FOCUS ON DARA
DARA of Space1 has completed tests for phase 1 of the Fundamental Space Three Dimensional Systems Study. The systems study is the precursor to possible new space rocket suit technology, the potentiality of HUD heads up displays, and a rocket system that may usher in a new era of space tourism. Successful tests reveal that a calibration of mapping is primary for a successful system and spectroscopic quality for proper functioning is a prerequisite. Space1 is delighted to have Dara on the rocket team.
Space1 Index
Space1 Industries, a division of United Space Technologies, is a bold new space venture, taking you safely into space with futuristic technology. The mission - to the moon, planets and new worlds!
Saturday, January 9, 2016
Friday, January 8, 2016
Space1 Space Weather Station
LEFT: A deadly space storm of protons and radiation particles slammed into SOHO's LASCO C3 imager within 15 minutes of a flare on May 17, 2012. source
SPACE1 has its own local Earth weather station to study and examine the Earth's atmospheric conditions, changing weather patterns and parameters for rocket launch and astronomy. But is this enough for space tourism?
Now SPACE1 has created a Space Weather Station, and added the Space Weather division - joining forces with the astronomical observatory laboratory, which monitors space weather for space travel.
Space weather includes the rain of particles from space and the Sun. This may include flares, supernova, solar wind, cosmic rays, heavy neutrons, protons, xrays, gamma ray bursts, and other harmful particles. These harmful particles may effect space walks, ejectables, electronics, processors, sensitive equipment, nano devices, and craft such as drop satellites and other devices. Predicting space weather is an important part of space tourism.
Space1 Index
Thursday, January 7, 2016
Space1 Q&A Space Paper SP
The buzz is all about newly invented Space Paper (SP). We queried the inventor of Space Paper to gain more insight about this remarkable material.Q - Why was Space Paper invented?
A - SP was invented primarily for strong, lightweight, exoskeletons to be used inside the Safety Rocket and spacecraft systems.
Q - Who has Space Paper (SP)?
A - Only we have it at Space1. There's actually several materials in addition to SP that are unique to our labs.
Q - Who invented SP?
A - The Founder of Space1
Q - What does it take to invent such a material?
A - A strong history of invention and materials development, with backgrounds of Chemical Engineering, Engineering Physics, Advanced Laboratory, etc.
Q - Where is it made?
A - At Space1 Rocket Lab
http://humanoidolabs.blogspot.tw/2014/12/humanoido-lab-links.html
Q - What does the inventor say about SP?
A - "I just got lucky with my schooling, the jobs I worked in manufacturing, materials, robotics, and being in the right place at the right time."
Q - Is testing completed?
A - The study and tests with SP will continue. Space1 has accepted it for construction of the things needed inside the rocket.
Q - What are some uses of SP?
A - SP was invented primarily for exoskeletons to be used inside the rocket and spacecraft systems. It's also useful for strong but lightweight rocket bulkheads and may be incorporated into many other areas of drop satellites and spacecraft/spaceplanes. It will be useful for the space crew compartments, cockpit design, and structures requiring form, strength, and light weight. Plus the bonus is heat and cold resistance. This will be useful in the heated parts of the rocket, near the massive engine ejection mecha where hot searing gases permeate. It can also be used as shield material in rocket sections, where a heat shield is required. SP may become the next heat shield on the safety rocket. Other potential apps exist. SP could be used as a mount, cushioning the back side of a space telescope mirror. It could hold solar cells for our future space station and make up the structure of its walls.
Q - What about rocket reentry?
A - Our rocket reentry is slow, and no high 2,000 degree temperatures are generated like NASA's space shuttle return, which required heavy (due to the large number and thickness) protective ceramics. So SP will fit perfect our advanced but simple systems.
Q - How can SP be used outside of the rocket?
A - For space walks, SP could shield the Sun, and insulate from the coldness of space.
Q - Can SP help astronuts?
A - Impregnated SP could shield astronuts from harmful xrays, cosmic rays, solar wind, radiation, and other dangerous particles. It's possible rocket suits will be made of both stiff and flexible SP. SP could be worked into a super material, for invincibility. This might be valuable for Ejectables super hero persona undergoing stress and force.
Space1 Index
Wednesday, January 6, 2016
Space1 Invention Space Paper
![]() |
| Chemical foundation formula during the derivation of Space Paper |
Space Paper (SP) was developed over a two year period. Our scientists were looking to develop a new material for rocket propulsion that was nearly weightless, strong enough to use in the construction of exoskeltons, and inexpensive for keeping the cost of space tourism to something which everyone could afford.
The new investment division for SP was created overnight for a new form of robotics, e.i. humanoid robots whose primary composition is a derivative of super light weight chemically modified cellulose (see basic chemical formula attached).
