Sunday, March 17, 2013

Q Machine Q&A

Q MACHINE Q & A 
I’ve put together a Q Machine Q&A to help answer questions and provide more information. References are made to the links below. Some links may need to be updated for the Forum migration. Have fun!
 
Where is the code on ALL Humanoido projects?
That’s a really big question. The full index on that would be crazy big and does not yet exist. There’s 2,000 programs written just for the Penguin robot alone (many of these are linked in the Penguin Sticky and Signature link), not to mention other projects.

Where are the Q programs?
For the Q, about fifty programs are available. Twenty five sample programs are at the first link. Twenty three programs are at the BSS link.


Is there an index to hardware machines?
Yes, it covers the past decade and includes over 1,280 machines out of at least 2,000. Many of the links on the list can offer information for the construction of projects such as this one.


Is this is a completed project?
Yes, it follows Guidelines for Completed Projects, with posts and references and it includes a complete schematic, starter & communications code, and explanations to construct a working unit.


Does the Q project have schematics?
Yes, the first post contains a complete schematic and to optionally expand the Q with pushbuttons, LEDs, more interfacing, etc., there are four additional schematics for this purpose.


What are the extra schematics about?
1) Additional schematic for LED and switch wiring
2) Schematic diagrams for RC circuits on four boards
3) Parallax BS2 Push Button wiring
4) 4-Bit Micro Bus Detail

 
What is included on the main schematic?
The schematics show standard connections for Q construction details including a parts list, a list of pinouts for each board, Micro-Bus and truth table, Parallel Bus, Enumerator, and details on how the LCD is handled. Note, x4 indicates a quantity of four Basic Stamps where each is is connected onto the common parallel line P0. The choice of Bus is externally configured.. More theory is found in the handbook (links below).


Does Q have additional connection information?
Yes. Please refer to the text for additional connection information.


Are there additional schematics for Q reference?
Yes. Follow the links for the BSS, SEED, TriCore, Tiny Bus, 3DSC.


Is there a book for learning more about Parallel Clustered Stamps like the Q?
Yes. Download the BASIC Stamp Handbook of Supercomputing. It has many good ideas for multiple stamp configurations and projects. It includes hardware, software, apps and is applicable to the Q Machine project.


Does the Q have Starter Software?
Yes. To keep the project posting “length and time” investment reasonable, user application starter software is provided at the links. There are 25 programs that run on the Q machine at the first link.


Does the Q have communications code?
Yes. An additional 23 communications programs are linked below.


Where can I get help with enumeration?
Refer to the handbooks. The SEED link will provide more information about the workings of enumeration. Enumeration from random numbers generates errors. Therefore we do not generate random numbers for the enumeration and there is no error. Consult the TriCore for more information regarding a similar enumeration and connection schematic.


How can I implement a Tiny Bus?
Refer to the Minuscule BASIC Stamp One Parallel Computing Machine at post 20.


Are there more connection examples?
Yes. Another schematic example for connecting multiple Stamp cores is found with the 3D Stamp Computer 3DSC. Post 6. This also shows connections to a 9-volt DC power supply. But don’t use all the code here on the Q as it runs on a BS1 platform and not the BS2, unless it’s converted.


Do you have Q tips to help get started?
Yes.
* A quick way to add P0 communications - refer to the BSS’ 22 programs
* Remember the prefix for BS2 and match baud rates
* Refer to the BASIC Stamp Handbook for technical information
* The BASIC Stamp Handbook of Supercomputing is a good reference about multiple Stamp designs, software, apps, ideas
* The Q Machine will need only four sections of the Stamp code to drive four cores
* Use reductive forms of Schrödingers equations with PBASIC's integer format for whole numbers


Is the project open source?
The hardware Q Machine is open source - feel free to build it, improve it, and make mods as you wish, and the software is under the MIT license to use without restriction according to the terms of the agreement.


What is the MIT license?
A copy of the MIT license can be found at the Parallax site (see links below) and is provided here.

Copyright (c) 2013 Humanoido
Permission is hereby granted, free of charge, to any person obtaining a copy of this software and associated documentation files (the "Software"), to deal in the Software without restriction, including without limitation the rights to use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies of the Software, and to permit persons to whom the Software is furnished to do so, subject to the following conditions:
The above copyright notice and this permission notice shall be included in all copies or substantial portions of the Software.
THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.


Q MACHINE LINKS

Index to Hardware Machines
 

http://humanoidolabs.blogspot.tw/p/genealogy.html

Q Machine Software offered at this link
http://humanoidolabs.blogspot.tw/search?q=quadlyzer

These are starter and test programs from Parallax
and at their respective links reproduced with permission. For more information refer to "What's a Microcontroller," Chris Savage' web site for bar graphs and information at the links. For any missing Forum links, please inform us and we'll add.


