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QUESTDB_website/content/multipledataset.html

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2019-09-28 15:23:25 +02:00
---
title: "Multiple dataset"
date: 2019-09-27 16:41
draft: false
---
<link rel="stylesheet" type="text/css" href="/css/modal.css" />
<link rel="stylesheet" type="text/css" href="/css/form.css" />
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<link rel="stylesheet" type="text/css" href="/css/table.css" />
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<link rel="stylesheet" type="text/css" href="/css/emoji.css" />
<script src="/js/data.js" type="text/javascript"></script>
<script src="/js/loadAllData.js" type="text/javascript"></script>
<script src="/js/getFullDataPath.js" type="text/javascript"></script>
<script src="/js/getTextFromFile.js" type="text/javascript"></script>
<script src="/js/trueTypeOf.js" type="text/javascript"></script>
<script src="/js/uniq.js"></script>
<script src="/js/processingIndicator.js"></script>
<script src="/js/noNan.js"></script>
<script src="/js/websiteFile.js"></script>
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<script src="/js/getPublis.js"></script>
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<script src="https://cdn.rawgit.com/larsgw/citation.js/archive/citation.js/citation-0.4.0-9.js"
type="text/javascript"></script>
<script src="/js/DOICache.js"></script>
<script src="/js/nestedCheckbox.js"></script>
<script src="/js/selectSelectAll.js"></script>
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<script src="/js/numberRangeChange.js"></script>
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<script src="https://unpkg.com/simple-statistics@7.0.2/dist/simple-statistics.min.js"></script>
<script src="https://cdn.jsdelivr.net/npm/bowser@2.5.3/es5.min.js"></script>
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<script src="https://cdnjs.cloudflare.com/ajax/libs/js-yaml/3.13.1/js-yaml.min.js"></script>
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<script src="/js/numberUtils.js"></script>
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<script>
function adjustSticky() {
const height = $("nav").height()
$("thead.sticky > tr > th ").css("top", height)
}
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window.onload = async () => {
window.browser = bowser.getParser(window.navigator.userAgent);
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$("input[type='checkbox']:checked").trigger("change")
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$("input[type='number'].range").trigger("change")
adjustSticky();
$(window).resize(adjustSticky)
const LatexInline = ['\\(', '\\)']
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var slist = $("#SelectList")
getAllSelect().each(function () {
$("<li/>").text($('label[for="' + $(this).attr('id') + '"]').text()).appendTo(slist)
})
$('[data-needbrowser],[data-neednotbrowser]').each(function () {
function test(key, value) {
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switch (key) {
case "Engine":
return value.some((v) => browser.isEngine(v))
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break;
case "Browser":
return value.some((v) => browser.isBrowser(v))
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case "Platform":
return value.some((v) => browser.isPlatform(v))
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case "OS":
return value.some((v) => browser.isOS(v))
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default:
return true
break;
}
}
const needdata = $(this).data("needbrowser")
const neednotdata = $(this).data("neednotbrowser")
const need = ((needdata == null) ? true : Object.entries(needdata).every(kv => test(kv[0], kv[1])))
const neednot = ((neednotdata == null) ? true : Object.entries(neednotdata).some(kv => !test(kv[0], kv[1])))
if (need && neednot) {
$(this).show()
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} else {
$(this).hide()
}
})
var cbextl = $("#cb_exTypeList")
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var extl = $("#exTypeList")
var vertkindtl = $("#exVertKindList")
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for (const [name, value] of VertExcitationKinds.All) {
$("<li/>").text(name).appendTo(vertkindtl)
}
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for (const [name, value] of excitationTypes.All) {
var txt=value.description.string
if (value.description.isLaTeX) {
txt=LatexInline[0]+txt+LatexInline[1]
