Path: csiph.com!aioe.org!.POSTED!not-for-mail From: The Starmaker Newsgroups: sci.physics.relativity Subject: Re: Slow clock transport and the measurement of one way light speed. Date: Thu, 11 Aug 2016 17:02:44 -0700 Organization: Aioe.org NNTP Server Lines: 18 Message-ID: <57AD1224.1B22@ix.netcom.com> References: <528e47e6-bd5b-4777-b689-e1f06bfe8d5c@googlegroups.com> <872f8d71-1ea4-497b-887b-f39dd1434167@googlegroups.com> <6d86b881-11bb-42c2-bbb7-c50cf4b9570c@googlegroups.com> Reply-To: starmaker@ix.netcom.com NNTP-Posting-Host: X9ItFNC7Zcz4l6MobL/YRA.user.gioia.aioe.org Mime-Version: 1.0 Content-Type: text/plain; charset=us-ascii Content-Transfer-Encoding: 7bit X-Complaints-To: abuse@aioe.org X-Notice: Filtered by postfilter v. 0.8.2 X-Mailer: Mozilla 3.04Gold (WinNT; U) Xref: csiph.com sci.physics.relativity:389807 Tom Roberts wrote: > > On 8/10/16 8/10/16 - 7:52 PM, HGW. wrote: > > Clocks synched together are absolutely synched. Move them apart any way you like > > and they remain in absolute synch. > > This is just plain not true. > > There are clocks at NIST that can detect the desynchronization due to motion ~ 1 > m/s over a few seconds. > > It has long been possible to take two commercial atomic clocks, synchronize them > together, put one in a car and drive around for a few hours (at constant > altitude), bring it back to the other, and SEE the difference they display. and what is the difference they display? What are the numbers??