Stamp Test
Debug Test
Power Consumption Code
Power Saver Code
Flash the LED Method 1
LED Flash Method 2
LED Flash Method 3
Two LED Test
Read Pushbutton State
Pushbutton Check
Servo Code Example
RC Time Code
Sound
Sound Effects
Hyperspace
Mixed Tones
More Linked Software
Bar Graph [Simple] (.BS2)
Bar Graph [Random] (.BS2)
Bar Graph [Advanced] (.BS2)
Bar Graph [Advanced Random] (.BS2)

Going High-Resolution
Bar Graph [Hi-Res Simple] (.BS2)
Bar Graph [Hi-Res Random] (.BS2)
Bar Graph [Hi-Res Advanced] (.BS2)
Bar Graph [Hi-Res Random Advanced] (.BS2)


Chris Savage Web Site (8 bar graph programs for LCD)

http://www.savagecircuits.com/forums/content.php
Q Machine Runs BSS Code (with Minor Changes)
Communications Code & Schematic
Download software (22 programs)
 

http://forums.parallax.com/attachmen...1&d=1290405748
Self Adjusting Master Code (New!) 

http://forums.parallax.com/attachmen...1&d=1230206403
Read the article in Penguin Tech 4 

http://forums.parallax.com/showthread.php?t=108721
View the Schematic (page 6) 

http://forums.parallax.com/attachmen...chmentid=57520 http://forums.parallax.com/showthrea...140#post765140
BASIC Stamp Handbook of Supercomputing 

www.p-robot.com/index.php/handbook-of-basic-stamp-supercomputing.html
Links for Stamp documentation
Downloads & Resources
BASIC Stamp 2 Schematic - Rev.J (.pdf)
 

http://www.parallax.com/Portals/0/Do...atic-Rev-J.pdf
BASIC Stamp Documentation 

http://www.parallax.com/tabid/440/Default.aspx
BASIC Stamp Software 

http://www.parallax.com/tabid/441/Default.aspx
BASIC Stamp Module Comparison (.pdf) 

http://www.parallax.com/Portals/0/Do...comparison.pdf
BASIC Stamp FAQ (.pdf) 

http://www.parallax.com/Portals/0/Do...icstampfaq.pdf
SEED Eumeration 

http://forums.parallax.com/showthread.php?p=817126
TriCore Enumeration & Connection Schematic

http://forums.parallax.com/showthread.php?p=822511
Implementing a Tiny Bus
Minuscule BASIC Stamp One Parallel Computing Machine
Post 20: schematic information for implementing a Tiny Bus http://forums.parallax.com/showthrea...451#post821451

 
3D Stamp Computer 3DSC
Connecting Multiple Stamp Cores
Power Connections
 

http://forums.parallax.com/showthread.php/114239-MINUSCULE-Stamp-Supercomputer-UPGRADED-to-Parallel-Computing-Machine?p=821451#post821451

MORE Q SCHEMATICS FOR REFERENCE
1) Additional schematic for LED and switch wiring
2) Schematic diagrams for RC circuits on four boards
3) Parallax BS2 Push Button wiring
4) 4-Bit Micro Bus Detail
 

http://humanoidolabs.blogspot.com/20...-analyzer.html

Great Source of BS2 Code (PX Version)
 

http://www.p-robot.com/
Seed Project Part 1 & 2 

http://humanoidolabs.blogspot.tw/2012/07/seed-supercomputer.html http://humanoidolabs.blogspot.tw/2012/07/seed-supercomputer-part-2.html
AM Algorithm Machine 

http://humanoidolabs.blogspot.tw/201...achine_24.html
Tri-Core 

http://forums.parallax.com/showthrea...511#post822511
The Two-Stamp BSS (BS2sx + BS2px) 

http://forums.parallax.com/showthrea...l=1#post772979
Tiny AI Artificial Intelligence Software for the Seed http://humanoidolabs.blogspot.tw/201...elligence.html
Tiny AI Artificial Intelligence Software for the Tri-Core http://forums.parallax.com/showthread.php?114352-TriCore-Stamp-Supercomputer&p=825238&viewfull=1#post825238
Preparing Enumeration Pins 

http://forums.parallax.com/showthread.php?114352-TriCore-Stamp-Supercomputer&p=825238&viewfull
QuadLyzer Quantum Analyzer at Big Brain Blog http://humanoidolabs.blogspot.tw/201...-analyzer.html
Parallax 4x20 Serial LCD 

http://www.parallax.com/Store/Accessories/Displays/tabid/159/CategoryID/34/List/0/SortField/0/Level/a/ProductID/51/Default.aspx
Parallax Piezo Speaker 

http://www.parallax.com/Store/Accessories/Sound/tabid/164/CategoryID/38/List/0/SortField/0/Level/a/ProductID/106/Default.aspx
Parallax Basic Stamp Homework Board 

http://www.parallax.com/Store/Microc...3/Default.aspx
"What's a Microcontroller?" (v3.0) (354pp.) Download text (4.97 MB) 

http://www.parallax.com/Portals/0/Do...3-WAM-v3.0.pdf http://www.parallax.com/Portals/0/Downloads/docs/prod/edu/WAMv3.0-Errata-v1.0.pdf
Parallax Downloads Page 

