Path: csiph.com!aioe.org!.POSTED!not-for-mail From: The Starmaker Newsgroups: sci.physics.relativity Subject: Re: How Big is s PHOTON ? Date: Tue, 28 Aug 2018 15:08:46 -0700 Organization: Aioe.org NNTP Server Lines: 24 Message-ID: <5B85C7EE.443C@ix.netcom.com> References: <3ee44b34-1b18-4fa8-898c-a72ba9fe2176@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=iso-8859-1 Content-Transfer-Encoding: 8bit X-Complaints-To: abuse@aioe.org X-Antivirus-Status: Clean X-Mailer: Mozilla 3.04Gold (WinNT; U) X-Antivirus: Avast (VPS 180828-12, 08/28/2018), Outbound message X-Notice: Filtered by postfilter v. 0.8.3 Xref: csiph.com sci.physics.relativity:469596 consequently7990662@gmail.com wrote: > > On Friday, August 24, 2018 at 3:09:33 AM UTC-7, Keith Stein wrote: > > > > The mass m of a body is equivalent to its rest energy E₀ = E(p = 0): > > E₀ = m c² > > > e=Mc^2 > > If E represents the energy of a photon than m and M are massless. but E does not represent the energy of a photon..only it's radiation. And you cannot have radiation without mass. E equals L in Einstein't mind...and L stands for Radiation. I mean, the big bang itself stands for energy creating mass...otherwise you would not be here.