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a. Calculate the heat loss of the base if there were no fins. Assume that the base is also aluminum. b. Use the adiabatic assumption

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a. Calculate the heat loss of the base if there were no fins. Assume that the base is also aluminum. b. Use the adiabatic assumption to calculate the heat loss from one fin, q using the corrected length. c. Does this length allow you to assume infinite length? i. Check L>2.65/m ii. Check heat loss using infinitely long assumption. d. Calculate the efficiency of one fin, hf using the adiabatic assumption. e. Calculate the total heat loss from all the fins. f. Calculate the heat loss from just the base around the fins. g. Calculate the total heat loss from fins and base. h. Calculate the overall surface efficiency, h0 i. Calculate the total resistance, Rt,0(q=qb/R) j. Draw the circuit diagram for the fins and base. Determine the resistance from the fins and from the base separately. k. You are given that that the contact resistance, R, is 0.6104m2K/W. Write out the equation for the total resistance in terms of Rfin,Rbusc and Rtoc

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