Showing posts with label optics. Show all posts
Showing posts with label optics. Show all posts

Thursday, January 30, 2014

SpaceOne Company

A rocket heading to the stratosphere
SPACEONE COMPANY

A spacefaring partnership has inspired SpaceOne Company, to explore the most exciting levels of space as private industry. NASA wants private industry to step up to the plate and offer systems and flights into space. SpaceOne is already stepping up research, design, testing, and construction of aeronautic  systems to uniquely take humans up into the far reaching depths of space.

Humanoido is the Founder/Owner, CEO and Head of Engineering of SpaceOne Company, a new non-government private industry rocket aerospace program designed to give people the experience of going into space.

Our entire concept of space is unique and will enable unusual aspects of humans going up into space, irregardless of their training, background, or critical resources. We expect to find ways to take human experience into space with affordable constructs and with little or no space experience.

This will allow people to focus on enjoying the trip into space and experiencing its effects. Using our techniques, designs call for a fleet of rockets, a flyable space place, and an outpost in space. Space tourism, flights through Micro Space, Next Space, Near Space and beyond are potential reality.

The first flights are suborbital tests with a large size rocket and reentry to reclaim scientific instruments and reusable parts of the craft for multiple flights. Off the shelf refueled engines provide rapid turn around time for the next succession of flights.

The company is located privately in two countries, with a research facility, a laboratory, and a space flight center for departures into space at each country.

The company is split into three determinant and incremental phased goals, each involving a progression of rockets, instrumentation, electronics, engines, robotics, telemetry, optics, and additional craft development.

Monday, October 15, 2012

Molecular Stage Cascader

Build a Molecular Stage Cascader for the PGT Telescope

GMM's MAC
Work has proceeded behind the scenes to remove the GMM (Genius Molecular Microscope) Microscope’s "Microscopy Amplifier Cascader MAC" and rework it to construct and establish a new "MSC Molecular Stage Cascader" with the intention of fitting it onto the massive PGT Telescope to see what gains result.

-- It's like attaching a microscope to a telescope and attaining useful increases of MAG. --

First, the MAC is sectioned off from the GMM and then adapted to pipe fittings of the PGT. Keep in mind, these are data pipes of a different kind involving the handling and dissemination of data though electronics and electro optics. There’s an estimated 14 fields of technology wrapped into the PGT Telescope. Taking the MAC and converting it to the MSC for use with the PGT could result in all new technology and potential discoveries. It’s a chance the Big Brain is willing to take, with the investment of time, energy and thought power to make this new machine happen.

The first test will obtain a baseline data set and create a specific strip FOV and engage the MSC on a selected regio. We will leave the MSC running in the AMP Cascading mode for fourteen cycles and then create a comparison pool noting the gains. The interest is in the number of cascations possible without the result of empty MAG. Some peak number will result from which the machine will tune.

Thursday, March 29, 2012

Before & Beyond the ULT

Propeller Powered Big Brain
GOING BEYOND THE ULT IS NOW REALITY
TELESCOPE REVIEW BEFORE AND DURING BIG BRAIN ERA
Astronomers, both amateurs and professionals call it aperture fever. It takes only one time of looking through a telescope to come down with a fever of wanting larger telescopes to see more and more. AND when you get that larger telescope and view what can be viewed, you'll want a larger sized telescope to view more! It's a never ending story.

With the introduction of new inventions and new thinking with advanced designs, the ULT has the option of numerous upgrades, several of which were tested recently. The next option is to create new telescopes that are a quantum leap larger in diameter by factors such as 100X, 1,000X and 10,000X. Because these will have their own calculations, design and persona, they will also have unique names and science. The following categories are defined:

Historical Telescopes - Used, Designed and Built by Humanoido
Glass Optics Telescopes

1-inch Refractor FT First Telescope
This was the first telescope, a 30mm used to observe the Moon and Saturn, plus solar projections, first study was regarding red and blue fringing of achromatic aberration

