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		<title>The Final Formula for The Ultimate Wave Predictor has been made Obsolete.</title>
		<link>https://blogs.lotterypost.com/jadelottery/2017/3/the-final-formula-for-the-ultimate-wave-predi.htm</link>
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		<description>JADELottery's Blog: The Final Formula for The Ultimate Wave Predictor has been made Obsolete.</description>
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			<title>Original Blog Entry: The Final Formula for The Ultimate Wave Predictor has been made Obsolete.</title>
			<link>https://blogs.lotterypost.com/jadelottery/2017/3/the-final-formula-for-the-ultimate-wave-predi.htm</link>
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			<pubDate>Fri, 31 Mar 2017 13:33:19 GMT</pubDate>
			<dc:creator>JADELottery</dc:creator>
			<description><![CDATA[<p>http://www.jadexcode.com/theultimatewavepredictor.htm<br /><br />In the link above, we describe the process and final formula for predicting the very next wave position.<br /><br />Well, as good as that was, it&#x27;s been superseded by a new formula that can handle nearly every polynomial regression.<br /><br />It required a new math with a dash of combinatorics to achieve the proper vector cofactor and coefficients in the polynomial regression.<br /><br />Where the data set is,<br /><br />then any polynomial regression is,<br /><br />with,<br /><br />Kn,m is a vector cofactor and ci,j are the polynomial coefficients.<br /><br />All cofactors and coefficients are combinatorially related to each other.<br /><br />Some of these regression polynomials can be seen here: http://www.jadexcode.com/FactoredExpansion-2.html<br /><br />The link is best viewed in Mozilla Firefox.<br /><br />... &#x5b;&#xa0;<a href="https://blogs.lotterypost.com/jadelottery/2017/3/the-final-formula-for-the-ultimate-wave-predi.htm">More</a>&#xa0;&#x5d;</p>]]></description>
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			<category>JADELottery</category>
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