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}
$("<li/>").text(txt).appendTo(extl)
var cbli = $("<li/>")
$("<input/>", { type: "checkbox", id: "cb_" + name, name: name, value: Number(value) }).change(nestedCheckbox_change).appendTo(cbli);
$('<label />', { 'for': 'cb_' + name, text: txt }).appendTo(cbli);
cbextl.append(cbli);
}
await MathJax.typesetPromise();
delete (cbextl)
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delete (extl)
delete (vertkindtl)
window.doiCache = new DOICache()
await loadFiles()
}
async function loadFiles() {
processingIndicator.isActive = true
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var chks = []
proms = []
proms.push(getAbsFilesName().map((f) => VertDataFile.loadAsync(f, VertExcitationKinds.Absorbtion)));
proms.push(getFluoFilesName().map((f) => VertDataFile.loadAsync(f, VertExcitationKinds.Fluorescence)))
window.defaultDats = []
for (const subproms of proms) {
const sub = await Promise.all(subproms)
for (const doi of uniq(sub.map(d => d.DOI.string))) {
const subdoi = sub.filter(d => d.DOI.string === doi)
for (mol of uniq(subdoi.map(d => d.molecule))) {
const submol = subdoi.filter(d => d.molecule === mol)
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const source = submol.find((d) => {
if (d.DOI.string==="10.1021/acs.jctc.8b01205") {
return d.method.name==="CASPT2" && d.method.basis==="aug-cc-pVDZ"
} else {
return d.method.isTBE
}
})
if (source !== undefined) {
for (dat of submol.filter((d) => d !== source)) {
dat.CopyExcitationsTypeFrom(source)
}
}
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}
}
window.defaultDats = window.defaultDats.concat(sub)
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}
processingIndicator.isActive = false
reloadCustomFiles()
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}
async function reloadCustomFiles() {
window.dats = window.defaultDats;
const kinds = new Map([["file_abs", VertExcitationKinds.Absorbtion], ["file_fluo", VertExcitationKinds.Fluorescence]])
for (const el of $('#form_dat > fieldset > div > input[type="file"')) {
if (kinds.has(el.name)) {
for (const f of el.files) {
const dat = await VertDataFile.loadAsync(f, kinds.get(this.name))
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window.dats.push(dat)
}
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}
}
reloadSelect("DOI")
}
async function clearSelect(BeforeName = null) {
var selects = ((BeforeName == null) ? getAllSelect() : getAllSelectAfter(BeforeName, true))
selects.add($('#sel_ref'))
selects.each(function () {
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$(this).empty()
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})
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}
function getAllSelect() {
return $('#form_dat > fieldset > div > select')
}
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function getAllSelectAfter(Name, include = false) {
const selects = getAllSelect()
var index = selects.index($(`[name="${Name}"]`))
if (!include) {
index++
}
return selects.slice(index)
}
function getAllSelectBefore(Name, include = false) {
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const selects = getAllSelect()
var index = selects.index($(`[name="${Name}"]`))
if (include) {
index++
}
return selects.slice(0, index)
}
async function reloadNextSelect(e) {
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const afters = getAllSelectAfter(e.target.name)
const isLast = afters.length == 0
if (!isLast) {
await reloadSelect(afters.prop("name"))
}
const fillArray = ["molecule"]
if (fillArray.includes(afters.prop("name"))) {
selectSelectAll(afters.first())
}
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var submit = $(e.target.form).find(':submit')
submit.prop("disabled", !isLast)
}
async function reloadSelect(name) {
clearSelect(name)
var selects = getAllSelectBefore(name, true)
var currentselect = selects.last()
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selects = selects.slice(0, selects.length - 1)
const vals = uniq(window.dats.filter(d => {
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return Array.from(selects).every((el) => {
return $(el).val().includes(getSelectValue(d, el.name))
})
}).map((d) => getSelectValue(d, name)))
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const sets = await (async ()=>{
if(name === "DOI"){
const publis=await getPublis()
const sets=publis.sets
return sets
}
else{
return undefined
}
})()
for (const val of vals) {
if (val !== null) {
$("<option/>", {
value: val
