Showing posts with label microscopic. Show all posts
Showing posts with label microscopic. Show all posts

Tuesday, March 12, 2013

DIY Black Hole & Door to Quantum Dimension

Black hole opens up a new world
HOW TO BUILD YOUR OWN TINY BLACK HOLE AND OPEN A DOOR TO ANOTHER WORLD

CREATE YOUR OWN BLACK HOLE AND BE THE FIRST TO EXPLORE A NEW HIDDEN QUANTUM DIMENSION BEYOND OUR UNIVERSE!

When working in Quantum Mechanics, it becomes possible to think of entering other dimensions as these new worlds can coexist with our own. There are various theories and techniques for the exploration of other dimensions, and opening their doors, however, none are as exciting as the possibilities that small DIY black holes promise. That's because tiny black holes can prove the existence of other dimensions and worlds! The doors they create can be more stable, last longer, and offer larger openings for entering and exploration. Such a new dimension and world may be entangled with the Universe but not as we know it.

— Let's explore some of the precursors to opening up new dimensions and creating our own tiny black hole —

THE SAFETY HOLE
Recent studies have shown that these small black holes can have masses small enough to become a black hole but not large enough to interfere with the Earth. This is because the black hole is small enough for the confinement and containment of gravity and the simultaneous aging and dispersion of energy which follows Einstein's equation E = M C ^2. Think of it more as a point source of energy and a malleable singularity that can be stretched and molded like clay. According to Stephen Hawking, black holes lose mass over time creating Hawking Radiation. This is advantageous as it creates a safeguard decay rate before the black hole can engorge on any substantial amount of matter.

QUANTUM HOLE - MORE THAN BLACK
A microscopic black hole will follow the laws of quantum mechanics. Become well versed in this field to better understand how the hole will function and behave, and how objects entering the quantum dimension will act.

QUADLYZER QUANTUM ANALYZER
http://humanoidolabs.blogspot.tw/2012/10/quadalyzer-quantum-analyzer.html

Use a machine like the Quadlyzer Quantum Analyzer or Q Machine to more readily understand the quantum world and quantum mechanics.
The Q Machine
http://forums.parallax.com/showthread.php/146554-Q-Machine

ENERGY
The tiny black hole is a microscopic one and the energy required to create one is not as much as previously thought. This makes projects like creating tiny black holes possible. How much energy is required to perform such a feat? Use Einstein's equation E = MC^2 once you determine the mass of the tiny black hole. Then use this value for the created potential and kinetic energy created and released in the particle accelerator.

FOLDING DIMENSIONS
The theory of the Universe suggests there is a folding of dimension so that many worlds can reside together and offer connection in ways we have yet to explore or fully understand.

New Universe Theory
http://humanoidolabs.blogspot.com/2012/10/new-universe-theory.html

PARTICLE ACCELERATOR
Build or gain access to a particle accelerator and begin smashing atoms. (see links) Computer simulations have shown it is possible to create one of these black holes using a particle accelerator and some particles that move around the speed of light.

BLACK HOLE DURATION
Use Hawking's equations to determine the life span time of the tiny black hole based on Hawking Radiation and the decay behavior.

PINNING THE ORIFICE
To gain dimensional entrance to the new world, use a technique of pinning the outer perimeter of the orifice using three points. Three smaller black holes can serve this purpose but they must be regenerative to increase their points of longevity. This holds open the aperture long enough to enter. 

GOING INTO THE HOLE
An entire person won't be able to fit into the actual microscopic black hole, however a technique can be used to enable the black hole to pin open the doorway to the new dimension, hold it open for fractional time, and send through a microscopic robotic camera to explore the new world. Eventually, we could perfect the development of a tiny nano humanoid to do the initial exploring for us and return to offer data and new discoveries. Nano technology humanoids are the new science field that will be made popular in the future when quantum technology is more developed and explored.

