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The identity of the gas does not matter (remember why?). Consider the following and answer the questions below. There are 8 moles of gas in the sealed container that has a volume of 1.8L. I have the container in my undersea laboratory that is maintained at 1 atm. I am going to launch the container into space. Upon launch, it will experience 10 atm of pressure due to its exposure to the outside pressure of the ocean. It will then leave the oceans (be at 1 atm upon exit) and then make it to space where the pressure is 1.3x10-16 atm. Fortunately, the container is made of a new polymer that can handle virtually any change in its shape and will expand or contract as the gas inside expands and contracts. To further complicate matters, when the container gets to space, it will cool from the temperature of my lab, 22C (295.15K), to the temperature of space, -157C (116.15K). How will this alter the pressure and volume of the container?
a. What is the volume of the container in my under sea lab?
b. What is the volume of the container upon launch when exposed to ocean pressure?
c. What is the volume of the container in space?
d. How will the cooling of the container in space alter it's pressure and volume
Show all the steps in the mechanism for the following reaction, When benzene is mixed with deuterated sulfuric acid, deuterium is slowly incorporated onto the ring. Show the mechanism for this reaction and explain how this relates the sulfonation of ..
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