Part B Outside Power Station Aluminum Pin Fin Case Assuming One Dimensional Conduction Alo Q37168733

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PART B: Outside power station with aluminum pin fin In this case, assuming one-dimensional conduction along the x-direction,

PART B: Outside power station with aluminum pin fin In this case, assuming one-dimensional conduction along the x-direction, steady-state conditions, no convection and heat transfer by radiation into a vacuum, the temperature distribution in the pin fin is given by an energy balance equation of the form: dr* R where T(x) is the temperature (K) distribution along the length of the pin fin, R is the pin radius (5 mm), k is the thermal conductivity of aluminum (250

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