The pressure of one mole of an ideal gas increases at the rate of 0.005 kPa / s and the temperature increases at the rate of 0.15 K / s. Use the equation, P = 8.31 T / V, to determine the rate of change of the volume when the pressure is 20kPa and the temperature is 320 K. Note: Solve by chain rule (Chain rule (applications))
The pressure of one mole of an ideal gas increases at the rate of 0.005 kPa / s and the temperature increases at the rate of 0.15 K / s. Use the equation, P = 8.31 T / V, to determine the rate of change of the volume when the pressure is 20kPa and the temperature is 320 K. Note: Solve by chain rule (Chain rule (applications))
Functions and Change: A Modeling Approach to College Algebra (MindTap Course List)
6th Edition
ISBN:9781337111348
Author:Bruce Crauder, Benny Evans, Alan Noell
Publisher:Bruce Crauder, Benny Evans, Alan Noell
Chapter1: Functions
Section1.2: Functions Given By Tables
Problem 2TU: Use the table of values you made in part 4 of the example to find the limiting value of the average...
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The pressure of one mole of an ideal gas increases at the rate of 0.005 kPa / s and the temperature increases at the rate of 0.15 K / s. Use the equation, P = 8.31 T / V, to determine the rate of change of the volume when the pressure is 20kPa and the temperature is 320 K.
Note: Solve by chain rule (Chain rule (applications))
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