}).text((name === "DOI" && sets.has(val)) ? sets.get(val) : val.toString()).appendTo(currentselect)
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}
}
}
function getSelectValue(data, name) {
switch (name) {
case "method":
return data.method.name
break;
case "basis":
return data.method.basis
case "DOI":
return data.DOI.string
default:
return data[name]
break;
}
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}
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async function reloadStat() {
processingIndicator.isActive = true
const combbasis = $("#cb_combbasis").is(":checked")
const refstr = $("#sel_ref option:selected").val()
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var stb = $("#stat_table > tbody")
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$("#graph_div").empty()
$(stb).empty()
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var sdatdic = new Map()
for (const d of window.filtData) {
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const key = JSON.stringify([d.method, d.DOI.string])
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if (!(sdatdic.has(key))) {
sdatdic.set(key, new Map())
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}
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const myT1s=T1ref.get(d.DOI.string).get(d.molecule)
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for (const exc of d.excitations) {
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var allowT1=false
const T1Key=JSON.stringify((exc.initial,exc.final))
const T1range=filterParams.T1
if (T1range.min===0 && T1range.max===100) {
allowT1=true
} else if (myT1s.has(T1Key)) {
const T1Val=myT1s.get(T1Key)
if (T1range.min<=T1Val && T1Val<=T1range.max) {
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allowT1=true
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}
}
const key2 = JSON.stringify([d.molecule, exc.initial, exc.final, exc.cVertExcitationKind])
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const keydic = sdatdic.get(key)
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if ((!exc.isUnsafe || window.filterParams.unsafe) && ((exc.type & window.filterParams.exType) !== 0) && ((exc.VertExcitationKind & window.filterParams.exVertKind) !== 0) && allowT1) {
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if (!(keydic.has(key2))) {
keydic.set(key2,exc.value)
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}
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}
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}
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}
if (combbasis) {
var sdatdic2=new Map()
for (const [strkey, sdat] of sdatdic) {
if (refstr===strkey) {
sdatdic2.set(strkey,sdatdic.get(strkey))
}
else {
const key=JSON.parse(strkey)
const newkey=JSON.stringify([key[0].name,key[1]])
const newkeybasis=JSON.stringify(key[0].basis)
if (!sdatdic2.has(newkey)) {
sdatdic2.set(newkey,new Map())
}
if (!sdatdic2.get(newkey).has(newkeybasis)) {
sdatdic2.get(newkey).set(newkeybasis,new Map())
}
for (const [strkey2,exval] of sdat) {
sdatdic2.get(newkey).get(newkeybasis).set(strkey2,exval)
}
}
}
sdatdic=sdatdic2
}
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var sdic = new Map()
for (const [key, sdat] of sdatdic) {
if (key!==refstr) {
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if (!(sdic.has(key))) {
sdic.set(key, [])
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}
if (combbasis) {
for (const [key2, dic] of sdat) {
for(const [key3,exval] of dic){
sdic.get(key).push(exval - ((sdatdic.has(refstr)) ? sdatdic.get(refstr).get(key3) : NaN))
}
}
} else {
for (const [key2, exval] of sdat) {
sdic.get(key).push(exval - ((sdatdic.has(refstr)) ? sdatdic.get(refstr).get(key2) : NaN))
}
}
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}
}
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var graphdat = []
for (const [keystr, vals] of sdic) {
row = $("<tr/>")
key = JSON.parse(keystr)
if (!combbasis) {
Reflect.setPrototypeOf(key[0], method.prototype)
}
//Reflect.setPrototypeOf(key[1], DOI.prototype)
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th = $("<th/>", { scope: "column" })
const [meth, doi] = key
th.clone().text(meth.toString("\n").split('-').join('\u2011')).appendTo(row)
var thdoi = th.clone()
var publi = doiCache.get(doi, true)
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const publis = await getPublis()
const sets=publis.sets
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if (sets.has(doi)) {
var str = sets.get(doi)
$(thdoi).append(str + " ")
