When air expands adiabatically (without gaining or losing heat), its pressure P and volume V are related by the equation PV = C where C is a constant. Suppose that at a certain instant the volume is 600 cubic centimeters and the pressure is 99 kPa and is decreasing at a rate of 7 kPa/minute. At what rate in cubic centimeters per minute is the volume increasing at this instant? %3D cm3 min (Pa stands for Pascal -- it is equivalent to one Newton/(meter squared); kPa is a kiloPascal or 1000 Pascals.

College Algebra
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ISBN:9781938168383
Author:Jay Abramson
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Chapter6: Exponential And Logarithmic Functions
Section6.1: Exponential Functions
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When air expands adiabatically (without gaining or losing heat), its pressure P and volume V are related
by the equation PV14
cubic centimeters and the pressure is 99 kPa and is decreasing at a rate of 7 kPa/minute. At what rate in
cubic centimeters per minute is the volume increasing at this instant?
C where C is a constant. Suppose that at a certain instant the volume is 600
cm3
min
(Pa stands for Pascal -- it is equivalent to one Newton/(meter squared); kPa is a kiloPascal or 1000 Pascals.
esc
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23
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*
2
4
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9.
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tab
W
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Transcribed Image Text:When air expands adiabatically (without gaining or losing heat), its pressure P and volume V are related by the equation PV14 cubic centimeters and the pressure is 99 kPa and is decreasing at a rate of 7 kPa/minute. At what rate in cubic centimeters per minute is the volume increasing at this instant? C where C is a constant. Suppose that at a certain instant the volume is 600 cm3 min (Pa stands for Pascal -- it is equivalent to one Newton/(meter squared); kPa is a kiloPascal or 1000 Pascals. esc -> 23 & * 2 4 6 8 9. bac tab W e t S d j k
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