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Clausius’ statement and Kelvin - Planck’s statement are ________.
  • a)
    not connected
  • b)
    two parallel statements of the second law
  • c)
    violation of one does not violates the other 
  • d)
    false statements
Correct answer is option 'B'. Can you explain this answer?
Verified Answer
Clausius’ statement and Kelvin - Planck’s statement are __...
There are two statements of second law of thermodynamics.
Clausius statement: No device can operate on a cycle and produce effect that is solely the heat transfer from a lower-temperature body to a higher-temperature body
Kelvin Plank statement: It is impossible for any device that operates on a cycle to receive heat from a single reservoir and produce a net amount of work
Equivalence of two statements: If some device violates one statement, it also violates the other statement, and vice versa.
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Most Upvoted Answer
Clausius’ statement and Kelvin - Planck’s statement are __...
Rudolf Clausius (1822-1888) was a German physicist and mathematician who made significant contributions to the field of thermodynamics. He is best known for formulating the second law of thermodynamics, which states that the entropy of an isolated system always increases over time.

Clausius also introduced the concept of entropy, which is a measure of the disorder or randomness of a system. He developed mathematical equations to describe the behavior of heat transfer and worked on the theory of gases, proposing the concept of the "perfect gas" as a theoretical model for studying the behavior of real gases.

In addition to his work in thermodynamics, Clausius made contributions to the fields of kinetic theory, electromagnetism, and the theory of elasticity. He was a professor at several universities in Germany and his work laid the foundation for further advancements in the field of thermodynamics.
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Clausius’ statement and Kelvin - Planck’s statement are ________.a)not connectedb)two parallel statements of the second lawc)violation of one does not violates the otherd)false statementsCorrect answer is option 'B'. Can you explain this answer?
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