Showing posts with label size. Show all posts
Showing posts with label size. Show all posts

Monday, April 6, 2020

Colossus - New Big Brain AI

Walk down this corridor of blazing red-lit engulfment to experience the excitement of giant
Colossus - the New AI Big Brain! A twenty year project thus far of expansions and growth,
Humanoido expects to create "human brain to machine brain" transfer in the next decade.

Humanoido's Big Brain Machine has reached a size that fits into much of a skyscraper, driving

the inventor completely out of his array of other laboratories. As illustrated here, the thinking
machine is saturated with tens of thousands of red LED light emitting data diodes, a byproduct
of the beginning Big Brain Foundation, when it was designed around lights to indicate various
function 
processes.
Colossus - the New Big Brain AI
The Big Brain has reached a colossal size that now represents the greater portion of a skyscraper. This Colossus Big Brain version is being gated in a new skyscraper at the SPACE1 Pacific Ocean Science & Technology  Supercomputing Laboratory and Rocket Center.

— Nicknamed Colossus, the new upgraded brain is thousands of times larger than the original —

It now takes physical skyscraper floors and virtual computing clouds across the world to contain the upgraded Big Brain, now nicknamed Colossus! Humanoido, the Father and inventor of the Big Brain, has kept this AI supercomputing machine at the forefront of its own technical marvel world of growth and scientific discoveries over the past 20 years.

Tuesday, September 6, 2016

Brain Family

The first Brain in a Jar
BRAIN FAMILY
Viewing the genealogy of brains, one can see a trend of family. The family of brains includes at least 50 smaller brain siblings. The smaller brains are machines, built from micro-computing processor technology invented by Humanoido, and resulted from spin offs of the Big Brain and Supercomputers. The family is all machines except for Humanoido, the human father of the Big Brain.

There are 18 offspring brains.
Bantam Brain
Bit Brain
Baby Brain
Child Brain
Tiny Brain One TBO
Tiny Brain Two TB2
Tiny Brain Three TB3
Small Brain
Pint Size Brain
Brain Child
Morpher-8
Propeller Elf
Micron Propeller
MC Computer
Shrunken Computer SC
Propeller Cosmac Elf II

Ten additional smaller brains exist in the series of Brain in a Jar. These are listed in the Genealogy.
http://humanoidolabs.blogspot.com/p/genealogy.html
http://humanoidolabs.blogspot.com/search?q=mini+brain

Brown Jar Brain
2nd Jar Brain
Blue Jar Brain
Yellow Jar Brain
Aqua Marine Jar Brain
Jar'd Brain
Brain Cortex in a Jar
Mini Brain Cortex in a Jar
Dupe Cortex in a Jar
Half Gallon Brain in a Jar

There are 12 specific Children.
http://humanoidolabs.blogspot.com/2012/01/8-children.html

Machine Birthing Process
http://humanoidolabs.blogspot.com/2012/02/birthing-process.html

Big Brain Site
Big Brain Index 2
Big Brain Index 1
Big Brain Timeline
Big Brain Contributions
Space1 Site
Space1 Index

Space1 Timeline

Saturday, October 6, 2012

Tuning Paradigmic Light

Example of Retuned Paradigimic Light by objective count increase
TUNING THE PARADIGMIC LIGHT MACHINE
There are currently several ways to tune Paradigmic Light.

1) Increase the number of objects (stellar in the above example)
2) Increase the limiting magnitude
3) Match the intensity to the proper sized avataric representations
4) Increase the accuracy of placement
5) Use a reference field when working
6) Calibrate and recalibrate the light sensor on multiple baselines
7) Work on the avataric placement of large to small 
8) Engage Accentuation
9) Transport to a different medium

Sunday, September 30, 2012

Nano Goop

BIG BRAIN NANOTECHNOLOGY
NANO GOOP
Nano Goop, or nanotechnological material is, according to the Big Brain's initiative, a nanoscopic material which may be employed to create nano machine elements and nano machines and nano objects inside the chip. Nano Goop is used to invent nano objects. Nano Goop, or NG, can be created most readily with software using reference hardware building blocks already existing inside the chip.

DEFINITIONS
Nanotechnological - the technology surrounding nano devices
Nano Goop - nanoscopic material used to create nano devices
Nanoscopic - refers to the measure realm of nano technology
Nano Objects -  objects of nano size within the chip
Nano Devices - nano sized/measured objects, tools, materials
Nano Size (Time) - measurements from 1 to 100 ns to at least one side
Nano Size (Length) - measure of 1 to 100 nm to at least one side
NS - nanosecond
NM - nanometer
NG - nanogoop

Wednesday, March 28, 2012

Big Brain Increases ULT Resolution

PROPELLER POWERED BIG BRAIN
BIG BRAIN INCREASES ULT ULTRA LARGE TELESCOPE RESOLVING POWER BY A QUANTUM LEAP
ULT Stars: 1st Test @ New Larger Diameter
MY GOD! IT'S FULL OF STARS!
The first star field and planetary tests run at this new highly powerful leap in resolution setting, technique, hardware redesign and instrumentation build has led to discovery within the rings orbiting the globe of planet Saturn. Preliminary pointing the ULT into the stellar abyss has revealed a mind boggling and spectacular number of stars! (see shown image of 1st stellar light at the new increase in telescope size) What's happening here? The ULT has become larger by a quantum leap!

Previously, the ULT was defined by the following equation:

Initial Formula Governing ULT Resolution

R ~ {[1.22 (Lambda)]/[(D1)+(D2subn1,n2,n3...)]}/~P

in the mathematical proportional expression where P is the Penetrator setting (1-10), Lambda is the wavelength of observable light, R is the resolution, D1 is the ULT aperture, D2 is the Adjunct setting, and n is the node. As the Adjunct setting increases, or the wavelength of light decreases, or the aperture increases, or a combination of the above, the resolution of the ULT increases.


The new formula introduces the distance of the Adjunct from the Earth and the distance of the Adjunct from the observational destination. As the distance of the Adjunct decreases to the observational destination, the resolution increases. To calculate the diameter of the ULT, which is based on resolution of the Observational Destination, a comparison is made of the distance to the object. This reworks the proportion as given.

It's recommended to establish a baseline with each Adjunct relative to the Observational Destination. The final analysis determines resolution based on the distance to the Earth which in turn is used to calculate the full aperture. Remember the formula is typically using Arc Radians and may require conversion.

What is the conclusion? This indicates the ULT can be much larger in aperture compared to its original 945-inch design which used only one Adjunct. How much larger? The actual numerical indication is shocking. By adjusting Adjunctive arrays, the telescope can alter and reconfig its full aperture diameter by increasing with a factor of a hundred times. The original 24 meter telescope becomes a 2,400 meter telescope which comes out to about 1.5-mile wide. This is a preliminary estimation and the actual diameter may go into a thousand times larger, thus creating a 24,ooo meter telescope at 15 miles wide, though incredulous at it may seem, the prelim results are indicative of a confirmation of these numbers.

Keep in mind the Universe Penetrator places a (up to) 10X factor on top of this aperture. So the 1.5 mile wide telescope with a 100X Adjunctive becomes 15 miles in diameter, and the 15 mile wide telescope with a 1,oooX Adjunctive becomes 150 miles in diameter. These telescopes can make serious discoveries and perform cutting edge research. The straight resolution of these apertures can be calculated directly with 1.22Lambda/D. 

New Terms
Observational Destination