2.4-inch Refractor GOTO Telescope
Computer controlled GOTO

3-inch Reflector F11
This reflector provided the first views of M42, M31, Saturn, and Titan

3-inch Reflector F3.95
Experiments in automation, robot control, machine brain interfacing

4.25-inch F11 PT Powerful Telescope
First studies of the Moon, Jupiter and Mars, Lunar Mapping. Imaged detail on Ganymede. Strong Jupiter studies and focus on Jupiter moons. Used for determining the speed of light and various astrophysics studies, film development and hypering

4.25-inch F2.9 Space Telescope
Used as the primary objective in creating an amateur space telescope for launching on the Shuttle's Getaway Special program

8-inch F3 Schmidt Camera
A Schmidt camera, study of spherical mirrors, curving film, wide FOV astrophotography, mounting, techniques

8-inch F6.3
Primary work horse telescope leading to many studies (see the 10X 80-inch MT Massive Telescope), dry ice camera, super cooled imaging, planetary cartography, cometary studies

12.5-inch F6 OT Observatory Telescope
Entered the CCD era with imaging, automation and computer control, discovered a new star, worked with Hubble Space Telescope et. al., accomplished many studies

40-inch Diameter Very Large Telescope VLT
Designed with a COSMAC ELF 1802 Computer, 144 Servo Mechanism, Real Time Figurable, Electric Filters, Vitual Cooling, Mirror Matrix Mounting, Computer Designed, 10 Year Project

Specialty Telescopes by Humanoido's Propeller Powered Big Brain Machine

Water Drop Telescope
The Micron Telescope
The Multiple Lens Telescope
The Camera Telescope
The Cam Telescope 
The Pinhole Telescope 
The Crater Telescope

Historical Telescopes with Resin Optics Designed and Built by Humanoido

52-Inch GT Giant Telescope
Innovative Resin Primary, Remote Ocular, Electric Focus, Auto
Figuring, Styrofoam Mirror Mounting, Ultra Light Telescope, Gravity
Systems

52-Inch GTT Giant Telescope Twin
Explored the Limits of Primary Extreme Mounting, Storage,
Handling, Surfacing Study, Weight Study, Experiments

Synthetic Aperture Telescopes Built by Humanoido

10X 30-inch Synthetic MB Made Big Telescope
Amplified performance 10X

10X 42.5-inch NT New Technique Telescope
Imaged detail on Ganymede, developed first enhancements in film hypering, cooling, sensitizing, flashing, summation

10X 80-inch MT Massive Telescope
A synthetic professionally acclaimed telescope with winning results - Mars Map, Mars Weather, Cometary Calculus, Occultation, Rings of
Saturn, Martian Polar Cap, Mars Dust Storms, Jupiter Storms, Digital
Image Processing, Star of Bethlehem, Venus Conjunctions, Moons of
Jupiter eclipse & Occultation, Determining the Speed of Light

10X 125-inch EOT Enhanced Observatory Telescope
Stellar Mapping, Discovered New Star, CCD, VIP Video Image
Processor, OPTICS Language Written, Thermodynamic Equalizer
Observatory with a Voice, Observatory Droid System

10X 400-inch AET Amplified Electric Telescope
Study in Massive Light Bucketing, Amplification, Enhancement

10X 520-inch MET Monster Eye Telescope
Experimental, Secondary Experiments 

New Hybrid Synthetics - Telescopes with Singular Linear Adjunctive Universe Penetrator Design

10X 945-Inch, 24-Meter, ULT Ultra Large Telescope
Discovered Saturnian Rocks, Discovered Multi Storms inside the
GRS, Ultra Deep Imaging, Penetration to over 13 Billion Light Years
Near the Edge of the Universe Boundary (EOU), Penetrated the
Globular Stellar Abyss, the Farthest Two Galaxies at the Edge of the
Universe, Deepest Galactic Penetration into 2.6 Million LY Zone,
Planet Outside Our Solar System, Pluto Detail Imaging, Multi-Meter
Lunar Res with Lunar Adjunctive, Experimental, Inventive,
Exploratory, Breaking New Technology, Relatively Easy to Use,
Big Brain Enabled

