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If the change in free energy (ΔG) is , the reaction is spontaneous under the conditions specified. If ΔG is , the reaction is not spontaneous.

Question

If the change in free energy (ΔG) is , the reaction is spontaneous under the conditions specified. If ΔG is , the reaction is not spontaneous.

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Solution 1

It seems like there's some information missing in your question. Generally, if the change in free energy (ΔG) is negative, the reaction is spontaneous under the conditions specified. If ΔG is positive, the reaction is not spontaneous. If ΔG is zero, the reaction is at equilibrium, meaning it will not proceed in either direction.

Solution 2

It seems like there's some information missing in your question. Generally, if the change in free energy (ΔG) is negative, the reaction is spontaneous under the conditions specified. If ΔG is positive, the reaction is not spontaneous. If ΔG is zero, the reaction is at equilibrium, meaning it will not proceed in either direction.

Similar Questions

Select all that applyWhich are true about the relationship between reaction spontaneity and change in free energy?Multiple select question.If ΔG is positive, the reaction is spontaneous under the conditions specified.If ΔG is positive, the reaction is not spontaneous under the conditions specified.If ΔG is negative, the reaction is not spontaneous under the conditions specified.If ΔG is negative, the reaction is spontaneous under the conditions specified.

A reaction that leads to a decrease in the free energy of the system is always spontaneous.

Reactions are NOT spontaneous if:Group of answer choicesfree energy is absorbedheat is absorbedthe rate of reaction is slowentropy decreased

Which statement is true regarding a process for which ΔH is positive and ΔS is negative? Recall that, for any process: ΔG = ΔH - TΔSSelect answer from the options belowThe process is spontaneous at low temperatures only.The process is not spontaneous at any temperature.The process is spontaneous at all temperatures.The process is spontaneous at high temperatures only.

For a process to be spontaneous

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