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}
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$("<a/>", {
href: new DOI(doi).url,
target: "_blank"
}).html(publi.format('citation', {
format: 'html',
lang: 'en-US'
})).appendTo(thdoi)
$(row).append(thdoi)
const noNanVals = (vals.every((v) => Number.isNaN(v))) ? vals : (vals.filter((v) => !Number.isNaN(v)))
const avals = noNanVals.map(v => Math.abs(v))
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th.clone().text(noNanVals.length).appendTo(row)
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for (const val of [ss.min(noNanVals), ss.max(noNanVals), ss.mean(noNanVals), ss.mean(avals), ss.median(noNanVals), ss.median(avals), ss.rootMeanSquare(noNanVals), ss.variance(noNanVals), ss.standardDeviation(noNanVals)]) {
$("<td/>").text(noNanFixed(val, 2)).appendTo(row)
}
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$(stb).append(row)
var box = {
x: noNanVals,
amean: ss.mean(avals).toFixed(3),
name: key[0].toString() + " MAD : " + ss.mean(avals).toPrecision(4),
type: 'box',
boxmean: 'sd'
};
graphdat.push(box)
}
var layout = {
paper_bgcolor: 'rgba(0,0,0,0)',
plot_bgcolor: 'rgba(0,0,0,0)',
gap: 0,
legend: {
traceorder: 'reversed',
},
xaxis: {
title: {
text: 'Energy (eV)',
}
},
bgcolor: '#E2E2E2',
bordercolor: '#FFFFFF',
borderwidth: 2,
// autosize: false,
width: 850,
height: 500,
margin: {
l: 0,
r: 10,
b: 15,
t: 20,
pad: 0,
},
}
Plotly.newPlot('graph_div', graphdat, layout);
processingIndicator.isActive = false
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}
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async function reloadContent() {
window.filterParams = {unsafe:$("#cb_unsafe").prop("checked"),
exType:Array.from(Array.from($("#cb_exTypeList>li>input[type=checkbox]:checked")).map(el => parseInt(el.value))).reduce((pv, cv) => pv + cv, 0),
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exVertKind:Array.from(Array.from($("#cb_exVertKindList>li>input[type=checkbox]:checked")).map(el => parseInt(el.value))).reduce((pv, cv) => pv + cv, 0),
T1:{
min:parseFloat($("#T1min").val()),
max:parseFloat($("#T1max").val())
}
}
doiCache.clear()
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processingIndicator.isActive = true
const LatexInline = ['\\(', '\\)']
window.filtData = window.dats
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$('#form_dat > fieldset > div > select').each(function () {
const prop = $(this).attr("name")
const values = $(this).val()
window.filtData = window.filtData.filter((d) => {
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if (typeof values == "undefined" || values == null) {
return false
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}
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return values.includes(getSelectValue(d, prop))
delete (val)
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})
})
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window.T1ref=new Map()
var dois = new Set(window.filtData.map((d) => d.DOI.string))
var mols = new Set(window.filtData.map((d) => d.molecule))
await window.doiCache.addRange(dois)
for (const doi of dois) {
window.T1ref.set(doi,new Map())
for (const mol of mols) {
window.T1ref.get(doi).set(mol,new Map())
var TBESortdat=window.dats.filter(d=>d.DOI.string===doi && d.molecule===mol).sort((d1,d2)=>{
if (d1.method.isTBE && !d2.method.isTBE) {
return -1
} else if(!d1.method.isTBE && d2.method.isTBE) {
return 1
} else if (d1.method.isTBE && d2.method.isTBE) {
if (d1.method.name==="TBE(FC)" && d2.method.name==="TBE") {
return -1
} else if(d1.method.name==="TBE" && d2.method.name==="TBE(FC)") {
return 1
}
else {
return 0
}
}
})
if (TBESortdat.length>0 && TBESortdat[0].method.isTBE) {
for (const exc of TBESortdat[0].excitations) {
window.T1ref.get(doi).get(mol).set(JSON.stringify((exc.initial,exc.final)),exc.T1)
}
}
}
}
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var data = $("#data")
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$(data).empty();
if (window.filtData.length > 0) {
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const sets = (await getPublis()).sets
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for (const doi of doiCache.keys()) {
paperdata = window.filtData.filter((d) => {
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return d.DOI.string == doi
})
var methods = uniq(paperdata.map(d => d.method))
const sortedMethods = methods.sort((a, b) => {
if (a.isTBE && !b.isTBE) {
return -1
}
else if (a.isTBE && b.isTBE) {
