Check all the possible ways by which the AS univ associated with a chemical reaction can be positive: There is an increase in entropy from reactants to products, and there is no heat exchange with the surroundings and thus no entropy change in the surroundings. There is a decrease in entropy from reactants to products, but the reaction releases lots of heat to the surroundings, raising the entropy of the surrounding. There is a decrease in entropy from reactants to products, and the reaction absorbs heat from the surroundings, lowering the entropy of the surrounding particles. There is an increase in entropy from reactants to products, but the reaction absorbs heat from the surroundings, lowering the entropy of the surrounding particles. There is an increase in entropy from reactants to products, and the reaction heats up the surroundings.

Chemistry
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ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
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Check all the possible ways by which the AS univ associated with a chemical reaction can be positive:
There is an increase in entropy from reactants to products, and there is no heat exchange with the surroundings and thus no entropy change in the
surroundings.
There is a decrease in entropy from reactants to products, but the reaction releases lots of heat to the surroundings, raising the entropy of the surrounding.
There is a decrease in entropy from reactants to products, and the reaction absorbs heat from the surroundings, lowering the entropy of the surrounding
particles.
There is an increase in entropy from reactants to products, but the reaction absorbs heat from the surroundings, lowering the entropy of the surrounding
particles.
There is an increase in entropy from reactants to products, and the reaction heats up the surroundings.
Transcribed Image Text:Check all the possible ways by which the AS univ associated with a chemical reaction can be positive: There is an increase in entropy from reactants to products, and there is no heat exchange with the surroundings and thus no entropy change in the surroundings. There is a decrease in entropy from reactants to products, but the reaction releases lots of heat to the surroundings, raising the entropy of the surrounding. There is a decrease in entropy from reactants to products, and the reaction absorbs heat from the surroundings, lowering the entropy of the surrounding particles. There is an increase in entropy from reactants to products, but the reaction absorbs heat from the surroundings, lowering the entropy of the surrounding particles. There is an increase in entropy from reactants to products, and the reaction heats up the surroundings.
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