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Upgrade 01A; Part II, Version 1.7

(grammar, spell check, removed 'extra words' and will continue to modify)

Author: David Saxton Ullery

♣Note: Part I is here♣

Chapter UG.01A.01.00
[Water]

Imagine relatively high speed boats for travel between SD, New LA, and SF California. They are automated, high speed, low cost, safe.

You get out of the electric jet boat at your destination. The battery packs generating all of the power are of the latest, high density, nanotube variety.

Sensors on the boat tell the processors the current location, other boat locations, temperature, wind, other weather conditions, wave conditions, passenger location, current mass distribution, direction, speed, acceleration rate, ….

Boats tend to line up like birds when they can to optimize on the drafting effect. They skim over the surface with pressurized air squeezed under the center of the bottom of the craft and rushes out the back.  The boats utilize group think strategies whenever they sense one or another. The typical “V” will tend to spread to account for current speed.

Jets of water scream out of the back of the boat in five huge jet thrusts. The top two mix water with the squeezed air. They kick in during the mid-trip cruise period. SF to LA in 53 minutes plus.

Fast enough and considerably cheaper than rail.

No private car parking fees either.

The bulk of the craft, including the passenger compartment, floats over a current of air as the craft’s bottom three engines get the boat up to a minimum speed.

The sleek design is heavily dependent on the newly available, ultra-strong composite materials, with very large, thin and dynamically controlled water wings that constantly adjust to stabilize the craft. They act as shock absorbers and the energy is fed back into the battery packs. The boat flies over foam of water, waves, and air.

The ride is smooth.

The extra surface area that can be created when utilizing nanometer-sized components allows for a fractal-like layering of material with air.  The choppy waves are absorbed by the unique structure, thus the passenger(s) inside do not feel the bumps.

Stand on the moving sidewalk and start walking in the fast lane on your left. Move over to the higher-speed sidewalk. Walk fast to get up to 15 mph in the fast lane of the faster walkway. It’s good to keep legs and heart and lungs active between transports.

The end of the walk approaches and
those not moved into the slow lane will step to the skid transition or simply over to the transition walk.

In the reverse direction, one is free to walk straight to the fast walk in a similar way. Slow walks have multiple exits to the sidewalk as well as multiple entrances and exits to the fast walk. You are very familiar with it and seem to enjoy transitioning effortlessly from one belt to the next, passing the slow and idle passengers on the way.

You exit the walk at the Space Tube station. Space craft are accelerated inside of a 500 mile, near vacuum tube over a magnetic rail system. They reach escape velocity in the most economical manner, with considerations for total mass and cargo. Human cargo is delicate. Water and supply cargo generally is not.

Other people continue on with some getting into high-speed, automated ground vehicles of various kinds. They automatically line up with one behind the other, and travel down a narrow, virtual road; very light weight due to carbon nanotube composites. They utilize group think networking too.

Toward the end of the rail, is another 20 miles of acceleration in a parabolic curve toward the sky. The tube narrows as the track ends. Of course, by this time you are much further south, than when you first started, and headed east, to take advantage of the extra velocity boost gained, by being closer to the equator and heading with the earth’s rotation.

Hydrogen plasma high-speed, strobe pulse engines kick in, from within the launch tube, so that mass need not be added to the ship. It is gently pushed from behind and the passenger seats adjust, to smooth the experience for the passengers. The timing is flawless and very fast, as high-powered lasers burst and instantaneously focus just below the craft, orchestrated by the sophisticated software systems in place. Tiny hydrogen jets are instantly converted to their plasma state by these focused bursts.

Powerful, and very fast bursts of electromagnetic energy is generated to provide power to both the lasers and the rail system. The lasers are switched on and off and so are the magnets lining the rails. Any function that can be provided by the tube system is, in order to lower the cost of extra mass on the craft itself.

Fresh, pure water rushes down the tube as the cooling hydrogen quickly combines with the oxygen in the newly supplied air near the end of the tube.

Massive amounts of pure water is collected at the bottom, just as the solar paint coating the outer surface of the tube assists in power regeneration by partially morphing its shape for optimization within parameters, as the craft exits.

As if all is connected in instantaneous triggers

Too fast for human minds alone to comprehend.

At the tube’s exit, the ship smoothly transitions to it’s ultra-light-weight rocket powered by highly compact nano battery packs capable of generating a modest, but constant acceleration rate for up to 31 minutes.

Passengers cannot help but feel smooth, but considerable acceleration toward the end of the tube, for about seventeen seconds, but it is nothing that a healthy body cannot easily tolerate.

The ship exits the tube where the air is thin. The rocket engine joined and linked with the craft at the last moment, at the end of the tube. There is always one waiting for passenger flights and the few freighters, mostly older (and always smaller) that utilize this tube.