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if (a.basis!=="CBS" && b.basis==="CBS") {
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return -1
}
else {
return 1
}
}
else if (!a.isTBE && b.isTBE) {
return 1
}
else {
return 0
}
})
var div = $('<div/>').appendTo(data)
$("<h1/>").text(sets.get(doi)).appendTo(div)
var table = $("<table/>").addClass("datatable").appendTo(div)
var head = $("<tr/>")
$("<thead/>").addClass("sticky").append(head).appendTo(table)
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var tbody = $("<tbody/>").appendTo(table)
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var th = $("<th/>", { scope: "column" })
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head.append(["Molecule", "Transition"].map(x => th.clone().text(x)))
head.append(sortedMethods.map(x => th.clone().text(x.toString("\n").split('-').join('\u2011'))))
adjustSticky();
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datadic = new Map()
for (const dat of paperdata) {
const key1 = dat.molecule;
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const myT1s=T1ref.get(dat.DOI.string).get(dat.molecule)
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if (!datadic.has(key1)) {
datadic.set(key1, new Map())
}
const key3 = JSON.stringify(dat.method)
for (const ex of dat.excitations) {
Reflect.setPrototypeOf(ex.type, excitationType.prototype)
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var allowT1=false
const T1Key=JSON.stringify((ex.initial,ex.final))
const T1range=filterParams.T1
if (T1range.min===0 && T1range.max===100) {
allowT1=true
} else if (myT1s.has(T1Key)) {
const T1Val=myT1s.get(T1Key)
if (T1range.min<=T1Val && T1Val<=T1range.max) {
allowT1=true
}
}
if (((window.filterParams.exType & ex.type) !== 0) && ((window.filterParams.exVertKind & ex.VertExcitationKind) !== 0) && allowT1) {
const key2 = JSON.stringify([ex.initial, ex.final, ex.type, ex.VertExcitationKind])
if (!datadic.get(key1).has(key2)) {
datadic.get(key1).set(key2, new Map())
}
datadic.get(key1).get(key2).set(key3, [ex.value, ex.isUnsafe])
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}
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}
}
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for (const [molecule, moldat] of datadic.entries()) {
var printmol = true;
for (const [jsonex, exdat] of moldat.entries()) {
const ex = JSON.parse(jsonex)
Reflect.setPrototypeOf(ex[0], state.prototype)
Reflect.setPrototypeOf(ex[1], state.prototype)
Reflect.setPrototypeOf(ex[2], excitationType.prototype)
Reflect.setPrototypeOf(ex[3], VertExcitationKind.prototype)
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var tr = $("<tr/>")
if (printmol) {
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$("<th/>", { scope: "row", rowspan: moldat.size }).text(molecule).appendTo(tr)
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printmol = false
}
var Vertkindtext = ""
if (ex[3].Value == VertExcitationKinds.Fluorescence.Value) {
Vertkindtext = String.raw`[\mathrm{F}]`
}
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if(ex[2].description.string){
desctex="("+ex[2].description.string+")"
}
$("<th/>", { scope: "rowgroup" }).text(String.raw`${LatexInline[0]}${ex[0].toLaTeX()} \rightarrow ${ex[1].toLaTeX()} ${Vertkindtext} ${desctex} ${LatexInline[1]}`).appendTo(tr)
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var entries = Array.from(exdat.entries())
for (const method of sortedMethods) {
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td = $("<td/>").addClass("NumberCell")
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kv = entries.find(x => {
return JSON.stringify(method) == x[0]
})
if (kv !== undefined) {
const [val, unsafe] = kv[1]
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if (unsafe) {
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td.append($("<span/>", { title: "unsafe value", role: "img", "aria-label": "Warning" }).addClass("emoji").text('⚠'))
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}
if (unsafe && !filterParams.unsafe) {
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td.append($("<s/>").append(val.toString()))
}
else {
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td.append(val.toString())
}
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}
tr.append(td)
}
tbody.append(tr)
}
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}
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}
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await MathJax.typesetPromise()
