(a) Interpretation: Δ r G 0 at 298 K for the vaporization H 2 O (l, 1 bar) ⇌ H 2 O (g, 1 bar) should be determined in two different ways using the data in the table given. Concept introduction: Δ G = Δ H − T . Δ S Δ r H 0 = ∑ Δ f H 0 ( products ) − ∑ Δ f H 0 ( reactants ) Δ r S 0 = ∑ Δ S 0 ( products ) − ∑ Δ S 0 ( reactants ) Δ r G 0 = ∑ Δ f G 0 ( products ) − ∑ Δ f G 0 ( reactants )
(a) Interpretation: Δ r G 0 at 298 K for the vaporization H 2 O (l, 1 bar) ⇌ H 2 O (g, 1 bar) should be determined in two different ways using the data in the table given. Concept introduction: Δ G = Δ H − T . Δ S Δ r H 0 = ∑ Δ f H 0 ( products ) − ∑ Δ f H 0 ( reactants ) Δ r S 0 = ∑ Δ S 0 ( products ) − ∑ Δ S 0 ( reactants ) Δ r G 0 = ∑ Δ f G 0 ( products ) − ∑ Δ f G 0 ( reactants )
Solution Summary: The author explains that r G 0 for the vaporization should be determined in two different ways using the data in the table given.
Predict the major products of the following organic reaction:
O O
+
A
?
Some important notes:
• Draw the major product, or products, of the reaction in the drawing area below.
• If there aren't any products, because no reaction will take place, check the box below the drawing area instead.
• Be sure to use wedge and dash bonds when necessary, for example to distinguish between major products that are
enantiomers.
Explanation Check
Click and drag to start drawing a structure.
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(EXM 2, PRBLM 3) Here is this problem, can you explain it to me and show how its done. Thank you I need to see the work for like prbl solving.
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