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CHAPTER 2: FIGURE 2D.10
QUANTA, MATTER, AND
CHANGE 2E|
ATKINS|
PAULA| |JULIO
RONALD
FRIEDMAN
PHYSICAL CHEMISTRY: THERMODYNAMICS,
STRUCTURE,
ANDPETER
CHANGE
10E |JULIO
PETERDE
ATKINS
DE PAULA
D COMPANY
©2014
W. H. FREEMAN AND
COMPANY
CHAPTER 2: FIGURE 2D.11
QUANTA, MATTER, AND
CHANGE 2E|
ATKINS|
PAULA| |JULIO
RONALD
FRIEDMAN
PHYSICAL CHEMISTRY: THERMODYNAMICS,
STRUCTURE,
ANDPETER
CHANGE
10E |JULIO
PETERDE
ATKINS
DE PAULA
D COMPANY
©2014
W. H. FREEMAN AND
COMPANY
CHAPTER 2: FIGURE 2D.7
QUANTA, MATTER, AND
CHANGE 2E|
ATKINS|
PAULA| |JULIO
RONALD
FRIEDMAN
PHYSICAL CHEMISTRY: THERMODYNAMICS,
STRUCTURE,
ANDPETER
CHANGE
10E |JULIO
PETERDE
ATKINS
DE PAULA
D COMPANY
©2014
W. H. FREEMAN AND
COMPANY
CHAPTER 2: FIGURE 2D.12
QUANTA, MATTER, AND
CHANGE 2E|
ATKINS|
PAULA| |JULIO
RONALD
FRIEDMAN
PHYSICAL CHEMISTRY: THERMODYNAMICS,
STRUCTURE,
ANDPETER
CHANGE
10E |JULIO
PETERDE
ATKINS
DE PAULA
D COMPANY
©2014
W. H. FREEMAN AND
COMPANY
Formulations of the Second Law of Thermodynamics
Kelvin-Planck statement: No process is possible whose sole result is the absorption of
heat from a reservoir and the conversion of this heat into work.
Clausius statement: No process is possible whose sole result is the transfer of heat
from a cooler to a hotter body.
T1 < T2
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