They slide into place at the back of the craft much like a ring slides on a woman’s beautiful finger at a wedding. In either case, There is always much preparation and care in the planning and execution. Neither is taken lightly.

The linking mechanisms are very quick and dynamically adjust, test, and verify all seals before ignition.

Before the link, the bullet-like ship, with a concave curved back, forms a near seal in the tube, but leave a minuscule gap to avoid friction. The effect of the pulses is maximized in this way.

Most of the heavier, bigger freighters (at this facility) launch in a different, nearby, parallel tube, and are accelerated utilizing much larger amounts of a special hydrogen plasma-based fuel compound ignited by powerful, highly-focused lasers.

Your craft drifts directly to it’s destination with plenty of power to spare for any minor corrections that may take place, and for docking to the Station. It is a long flight, but it is comfortable when you can afford the better seats.

The craft is constantly in recharge mode once docked in the direct sunlight. The protective shields are lowered, the treated water shield is drained, and the solar paint is fully exposed on all usable surfaces. No need for this craft to utilize Station power today. Much of the craft had enough exposure during the flight to partially recharge, but only about 3% was recovered.

The public area on the Station is huge. There is a park with a small fresh-water lake. Water also blocks some of the cosmic rays. Filtered sea water is used for this purpose.

Wetware is used to help repair damage from DNA. Passengers casually rub the lotion in their hands before takeoff. You can even get some with aloe. Another lotion deactivates the wetware after returning to earth.

The Station rotates to provide gravitational substitution, so that bones do not deteriorate, but nanobots are available for monitoring and delivering calcium and stimulating bone growth. Better ingest a few to monitor, just in case. No harm done.

A spectrum exists: from human to cyborg to android to machine that stretches out with an array so large that the distinctions blur. Yesterday’s cyborg, with few augmentations, may as well be known as human today. People may sometimes effectively transition from one form to another and back again by transmitting their unique human patterns as digitized data streams.

Artificial ears replaced with new ears booted up from stem cells then augmented with more sensors that may selectively listen to other sounds of bees or whales or bird songs. Eyes with similar cycles are able to see beyond ordinary human spectrum. Progress continues on to provide the engine that feeds these cycles.

Global warming melts the ice. Sea water generates fusion power, supports sealife, generates power from the sun, absorbs carbon, and gives off oxygen.

Water is easily purified by nanotube filtration and is obtained from space tube launching exhaust reactions, glacier melt runoff, and directly from the large water plows that filter, transport, and deliver as needed. Fully automated, powered by solar and high-tech sails, these ships are true wonders. They absorb carbon from the air on their journeys between the Great Plastic Junk Heap and Africa as a kind of parallel “service”..

Valuable, protein rich fish are identified and captured by fish recognition nets. Intelligent algorithms assure ecological balance and seemingly endless supplies. Some fish are cloned and grown on farms for more efficient food resource purposes. Some end up very very far from home on plates and aquariums on outposts in space, but they often arrive as simple, light fish eggs.

Dead plankton, live plankton and other tiny sea life are utilized for their parts. The dead machines are replace for artificial purposes. Stuffed full of tiny processors.

Life is reprogrammed, rebooted, rearranged in countless ways.

Endangered species in the sea are identified by the great nets. Some are automatically tagged, others are captured alive for study and release. The vast majority of the sea creatures pass through the sensors, making up the net, unharmed.

Africa is provided with vast quantities of fresh, clean water and protein in exchange for cooperation for generating solar power and fighting world pirates, criminals, and terrorists. The war paradigm is no longer distinguishable from ordinary violent criminal tracking and capture. Targets are highly specific.

Collateral damage is minimal. There are one or two or maybe 3 victims in any year. Still too high some say.

Open source software, music, art, science, and math dominate the market. People must push buttons or talk to perform their jobs.

Sometimes, a lot of thought is required to know which button to push or command to make to the machines. Research is highly integrated with technology. Pushing a button may produce vast arrays and networks of activities and sub activities.

You arrive at the station and settle into your timeshare living space. Your online intelligent agent checked you in an deposited your last payment.

The view of the new lake made the payments worthwhile. Jacobal should be arriving soon. Chasey’s daughter was understandably anxious about her dad. She unpacked her new aerogel high heal shows to get ready to go out. They reminded her of her mom’s coffee table that her dad, the General (The Libertarian King was his nickname for a time), had accidentally smashed to bits.

Janus was tired after her two trips. She had been traveling now for three days, including the trek more than half way to the moon. The ship mostly drifts. A great deal of power was used just to launch the mid-sized craft.

Lately, water was the bulk of transport mass…

Now, there is clearly a disruption of sorts in the status quo. Everything just did not add up.

