{"version":"1.0","provider_name":"NJD-iscience","provider_url":"https:\/\/nor-ijournal.com\/ru","author_name":"NJD-iScience","author_url":"https:\/\/nor-ijournal.com\/ru\/author\/ad432mdfin45\/","title":"Perelygin Yu., Kolchugina I. - EMPIRICAL EQUATION FOR THE DEPENDENCE OF THE EQUIVALENT ELECTRICAL CONDUCTIVITY OF AN AQUEOUS SALT SOLUTION ON CONCENTRATION","type":"rich","width":600,"height":338,"html":"<blockquote class=\"wp-embedded-content\" data-secret=\"KbGiRd2FE5\"><a href=\"https:\/\/nor-ijournal.com\/ru\/2023\/11\/27\/121-2\/\">Perelygin Yu., Kolchugina I. &#8211; EMPIRICAL EQUATION FOR THE DEPENDENCE OF THE EQUIVALENT ELECTRICAL CONDUCTIVITY OF AN AQUEOUS SALT SOLUTION ON CONCENTRATION<\/a><\/blockquote><iframe sandbox=\"allow-scripts\" security=\"restricted\" src=\"https:\/\/nor-ijournal.com\/ru\/2023\/11\/27\/121-2\/embed\/#?secret=KbGiRd2FE5\" width=\"600\" height=\"338\" title=\"\u00abPerelygin Yu., Kolchugina I. &#8211; EMPIRICAL EQUATION FOR THE DEPENDENCE OF THE EQUIVALENT ELECTRICAL CONDUCTIVITY OF AN AQUEOUS SALT SOLUTION ON CONCENTRATION\u00bb &#8212; NJD-iscience\" data-secret=\"KbGiRd2FE5\" frameborder=\"0\" marginwidth=\"0\" marginheight=\"0\" scrolling=\"no\" class=\"wp-embedded-content\"><\/iframe><script>\n\/*! This file is auto-generated *\/\n!function(d,l){\"use strict\";l.querySelector&&d.addEventListener&&\"undefined\"!=typeof URL&&(d.wp=d.wp||{},d.wp.receiveEmbedMessage||(d.wp.receiveEmbedMessage=function(e){var t=e.data;if((t||t.secret||t.message||t.value)&&!\/[^a-zA-Z0-9]\/.test(t.secret)){for(var s,r,n,a=l.querySelectorAll('iframe[data-secret=\"'+t.secret+'\"]'),o=l.querySelectorAll('blockquote[data-secret=\"'+t.secret+'\"]'),c=new RegExp(\"^https?:$\",\"i\"),i=0;i<o.length;i++)o[i].style.display=\"none\";for(i=0;i<a.length;i++)s=a[i],e.source===s.contentWindow&&(s.removeAttribute(\"style\"),\"height\"===t.message?(1e3<(r=parseInt(t.value,10))?r=1e3:~~r<200&&(r=200),s.height=r):\"link\"===t.message&&(r=new URL(s.getAttribute(\"src\")),n=new URL(t.value),c.test(n.protocol))&&n.host===r.host&&l.activeElement===s&&(d.top.location.href=t.value))}},d.addEventListener(\"message\",d.wp.receiveEmbedMessage,!1),l.addEventListener(\"DOMContentLoaded\",function(){for(var e,t,s=l.querySelectorAll(\"iframe.wp-embedded-content\"),r=0;r<s.length;r++)(t=(e=s[r]).getAttribute(\"data-secret\"))||(t=Math.random().toString(36).substring(2,12),e.src+=\"#?secret=\"+t,e.setAttribute(\"data-secret\",t)),e.contentWindow.postMessage({message:\"ready\",secret:t},\"*\")},!1)))}(window,document);\n\/\/# sourceURL=https:\/\/nor-ijournal.com\/wp-includes\/js\/wp-embed.min.js\n<\/script>","description":"The relevance and goals are due to the need to obtain an equation of the dependence of the equivalent electrical conductivity on the salt concentration in the solution. An equation is proposed for calculating the equivalent electrical conductivity depending on the salt concentration in the solution. The resulting equation is sufficiently well observed when the salt concentration in the solution is up to 5 g-eq\/l.","thumbnail_url":"https:\/\/nor-ijournal.com\/wp-content\/uploads\/2023\/11\/NJD_121-723x1024.jpg"}