Space1 Space-Paper is a material that's safe and fireproofed using the Lab's established fireproofing technology, and light weight enough to become prime construction material not only for humanoid machines and artificially created intelligent life forms for engagement in rocket travel, but the actual components of the rocket, such as bulk heads.
SP can be manufactured cheaply, extruded, rolled, folded, cut, trimmed, drilled, joined, sized, imprinted, scaled, printed, stored, frozen, heated, and integrated.
SP is tested to hold up to at least 27 Gs. Structural analysis shows SP may withstand much higher stresses of G force and vibration than limit tests have shown. This is because the maximum G force test had a peak of 27 Gs. SP has grain - super strong in X which is the rocket component needed during space flight.
A five pound piece of conventional humanoid robot now becomes less than .1 ounce. This is 800 times lighter - a super light weight humanoid robotics material will change the robotics of space travel and reduce the cost of space flight significantly at Space1, thereby passing the savings onto space tourists, helping to make space flight low cost and affordable to all.
Space1 Index
Tuesday, January 5, 2016
Space1 Nano Supercomputer
Tower of Power - The old Spark Supercomputer machine, illustrated above, was built by humanoido and is the forerunner of Space1's Nano Super Computing machine. By comparison to the new nano supercomputer, the Spark was a massive tower of computing and controlling power.
For the new nano, a mesh construction has up to one million processors and 32,000 controls. The nano computer will take up residence at the corporate Space1 location in the USA and has options to command the launch control center, the rocket laboratory, and the space research facility to run advanced experimentation in space and time. The nano space super computer will also be used to conduct quantum research as applied to space travel.
Space1 has designed a powerful new nano supercomputer, also known as the nano super space computer. Plans are moving forward in the design for construction using parallel dimensioned multi-core chips, thus creating a new nanoized supercomputer installation in the USA.
SIZE
The design for the new supercomputer has a much smaller footprint than many super computing machines created at Humanoido Labs, and it will offer portability for non-permanent rocket sites that are moved around.
IMPLEMENTATION
Uses for the new Space1 Nano Super Computer at the USA location may include weather, analysis, rocket flight, track, monitor, extrapolate, interpolate, integrate, design, statistics, and hard core cutting edge research. Part of this is the exploration of the machine in creating a new kind of intellectual machine mind.
DESIGN
This design begins at Humanoido Labs with a ten modular NANO mainframe design using expanded 8 Parallel Dimensioned core ICs wired into a mainframe mesh of 10x8x125 = 10,000 processors per Mesh.
SPACE MESH
Each Space Mesh can control a significant part of the interface realm, enabling true functioning nano intelligence. A ten Mesh device with ten thousand processors will enable 320 real world point control. For each 100 Mesh, 3200 items can be controlled with 100,000 processors. Expanded to 1K, the machine will control 32,000 objects and contain a million computing processors.
SPACE SUPERCOMPUTER SPECIFICATIONS
10 Mesh - 10,000 Processors, 320 controls
100 Mesh - 100,000 Processors, 3,200 controls
1000 Mesh - 1,000,000 Processors, 32,000 controls
Space1 Index
For the new nano, a mesh construction has up to one million processors and 32,000 controls. The nano computer will take up residence at the corporate Space1 location in the USA and has options to command the launch control center, the rocket laboratory, and the space research facility to run advanced experimentation in space and time. The nano space super computer will also be used to conduct quantum research as applied to space travel.
Space1 has designed a powerful new nano supercomputer, also known as the nano super space computer. Plans are moving forward in the design for construction using parallel dimensioned multi-core chips, thus creating a new nanoized supercomputer installation in the USA.
SIZE
The design for the new supercomputer has a much smaller footprint than many super computing machines created at Humanoido Labs, and it will offer portability for non-permanent rocket sites that are moved around.
IMPLEMENTATION
Uses for the new Space1 Nano Super Computer at the USA location may include weather, analysis, rocket flight, track, monitor, extrapolate, interpolate, integrate, design, statistics, and hard core cutting edge research. Part of this is the exploration of the machine in creating a new kind of intellectual machine mind.
DESIGN
This design begins at Humanoido Labs with a ten modular NANO mainframe design using expanded 8 Parallel Dimensioned core ICs wired into a mainframe mesh of 10x8x125 = 10,000 processors per Mesh.
SPACE MESH
Each Space Mesh can control a significant part of the interface realm, enabling true functioning nano intelligence. A ten Mesh device with ten thousand processors will enable 320 real world point control. For each 100 Mesh, 3200 items can be controlled with 100,000 processors. Expanded to 1K, the machine will control 32,000 objects and contain a million computing processors.