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}
await reloadRef()
}
async function reloadRef(){
const combbasis = $("#cb_combbasis").is(':checked')
$(sel_ref).empty()
for (const el of uniq(window.filtData.map(d =>[d.method, d.DOI.string]))) {
op = $("<option/>", {
value: JSON.stringify(el)
}).text(el[0])
if (el[0].name.includes("TBE")) {
$(sel_ref).prepend(op)
}
else {
$(sel_ref).append(op)
}
}
$(sel_ref).prop("selectedIndex", 0);
$(sel_ref).trigger("change")
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}
async function submitdat() {
window.onbeforeunload = () => { return ''; }
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await reloadContent();
}
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</script>
{{< getDataFilesName >}}
<noscript>
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<p style="background-color: red; color: white; font-size: 20; font-weight: bold;">
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<span role="img" aria-label="Warning" class="emoji"></span>
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<span>This website work only if JavaScript is enable. You must enable
JavaScript.
<a href="https://www.enable-javascript.com/" target="_blank">How to enable JavaScript ?</a></span>
</p>
</noscript>
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<p>
In this page you can compare multiple dataset and have somme statistics to evaluate method or basis accuracy.
For this follow this steps
<ol>
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<li>Add custom files</li>
<ul>
<li>Absorption</li>
<li>Fluorescence</li>
</ul>
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<li>Choose each parameter (of course you can select multiples values for each) you can use the the <buttongit
disabled>Select all</button> button to select all items <span hidden
data-needbrowser='{"Engine":["WebKit","Blink"],"Platform":["desktop"]}'>or use the <kbd
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data-needbrowser='{"OS":["MacOS"]}'>⌘</kbd><kbd
data-neednotbrowser='{"OS":["MacOS"]}'>Ctrl</kbd>+<kbd>A</kbd> shortcut key</span></li>
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<ul id="SelectList"></ul>
<li>Choose filters:</li>
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<ul>
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<li>Choose what kind of vertical excitations you want</li>
<ul id="exVertKindList"></ul>
<li>Choose other excitation parameters you want</li>
<ul id="exTypeList"></ul>
<li>Choose if you want to include unsafe values in statistics</li>
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<li>Chse the range of %T1 range using the two number box</li>
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</ul>
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<li>Choose parameters for the statistics</li>
<ul>
<li>Choose if you want to combine basis sets in the statistics</li>
<li>Select a reference from <strong>already selected data</strong> (by default first is selected -it's the <abbr
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title="Theoretical best estimate">TBE</abbr> if present- is already selected)</li>
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</ul>
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<li>Now you can see the list of selected data and some statistics about these data</li>
</ol>
</p>
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<form id="form_dat" action="javascript:submitdat()" method="post">
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<fieldset>
<legend>Import custom files</legend>
<div>
<label for="absFiles_input">Add custom absorption data files</label>
<input type="file" multiple onchange="reloadCustomFiles()" id="absFiles_input" name="file_abs"></input>
</div>
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<div>
<label for="fluoFiles_input">Add custom fluorescence data files</label>
<input type="file" multiple onchange="reloadCustomFiles()" id="fluoFiles_input" name="file_fluo"></input>
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</div>
</fieldset>
<fieldset class="table">
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<div style="display: inline-block;">
<label for="DOI_select">Sets</label>
<button class="SelectAll" type="button" onclick="selectSelectAll_click(event)">Select all</button>
<select multiple id="DOI_select" name="DOI" onchange="reloadNextSelect(event)"></select>
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</div>
