figures 1. Four grams of water (3.000cm) becomes 4698.0 cm of steam when boiled at a constant pressure of 1 atm (1.013 x 10 Pa). The heat of vaporization at this pressure is L, = 2.256 x 10° J/kg (latent heat of vaporization). Compute the work done by the water when it vaporizes. 2. A gasoline car engine takes in 7,000.0 J of heat and delivers 4000.0 J of mechanical work per cycle. The heat is obtained by burning gasoline with heat of combustion L50 000.0

College Physics
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ISBN:9781938168000
Author:Paul Peter Urone, Roger Hinrichs
Publisher:Paul Peter Urone, Roger Hinrichs
Chapter15: Thermodynamics
Section: Chapter Questions
Problem 63PE: (a) Construct a table showing the macro states and all of the individual microstates for tossing 13...
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A. Determine the value of the unknown. Show all pertinent parts of the solution
(GUFSA).
POINTING SYSTEM:
1- given
1- unknown
1- each working formula
1-each solution
2- each correct answer with correct number of significant
figures
1. Four grams of water (3.000cm) becomes 4698.0 cm of steam when boiled at a constant
pressure of 1 atm (1.013 x 105 Pa). The heat of vaporization at this pressure is L, = 2.256
x 10° J/kg (latent heat of vaporization). Compute the work done by the water when it
vaporizes.
2. A gasoline car engine takes in 7,000.0 J of heat and delivers 4000.0 J of mechanical work
per cycle. The heat is obtained by burning gasoline with heat of combustion Le=50 000.0
x 10* J/g. What is the thermal efficiency of this engine?
Transcribed Image Text:A. Determine the value of the unknown. Show all pertinent parts of the solution (GUFSA). POINTING SYSTEM: 1- given 1- unknown 1- each working formula 1-each solution 2- each correct answer with correct number of significant figures 1. Four grams of water (3.000cm) becomes 4698.0 cm of steam when boiled at a constant pressure of 1 atm (1.013 x 105 Pa). The heat of vaporization at this pressure is L, = 2.256 x 10° J/kg (latent heat of vaporization). Compute the work done by the water when it vaporizes. 2. A gasoline car engine takes in 7,000.0 J of heat and delivers 4000.0 J of mechanical work per cycle. The heat is obtained by burning gasoline with heat of combustion Le=50 000.0 x 10* J/g. What is the thermal efficiency of this engine?
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