Here you can find the source of isNumeric()
String.prototype.isNumeric = function() { var tmpFloat = parseFloat(this); if (isNaN(tmpFloat)) return false; var tmpLen = this.length - tmpFloat.toString().length; return tmpFloat + "0".Repeat(tmpLen) == this; }
String.prototype.isNumber = function() return (/^\d+$/.test(this.Trim()));
String.prototype.isNumber = function() try var value = this.toString(); value = value.replace(",",""); if (parseFloat(value)!= value) return false; else ...
String.prototype.isNumeric = function(){ return !isNaN(parseFloat(this)) && isFinite(this);
String.prototype.isNumeric = function() { return !isNaN(parseFloat(this)) && isFinite(this); };
String.prototype.isNumeric = function() { return !isNaN(parseFloat(this)) && isFinite(this); };
var postfixStack = new Array String.prototype.isNumeric = function() { return !isNaN(parseFloat(this)) && isFinite(this); function MathSolver() { this.infixToPostfix = function(infix) { for(var i = 0; i < infix.length; i++) { var token = infix[i]; if(token.isNumeric()) { ...
String.prototype.isNumeric = function (iLoc) { iLoc = ((!!iLoc) ? iLoc : 0); iLoc = ((iLoc < 0) ? 0 : iLoc); iLoc = ((iLoc > (this.length - 1)) ? this.length : iLoc); var _ch = this.substr(iLoc, 1); var b = ( (_ch >= '0') && (_ch <= '9') ); return b;
Number.isNumeric = function isNumeric(value, isString) { if (typeof value === "string" && isString) { return Number.isInteger(value, true) || Number.isFloat(value, true); return Number.isInteger(value) || Number.isFloat(value); };