<div style="display:inline-block">
<label for="mol_select">Molecules</label>
<button class="SelectAll" type="button" onclick="selectSelectAll_click(event)">Select all</button>
<select multiple id="mol_select" name="molecule" onchange="reloadNextSelect(event)"></select>
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</div>
<br />
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<div style="display: inline-block;">
<label for="method_select">Methods</label>
<button class="SelectAll" type="button" onclick="selectSelectAll_click(event)">Select all</button>
<select multiple id="method_select" name="method" onchange="reloadNextSelect(event)"></select>
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</div>
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<div style="display: inline-block;">
<label for="basis_select">Basis sets</label>
<button class="SelectAll" type="button" onclick="selectSelectAll_click(event)">Select all</button>
<select multiple id="basis_select" name="basis" onchange="reloadNextSelect(event)"></select>
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</div>
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</fieldset>
<fieldset>
<legend>Vertical excitation kind</legend>
<ul class="nestedCbList" style="padding-left: 0em;">
<li>
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<input type="checkbox" checked onchange="nestedCheckbox_change(event)" id="cb_fileType_All"></input>
<label for="cb_fileType_All"> All</label>
</li>
<ul class="nestedCbList" id="cb_exVertKindList">
<li>
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<input type="checkbox" onchange="nestedCheckbox_change(event)" id="cb_abs" value="1" name="datatype">
<label for="cb_abs">Absorption</label>
</li>
<li>
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<input type="checkbox" onchange="nestedCheckbox_change(event)" id="cb_fluo" value="2" name="datatype">
<label for="fluo">Fluorescence</label>
</ul>
</li>
</fieldset>
<fieldset id="excitationFilter">
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<legend>Filters</legend>
<ul class="nestedCbList" style="padding-left: 0em;">
<li>
<input type="checkbox" onchange="nestedCheckbox_change(event)" id="cb_exType_All"></input>
<label for="cb_exType_All"> All</label>
</li>
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<ul id="cb_exTypeList" class="nestedCbList">
</ul>
<li id="li_cb_unsafe">
<input type="checkbox" id="cb_unsafe" name="unsafe">
<label for="cb_unsafe">Unsafe</label>
</li>
</fieldset>
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<fieldset>
<legend>%T1</legend>
<input class="range min" airia-label="Minimum value" type="number" id="T1min" step="0.01" onchange="numberRangeChange(event)" min="0" value="0">
<span>\(\leq \mathrm{\%T1} \leq\)</span>
<input class="range max" airia-label="Maximum value" type="number" id="T1max" step="0.01" onchange="numberRangeChange(event)" max="100" value="100">
</fieldset>
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<input type="submit" disabled=true value="Load"></input>
</form>
<form id="form_ref">
<legend>Statistics</legend>
<div>
<input type="checkbox" id="cb_combbasis" onchange="reloadRef()">
<label for="cb_combbasis">Combine basis sets</label>
</div>
<div>
<label for="sel_ref">Reference</label>
<select id="sel_ref" onchange="reloadStat()"></select>
</div>
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</form>
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<section id="data">
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</section>
<section>
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<table id="stat_table" class="datatable">
<thead class="sticky">
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<th scope="col">Method</th>
<th scope="col">Set</th>
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<th scope="col">Count</th>
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<th scope="col">Min</th>
<th scope="col">Max</th>
<th scope="col">MSE</th>
<th scope="col">MAE</th>
<th scope="col">Median</th>
<th scope="col">Absolute Median</th>
<th scope="col">RMS</th>
<th scope="col">Variance</th>
<th scope="col">Standard deviation</th>
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</thead>
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<tbody>
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</tbody>
<div id="graph_div"></div>
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</table>
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</section>
{{< waitModal >}}