RETURN PATH FROM THE NEW DIMENSION
It will be wise to calculate a return path from the new dimension, however, there is no knowledge currently about what happens with a door to a dimension is open and then closed. It's unknown how to reopen the same door. Therefore initially, the journey into new dimensions will be one way. One valid postulation is to open the door, send in the probe (or step in), do the exploration while keeping the door open and then return. However, currently the time to make these explorations remains infinitesimal.

REGIONAL INFINITESIMAL TEMPORAL ANOMALY
Be concerned about other things like regional infinitesimal temporal anomalies surrounding the black hole (what if tiny things start disappearing in relativistic gravitational time travel).

CREATING DOOR LONGEVITY
A possible way to increase the time span of keeping the door open longer is to generate multiple phasing black holes that appear smoothly one after another.

IMPORTANT LINKS
  

DIY THE PARTICLE ACCELERATOR
DIY particle accelerator at home
http://www.youtube.com/watch?v=6dnEchmSYzk

how can I make a particle accelerator? (Physics Forums)
http://www.physicsforums.com/showthread.php?t=118622

How to make your own particle accelerator (Yahoo Answers)
http://answers.yahoo.com/question/index?qid=20080816223721AAoJyyL

Building a Handcrafted Particle Accelerator
http://www.theverge.com/2012/7/12/3154327/particle-accelerator-handmade-hacked-patrick-stevenson-keating

Build Your Own Particle Accelerator
http://www.lassie.demon.co.uk/scribb/accel.htm


Build a Particle Accelerator in Your Garage
http://www.wired.com/design/2012/07/diy-particle-accelerator/  

to be continued...

Wednesday, November 28, 2012

Mirror Convexure Infinity

REACHING MIRROR INFINITUDE OF CONVEXURE

THE NEVER ENDING FASCINATING INFINITE REFLECTION

For over a hundred years, man has pondered the puzzling mirror condition of infinite reflections.

The Big Brain specifies reaching infinity through the use of various mirrors. Previously, Plano mirrors were used for this experiment, exhibiting the infinity of seemingly endless reflections. This time, the choice of mirrors include two convex mirrors. These are questions surrounding this experiment:

1) Is infinity reflection state achieved?
2) Is infinity reached faster or slower with convex mirrors compared to plano mirrors?
3) How is the speed of infinity defined?

To answer these questions, one must consider two models. One is purely mathematical and theoretical and the other is the real world actual experiment. For our purposes, both are important. First, the obviates of this experiment include the tiny minute offset of the mirror positions that result in the image shifting position as it continues towards an infinite state. This upsets the infinity purity.


The limit of count (black rings) is eight reflections with two convex mirrors
The second real world factor is the the light reflected by a number images become dimmer and dimmer, thus limiting the actual number of reflections. Contrast also becomes less and less. Resolution degrades. In the case of the convex mirror images, the images become smaller and smaller until finally they merge with the finite microscopic silver grains and the compositional material of the mirrors. The smallness of this effect can be negated by telescope and then followed by a microscope, to make the tiny images larger. However, this has limits, unlike the infinity being sought. We therefore postulate in the real world, one must determine the number of visible reflections en-route towards infinity, where infinity is considered condition that is actually never reached with mirrors in the real world. Reaching infinity means the reflections will continue on and on without stopping. But, are there other types of mirrors in the Universe of the macro or the microscopic and the quantum realities that surround us?

Numbered reflections
SETUP
The cost of this experiment is 60 cents. Two plastic quality convex chrome "mini blind spot" mirrors were obtained from Wenzhoushi Senhu Locks, part number #SF-011. One mirror is placed on the table. Next to the mirror is a box. A piece of tape is applied to the top of a second mirror and the mirror is connected to the box, parallel to the base mirror, and are concentrically adjusted. The infinity of reflections are observed and recorded.

LINKS
Mirror - Wikipedia, the free encyclopedia
en.wikipedia.org/wiki/Mirror
A beam of light reflects off a mirror at an angle of reflection equal to its angle of .... mirrors placed exactly face to face can give an infinite regress of reflections.

