Path: csiph.com!fu-berlin.de!uni-berlin.de!individual.net!not-for-mail From: Sylvia Else Newsgroups: sci.physics.relativity Subject: Re: Classical entanglement. Date: Wed, 29 Jun 2016 14:24:40 +1000 Lines: 16 Message-ID: References: <2c2144be-f6d2-484c-8fbc-b8aaa37bc56f@googlegroups.com> <8f947d29-9fc0-4cc2-9a8c-6886af046302@googlegroups.com> <5148234d-d71f-4279-b2bc-87f1bdfdb13b@googlegroups.com> <59e73fa4-d92a-44e6-bb50-78bd21b3c6e7@googlegroups.com> <97540be8-6552-498b-b0dc-f2f9aa24b138@googlegroups.com> Mime-Version: 1.0 Content-Type: text/plain; charset=utf-8; format=flowed Content-Transfer-Encoding: 7bit X-Trace: individual.net zpPr0FmGJrXAVp9XVUZauAT0r3sAC2ElCf3DN7n9gydUyhIjoG Cancel-Lock: sha1:gL+VTIMAyLlW1V1JK9RLV8iqphc= User-Agent: Mozilla/5.0 (Windows NT 6.1; rv:38.0) Gecko/20100101 Thunderbird/38.3.0 In-Reply-To: <97540be8-6552-498b-b0dc-f2f9aa24b138@googlegroups.com> Xref: csiph.com sci.physics.relativity:386864 On 29/06/2016 2:11 PM, Y wrote: > Nope Sylvia. > > Their results are not compared that way. They needn't be for they > will be perfectly correlated. There's no need to discuss angular > momentum force or these initial conditions. A and B can set up a > coordinate system, and assign simple numerical values for spin. 1 up, > 0 down etc. Every time a ball comes into their cavity they produce > the measure and send it to correlation point. > > -y > Peas don't have quantised spin. Sylvia