2. A rubberized, cubic chamber was filled with butane gas and was expanded from 3.0L to 4.5L at a pressure of 2.7atm and it absorbed 230J of heat from the surroundings. a. What is the change in the...


2. A rubberized, cubic chamber was filled with butane gas and was expanded from 3.0L to 4.5L at a<br>pressure of 2.7atm and it absorbed 230J of heat from the surroundings.<br>a. What is the change in the energy of the system? Express your answer in L atm.<br>b. Assuming that the internal energy of this system is all kinetic energy and that the cube<br>contains one mole of butane gas, what is the velocity of a single butane molecule covering a<br>distance between the opposite corners of the expanded cube (express in m)? How long<br>would it take to cover that distance (express in sec, use SI prefixes instead of scientific<br>notation)?<br>How much power can be generated by all the molecules in this cube after 1 hour? Express<br>your answer in w. (Use the v obtained from 2b then recompute total KE)<br>C.<br>

Extracted text: 2. A rubberized, cubic chamber was filled with butane gas and was expanded from 3.0L to 4.5L at a pressure of 2.7atm and it absorbed 230J of heat from the surroundings. a. What is the change in the energy of the system? Express your answer in L atm. b. Assuming that the internal energy of this system is all kinetic energy and that the cube contains one mole of butane gas, what is the velocity of a single butane molecule covering a distance between the opposite corners of the expanded cube (express in m)? How long would it take to cover that distance (express in sec, use SI prefixes instead of scientific notation)? How much power can be generated by all the molecules in this cube after 1 hour? Express your answer in w. (Use the v obtained from 2b then recompute total KE) C.

Jun 09, 2022
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