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Interpretation:
The possible energetically equivalent ways to distribute the energy amongst the three particles in two systems and the system that has the greater entropy for the given value of total energy and the reason for the same is to be stated.
Concept introduction: The entropy of the given system is the measurement of the randomness of the system that is the distribution of the particles involved in the system. The more scattered is the system, the greater is the entropy.
To determine:The possible energetically equivalent ways to distribute the energy amongst the three particles in two systems and the system that has the greater entropy for the given value of total energy and the reason for the same.
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Chapter 17 Solutions
Principles of Chemistry: A Molecular Approach (3rd Edition)
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- Aromatic Compunds for Organic ChemistryDraw the sigma complex of the following general reaction: *see attachedarrow_forwardPlease help me to figure this out. I got 24 is that correct? Please step by step help.arrow_forwardThe initial rates method can be used to determine the rate law for a reaction. using the data for the reaction below, what is the rate law for reaction? A+B-C - ALA] At (mot Trial [A] (mol) (MD 2 1 0.075 [B]( 0.075 mo LS 01350 2 0.075 0.090 0.1944 3 0.090 0.075 0.1350 Report value of k with two significant Figurearrow_forward
- Compare trials 1 and 2 where [B] is constant. The rate law can be written as: rate = k[A][B]". rate2 0.090 = 9. rate1 0.010 [A]m 6.0m = 3m [A] m 2.0marrow_forwardCan you please explain this problem to me and expand it so I can understand the full Lewis dot structure? Thanks!arrow_forwardCan you please explain this problem to me and expand it so I can understand the full Lewis dot structure? Thanks!arrow_forward
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