http://www.parallax.com/tabid/440/Default.aspx
April 2009 Parallax CD ISO image 

ftp://ftp.parallax.com/cd/iso/2009-0...42009-MOSS.iso
BASIC Stamp (2e, 2sx, 2p, 2pe) Firmware Revision http://www.parallax.com/Portals/0/Do...-Revisions.zip
PBASIC 2.5 Syntax Enhancement Notes Provides overview of what's new with the PBASIC language in the BASIC Stamp Windows Editor v2.0 and higher

 http://www.parallax.com/Portals/0/Do...er2_0Beta2.pdf
BS1 and BS2 Conversion Tips (159 KB) 

http://www.parallax.com/Portals/0/Do...S2ConvTips.pdf
BASIC Stamp Syntax and Reference Manual 2.2 (5.3 MB) http://www.parallax.com/tabid/181/Li...3/Default.aspx http://www.parallax.com/Portals/0/Do...b-BSM-v2.2.pdf
BASIC Stamp Technical Comparison 

http://www.parallax.com/LinkClick.aspx?link=436 http://www.parallax.com/Portals/0/Do...comparison.pdf
BASIC Stamp Frequently Asked Questions (108 KB) http://www.parallax.com/Portals/0/Do...icStampFAQ.pdf
StampWorks Manual v2.1 (2 MB) 

http://www.parallax.com/tabid/181/Li...4/Default.aspx http://www.parallax.com/Portals/0/Do...eb-SW-v2.1.pdf
BASIC Stamp 1 Application Notes (516 KB) http://www.parallax.com/Portals/0/Do...s1Appnotes.pdf
BASIC Stamp 2 Application Notes (86 KB) http://www.parallax.com/Portals/0/Do...pnotesv1_9.pdf
How to program BASIC Stamps on a MAC (2.4 MB) http://www.muratnkonar.com/otherstuff/macbs2/ http://www.muratnkonar.com/otherstuff/macbs2/downloads.shtml
The Elements of PBASIC Style (210 KB) 

http://www.parallax.com/Portals/0/Do...basicstyle.pdf
Microcontroller Projects with the BASIC Stamp 2nd Ed (583 KB) http://www.parallax.com/Portals/0/Do...ctsExcerpt.pdf
Check Parallax for updates 

http://www.parallax.com/
Check Blog for updates 

http://humanoidolabs.blogspot.com/
MIT License at the Parallax site 

http://obex.parallax.com/license/

Quantum Effect Study with the Q Machine

Quantum Effects
for Study with the BASIC Stamp Q Machine
and the Future Super Q


The study of new Quantum Reality worlds is not for the faint hearted. It has even cause some people's minds to become entangled and give up. Thinking like Einstein or Hawking and coming to grips with counter intuitive quantum effects may seem impossible. However, Quantum Mechanics on the Q Machine may change that, making visible simulations that are more easy to comprehend and visualize.

01) Quantum Reflection*
02) Quantum Tunneling*
03) Quantum material
04) Quantum Gravity
05) Quantum Chaos

06) Spooky influence of quantum physics on visible objects
07) Freeze the evolution of the system
08) Disappearing in one place and reappearing in another
09) Being in two places at once
10) Cold chemistry quantum effects
11) Communicating information seemingly faster than the speed of light
12) Oscillate and not oscillate at the same time in a quantum superposition
13) Quantum Electrodynamics
14) Quantum Field Theory

* Soon to be released as a new simulation program (see below)

Note: Calculating solutions for the Schrodinger Equation for quantum analysis and real time simulations by using integer PBASIC is not for the faint of heart and has remained a challenge in the early programs affecting the accuracy of quantum reflections and quantum sumps. A new approach is now being taken for an updated program that will bring up accuracy using simplified reductive equations that can fully integrate with integer language. The following details some of the preliminary features.

Q Machine Quantum Code Features (Preliminary)
* Using integer PBASIC with Schrodinger Equation plot
* Creating quantum wells and quantum barriers
* Positive whole values with incident wave packet energy
* Running four simultaneous quantum electrons QEs in four dimensions d1, d2, d3, d4
* Exhuming quantum wave packet energy relative well depths 1&2 quantum tunnel analysis
* Wave packet energy reflective barriers solutions of heights 1&2 quantum reflection analysis
* Establishing a quantum potential field baseline vs |ψ|^2
* Establishing a differential time calculus f(qx) =∫d(qx) dt : 0 to limit
* Multiple quantum key fields
* Debug out Mac Hosting OS X 10.6.8

Preliminary Reductive Equations
It may also be added that preliminary reductive equations are complete for quantum sumps and barriers with a minimum and a maximum dimension and will be integrated into the PBASIC program. This will fill all four deterministic cores as dimensions d1, d2, d3, and d4. This necessitates loading each individual core. Simultaneous run is achieved by pressing reset on each board. In future machines, the resets may be linked together.


