The Ideal Gas Law is given by the equation: PV = nRT Where: pressure V = volume n = moles T = temperature in Kelvin In order to solve for the temperature in Kelvin, T, you must multiply both sides of the equation by the same еxpression: PV × = nRT × The resulting equation is: T =

Physical Chemistry
2nd Edition
ISBN:9781133958437
Author:Ball, David W. (david Warren), BAER, Tomas
Publisher:Ball, David W. (david Warren), BAER, Tomas
Chapter1: Gases And The Zeroth Law Of Thermodynamics
Section: Chapter Questions
Problem 1.21E: Pressures of gases in mixtures are referred to as partial pressures and are additive. 1.00 L of He...
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Use the References to access important values if needed for this question.
Two-Step Algebra
In a = -bc + In d
In order to solve the equation above for c, you must:
Step One
Add the same expression to each side of the equation to leave the term that includes the variable by itself on the right-hand
side of the expression:
+ In a =
-bc + In d
Submit
Transcribed Image Text:Use the References to access important values if needed for this question. Two-Step Algebra In a = -bc + In d In order to solve the equation above for c, you must: Step One Add the same expression to each side of the equation to leave the term that includes the variable by itself on the right-hand side of the expression: + In a = -bc + In d Submit
The Ideal Gas Law is given by the equation:
PV = nRT
Where:
P
= pressure
V = volume
n = moles
T = temperature in Kelvin
In order to solve for the temperature in Kelvin, T, you must multiply both sides of the equation by the same
expression:
PV ×
= nRT ×
The resulting equation is:
T =
Transcribed Image Text:The Ideal Gas Law is given by the equation: PV = nRT Where: P = pressure V = volume n = moles T = temperature in Kelvin In order to solve for the temperature in Kelvin, T, you must multiply both sides of the equation by the same expression: PV × = nRT × The resulting equation is: T =
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