Starting with Charles's law (stated as an equation), obtain an equation for the final volume of a gas from its initial volume when the temperature is changed at constant pressure. From Charles's law, VT- constant Because this is true for initial conditions as well as for final conditions, we can write V V Thus, the equation for the final volume is P.V = P,V; Drag and drop your selection from the following list to complete the answer: P T; PT P T V = V, x PV V = V, x = constant T. V,T = V;T, constant constant T PV P,V, T P. V, =V; × P, PV= constant

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Chapter5: Gases
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Problem 152CP: You have an equimolar mixture of the gases SO2 and O2, along with some He, in a container fitted...
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Starting with Charles's law (stated as an equation), obtain an equation for the final volume of a gas from its initial volume when the temperature is changed at constant pressure.
From Charles's law,
VT = constant
Because this is true for initial conditions as well as for final conditions, we can write
V. V;
T T;
Thus, the equation for the final volume is
P.V = P;V;
Drag and drop your selection from the following list to complete the answer:
P T;
V, = V, x
Pr
PV
= constant
V
= constamt
T
VT = V;T,
V, = V, x
T
= constant
V.
P;V;
P
V, = V, x
P,
PV = constant
T
T
Transcribed Image Text:Starting with Charles's law (stated as an equation), obtain an equation for the final volume of a gas from its initial volume when the temperature is changed at constant pressure. From Charles's law, VT = constant Because this is true for initial conditions as well as for final conditions, we can write V. V; T T; Thus, the equation for the final volume is P.V = P;V; Drag and drop your selection from the following list to complete the answer: P T; V, = V, x Pr PV = constant V = constamt T VT = V;T, V, = V, x T = constant V. P;V; P V, = V, x P, PV = constant T T
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