The General was clearly attacked. Perhaps Jacobal was too! Or so thought Janus.

Janus was curious about the new UG.01A install in Jacobal. Apparently it was unharmed.

Janus had remembered that one of the rebuilt units her grandfather, Trevor had been counseled by testified: “no two units are alike anymore.” and “the first decade of last century was the last full decade of relative, non-integrated, not fully automated technology – where the foundation was not in the current state -the status quo was very different.” at the disappearance hearings.

Janus never forgot the odd incident her mother had gone through years later. Even the General was involved, had met her mom and that was that. Janus was alive!

Shields of that type were so new then. Nobody could quite believe that such a technology was already available and in use.

Nobody knew back then that a mind could be manipulated by means of a tiny radio drone hidden inside of a cloak. The drone device itself was only seventeen by thirty one nanometers with the cloak only slightly larger.

She was wondering what it was that nobody knows now… today … this second. She wondered if her grandfather would know if he really is still alive. She wondered many things right now.

Chapter UG.01A.01.01
[Sex]

She was wondering what joys Jacobal would bring as their bodies join, more than what information he has to offer right at this moment, in spite of her fears for her father and Jacobal. She enjoyed dancing for him in her shoes. She decided that she must have an aerogel fetish. She was a traveler, a dancer, a pioneer, and a free thinker. No qualms and plenty of grey matter, silicon matter and sex drive to please Jacobal.

Real travel was great. It was such a joy to have that extra kick of knowing for certain that you are actually, absolutely with someone in the most direct, non-virtual mode possible. You just melt together in the most complete of ways. Virtual joining may be combined and was often fun to introduce a nice mix in. Pleasures may reach a certain peak, and soon introducing more does not add much – diminishing returns. We extend and augment and rejoice, but the wall returns, if not just a little bit further down the road. We live to enjoy again another day.

Why is it not boring?

This pleasure thing.

Repeat, Loop, Repeat again. For how much longer? To what extent?

At what point are we slaves and should we care? We have but one life. Do we not? Go with the flow! Come together right now over me!

or something like that, she recalled (some old song her grandpa liked and played for her).

The meeting place was great. Real Chopin played on a real piano with a real pianist.

Great food!

Exotic dancing was fashionable here in this little place.

Bring your own, meet them here, or one will sure to drop by if you are a single male or a single female.

Jacobal walked in, and walked over to Janus. The room was too dark for eyes to adjust – ordinarily, but those days were long gone. No more searching for ones love in a dark room, unless you turn virtually everything you own off. Janus and Jacobal liked to merge initially with augmentation off. It had a more lasting and prolonging affect on their long-term relationship. Start slow, then build up and make meetings have meaning. They both felt that the brain was the ultimate sex organ and size really did mater.

First things first today though. Jacobal transfers the protein coated digital information that details the entire processing of the merged thinking of Jacobal with Upgrade 01A to Janus on their first kiss. Janus must pause to absorb it all in. She is shocked, but still driven by her passion. There is no escape or turning back. It is best to pause before acting on this anyway. Might as well go ’till all has drained for a reasonable delay before the cycle must repeat.

This time, there will be a total of eleven wonderful days together. Or so she thought and wanted and hoped. Jacobal already had plans. She knew that from the invisible protein cap. Her eyes close, and she fell asleep. New information unfolded that neither Jacobal nor Janus could have known about. It was hidden away – a private package within a private package. Janus dreamt of fractals.

Chapter UG.01A.01.02
[Blood]

Jacobal Lectomen dreams of plans. A cloak, a sprayer, lighting adjustments, location, time, the surprise to his opponent, and a station copter – all in sync. As architect team lead and having powerful connections, Jacobal was confident that he held the advantage. The target would not be able to resist showing up.

Janus woke to find Jacobal already up, and was delighted to find a perfect, sphere of pure gold in his place on the bed, that she knew came from the ocean filters. Jacobal appreciated the technology that went behind retrieving and forming that perfect sphere. Now Janus had three of them. It was becoming interesting. Not knowing if or when another might be found there.

Jacobal just cut himself while making breakfast. He enjoyed working with eggs, cheese, green onions, garlic, a tiny amount of milk, chopped mushrooms, and sometimes salsa.

A drop of blood dripped from his finger. He was not being mindful. How could he be sure to be mindful at the critical moments in his plans? He turned the labor over to the kitchen machines, walked away and plopped down on the nearby chair. His head was buzzing with data at so many levels and he felt tired still. He thought of Janus looking at the gold sphere in his mind’s eye. He smiled. He wondered why the image in his head was so clear and real.

