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Three identical closed systems of a pure gas are taken from an initial temperature and pressure( TL , P1) to a final state ( T2 P2) , each by a different path. Which of the following in Always truefor the three systems? ( Δ represents the change between the initial and final states: U, S, G, Qand W are internal energy, entropy, Gibbs free energy, heat added and work done, respectively.)a)ΔU, ΔS, Q are sameb)W, ΔU, ΔG are samec)ΔS, W, Q are samed)ΔG,ΔU, ΔS are sameCorrect answer is option 'D'. Can you explain this answer? for Class 11 2024 is part of Class 11 preparation. The Question and answers have been prepared
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the Class 11 exam syllabus. Information about Three identical closed systems of a pure gas are taken from an initial temperature and pressure( TL , P1) to a final state ( T2 P2) , each by a different path. Which of the following in Always truefor the three systems? ( Δ represents the change between the initial and final states: U, S, G, Qand W are internal energy, entropy, Gibbs free energy, heat added and work done, respectively.)a)ΔU, ΔS, Q are sameb)W, ΔU, ΔG are samec)ΔS, W, Q are samed)ΔG,ΔU, ΔS are sameCorrect answer is option 'D'. Can you explain this answer? covers all topics & solutions for Class 11 2024 Exam.
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Here you can find the meaning of Three identical closed systems of a pure gas are taken from an initial temperature and pressure( TL , P1) to a final state ( T2 P2) , each by a different path. Which of the following in Always truefor the three systems? ( Δ represents the change between the initial and final states: U, S, G, Qand W are internal energy, entropy, Gibbs free energy, heat added and work done, respectively.)a)ΔU, ΔS, Q are sameb)W, ΔU, ΔG are samec)ΔS, W, Q are samed)ΔG,ΔU, ΔS are sameCorrect answer is option 'D'. Can you explain this answer? defined & explained in the simplest way possible. Besides giving the explanation of
Three identical closed systems of a pure gas are taken from an initial temperature and pressure( TL , P1) to a final state ( T2 P2) , each by a different path. Which of the following in Always truefor the three systems? ( Δ represents the change between the initial and final states: U, S, G, Qand W are internal energy, entropy, Gibbs free energy, heat added and work done, respectively.)a)ΔU, ΔS, Q are sameb)W, ΔU, ΔG are samec)ΔS, W, Q are samed)ΔG,ΔU, ΔS are sameCorrect answer is option 'D'. Can you explain this answer?, a detailed solution for Three identical closed systems of a pure gas are taken from an initial temperature and pressure( TL , P1) to a final state ( T2 P2) , each by a different path. Which of the following in Always truefor the three systems? ( Δ represents the change between the initial and final states: U, S, G, Qand W are internal energy, entropy, Gibbs free energy, heat added and work done, respectively.)a)ΔU, ΔS, Q are sameb)W, ΔU, ΔG are samec)ΔS, W, Q are samed)ΔG,ΔU, ΔS are sameCorrect answer is option 'D'. Can you explain this answer? has been provided alongside types of Three identical closed systems of a pure gas are taken from an initial temperature and pressure( TL , P1) to a final state ( T2 P2) , each by a different path. Which of the following in Always truefor the three systems? ( Δ represents the change between the initial and final states: U, S, G, Qand W are internal energy, entropy, Gibbs free energy, heat added and work done, respectively.)a)ΔU, ΔS, Q are sameb)W, ΔU, ΔG are samec)ΔS, W, Q are samed)ΔG,ΔU, ΔS are sameCorrect answer is option 'D'. Can you explain this answer? theory, EduRev gives you an
ample number of questions to practice Three identical closed systems of a pure gas are taken from an initial temperature and pressure( TL , P1) to a final state ( T2 P2) , each by a different path. Which of the following in Always truefor the three systems? ( Δ represents the change between the initial and final states: U, S, G, Qand W are internal energy, entropy, Gibbs free energy, heat added and work done, respectively.)a)ΔU, ΔS, Q are sameb)W, ΔU, ΔG are samec)ΔS, W, Q are samed)ΔG,ΔU, ΔS are sameCorrect answer is option 'D'. Can you explain this answer? tests, examples and also practice Class 11 tests.