Path: csiph.com!usenet.blueworldhosting.com!feeder01.blueworldhosting.com!peer01.iad.highwinds-media.com!news.highwinds-media.com!feed-me.highwinds-media.com!post01.iad.highwinds-media.com!fx23.iad.POSTED!not-for-mail From: benj User-Agent: Mozilla/5.0 (X11; Linux x86_64; rv:31.0) Gecko/20100101 Thunderbird/31.5.0 MIME-Version: 1.0 Newsgroups: sci.physics Subject: Re: 1 Second Defined in a Formula References: <609ea73d-c7c6-412b-8ed9-b9b6f0ae6b4f@googlegroups.com> In-Reply-To: <609ea73d-c7c6-412b-8ed9-b9b6f0ae6b4f@googlegroups.com> Content-Type: text/plain; charset=windows-1252; format=flowed Content-Transfer-Encoding: 7bit Lines: 29 Message-ID: X-Complaints-To: abuse@teranews.com NNTP-Posting-Date: Tue, 12 Apr 2016 06:39:26 UTC Organization: TeraNews.com Date: Tue, 12 Apr 2016 02:39:25 -0400 X-Received-Bytes: 1727 X-Received-Body-CRC: 2477635130 Xref: csiph.com sci.physics:569870 On 04/11/2016 11:54 PM, omnilobe@gmail.com wrote: > 1 second = 4 pi V k m / (5.131534 x 10^-9 h G q) > > where > 5.13 ns is the universal constant for the conservation of continuum > Alan Folmsbee, April 11, 2016 Please explain what this "universal constant for conservation of continuum" might be. What is "conservation of continuum"? Sam and HVAC feel free to enlighten me on this fine point. -- ___ ___ ___ ___ /\ \ /\ \ /\__\ /\ \ /::\ \ /::\ \ /::| | \:\ \ /:/\:\ \ /:/\:\ \ /:|:| | ___ /::\__\ /::\~\:\__\ /::\~\:\ \ /:/|:| |__ /\ /:/\/__/ /:/\:\ \:|__| /:/\:\ \:\__\ /:/ |:| /\__\ \:\/:/ / \:\~\:\/:/ / \:\~\:\ \/__/ \/__|:|/:/ / \::/ / \:\ \::/ / \:\ \:\__\ |:/:/ / \/__/ \:\/:/ / \:\ \/__/ |::/ / \::/__/ \:\__\ /:/ / ~~ \/__/ \/__/