8. (a) When a system is taken from state i to state f along path iaf in the figure below, heat absorbed Q = 80 Jand work done W= 30J. Along path ibf , heat absorbed is Q= 54 J. Calculate the work done W along path ibf. Volume Pressure

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8.
(a) When a system is taken from state i to state f along path iaf in the figure below, heat
absorbed Q= 80 Jand work done W=30J. Along path ibf , heat absorbed is Q=54 J. Calculate
the work done W along path ibf.
Volume
(b) A monoatomic ideal gas initially at 300K is compressed at a constant pressure of 25 N/m²
from a volume of 3.0 m³ to a volume of 1.8 m³. In the process, 75 J is lost by the gas as heat.
(i) Determine a change in internal energy of the gas.
Pressure
Transcribed Image Text:8. (a) When a system is taken from state i to state f along path iaf in the figure below, heat absorbed Q= 80 Jand work done W=30J. Along path ibf , heat absorbed is Q=54 J. Calculate the work done W along path ibf. Volume (b) A monoatomic ideal gas initially at 300K is compressed at a constant pressure of 25 N/m² from a volume of 3.0 m³ to a volume of 1.8 m³. In the process, 75 J is lost by the gas as heat. (i) Determine a change in internal energy of the gas. Pressure
(ii) Calculate the temperature of the gas at the end of the process.
(iii) Determine the number of moles of the gas.
Transcribed Image Text:(ii) Calculate the temperature of the gas at the end of the process. (iii) Determine the number of moles of the gas.
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