Look into Infinity: Reflection & Light Science Project | Exploratorium ...

www.exploratorium.edu/snacks/look_into_infinity/index.html
Look Into Infinity. Images of images of images can repeat forever. If you have ever been between two mirrors that face each other, such as in a barber shop or a ...

Infinity is weird… even in infinity mirrors! | Skulls in the Stars
skullsinthestars.com/.../infinity-is-weird-even-in-infinity-mirr...
30 Jul 2011 – I was recently looking into the optics of a so-called “infinity mirror”, ... be produced by the reflection of the first image in the mirror behind him: ...

Why do Parallel Mirrors produce infinite mirrors?
www.physicsforums.com › ... › Introductory Physics
6 posts - 4 authors - 2 Oct 2009
Why do Parallel Mirrors produce infinite mirrors? Introductory Physics ... From where shall I start? Do you know the laws of reflection?

Reflecting Infinite Reflections
reflectinginfinitereflections.blogspot.com/ 18 Aug 2007 – Simply ... its a collection of pictures taken with digital cameras (mostly, I think) and mirrors .. to .... guess what ... generate Infinite Reflections.


Shooting Challenge: Infinite Loop
gizmodo.com/5809926/shooting-challenge-infinite-loop - Cached8 Jun 2011 – Though, technically, you should know that mirrors won't create infinite reflections - they're actually countable. It's a bit of a sidebar, but I found ...

Thursday, November 1, 2012

Inner Space Era Expanded

BIG BRAIN EXPANDS SPACE EXPLORATION
INNER SPACE ERA EXPANDED
This is the era of grand exploration of inner space found inside a chip, notably the Parallax Propeller chip. Inner Space is a broad category and is now expanded beyond the microscopic to include mesoscopic, nanoscopic, and the quantum world.

OK, so you think you're a little bored with this topic? Think again. We believe it's possible to create a tiny door opening to another dimension of the Quantum world and peer inside to see back to the temporal edge of our Universe, at the beginning of relativistic space and time. See New Theory of the Universe:
http://humanoidolabs.blogspot.tw/2012/10/new-universe-theory.html

INNER SPACE
Era of Inner Space

Inner Space Program
Machining
Objects Inside the Chip
ERA


MESOSCOPIC SPACE
There is no rigid definition for mesoscopic physics, but the systems studied are normally in the range of 100 nm (the size of a typical virus) to 1 000 nm (the size of a typical bacterium). 100 nanometers is the approximate upper limit for a nanoparticle. (Mesoscopic Space does not yet appear on the Big Brain Space Exploration Chart, although space exploration overlaps this region.)

MICROSCOPIC SPACE
Thus far, the Big Brain projects and programs have studied the microscopic, created a powerful microscope, explored the inside Cog City of a Propeller chip, and viewed things at the molecular level.

Microbots
Molecular Stage Cascader
GMM Genius Molecular Microscope Diagram 
Powerful Microscopes 
Genius Molecular Microscope GMM
Molecular Microscopy Initiative
City in a Propeller Chip

NANOSCOPIC SPACE
The Big Brain created several nanotechnology machines for existence inside a Parallax Propeller chip.

Propeller Nano Pulsar 
Nanoscale & Beyond 
Nano Goop
Propeller Chip Nanotechnology 

QUANTUM SPACE
The Big Brain's Quantum Space Program began with a new theory of the Universe and how the Big Bang's prior states are connected to the quantum world which are related to the doors that exist to the quantum dimensions.

Quadlyzer Quantum Analyzer 
New Universe Theory
Quantum Space 

Monday, October 15, 2012

How to Go Into Space

BIG BRAIN REVEALS
HOW TO GO INTO SPACE

THE BIG BRAIN reveals how to conduct your own space program and safely go into space, on a hobby shoestring budget and within a reasonable amount of time.

