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Inside a container was 10 mol of pure oxygen at 3,000 kelvins. This gas was conned in the container by a very heavy piston, which

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Inside a container was 10 mol of pure oxygen at 3,000 kelvins. This gas was conned in the container by a very heavy piston, which forced the gas to assume 3,000 kPa to mechanically baiance the system. On the base of the container, I had a thin cylinder of graphite standing upright. The end of the graphite received a small spark, triggering the incomplete combustion of the graphite. which generates 111 kJ of heat for each moi of graphite burned. The oxygen was slowly replaced by carbon monoxide as the plunger rose, as shown in the animation below. Eventualiy all the oxygen was consumed. 0 Considering that the ideal gas constant measured 8 J!mol.K and that the process was isobaric and isothermal, answer the foliowing questions. a) What is the increase in gaseous volume inside the container? b) Disregarding the volume of graphite consumed by the reaction, what is the amount of heat that the system lost by thermal conduction to the external environment

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