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You join NASA. As you announce at the press conference, you did this world already and kind of crushed it, so you're pretty psyched
You join NASA. As you announce at the press conference, you did this world already and kind of crushed it, so you're pretty psyched to get off this "stink-planet" and see what's out there. Your attitude at the press conference did not endear you to your crew, so it's no surprise when they eject you from the space ship in an escape pod after a week in space. Your spherical escape pod is insulated to help ensure that you remain warm inside, despite the coldness of space. Let's keep this simple and assume the space pod can be represented by a single layer, extending from R1 to R2. R, qr=0 R, T = T You Space The escape pod itself generates heat within the main layer between R1 and R2, represented by the relationship: agen = r where is constant representative of the electrical charge generating heat. Space is extremely cold and has no wind, so you can assume the temperature at the outer wall of the pod is Ts. Starting from the heat equation, determine a relationship for the temperature within the space pod layer. Show all work.
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To determine a relationship for the temperature within the space pod layer we will start with the general heat conduction equation in spherical coordi...Get Instant Access to Expert-Tailored Solutions
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