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A system consisting of 0.0407 moles of a diatomic ideal gas is taken from state A to state C along the path in the figur

Posted: Sat Jul 09, 2022 12:21 pm
by answerhappygod
A system consisting of 0.0407 moles of a diatomicideal gas is taken from state A tostate C along the path in the figure below.
A pressure-volumegraph is plotted on a coordinate plane, where the horizontal axisis V (L), and the vertical axisis P (atm). The path consists of two linesegments:
Arrows along the path are aligned such that their tails arecloser to point A than are their tips.
(a) How much work is done on the gas duringthis process? J(b) What is the lowest temperature of the gas during thisprocess? KWhere does it occur?
Point APoint B Point C
(c) Find the change in internal energy of the gas in goingfrom A to C. Hint:Adapt the equation (for the change in internal energy of amonatomic ideal gas)ΔU =
nRΔT =
Δ(PV) =
A System Consisting Of 0 0407 Moles Of A Diatomic Ideal Gas Is Taken From State A To State C Along The Path In The Figur 1
A System Consisting Of 0 0407 Moles Of A Diatomic Ideal Gas Is Taken From State A To State C Along The Path In The Figur 1 (35.64 KiB) Viewed 57 times
A system consisting of 0.0407 moles of a diatomic ideal gas is taken from state A to state C along the path in the figure below. P (atm) 0.800 0.600 0.400 0.200 В. A● 2 4 6 C (a) How much work is done on the gas during this process? J Where does it occur? O Point A O Point B O Point C Submit Answer LV (L) 8 Ⓡ (b) What is the lowest temperature of the gas during this process? K (c) Find the change in internal energy of the gas in going from A to C. Hint: Adapt the equation (for the change in internal energy of a monatomic ideal gas)AU = nRAT = 4(PV) = (PVC-PV)to a diatomic ideal gas. (d) Find the energy delivered to the gas in going from A to C.