6. Consider a fertilized hen egg in an incubator in constant temperature and pressure environment. In a few weeks, the egg will hatch into a chick. (a) The egg is chosen as the system. Is the egg an open, an isolated, or a closed system? (b) In the fertilized egg, hen proteins are formed into a highly ordered chick. Does the entropy of the system increase or decrease? Does this violate second law of thermodynamics? Explain your answer.

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6. Consider a fertilized hen egg in an incubator in constant temperature and pressure
environment. In a few weeks, the egg will hatch into a chick.
(a) The egg is chosen as the system. Is the egg an open, an isolated, or a
closed system?
(b) In the fertilized egg, hen proteins are formed into a highly ordered chick.
Does the entropy of the system increase or decrease? Does this violate
second law of thermodynamics? Explain your answer.
Transcribed Image Text:6. Consider a fertilized hen egg in an incubator in constant temperature and pressure environment. In a few weeks, the egg will hatch into a chick. (a) The egg is chosen as the system. Is the egg an open, an isolated, or a closed system? (b) In the fertilized egg, hen proteins are formed into a highly ordered chick. Does the entropy of the system increase or decrease? Does this violate second law of thermodynamics? Explain your answer.
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In thermodynamics, entropy is a measure of the amount of thermal energy in a system that is unavailable for doing useful work. In information theory, entropy is a measure of the uncertainty or randomness of a system, often used to quantify the amount of information in a message

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