Reductive Guidelines for Schrödinger Equations

' Preliminary Reductive Equations 
' for Integer PBASIC on the Q Machine 
' with the range of n set incrementally 
' Preliminary sampling for demonstration purposes only
' A Quantitative Analysis for Simultaneous Solution of Time Dependent 
' Schrodinger Equation with Field Potential Quantum Electron Reflection 
' and QE Tunneling 
' Sump @ 1x depth |ψ|^2(x, n = n1-n170...) → { d1 } 
' Sump @ 2x depth |ψ|^2(x, n = n1-n170...) → { d2 } 
' Barrier @ 1x height |ψ|^2(x, n = n1-n170...) → { d3 } 
' Barrier @ 2x height |ψ|^2(x, n = n1-n170...) → { d4 }

Code for Dimension
The following prelims detail code for dimension. Specific code loads into specific Stamp core dimensions as indicated. Code for the first dimension loads up barrier one at a height of 1X for quantum reflection. Code for the second dimension loads up barrier one at a height of 2X for quantum reflection. Code for the third dimension loads up well one at a sump of 1X for quantum well sumption. Code for the fourth dimension loads up well one at a sump of 2X for quantum well sumption.

Know Your Dimension
There are three types of dimension. 1) the physical size of an object, 2) a reference to which deterministic Q core is in use, 3) a quantum portal opened up to reveal new quantum space or a quantum world

2Q Machine Spin

2Q MACHINE SPINNING
The Two Q Machine is a spin off of the Q Machine (which is a quad) and will use eight Parallax boards. It's considered here because enough parts exist to create one and it can serve to recreate far more quantum effects.
To construct a 2Q, first build two Q machines. Connect one to the other using the parallel P0 line, the common ground, and the additional interfaces, and write new software to enable the additional four processors. This would include a prefix to the indexing motif. Note, the 2Q will not require a display as it can send data to the existing Q LCD across the parallel interface line.

What does a 2Q Machine hold for processing? The machine is a doubler. It doubles the number of processors from four to eight. Raw Reflection increases from 16,000 to 32,000 and Inversions go from 8,000 t0 16,000. The same QOS would apply and potential features are listed below.

2Q Specifications
Name - 2Q
Purpose - Explore & Simulate Quantum States
Number of Processors - Eight BS2 Networked Processors
Connection - Networked Parallel Cluster
LEDs - 16 (8 Board Activity LEDs + 4 I/O LEDs)
Piezo Speakers - 8
Boards - 8
SW Loading - x8 USB Hub Loading
Type of Boards - BASIC Stamp Homework Board
Total I/O Pins - 144 (4 x 16 + 2 Dedicated Serial x 2 = 128 + 16 Dedicated Serial)
Enumeration - 8 RC Indices
Deterministic Cores - 8
Communications Interface - 1 Wire serial (Party Line)
CPU Operations - Full Deterministic Parallel
Parallel Bus Upgrade - 8-bit and 3-bit (4-Bit in newer versions)
Processing Speed - 160 MHz (4 x 20 MHz x 2)
Program Execution Speed - 32,000 IPS (4 x 4,000 x2)
RAM Size - (8 x 32 Bytes = 256 Bytes)
EEPROM - (8 x 2K = 16K)
Programming Languages - PBASIC
PBASIC Instructions - (8 x ~500 = ~ 40,000 instructions)
PBASIC Commands - 42
Communications - up to 76,800 baud with 8 lines (9,600 BAUD x 8)
Output Devices - LEDs, Speakers, Pins, Computer Terminal Debugger
Source/Sink Current per each I/O - 20 to 25 ma
Source/Sink Current per each Stamp - 40 to 50 ma per 8 pins
Power - Eight 9-volt batteries or a bench power supply
Programming - USB Mini-B connector, built-in RS-232 serial converter (each board)
Reset - Eight individual resets
SW Type - Evolving Core AI
Operating System - QOS
Portability - Yes
Examples of Base Cost - boards, 8 x $39.99 = $319.92 or OEM kits, 8 x $29.99 = $239.92 or BS2 SSOP 8 x 10.99 = $87.92

Quantum Mechanics Effects http://en.wikipedia.org/wiki/Quantum_mechanics
Quantum Zeno Effect http://en.wikipedia.org/wiki/Quantum_Zeno_effect
The quantum Zeno effect is a name coined by George Sudarshan and Baidyanath Misra of the University of Texas in 1977 in their analysis of the situation in which an unstable particle, if observed continuously, will never decay. One can "freeze" the evolution of the system by measuring it frequently enough in its (known) initial state.

Quantum Biology http://www.bbc.co.uk/news/science-environment-21150047
Disappearing in one place and reappearing in another. Being in two places at once. Communicating information seemingly faster than the speed of light.

Expanding Q Cores

EXPANDING Q CORES
Expanding Cores There’s an idea in progress for a future machine to use Stamp Expanded Core Threading. This could reduce coring costs when using multiple Stamps and parallel architecture, and increase the number of simulated quantum mechanical effects

The parallel interface of one Q may connect to others with full hardware compatibility. Software will need to recognize additional enumeration or Q addressing. It's easier just to expand the Q addressing by keeping the enumeration intact and adding a prefix that represents which "Q cube" is accessed.

A straight two Qs will equal 8 cores while 10 Qs drive up to 40 cores. Ten straight Qs are less practical in terms of cost. However, there is another approach to core expansion which is free. Refer to Specifications for reducing the cost for each straight Q Machine.

