conduction equation in cylindrical coordinates, and using the thermal diffusivity D = k /(\rho Cp) as the only parameter of interest, develop the steady state solution for temperature T(r) for r1< r< r2.
b) For Ts1=0 and Ts2= To plot the solution.
c) With the solution in part b) as initial condition, and assuming Ts1=0 and Ts2=0 develop and plot the transient solution for T(r, t). Use \epsi =r2/ r1=1.2.
Solve part c in step by step details!

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