The question is about quantum many worlds. Not cosmology.

@philipthrift

On Thursday, October 3, 2019 at 5:22:02 PM UTC-5, Jason wrote:
>
> Energy isn't even conserved under conventional cosmological models.  The 
> expansion of space causes a loss of radiation energy, and if vacuum energy 
> is non zero (also an assumed by current models) the Hubble expansion is 
> creating energy.
>
> Jason
>
> On Thu, Oct 3, 2019 at 2:33 PM Philip Thrift <[email protected] 
> <javascript:>> wrote:
>
>>
>> There is no way for the Many Worldists to squirrel out of it.
>>
>> Run the code
>>
>> *Getting started with Qiskit: while exploring the quantum world, let’s 
>> play the coin flip game!*
>>
>>
>> https://medium.com/@esobimpe/getting-started-with-qiskit-while-exploring-the-quantum-world-lets-play-the-coin-flip-game-2319bb293c6a
>>
>> with a loop of 100.
>>
>> if MWI is true there will be 2^100 worlds.
>>
>> In each world there is a Sean Carroll looking at a different result.
>>
>> @philipthrift
>>
>>
>>
>>
>> On Thursday, October 3, 2019 at 2:07:28 PM UTC-5, Brent wrote:
>>>
>>>
>>>
>>> On 10/3/2019 10:44 AM, Philip Thrift wrote:
>>>
>>>
>>>
>>> On Thursday, October 3, 2019 at 12:39:09 PM UTC-5, Brent wrote: 
>>>>
>>>>
>>>>
>>>> On 10/3/2019 6:29 AM, Alan Grayson wrote: 
>>>> > Why would the energy of a branch be related to its probability of 
>>>> > occurrance? One can imagine a very low probability, so low that it 
>>>> > can't even contain copies of the experimenter. Totally ridiculous! AG 
>>>>
>>>> It it's probability were zero would you still count its energy? 
>>>>
>>>> Brent 
>>>>
>>>
>>>
>>>
>>> But MWI eliminates probabilities.
>>>
>>>
>>> That's its problem. But it has to explain the appearance of 
>>> probabilities.  
>>>
>>>
>>> World W branches into W0 and W1, then W00, W01, W10, W11, then ...
>>>
>>> They all exist in MWI.
>>>
>>>  
>>> But WA, WB, WC,... don't. it's a popular fallacy that MWI means 
>>> everything happens.
>>>
>>> Brent
>>>
>>>
>>> Given a world (in Sabine's MWI above) W where there is a computer C with 
>>> a quantum random number generator, after C generates a string of 1000 0s 
>>> and 1s, the  energy of the computer 
>>>
>>>    C-[one thousand (0|1)s]
>>>
>>> in each  leaf world of the resulting branching tree will be 1/(2^1000)th 
>>> of energy of C.
>>>
>>> @philipthrift 
>>>
>>>
>>> -
>>
>

-- 
You received this message because you are subscribed to the Google Groups 
"Everything List" group.
To unsubscribe from this group and stop receiving emails from it, send an email 
to [email protected].
To view this discussion on the web visit 
https://groups.google.com/d/msgid/everything-list/0b5dc5a9-5f16-4258-8ad6-9558833bfe8f%40googlegroups.com.

Reply via email to