With more economical four core SW threading, each Q could represent 16 cores and a two Q machine could run up to 32 cores. Raw Reflections would take a hit with x4 core threading, peaking at 4,000 instead of 16,000 per second while Inversions would clock in at 2,000 instead of 8,000 per second.

Multiple Cores Project List
http://humanoidolabs.blogspot.inc/2010/07/multiple-props-projects-list.html

Q Machine

Q MACHINE
A fantastic new Q Machine is now completed. It's based on the former project known as the QuadLyzer which is use to study quantum mechanics. Don't be confused; while the assembly of the Q could not be more simple, the theory behind the machine and the software is advanced, and thus we're offering a rating for this project which determines the level at a glance.

The Q is the expanded version with new software apps and more simulations. New information will appear here in this post. These programs include quantum reflection and quantum sump and can be run within four dimensions of the Q. This site can publish photos unfortunately not the code. So it's likely we will paste text, either the complete program, or key parts of the program. The previous app is being updated before publication. Additional information will be included below. We've also introduced the machine project level classification. Posting of new information and new software will be discontinued in other Forums.

Project Level
Go ahead and review the 031713 Project Level and disclaimer to determine if you are interested in this project.

031713 Project Level (bold indicates selection)
14) Project Focus (Quantum Mechanics)
02) Machine Type (Deterministic Multi Dimension Multi Processor)
13) Processor (Stamp, Propeller, Hybrid)
04) Status (Complete, In Progress)
12) Ideas (Beginner, Intermediate, Advanced)
00) Level of Understanding (Beginner, Intermediate, Advanced)
06) Theory (Grade, Jr. High, High, Undergrad, Masters, PhD)
07) Operation (Easy, Average, Above Average, Complex)
01) Hardware Assembly (Beginner, Intermediate, Advanced)
03) Schematic (Yes, No)
05) Electronic Parts (All Parallax, Part Parallax)
17) HW Interface (Serial, Parallel, Hybrid)
08) Expansion Info (Yes, No)
02) Software (Full App*, Starter Samples, None)
04) Photos (Yes, No)  Video (Yes, Not Yet)
09) Links for Further Reading (Yes, No)
11) Blogger (Yes, No)
10) Plan to add more info (Yes, No, Maybe)
18) Addtl. Comments (Full app being reworked for release)*


Introduction
This is a BASIC Stamp Cluster Reflective Quantum Analyzer, simply known as a Q machine. I built this project due to my increasing interest in Quantum Mechanics. Although it’s for my own personal use, education, and experimenting, I decided to share the idea for others who may have similar interests.


About Q
The Q is a machine that can reflect representative states of the Quantum World. It accomplishes this inside four processors representing at least four space dimensions. These are held as algorithmic states and parameters, located inside multiple networked clustered parallel processors.


Background
Although I wanted to open an actual door to a quantum dimension like some recent physics experiments, it will have to wait because I realized it’s important to first understand Quantum Mechanics rules, effects and behaviors. This machine was built to simulate and study various parts of the quantum world, in particular, quantum reflections.

Construction
The Q machine has four deterministic parallel clustered cores to perform the reflections and is built from Parallax parts. It includes a four line x 20 character serial LCD display to set inputs and display results, enumerators for core and reflective tracking, speakers and LEDs to supplement code states and particulate announcements, and 8-Bit Parallel and 4-Bit Micro I/O Interfaces for various communications and effects. Stamps were used over Propellers because they’re easy to program for this application and I wanted to keep Propeller chips doing other things.


Quantum Mirroring
Like the example of two real world mirrors of reflective dimension facing each other which represent infinity reflections, the Q too can reflect more dimensions from baseline to infinity and states in between.

No Offset Limit
Yet these mirrors inside the machine have no real world offset so the infinity of the reflective state is “figuratively unlimited,” i.e. only bound by the machine’s clock and number of statements executed per unit time. For experiments, the limit of Raw Reflections peaks at 16,000 per second for the 4X BS2 while Inversions are clocked at 8,000 per second. For calibrations, the processor(s) speed and time, along with the changing angle of space determines the calculus rate at which the number of reflections approach infinity.

Mirror Convexure Infinity
http://humanoidolabs.blogspot.com/20...convexure.html


LED Mirror
http://humanoidolabs.blogspot.com/20...ed-mirror.html


Q Tips
More information, sample code and tips for developing and using the Q machine are available at the Blogger site.
http://humanoidolabs.blogspot.com/20...-analyzer.html

The Counter Intuitive Phenomenon
A brief intro to the counter intuitive phenomenon of quantum reflection is found at this blog.
http://humanoidolabs.blogspot.com/20...tum-space.html

PBASIC
Q’s PBASIC and QOS versions are designed to be a continual work in progress since the project went public on October 23, 2012. Starter PBASIC code examples are found here.
http://humanoidolabs.blogspot.com/20...-analyzer.html 