SPACE SUPERCOMPUTER SPECIFICATIONS
10 Mesh - 10,000 Processors, 320 controls
100 Mesh - 100,000 Processors, 3,200 controls
1000 Mesh - 1,000,000 Processors, 32,000 controls
Space1 Index
Friday, January 1, 2016
Space1 Space Romance
Now for the first time, Space1 and the Safety Rocket can introduce a romantic space tour package for couples wanting to tour space in ways never experienced before.We will provide a special private and romantic rocket chamber decorated with the subtle romantic elements of a love ride in space. A crew com- partment for two, will com-
pliment the Safety Rocket, and touring sites will be selected for a romantic setting in space. Space rides will be ideal for romantic space flings, engagements, marriages and engaging in exotic space love - cameras are optional.
Book your early romantic rocket flights with your loved one and reserve a place to shoot towards the Moon and romantic scintillating stars some starry starry night.
Space1 Index
Space1 Time
Index
Space1 has a big interest in time, to attempt to slow it down, or extend it, thus increasing the length of space tourism.
The study of time is more than interesting. As Einstein pointed out, time is a thing, a dimension, an element. Therefore time that has passed still exists somewhere.
Where did it go? If we can find time that has passed, could it be added to existing time to increase its length? Time can also be dilated. Moving clocks run slow when accelerated faster than a tenth the speed of light.
Intense gravity will cause a clock to run slow causing it to time travel when returned to its relative point of origin.
Can any of these techniques in time work for slowing down space tourism? We think time can slow down for space tourism, but will use another approach.
There's the time in a bottle approach. We want to put the existing time experience of a space tour into a bottle and then stretch that bottle, thus stretching the fabric of time at the same time, simultaneously. This is a technique different from traveling at speeds near light travel, or undergoing the juxtaposition of a gravity well.
The advantages of stretching time will cause a space tour to increase in length, last longer, and it will allow the space tourist to take in more sites, places, and events.
How will we stretch the the bottle of events, thus growing the fabric of space and time?
How can we fit time into a bottle? Can Jim Croce's Time In A Bottle apply to space tourism? Space1 is currently developing methods to extend time, making one moment in time last a longer time. Goals may be time extenders at 2x, 3x, ... 10x. Key to a working solution is time in a bottle.
Singer song-writer Jim Croce, in the 1970s,
lyrically pointed out the romantic value of saving time in a bottle, making days
last forever.
Time in a Bottle - Jim Croce
https://www.youtube.com/watch?v=fyTfbtZeGeU
"Time in a Bottle" is a hit single by singer-songwriter Jim Croce. Croce wrote the lyrics after his wife Ingrid told him she was pregnant with his son, Adrian, in December 1970.
The romance of space tourism is an upcoming part of Space1's great adventure in space. Stay tuned for more.
Space1 Index
Space1 has a big interest in time, to attempt to slow it down, or extend it, thus increasing the length of space tourism.
— Time in a Bottle
The study of time is more than interesting. As Einstein pointed out, time is a thing, a dimension, an element. Therefore time that has passed still exists somewhere.
Where did it go? If we can find time that has passed, could it be added to existing time to increase its length? Time can also be dilated. Moving clocks run slow when accelerated faster than a tenth the speed of light.
![]() |
| The objective is to slow down time during Space1 tourism |
Can any of these techniques in time work for slowing down space tourism? We think time can slow down for space tourism, but will use another approach.
There's the time in a bottle approach. We want to put the existing time experience of a space tour into a bottle and then stretch that bottle, thus stretching the fabric of time at the same time, simultaneously. This is a technique different from traveling at speeds near light travel, or undergoing the juxtaposition of a gravity well.
![]() |
| Albert Einstein defined time |
How will we stretch the the bottle of events, thus growing the fabric of space and time?
How can we fit time into a bottle? Can Jim Croce's Time In A Bottle apply to space tourism? Space1 is currently developing methods to extend time, making one moment in time last a longer time. Goals may be time extenders at 2x, 3x, ... 10x. Key to a working solution is time in a bottle.
Singer song-writer Jim Croce, in the 1970s,
lyrically pointed out the romantic value of saving time in a bottle, making days
last forever.Time in a Bottle - Jim Croce
https://www.youtube.com/watch?v=fyTfbtZeGeU
"Time in a Bottle" is a hit single by singer-songwriter Jim Croce. Croce wrote the lyrics after his wife Ingrid told him she was pregnant with his son, Adrian, in December 1970.
The romance of space tourism is an upcoming part of Space1's great adventure in space. Stay tuned for more.
Space1 Index
Subscribe to:
Posts (Atom)









