Big Brain’s New Paradigmic Molecular Genius Telescope MGT
The New MGT Molecular Genius Telescope
The union of the MAC Molecular Amp Cascader, borrowed technology from the GMM Genius Molecular Microscope, and now reworked for pipe fitting atop the PGT Telescope, introduces the all new telescope - the MGT Molecular Genius Telescope.
-- the MGT Telescope is the most powerful telescope ever created by the Big Brain Space program ---
You’ve obviously enjoyed seeing the spectacular views taken through the new massive PGT telescope. This telescope has bridged across billions of light light years towards the edge of the Universe. One behind the scenes technique machine used to increase the gains returned from the PGT is the Molecular Stage Cascader MSC. The Molecular Cascader, also referred to as the Microscopy Amplifier Cascader when on the GMM Microscope, is a machine device used on the GMM Microscope to apply cascading stages of amplification (AMP) which results in dramatic and vast increases of power (MAG), (GAIN) and (IM) image scale. THE PGT Telescope is now born, expanded to include the GMM's (Genius Molecular Microscope) Molecular Stage Cascader MSC to (AMP) and zoom in highly detailed portions of a wide FOV Cosmic View. This rides atop the telescopic ocularic section for input amplification and permits highly detailed magnified power enlargement of selected areas much like the results obtained from refinement stages within the GMM.
-- The MGT Telescope is the largest of its type in the world and known space --
For more information about the GMM Microscope, the Microscopy Amplifier Cascader, and the operational diagram details, refer to:
http://humanoidolabs.blogspot.tw/2012/10/gmm-genius-molecular-microscope-diagram.html
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 ocular. Show all posts
Showing posts with label ocular. Show all posts
Wednesday, October 17, 2012
Tuesday, September 18, 2012
iSOBOT Humanoid Telescope Repair
ROBOT BUILDER POWER
ISOBOT HUMANOID REPAIRS TELESCOPE
THE FIRST SPACE-WALKING iSOBOT ASTRONOMER
REPAIRS TELESCOPE
Welcome to the 1ST Isobot Space Telescope Repairing Robot! Robots repairing telescopes in space is now commonplace. In this exampling experiment, a Meade refracting telescope and one iSobot humanoid robot were paired together for a kind of exampling telescope repairing space walk. In the example, the humanoid works with the ocular setting.
The first repair occurred on Tuesday, February 19th, 2008 on the night of the 97% waxing gibbous Moon.. Brave little i-SOBOT robot is seen space-walking along the main tube optics array of the this Micro Space Telescope to make adjustments to the ocular section. A mechanical camera clamp allows i-SOBOT to have foot-holds during work, as he removes the ocular assembly from the eyepiece holder. This is the first humanoid astronomer to space walk along the tube of a space telescope to initiate an autonomous repair. Humanoid robots are very useful in space, generally requiring no oxygen or respiration equipment and they can work in a wider range of temperatures.
Records set during the event
1) First humanoid astronomer
2) Smallest humanoid astronomer
3) First humanoid telescope repair
4) First humanoid space walk along a telescope
5) First humanoid scientist to adjust a telescope ocular
6) First humanoid programs created to accomplish 1 through 5
http://robosavvy.com/forum/viewtopic.php?t=2257&highlight=telescope
ISOBOT HUMANOID REPAIRS TELESCOPE
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| A Humanoid Isobot is the first space walking telescope repairing robot astronomer |
THE FIRST SPACE-WALKING iSOBOT ASTRONOMER
REPAIRS TELESCOPE
Welcome to the 1ST Isobot Space Telescope Repairing Robot! Robots repairing telescopes in space is now commonplace. In this exampling experiment, a Meade refracting telescope and one iSobot humanoid robot were paired together for a kind of exampling telescope repairing space walk. In the example, the humanoid works with the ocular setting.
The first repair occurred on Tuesday, February 19th, 2008 on the night of the 97% waxing gibbous Moon.. Brave little i-SOBOT robot is seen space-walking along the main tube optics array of the this Micro Space Telescope to make adjustments to the ocular section. A mechanical camera clamp allows i-SOBOT to have foot-holds during work, as he removes the ocular assembly from the eyepiece holder. This is the first humanoid astronomer to space walk along the tube of a space telescope to initiate an autonomous repair. Humanoid robots are very useful in space, generally requiring no oxygen or respiration equipment and they can work in a wider range of temperatures.
Records set during the event
1) First humanoid astronomer
2) Smallest humanoid astronomer
3) First humanoid telescope repair
4) First humanoid space walk along a telescope
5) First humanoid scientist to adjust a telescope ocular
6) First humanoid programs created to accomplish 1 through 5
http://robosavvy.com/forum/viewtopic.php?t=2257&highlight=telescope
Monday, February 6, 2012
Nano Telescope
BIG BRAIN INVENTS THE FIRST NANO REFRACTOR TELESCOPE
This telescope is practically invisible!
Water molecules can be subdivided into smaller and smaller quantities until finally they reach nano proportions of infinitesimally small dimensions. The Big Brain has taken two droplets of water separated by a finite calculated distance, and varied their dimensional properties by the size of a controllable aperture for creating a primary lens and a second ocular lens of varied focal length to create the first Nano Refractor Telescope. The water droplets may be replaced with droplets of cured resin which can facilitate positioning in multiple dimensions. A single Nano Telescope is practically invisible and the Big Brain has enough power to simultaneously, in parallel, control over 800.
Experiments
It uses a vertical design, objective lens and ocular with two spaced platforms, with varied size pinholes, and water drops. If the pinhole becomes too small, the lens shape from the water tension is lost. Experimentally, substances, such as oil were introduced to study the effect on the shape of the lens. To negate evaporation, glycerin drops can sub for water. I began experimenting with resin and very small pinhole aperture stops of various materials. Another idea is the stretching and compressing of materials to reshape a molecular lens, thus modifying its focal length and magnification when the lens composition is slow viscous. Clear spherical beads work as tiny lenses and very small spheres are readily made and cured in low micro gravity as shown by NASA. It's possible to fabricate microscopes and magnifiers from water drops and cameras have pin hole lenses. Potential uses: tiny telescopes in the human body, a fly eye
with binocular vision, special multi-fiber optics apps, and satellite
devices.
Experiments
It uses a vertical design, objective lens and ocular with two spaced platforms, with varied size pinholes, and water drops. If the pinhole becomes too small, the lens shape from the water tension is lost. Experimentally, substances, such as oil were introduced to study the effect on the shape of the lens. To negate evaporation, glycerin drops can sub for water. I began experimenting with resin and very small pinhole aperture stops of various materials. Another idea is the stretching and compressing of materials to reshape a molecular lens, thus modifying its focal length and magnification when the lens composition is slow viscous. Clear spherical beads work as tiny lenses and very small spheres are readily made and cured in low micro gravity as shown by NASA. It's possible to fabricate microscopes and magnifiers from water drops and cameras have pin hole lenses. Potential uses: tiny telescopes in the human body, a fly eye
with binocular vision, special multi-fiber optics apps, and satellite
devices.
Nano Refracting Telescopes with hardened molecular elements can be placed inside the human body non-intrusively as telescope nano eyes to remotely cure disease, correct defective genes and "strands of DNA," repair failing organs and serve as an optical view center from remote locations at a distance. Thousands of Nano Telescopes can monitor the internal human body in ways never before possible. Nano Telescopes may also simulate Fly Eyes for greater vision in robotics and satellites.
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