Links
Quadlyzer Quantum Analyzer
http://humanoidolabs.blogspot.com/20...-analyzer.html
Quantum Space
http://humanoidolabs.blogspot.com/20...tum-space.html
New Universe Theory
http://humanoidolabs.blogspot.com/20...se-theory.html
Inner Space Era Expanded
http://humanoidolabs.blogspot.com/20...-expanded.html

Living in a Quantum World
According to standard physics textbooks, quantum mechanics is the theory of the microscopic world. It describes particles, atoms and molecules but gives way to ordinary classical physics on the macroscopic scales of pears, people and planets. Somewhere between molecules and pears lies a boundary where the strangeness of quantum behavior ends and the familiarity of classical physics begins. Scientific American, May 18, 2011


Quantum Mechanics QM
Quantum mechanics (QM – also known as quantum physics, or quantum theory) is a branch of physics dealing with physical phenomena at microscopic scales, where the action is on the order of the Planck constant. Quantum mechanics departs from classical mechanics primarily at the quantum realm of atomic and subatomic length scales. Wikipedia


Quantum Reflection
Quantum reflection is a classically counter intuitive phenomenon whereby the motion of particles is reverted "against the force" acting on them. This effect manifests the wave nature of particles and influences collisions of ultra-cold atoms and interaction of atoms with solid surfaces.

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...

Unknown Super Intelligence

ESA deep-space ground station in Australia
FIND UNKNOWN SUPER
INTELLIGENCE
 
Looking for machine intelligence, including biological and humanoid super intelligent beings in the Universe, is perhaps one task undertaken by project SETI - the Search for Extraterrestrial Intelligence. Indeed, SETI program managers might be surprised to discover intelligent machines and robot humanoids or life forms of pure energy.

However, should this job cover the more vast cosmic sections of the Universe? Currently, the Earth is searching only tiny small areas for life in the overall vastness of the cosmic universe. There are trillions and trillions of stars and planetary systems that go unsearched.

What more can we do to increase our potential rates for discovery and success? How do we know the method in which we use for searching is valid to other find civilizations that are more advanced? Let's examine the potential of new points that may change the world as we know it.

POINT 1 - OUR KNOWLEDGE STATE OF THE UNIVERSE
There are more than two ways to search the Universe. In fact, the Universe as we currently know it is far more vast than we know. Take for example, the history of the Universe over the past couple decades and one will see a constant evolution and reshaping of our thinking and fundamental knowledge of its workings. So in point number one, we know that the forward progression of time should expand our knowledge of the Universe.

POINT 2 - WHERE WE LOOK
In point number two, it's customary for the bigger and more powerful telescopes to look back in time towards the edge of the Universe or the primordial time of birth. This is the youngest matter in the Universe. To find older civilizations, one must turn the telescope around to look in the opposite direction, towards the older galaxies and galactic matter that will have longer aged civilizations with greater opportunities to become laden with super intelligence.

POINT 3 - COMMUNICATION COMPATIBILITY
In point number three, the method in which we are looking is archaic and not the method that super civilizations would use to make contact with other civilizations across the vast entity of space time. What makes anyone think that slow microwaves are the choice medium? These microwaves are not even two way communication. Even communicating with the close Andromeda Galaxy would take millions of years for a simple conversation using radio waves. The outdated communications method of using radio waves that travel at the speed of light, and cannot that travel faster than the speed of light would not be the choice method of a communicating super civilization.

POINT 4 - COMMUNICATION METHODOLOGY
What are the possible methods of communication? Obviously a super civilization would use particles or a method faster than the speed of light, or advanced space tunneling methods and techniques employing the nature of space time. Take for example, quantum entanglement. It's now possible to build a universal transporter across vast distances of space and time. Even now as you read, scientists are building transporters that can send out particles instantly to far away places in space time.

POINT 5 - THE TYPE OF INTELLIGENCE
Will we find the techniques and language of communication different from one intelligence specie medium to another? The answer is likely yes. Take for example the rise of the intelligent machines. Machines are now programmed by man, in terms of local languages that we expect. Even with a thousand programming languages, it's all nothing new under the sun. However consider evolution, even man is approaching a singularity with the machine and changing. With time and evolution, change invokes the qualities of a super civilization. When machines can program machines and think in terms of their own non biological entities, their methods and languages will likely differ from human kind, especially as they continue to branch and propagate within and beyond the Universe.

POINT 6 - LOOKING INTO THE UNKNOWN
There is great potential in looking into unknown places with new technology.  An example is looking into holes, such as black holes and worm holes. Another potential is looking at the results from gravitational lenses that show matter in another place in space and time. One great frontier to search is through the door of the quantum dimension. Another realm for potential discovery involves the unknown corridors of Dark Matter in the Universe. A flotilla of particle dynamics may also change our views of dimensions and alternate parallel worlds. What great adventures we discover inside and who we meet remains to be seen.

POINT 7 - LOOKING IN THE RIGHT PLACE AT THE RIGHT TIME
Our search must be in the right place where super beings are currently living and the search must take place in the right time, a time when super beings are flourishing and searching the skies. Every civilization may have its period of evolution from developing biological cell structures rising up from primoridal soup of early planetary formation to the nuclear age and on to new pardigms reaching singularity with the machine, and beyond to states of pure energy. Where this super intelligence resides on the time scale is important in a relative manner. Life in the stone age, or life as pure energy are both beyond the methods of communication as we know it. So it becomes important to focus our lens to that which is in between. What we find will outstrip our greatest expectations!