New Hybrid Synthetics - Telescopes with New Multi Selective Dimensional Adjunctive Universe Penetrator Designs Completed

100X 9,450-inch, 240-meter ET Extreme Telescope
This telescope is the first with multiple Adjuncts - a synthetic aperture of Multi Adjunctive design and heralds in a new era of telescopes, size is .15-mile diameter or 787-feet wide. This is equal to about twenty 40-foot wide skyscrapers placed end to end.

1,000X 94,500-inch, 2,400-meter HT Hercules Telescope
This telescope has a synthetic aperture of 1.5 miles

New Hybrid Synthetics - Telescopes with New Multiple Additive Dimensional Adjunctive Universe Penetrator Designs Completed

10,000X 945,000-inch, 24,000-meter ST Super Telescope
This telescope has a synthetic aperture of 15 miles

100,000X 9,450,000-inch 240,000-meter CT Colossus Telescope
This telescope is 150 miles wide

NWT New World Telescope
Estimating an extremely powerful synthetic aperture of 1,500-miles in diameter, linked in space to Earth, this new world telescope will puncture holes through gravity, space, time, and dimension, with phase cutting through nebula and interstellar dust & matter like a hot butter knife, reaching the farthest places throughout the Universe. Along with new technology, this telescope will be the next design building upon the 150-mile synthetic aperture telescope and previous technology.

Going Beyond ET - How It Was Accomplished

The New Multi Selective Adjunctive design was the next step in making massive gains in resolution and increasing the aperture by a quantum leap. The ULT uses a singular Adjunctive and now with use of multiple Adjunctives ushers in the age of the ET Extreme Telescope and beyond. What's beyond ET?

These new large telescope are made possible with the use of the new Accumulator invention. The new Accumulator invention for the ULT Telescope is simply revolutionary because it enables a quantum jump increase in apparent resolution and telescope size. It accomplishes this by combining the data from two or more, or many Adjuncts. The Accumulator can also sum the accumulated data from a single Adjunct, making the entire Telescope perform with significant enhancement. No longer is the Universe Penetrator (UP) the only device that can increase and amplify telescope resolution and apparent size (by 10X). The Accumulator has brought about enhancements of 100X and 1000X on top of the UP's capabilities. Along with the UP, this converts to 1000X and 10,000X. This is not an empty magnification reference at all, but rather references resolutions that determine functional aperture of the Telescope. It puts the telescope aperture into the range (from 24 meters) of 1.5, 15, and 150 miles wide. The accumulator also increase the clarity and field penetration yielding new powerful data about places in space and time.

The GT Genius Telescope
Note: As of July 2012, a new behemoth telescope is complete - the GT Genius Telescope, with three aperture modes (the 1.5-mile, a 15-mile, and the 150-mile)


Telescope Naming Conventions
The choice of telescope names is from the following pool (Bolded names are taken, the remainder are taken for development names) New World, Mammoth, Amplified, Monstrous, Monster, Far Reaching Penetrator, Massive, Far Reaching Arm, Eye, Behemoth, Herculean, Enhanced, Enormous, Extreme, Giant, Gargantuan, Massive, Colossal, Huge, Electric, Humongous, EE Elucidating Eye, Very Large, Ultra Large, Immense, New World, Vast, Twin, Hulk, Super, New Technique, GT Genius Telescope

Thursday, December 29, 2011

Wax Eye

Big Brain Gets a Wax Eye
Now don't say "ewe" too quickly as this simple eye uses technology from optics (a single double convex lens) and a piece of waxed paper from a local grocery store. The wax paper is the image forming element and the lens projects the image onto the paper. A sensor or camera is placed behind the paper and photos the image in real time using macro mode. It works well on brighter objects, terrestrial, the Moon and brighter Planets, depending on the diameter of the lens.