Human to Cyborg Conversion Speed
In order to speed up the conversion of man into machine, during the merging of Humanoido with the Big Brain through human biology, the rapidity of interfacing installations are sped up.
The Medical Lab has made provisions to install new interfaces every half month. This will medically allow time for the interface surgery to heal before the next interface is connected through human bio guts and flesh.
Humanoido is on the second interface and has contract provisions to complete four surgeries for a total of four interfaces. Humanoido is eager to go to infinity on the number of interfaces, each time an interface is installed, the human body becomes more Cyborg, a combination of both machine and human. The rate will install 24 interfaces in one year. The number of surgeries that a human body can take in the conversion from human to machine is unknown at this time. Reports here will specify the percent rate of conversion of human to machine. The idea is to convert parts of a human to remain on par with the machine, yet still retain the human side, hence a symbiosis balance of man and machine is the goal.
Color Wavelength (nm)
Red 625 - 740
Orange 590 - 625
Yellow 565 - 590
Green 520 - 565
Cyan 500 - 520
Blue 435 - 500
Violet 380 - 435
BIG BRAIN made by Humanoido is a giant intelligent AI machine. Over twenty years in the making, living and sentient, approaching one trillion processors/constructs. Join us in the exciting adventure as it continues to evolve!
Showing posts with label convert. Show all posts
Showing posts with label convert. Show all posts
Thursday, November 14, 2019
Saturday, July 27, 2013
Convert Old Computers Into Processors
CONVERT OLD COMPUTERS
INTO PROCESSORS
Left: The photo shows the MC computer which can add an additional 1008 processors and a Lenovo PC which can add a half million processors
The research department has found a way to convert "old" computers into vast numbers of individual and parallel processors. This could potentially increase the number of processors inside the Big Brain by a vast amount, perhaps well into the millions.
For example, the use of an extra Apple iMac could produce an additional 500,000 processors. The idea comes from the Propeller chip, which, as one chip, has eight cogs and eight instances of the Spin interpreter.
Left: This iBook could add over a quarter of a million processors.
A recycled computer can have many instances as well, with a placement of the interpreters into the main machine. The key will involve finding a low overhead interpreter and linking the repetition of interpreters from the computer to the remaining machines. This may be accomplished with cloning, and the new technique of spatial mapping used in our Monster Machine series as linked to Big Brain telescopes.
Left: one multiple processor micro controller board like this can add over 27,000 processors
The numerical limit of these new processors is unknown at this time when using all the Big Brain peripherals. It will likely depend on the computer's speed, memory, size of the interpreter, speed of the interpreter, display real estate, and other factors. An experiment is being conducted to determine the practicalities of speed and function, and the number of cloned processors that can co-exist on the latest iMac
Left: appending this BoeBot Brain project can add an additional 40,400 processors.
INTO PROCESSORS
Left: The photo shows the MC computer which can add an additional 1008 processors and a Lenovo PC which can add a half million processors
The research department has found a way to convert "old" computers into vast numbers of individual and parallel processors. This could potentially increase the number of processors inside the Big Brain by a vast amount, perhaps well into the millions.
For example, the use of an extra Apple iMac could produce an additional 500,000 processors. The idea comes from the Propeller chip, which, as one chip, has eight cogs and eight instances of the Spin interpreter.
Left: This iBook could add over a quarter of a million processors.
A recycled computer can have many instances as well, with a placement of the interpreters into the main machine. The key will involve finding a low overhead interpreter and linking the repetition of interpreters from the computer to the remaining machines. This may be accomplished with cloning, and the new technique of spatial mapping used in our Monster Machine series as linked to Big Brain telescopes.
Left: one multiple processor micro controller board like this can add over 27,000 processors
The numerical limit of these new processors is unknown at this time when using all the Big Brain peripherals. It will likely depend on the computer's speed, memory, size of the interpreter, speed of the interpreter, display real estate, and other factors. An experiment is being conducted to determine the practicalities of speed and function, and the number of cloned processors that can co-exist on the latest iMacLeft: appending this BoeBot Brain project can add an additional 40,400 processors.
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