Shanghai: Tall skyscraper machines reach Next Space

There are several ways to get into space, either by telepresence or by physical attendance. Machines and equipment can serve as a proxy in space exploration. A telescope acts like a time machine bringing great distances in space and time closer to home. There are numerous techniques for actually going into space. It depends on what type of space we're considering traveling to.

The Big Brain has defined seven main types of space. Some space is explored by observation only, such as microscopic space. Other space can be explored by the injection of nano machines that can report back with their effectual behaviors. Micro Machines are built within the chip, for example, and can send back observations of the MicroCosmos.

Hong Kong: night aerial photo from atop skyscraper in Next Space

Powerful telescopes, like the Paradigmic Genius Telescope can explore Ultra Space, leading to the EOL Edge of the Universe Boundary of Space Time. Even though Exo Space and Quantum Space is unexplored, great opportunity exists to explore nano space and microscopic inner space, micro space, next space, near space, orbital and solar system space, and ultra space. The Big Brain has found fast, inexpensive, and somewhat ingenious ways to penetrate the mysteries of these cosmic domains.
Taiwan: Jet turbine engine for reaching Near Space
Special techniques, tools and crafts are required to penetrate into the depths of each space domain. Starting with the smallest, nano space is explored by the creation of nanoscopic sized nano machines that exist inside a Propeller chip. The tools to create these nano machines are made of software. Next, microscopic space is explored with the creation of the PMM or Paradigmic Molecular Microscope, built to function with cascading data that penetrate down to the size of molecular structures. Now enter micro space. This great educational domain of space is explored with rockets, helicopters, flying aircraft, gliders, tethers, balloons, kites, parachutes, propelled capsules, instruments and sensors, special forms of propulsion using pressure and forms of potential and kinetic energy. Don't forget, grand exploration can take place in Micro Space with the use of elevator machines, escalators, and mag lift transports that accelerate horizontally off the ground.
Taiwan: Futuristic machine travels through Micro Space
The realm of micro space is vast and can be explored in numerous ways, safely by exercising caution and common sense. Insects, or insectronauts can be launched and returned to the earth. G-forces are measured and 0-G is studied. Next up is next space. A human journey into next space can involve a very tall skyscraper. It's possible to go up 1,555-feet or 1/3rd mile, again, in a relatively safe manner. Many of the machines of micro space can penetrate into next space. While human flight is more defined in next space, it can also happen in micro space. Now enter the vast domain of near space, otherwise known as hobby space. Humans can get into near space most reliably and relatively safe by air travel with passenger jets. One popular method of exploring near space is with balloons that loft robots. All these space programs use methods of aerial imaging to collect data. Some spectacular aerial imaging results from using skyscraper "machines" to gain access to Next Space. Either a top floor accessed by elevator or direct observation points on top of the skyscraper by supervised permission is possible with all safety measures being implemented.

Taiwan: Mall escalators are instrumental in exploring Micro Space
Warning & Disclaimer: On top of skyscrapers, a brisk wind can treat a human like a light-weight sheet of paper and loft the person overboard! So do careful planning as the Big Brain recommends all exploration by window indoors.

Hong Kong: Modern magnetic levitation transports accelerate through Micro Space
Next up is solar system space, going up from orbital space. Orbital space has satellites which can be accessed and utilized. Telescopes become important to explore solar system space. One favorite method utilized by Big Brain is to link satellites together to form powerful machines in space for a new look at space and to create new methods for space exploration. For more information about this approach, see ULT, NULT and PGT.

NASA satellites located in Earth Orbit, Solar System Space, on moons and planets, and in Ultra Space, are paid for by American taxpayers who have free use
Finally, ultra space takes us to the edge of the universe with powerful telescopes like the ULT Ultra Large Telescope, the NULT New Ultra Large Telescope, and the PGT Paradigmic Genius Telescope. These telescopes can create imagery showing great discoveries in space and time. All photos (c) copyright humanoido unless otherwise noted.

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