Friday, March 8, 2013

Earthquake

BIG BRAIN EARTHQUAKE SURVIVAL

Thurs. Mar. 7, 2013, Noon
TAIPEI, Taiwan (AP) — A strong earthquake has been felt throughout Taiwan. The Central Weather Bureau says the quake Thursday registered at magnitude 5.6. The tremor struck about 23 miles north of Hualien city and it shook buildings in the capital city of Taipei. Hualien is located 110 miles southeast of Taipei.

The Big Brain Lab in Taiwan has survived increasingly larger and larger earthquakes. Moving from a 3 and a 3.5 previously, the current 5.6 was considerably larger, violently shaking the building for a full minute, with numerous aftershocks. As the position increases in altitude, i.e. a higher skyscraper floor, so do the effects and intensity of quake appear to increase proportionally. The Big Brain was only one step away from the roof, creating the greatest oscillatory effects. The anchoring of the Big Brain to solid wood fixtures help save the brain from disaster. Paint was removed from the ceilings by the quake vibrations and fell to the floor. However, all parts of the Big Brain Supercomputer survived. A full day of testing was completed following the quake to confirm full functioning of all Big Brain and Lab aspects. Running Big Brain experiments are currently being checked.

Thursday, March 7, 2013

Make Big Fish Brains

Fricken Lamprey brain found in the sea
HOW TO MAKE BIG FISH BRAINS
ICHTHYOLOGY EPISTOMOLOGY
the study of fish with big brains and their knowledge

This blog is not only about creating larger fish brains, but also cultivating fish with increasing larger brains and brain power and then harvesting their brain power and abilities. Don't worry, no fish were sacrificed in these collective braining experiments.

You will be surprise at what big brain fish are doing!

Big brain fish is the master of its fishy universe
DO NOT HARM YOUR FISH
There is no fish dissection and no lobotomy in these procedures. No fish are harmed in any experiments. No brains are externally removed. All tests and procedures are non-invasive and many techniques used were previous developed by the Big Brain Initiative for machines and humans and are safe with external probes and sensors.

PROCEDURES
First you get a big aquarium and populated with a variety of "smart fish" that have ultimate natural massive brains with swollen heads, possibly with some brains protruding out of their bodies. The goal is to take schools of these fish as protos and cultivate numerous generations to develop a super brain fish. Generations of some fish are quite short and much can be accomplished in relatively short time.


Small Molly derivative breed big brain smart fish
GOALS
The intended goal of the big brain fish is to collectively join their brains via brain machine technology, which is non invasive, and to harvest their more valued parallel offerings. One goal is to improve the intellectual capacity of the fish and another is to increase the size of the fish brain, yielding more mass to the cranium.


Goldfish derivative smart fish
OVERVIEW
Smart brains are not the same as a general fish brain. The larger more intelligent fish brain is focused less on sex and food, and thus will have offspring in less numbers. It comes from having smaller stomachs and internal organs which is an elemental evolutionary point requirement in the support of a larger brain which captures more resources.(1)

SMART FOOD
Remember to use smart food when raising smart fish. This topic is comprehensive and could span several books.

GENETICS
Guppies are are hardy fish with rapid generation turn around time, whose genes may be ideal for these braining experiments.

BRAIN WAVE MONITOR MACHINE
Modifications are required to the Big Brain Wave Monitor machine sensor bundle to work underwater. Each fish will have a neural sensor or depending on the experiment, a collective harvester. The lead is placed as near the Cer. as possible (see diagram) while the neutral is moved to provide the best signal on the external monitor (see links).

CULLING SMART FISH
Culling smart fish is both an art and a biological science. The objective is to find fish within one generation of breed that are most conducive to the genes of larger brains, remove, and utilize to carry on the next generation.

CONNECTING MULTIPLE FISH BRAINS
When connecting two or more fish brains, do not connect from one brain to the next. Connect all brains in parallel by running the wires from each brain to the brain collection machine. This will ensure complete connections which can be tuned at a focal point. Tuning includes various methods of enhancing and conditioning the signal.

BRAIN STALL
To keep fish stable during the collective connection, the use of a brain stall is recommended. This keeps the fish stable and in the proper orientation for brain connection and during the procedure of brain extraction.

BRAIN MEASUREMENT
Brains are measured by photographic means. Each fish has a dimensional brain index. The volume of the fish brain is determined and weighed against various performances.

WHY FISH BRAINS?
Fish come from a totally different universe environment and have reached all their conclusions in a way completely different from humans and any land based animal. For this reason, the unorthodox uniqueness of their environment and thinking is provocative to a new kind of experimental exploration.

EXTRAPOLATING BRAINS
Ponder for a moment, the possibilities of big brain fish. Working fish. Talking fish. Thinking fish. Inventive fish. Creative fish. Intellectual fish. Helpful fish. Sarcastic fish. Multilingual fish. Smart fish. Super smart fish. Genius fish. Performance fish. Singing fish. Expressive fish. Fish solving human problems.

