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Overunity Machines Forum



quentron.com

Started by Philip Hardcastle, April 04, 2012, 05:00:30 AM

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sarkeizen

None of that makes any difference.
i) There is data.
ii) It is sorted.
iii) Using a quantum phenomena.
iv) It does not get slower as the data sorting increases.

All of these you agreed were characteristics of Philips device.  iv) is the definition of O(1) complexity.  Philips device can not work.

profitis

sarkeizen'i) There is data.
ii) It is sorted.
iii) Using a quantum phenomena.
iv) It does not get slower as the data sorting increases.'

Let's look at a common prism infront the sun:
1)There is data
2)It is sorted
3)Using a quantum phenomena
4) It doesnot get slower as data sorting increases

If a prism can work with all these criteria then philip's device should be able to work.philip's device works

sarkeizen

One troll - many faces - one of which is you. :)
Quote from: profitis on April 20, 2015, 08:15:08 AM
Let's look at a common prism infront the sun:
1)There is data
2)It is sorted
i) Demonstrate how you encode any quantity of arbitrary data into the light.  So for example all the words in a Shakespearean play.
ii) Show how that exact data then comes out sorted alphabetically and how the sorted results are read.

profitis

Sarkeizen'Shakespearean play'

Nonono...that requires millions of DIFFERENT bits.there's only like ten-twenty races of mixed bits going into the prism and exiting as a sorted ten-twenty groups.in quenco there's only four bits.2 on the nonquantum side(bothsides/oneside) and two on the quantum side(up/down).you can sort millions of mixed photons with ten-twenty wavelengths through the prism but you'l only get ten-twenty groups seperated.

profitis

Sarkeizen:'i) Demonstrate how you encode any quantity of arbitrary data into the light.'

You raise the temperature of an object to any temperature between far infrared and ultraviolet and you have your own designer-sun.you must use the appropriate prism material ofcourse to segregate into wavelengths bits