Question: PLEASE BE SPECIFIC WITH YOUR ANSWER. THANK YOU SO MUCH! A transistor is being cooled convectively by a fan-induced flow of air at a constant

PLEASE BE SPECIFIC WITH YOUR ANSWER. THANK YOU SO MUCH!
A transistor is being cooled convectively by a fan-induced flow of air at a constant temperature (Tair = 10 C). The outer surface of the transistor is 10 cm (Atran = 10 cm). At the steady state, the electrical power to the transistor is 2 W. The heat transfer between the transistor and its base is negligible. The convective heat-transfer coefficient is a constant: h=1.00 W/(mK). Consider the transistor to be the system, please: (a) Determine the time rate of work. W in W:(5%) (6) Judge the energy-flow direction of the work: into transistor or out of transistor, (5%) (c) If Etran stands for the total energy of the system, determine the term in W: (5%) En dt (d) Determine the time rate of energy transfer between the transistor and the flowing air. O, in W; (5%) (e) Judge the energy-low direction of the heat transfer: into transistor or out of transistor: (5%) (f) Find the correct equation for such convective cooling: (5%) (g) Calculate the temperature of the outer surface of the transistor, Iaran. in C. (5%) (h) If we want to lower the Tuan. what are the possible ways we could do? (5%) detran A transistor is being cooled convectively by a fan-induced flow of air at a constant temperature (Tair = 10 C). The outer surface of the transistor is 10 cm (Atran = 10 cm). At the steady state, the electrical power to the transistor is 2 W. The heat transfer between the transistor and its base is negligible. The convective heat-transfer coefficient is a constant: h=1.00 W/(mK). Consider the transistor to be the system, please: (a) Determine the time rate of work. W in W:(5%) (6) Judge the energy-flow direction of the work: into transistor or out of transistor, (5%) (c) If Etran stands for the total energy of the system, determine the term in W: (5%) En dt (d) Determine the time rate of energy transfer between the transistor and the flowing air. O, in W; (5%) (e) Judge the energy-low direction of the heat transfer: into transistor or out of transistor: (5%) (f) Find the correct equation for such convective cooling: (5%) (g) Calculate the temperature of the outer surface of the transistor, Iaran. in C. (5%) (h) If we want to lower the Tuan. what are the possible ways we could do? (5%) detran
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