Showing posts with label atomic. Show all posts
Showing posts with label atomic. Show all posts

Saturday, September 3, 2022

Reading your Neighbor's Brain - Noninvasive Atomic Tele Brain Absorber Focuser


As the Noninvasive Atomic Tele Brain Absorber Focuser is a machine, it can be incorporated into the inner workings of artificial robotic humanoids that could then have the capacity to read human brains from a distance, much like telepathy. If both machines and humans are equipped with such devices, a completely telepathic form of communications could result. The send/receive nodes are placed on the forehead above the eyes for the most direct path to the internal brain. The neural nubs contain atomic circuits for directly probing the brain. The neural read data is fed to an algorithmic processor decoder.

Read your Neighbor's Brain
Noninvasive Atomic Tele Brain Absorber Focuser



Isolating the strange behavior of the atomic structure of the brain enables devices to noninvasively read brain matter atomic states

A Wireless Noninvasive Brain Reader
Advancing work on the Noninvasive Atomic Tele Brain Absorber Focuser by Humanoido at Big Brain Technologies Cybernetics Division has extended its range from that of a few millimeters to several feet with the add-on atomic parabolic amplifier focuser in place. Theoretically the amplified range can be increased much farther to read the thoughts of a neighboring brain through a basic line of sight pathway. This opens up the potential for telepathic communications between humans, between AI machines, and between humans and AI machines. As the noninvasive sensors are increased in sensitivity, the range and bandwidth will proportionally increase.

Friday, November 20, 2015

Space1 Rocket Alternatives of Going Into Space

Distance between the Earth and the Moon is a haven for the newest space tourism
SPACE1
ROCKET ALTERNATIVES OF GOING INTO SPACE

HE BI LEVEL ROCKET PROPULSION DESIGNED
Consideration of the Diesel Engine precluded carrying heavyweight fuel into space
Black powder fired rocket engines are cheap, easy to build, required regulation at times under certain conditions (dry weather, static electricity, incongruous changes), and affect the Earth's environment by depositing and releasing greenhouse gases. Depending on range and thrust, this may vary from a relatively insignificant proportion to that of larger depositions for the largest and most massive rockets.

But other forms of rocket propulsion are more damaging to man and the environment such as atomic and nuclear engine drives that have risk of explosion and releasing radioactivity and contaminating the Earth for many years or decades.

Of course, rocket propulsion must be cost effective and simple to supplement bringing space tourism to a safe and affordable level. Space1 is working on a Hybrid Engine that incorporates the best of a couple technologies, spinning old and new together. A new rocket engine design is introduced in November of 1015, named the HE.

There's two levels of space, the first level requires moving through the first level of Earth's space known as the Troposphere, and the second level moves beyond the Earth's space into the Solar System and the first realm of Deep Space. The HE design incorporates this bi level propulsion. The two worlds of engine design utilize a common propulsion for level I and electrical for level II.

Also examined and studied are propulsion using hydrogen, oxygen, diesel, kerosene, and nitrogen. These may be more range and velocity sensitive.

Tuesday, January 6, 2015

Atomic G-Force Absorber

Atomic view of Space1's Atomic G-Force Absorber invention
ATOMIC G-FORCE ABSORBER

Space1 has invented the Atomic G-Force Absorber, AGA, to help isolate, insulate and protect astronauts traveling inside the new Milestone Safety Rocket, from heavy Gs during the mission.

The Atomic G-Force Absorber is an isolated platform that recoils atomically, cushioning initial effects that rapidly change during the flight. It uses advanced design morphing anatomical meshwork, MAM, to implement astronaut safety protection.

Sunday, September 30, 2012

Powerful Microscopes

THE SCIENCE OF POWERFUL MICROSCOPES

ELB @ Elect Lens Boost
GMM - Humanoido Labs
GENIUS MOLECULAR MICROSCOPE
The Genius Molecular Microscope (GMM) was invented in September
of 2012 by the Big Brain Molecular Microscopy Initiative at Humanoido Labs and works by the cascation of processing data amplification to reach field magnification levels exceeding one million times. GMM is designed as an easy to use and inexpensive way to view molecular structures, to work with and design micro machines and objects within the chip, and to explore the effectual results of the nanoscopic and nanotechnology developments.

http://humanoidolabs.blogspot.tw/2012/09/genius-molecular-microscope-gmm.html


ELECTRON MICROSCOPE
The electron microscope, first developed by German engineers Ernst Ruska and Max Knoll in the 1930s, uses a particle beam of electrons to illuminate a specimen and create a highly magnified image. Electron microscopes yield much greater resolution than the older light microscopes; they can obtain magnifications of up to 1 million times, while the best light microscopes can magnify an image only about 1,500 times. An electron microscope can range from US$90,000.00 to half a million dollars.


THE SCANNING TUNNELING MICROSCOPE
The scanning tunneling microscope (STM) is among a number of instruments that allows scientists to view and manipulate nanoscale particles, atoms, and small molecules. It was invented by Gerd Binig and Heinrich Rohrer in 1986. The idea of Scanning Tunneling Microscopy STM comes from the “topografiner” developed in the early 1970’s (Young et al., 1972), that included most of the elements of an STM but can only operate with a larger tip-to surface gap (>1 nm, at which distance electron transport occurs via field emission). Deficiencies in both the mechanical and electrical systems at 1970’s limited the resolution to a few nanometers vertically and ~0.5 μm laterally. These problems were overcome ten years later by Binnig and Rohrer at the IBM Rüschlikon laboratory. They succeeded in creating an instrument with stable vacuum tunneling and precision scanning capabilities – the conditions required for atomic resolution imaging. STM has revolutionized the study of surfaces and is rapidly becoming a required tool in almost every surface characterization laboratory. In addition, it has led to the development of a host of related techniques, collectively known as scanning probe microscopy (SPM).


http://conf.ncku.edu.tw/research/articles/e/20080606/5.html


ATOMIC FORCE MICROSCOPE
Atomic force microscopes (AFMs) gather information by "feeling" the surface with a mechanical probe. Gerd Binig, along with Calvin Quate and Christoph Gerber, developed the first AFM in 1986. Product Example: The package include the technical integration of an AFM into an imaging ellipsometern of the nanofilm_ep3 series. Take advantage of the convenience of imaging ellipsometry to visualize thin films and surface structures, and then zoom into nanometer details with Scanning Probe Microscopy on the same spot! The integration is done by an intelligent sample handling, integrating complementary data from two independent methods without the need for laborious sample positioning. The technical integration of a Scanning Probe microscope enables the user to: * measure the same field of view with imaging ellipsometer and scanning probe microscope * observe nano-steps in the live contrast-image of the ellipsometer, draw your region of interest around the nano-steps, and record surface film thickness, profiles/maps with nanofilm_ep3 (large field of view, quick) or by the AFM (submicron lateral resolution, slow ~ 3 min for an 80 µm by 80 µm scan) * map thickness and optical properties (refractive index/extintion) and 3D-profile/surface-roughness at the same sopt on a sample within minutes, due to software-controlled sample transport between imaging ellipsometer and Atomic force microscope with smaller than 20 µm accuracy and 2 µm repeatability


http://www.directindustry.com/prod/accurion-gmbh/atomic-force-microscopes-afm-71503-606558.html

LINKS
http://www.nano.gov/nanotech-101/what/seeing-nano