BIG BRAIN TIPS
Create a generation of big fish brains with natural pocket cavities in their brains to offset their added weight and act as floatation devices to balance fish bodies in the water. 

LINKS 
Big Brain Fish 
http://humanoidolabs.blogspot.tw/2013/03/mor-big-brain-fish.html

(1) http://phenomena.nationalgeographic.com/2013/01/03/scientists-breed-smarter-fish-but-reveal-the-costs-of-big-brains/

Lamprey - Wikipedia, the free encyclopedia

Lampreys are an order of jawless fish-like vertebrates, whose adults are characterized by a toothed, funnel-like sucking ...

Wednesday, March 6, 2013

Big Brain Fish

Big brain fish lurking with massive brain at top right
MORE BIG BRAIN BRANIAC FISH DISCOVERED!
While on a deep exploration  excursion into the vast resources of unrevealed semi tropical locations, sporadic fish heads with big brains were unexpectedly discovered. We had the good fortune to capture and study some of these super intelligent and timid fish on camera, whose brains hung out the sides of their heads, or outwardly and oblately stretched their cranial cavities. Time was also directed to study their wielding brash braniac behavior.

IS A BIG BRAIN A HAPPY BRAIN? - IT would appear so. Observed big brain brainiac fish are more content and seemed to be satisfied with their surroundings and in the ways that they are clever enough to use their environment in new ways. If smarter machine brains and smarter human brains have this trait in common, then it pays to have a smart brain, and find ways to make your brain smarter...

SMARTEST FISH IN THE WORLD
These fish are some of the smartest fish in the world. Their brain is so big, it often hangs out to one side or the other of their heads. Their heads, though large, are too small to contain all of the brain, or the brain causes the head to swell up to massive proportions.

BRAIN SIZE
Cranial capacity can indicate increases in neural containment and the number of neurons is indicative of several types of intellectual capacities. However, small brains may have compacted containment as well. But in the case of large brains having compacted containment, the evolutionary path is one of increasing intellectual capacity.

Candid view of actual fish brain species
NEW BRAIN SPECIES
These fish are continuing to grow larger, and thus their brains are continuing to grow as well. The lump of matter could approach the size of a suitcase and there is no telling what could evolve from that. It's potentially possible for this luggage of brain matter to move out of the water onto dry land and form a new species.

FAST BRAIN EVOLUTION
These fish have appeared on the evolutionary time scale within a relatively short period of time, explaining why perhaps the head never had time to evolve space to contain the rapidly growing brain.

UNBOUND BRAINS
If left unbound to its cramped head containment, who knows how large these brains might become. It would be an interesting experiment to transplant a number of these massive brains to larger containment vessels and measure their rates of growth.

SUPER INTELLIGENT FISH BRAINS
The Big Brain Initiative likes to study other big brains, including those in big brained fish. What does this indicate? It means these fish are super intelligent.

FISH BRAIN OBSERVATIONS
Observations show they have a command of language and do specific signing and appear to have low level conversation through the water by compression and decompression of waves. These fish are the most clever, adapting in ways to their environments where other dim witted fish have no clue.

BIG BRAIN ACTION
Big brained fish also show highly intelligent actions over other fish. They get their food first, are the first to go stealth, and they build small homes in the water environment where they raise families.

http://humanoidolabs.blogspot.tw/2012/09/big-brain-fish.html

INTERFACING BRAINS
Is it possible for the Big Machine Brain to interface to the big brain of a fish? This depends on the sensitivity of the brain interface and the amount of power put out by the fish brain.

BIG BRAIN BATTERIES
We were unable to capture a large number of big brain brainiac fish this time, but who knows what will happen next time if their population grows dramatically. Like more and more lemons added together to increase the power of a chemical battery, so too can fish brains add together to increase the brain power of a new kind of collective entity.

MINING BRAIN POWER 
The potential project is looking at capturing fish and using their brains hooked together in parallel by using noninvasive methods to extrapolate and mine their brain power, funneling the results to a common singularity whose sum is far greater than each individual part.

LINKS
These links are found at the old Parallax Big Brain site index.
http://forums.parallax.com/showthrea...l=1#post977025

P59 1165 1st Brain Wave Monitor - Listening to Propeller Chips
P59 1172 Brain Wave Monitor Sees Big Brain Thoughts
P60 1190 Building new Brain Wave Monitor BWM - Work begins next version model
1197 New Brain Wave Monitor
1198 Propeller Brain Spectral Thought Imprint
Using the new Brain Wave Monitor v2.0

1200 Propeller Brain Wave Machine - BWM Setup
P61 1201 BWM Brain Wave Monitor Characteristics
1202 BWM External Sound Pickup
1203 Brain Wave Sound - The sound of a thinking Propeller brain
1204 BWM Band Exploration
1205 BWM Propeller Suspended Animation
Exploring the Machine Brain with EEG BWM Brain Wave Monitor
1206 Harvesting Brain Voltage