mirror of
https://github.com/LCPQ/QUESTDB_website.git
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186 lines
6.0 KiB
HTML
186 lines
6.0 KiB
HTML
---
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title: "Multiple dataset"
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date: 2019-09-27 16:41
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draft: false
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---
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<script src="/scripts/data.js" type="text/javascript"></script>
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<script src="/scripts/loadAllData.js" type="text/javascript"></script>
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<script src="/scripts/getFullDataPath.js" type="text/javascript"></script>
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<script src="/scripts/getTextFromFile.js" type="text/javascript"></script>
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<script src="/scripts/trueTypeOf.js" type="text/javascript"></script>
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<script src="/scripts/uniq.js"></script>
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<script src="/scripts/noNan.js"></script>
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<script src="https://cdn.rawgit.com/larsgw/citation.js/archive/citation.js/citation-0.4.0-9.js"
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type="text/javascript"></script>
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<script src="https://cdn.plot.ly/plotly-latest.min.js"></script>
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<script src="https://unpkg.com/simple-statistics@7.0.2/dist/simple-statistics.min.js"></script>
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<script>
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window.onload= async ()=>{
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window.Cite = require('citation-js');
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$('#form input[type=radio]').on('change', async function(event) {
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var result = $(this).val();
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var proms=[];
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switch (result) {
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case "abs":
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proms=getAbsFilesName().map((f) => AbsDataFile.loadAsync(f));
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break;
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case "fluo":
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proms=getFluoFilesName().map((f) => FluoDataFile.loadAsync(f));
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break;
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case "zpe":
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proms=getZPEFilesName().map((f) => ZPEDataFile.loadAsync(f));
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break;
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}
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window.dats=await Promise.all(proms)
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reloadSelect()
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await reloadContent()
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})
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}
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function reloadSelect(){
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$('#form > select').each(function(){
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$(this).find('option[value!=""]').remove()
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const vals=uniq(window.dats.map((d)=>{return d[$(this).attr("name")]}))
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for (const val of vals){
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op=document.createElement("option")
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op.value=JSON.stringify(val)
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op.innerText=val.toString()
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$(this).append(op)
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}
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})
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}
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async function reloadContent(){
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const LatexInline=['\\(','\\)']
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var filt=window.dats
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$('#form > select').each(function(){
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const prop=$(this).attr("name")
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const values=$(this).val()
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filt=filt.filter((d)=>{
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if(typeof values=="undefined" || values==null){
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return false
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}
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return values.includes(JSON.stringify(d[prop]))
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})
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})
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var dtb=document.getElementById("dat_table_b");
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var stb=document.getElementById("stat_table_b");
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dtb.innerHTML=''
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stb.innerHTML=''
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var sdic=new Map()
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for (const d of filt) {
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var row=document.createElement("tr")
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var rowd=[]
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var els=[d.molecule,d.comment,d.code,d.method,d.DOI]
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for(const el of els){
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td=document.createElement("td")
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if(trueTypeOf(el)=="doi"){
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var publipromise=window.Cite.async(el.string)
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var lnkdoi=document.createElement("a")
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lnkdoi.href=el.url
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lnkdoi.target="_blank"
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publi=await publipromise
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lnkdoi.innerHTML=publi.format('citation', {
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format: 'html',
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lang: 'en-US'
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})
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td.appendChild(lnkdoi)
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}
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else{
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td.innerText=el
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}
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row.appendChild(td)
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}
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dtb.appendChild(row)
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row=[]
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if(!(sdic.has(d.molecule)))
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{
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sdic.set(d.molecule,new Map())
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}
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var exdic=sdic.get(d.molecule)
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for(const exc of d.excitations){
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var key=JSON.stringify([exc.initial,exc.final])
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if(!(exdic.has(key))){
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exdic.set(key,[])
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}
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exdic.get(key).push(exc.value)
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}
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}
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for(const [mol,exs] of sdic){
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var defmol=true
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for (const [exstr,values] of exs) {
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var row=document.createElement("tr")
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if(defmol){
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var td=document.createElement("td")
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td.innerText=mol
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td.rowSpan=exs.leight
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row.appendChild(td)
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defmol=false
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}
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ex=JSON.parse(exstr).map(v=>{
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return Object.setPrototypeOf(v,state.prototype)
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})
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var td=document.createElement("td")
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td.innerText=String.raw`${LatexInline[0]} ${ex[0].toLaTeX()} \rightarrow ${ex[1].toLaTeX()}${LatexInline[1]}`
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row.appendChild(td)
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e=[ss.min(values),ss.max(values),ss.mean(values),ss.median(values),ss.variance(values),ss.standardDeviation(values),ss.medianAbsoluteDeviation(values)]
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e.forEach(v =>{
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td=document.createElement("td")
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td.innerText=noNanPrecision(v,3);
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row.appendChild(td)
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})
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stb.appendChild(row)
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}
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}
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await MathJax.typesetPromise()
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}
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</script>
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{{< getDataFilesName >}}
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<form id="form" action="" method="post">
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<legend>Data type</legend>
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<input type="radio" id="abs" value="abs" name="datatype">
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<label for="abs">Absorption</label>
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<input type="radio" id="fluo" value="fluo" name="datatype">
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<label for="fluo">Fluorescence</label>
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<input type="radio" id="zpe" value="zpe" name="datatype">
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<label for="zpe">\(\Delta \text{ZPE}\)</label>
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<br/>
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<label for="mol_select">Molecule</label>
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<select multiple id="mol_select" onchange="reloadContent()" name="molecule"></select>
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<label for="code_select">Code</label>
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<select multiple id="code_select" onchange="reloadContent()" name="code"></select>
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<label for="method_select">Method</label>
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<select multiple id="method_select" onchange="reloadContent()" name="method"></select>
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<label for="DOI_select">DOI</label>
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<select multiple id="DOI_select" onchange="reloadContent()" name="DOI"></select>
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</form>
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<br/>
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<div id="data_div">
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<table id="dat_table">
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<thead>
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<th>Molecule</th>
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<th>Comment</th>
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<th>Code</th>
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<th>Method</th>
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<th>Reference</th>
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</thead>
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<tbody id="dat_table_b">
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</tbody>
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</table>
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</div>
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<div id="stat_div">
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<table id="stat_table">
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<thead>
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<th>Molecule</th>
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<th>Transition</th>
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<th>Min</th>
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<th>Max</th>
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<th>Mean</th>
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<th>Median</th>
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<th>Variance</th>
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<th>Standard deviation</th>
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<th>Median absolute deviation</th>
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</thead>
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<tbody id="stat_table_b">
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</tbody>
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</table>
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</div> |