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@ -8,9 +8,9 @@ The QUEST database provides theoretical best estimates (TBEs) for more than 470
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The molecules included in the QUEST dataset have been systematically optimized at the CC3/aug-cc-pVTZ level of theory, except for a very few cases.
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The molecules included in the QUEST dataset have been systematically optimized at the CC3/aug-cc-pVTZ level of theory, except for a very few cases.
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The QUEST dataset of vertical excitations is composed by 5 subsets:
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The QUEST dataset of vertical excitations is composed by 5 subsets:
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{{< figure src="/img/subsets.pdf" title="Composition of each of the five subsets making up the present QUEST dataset of highly-accurate vertical excitation energies" >}}
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{{< figure src="/img/subsets.png" title="Composition of each of the five subsets making up the present QUEST dataset of highly-accurate vertical excitation energies" >}}
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{{< figure src="/img/molecules.pdf" title="Molecules each of the five subsets making up the present QUEST dataset of highly-accurate vertical excitation energies: QUEST#1 (red), QUEST#2 (magenta and/or underlined), QUEST#3 (black), QUEST#4 (green), and QUEST#5 (blue)." >}}
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{{< figure src="/img/molecules.png" title="Molecules each of the five subsets making up the present QUEST dataset of highly-accurate vertical excitation energies: QUEST#1 (red), QUEST#2 (magenta and/or underlined), QUEST#3 (black), QUEST#4 (green), and QUEST#5 (blue)." >}}
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### [QUEST#1](https://pubs.acs.org/doi/10.1021/acs.jctc.8b00406)
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### [QUEST#1](https://pubs.acs.org/doi/10.1021/acs.jctc.8b00406)
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The QUEST#1 benchmark set consists of 110 vertical excitation energies (as well as oscillator strengths) from 18 molecules with sizes ranging from one to three non-hydrogen atoms (water, hydrogen sulfide, ammonia, hydrogen chloride, dinitrogen, carbon monoxide, acetylene, ethylene, formaldehyde, methanimine, thioformaldehyde, acetaldehyde, cyclopropene, diazomethane, formamide, ketene, nitrosomethane, and the smallest
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The QUEST#1 benchmark set consists of 110 vertical excitation energies (as well as oscillator strengths) from 18 molecules with sizes ranging from one to three non-hydrogen atoms (water, hydrogen sulfide, ammonia, hydrogen chloride, dinitrogen, carbon monoxide, acetylene, ethylene, formaldehyde, methanimine, thioformaldehyde, acetaldehyde, cyclopropene, diazomethane, formamide, ketene, nitrosomethane, and the smallest
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