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GenaCL600 [577]
3 years ago
15

Huff itgdyxohcoyxkyxiyxicoycolj

Chemistry
1 answer:
jonny [76]3 years ago
6 0

hi !!!!!!!!!!!!!!!!!!!!!!!!!!!

thanks for the points

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Consider the reaction: A <=> B. Under standard conditions at equiliubrium, the concentrations of the compounds are [A] = 1
Katen [24]

Answer:

Keq'>1\\\Delta G'

Explanation:

Hello,

In this case, for the given reaction, the equilibrium constant turns out:

Keq=\frac{[B]}{[A]}=\frac{0.5M}{1.5M} =1/3

Nonetheless, we are asked for the reverse equilibrium constant that is:

Keq'=\frac{1}{Keq}=3

Which is greater than one.

In such a way, the Gibbs free energy turns out:

\Delta G'=-RTln(Keq')\\

Now, since the reverse equilibrium constant is greater than zero its natural logarithm is positive, therefore with the initial minus, the Gibbs free energy is less than zero, that is, negative.

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4 years ago
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How many significant figures are in the measurement 102,400 meters?
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Answer:

4

Explanation:

the zeros after 102,4 are not significant.

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The energy a molecule contains due to its constant random motion is known as
igor_vitrenko [27]

Answer:

Kinetic Energy

Explanation:

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An archaeologist discovers an ancient wooden bowl. which isotope would most likely be used to determine its age?
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Answer:

c

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During science lab, Carl notices that when he adds water to his solid sample of anhydrous copper
Bond [772]

Answer:

The dissociation of copper sulfate into ions is an exothermic chemical reaction that releases heat into the surroundings.

Explanation:

Some of the potential energy stored in the solid sample of anhydrous copper sulfate is released as heat as the sample dissolves and dissociates into ions in the water. This is due to the large lattice energy of the crystalline copper sulfate.

hope this helps

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3 years ago
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