His finger immediately began to heal itself. It would be better by the time his breakfast was served. The equipment and furniture was still fairly minimal here, but it was adequate. It was located in the newest, habitable, civilian sector of the Station.

Jacobal would meet the representative later today. A tiny clump of 11 potential cancer cells died in Jacobal’s prostate. Zapped by a suicide nanobot wrapped in a DNA bomb. Jacobal scratched himself. Breakfast was served.

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science fiction

philosophy

  • DNA computing – From Wikipedia – get an overview and plenty of links …

  • Boffins build artificial DNA – 08 Jul 2008: “Japanese scientists claim to have created the world’s first artificial DNA, a development that brings DNA computing much closer…”, Written by Iain Thomson in San Francisco
  • DNA Computer Puts Microbes to Work as Number Cruncher “…scientists have made a computer from a small, circular piece of DNA, then inserted it into a living bacterial cell and unleashed the microbe to solve a mathematical sorting problem…
  • Computer Made from DNA and Enzymes “…Israeli scientists have devised a computer that can perform 330 trillion operations per second, more than 100,000 times the speed of the fastest PC. The secret: It runs on DNA. …”

The Station

By David Saxton Ullery

for: Upgrade 01A

Note: Some of the text is taken from the story “Upgrade 01A” (inside square brackets) and the rest is meant to expand upon “The Station” in greater detail.  The reader can expect this post to expand over time, including adding links to words within this post that are meant to add additional information.  In fact, virtually every post or page on this site is somehow related directly or indirectly to the central story: “Upgrade 01A”

[Thanks to polar meltdown, the world’s oceans had supplied all of the water needed to make the Station both necessary and possible! Large amounts of water were required for the huge space station’s completion. The station was ideally located for both military and civilian needs, but it still required vast quantities of water to make it livable for most humans. Meanwhile, the space station was largely populated by androids and certain cyborgs. Other cyborgs and humans were for the most part confined to certain areas already protected, but they could venture out to other sectors if they were willing to wear rather heavy coveralls, and a heavy-duty space helmet. Even with all the protection, visits to unprotected areas were limited to a maximum of five hours. Still, the current status was looking pretty good, already 13.31% of the Station was completed with virtually zero cosmic ray bombardment.]

The Station was essentially several loosely integrated space station discs (19) contained within a gigantic nearly spherical protective skin, or outer shell. The outer shell was capable of operating as an independent space station on its own… One huge disc was in the center, spanning nearly the entire diameter of the skin, yet able to function independently of the outer shell, as were the nine progressively smaller discs below and above. Each disc was modular with separate layers or floors, with gaps between each floor, but they were connected …

The entire, nearly spherical station was huge, with a diameter of over 41 kilometers across, so there was still plenty of room for the small population to roam within the completed upper and lower sectors, in spite of the its extremely thick, partially transparent and partially translucent outer walls. The living areas were multi-layered, and multi-floored discs and rotated deep within the protected outer structure, with the successively smaller upper layers moving synchronously with the central layers, providing constant artificial gravity on nearly every disc and every floor within the layer.

The center disc was by far the widest (forty one kilometers), with the outer-most floor being the by far the largest with a very high “ceiling”, just over three kilometers high. It was far from being completed. Huge virtual windows within this level (and others) provided extremely high-resolution views of space from outside, with an appropriate amount of redirected and pleasantly filtered sunlight, which provided an artificial day. A huge “outdoor” park complete with a small lake, and stream was planned for construction at this level, with the project to begin in a little over three years. Some day, hopefully within the next several years, the lake would be full of fish, ducks and paddleboats.

The upper two layers did not rotate with the rest of the station, and in spite of their relatively small size, still provided plenty of room for several zero-gravity laboratories, special manufacturing factories, and even a sizable recreation area where humans could literally fly about. Still another layer was capable of varying rotation speeds and was used to “grow” and self-assemble many useful products – some for export back to Earth.

Very large spaceports were located at the north and south poles of The Station. An opening at both poles could be sealed with a gigantic circular, inward sliding door, but the huge kilometer-wide openings were normally left partially open, leaving plenty of room for military (south pole port), industrial freighter, commercial (north pole port) space craft, and the tiny “pleasure crafts” – like Jacobal’s space bike to come and go.

Huge zero gravity elevators provided transportation of goods, with smaller units for people, and both located at the central, non-rotating hub. Each floor faced outward, toward space, so people’s heads were always facing the center of the disc while they were standing or sitting. In addition to all of the elevators, small, automated vehicles provided highly efficient, zero-gravity transportation between and around the relatively small gaps between each disc, thus providing swift movement between any of the several discs, the non-rotating hub, and access to the outer “skin” of the station. Several large and small elevators connected each successive floor within a single layer.

[Fortunately, wetware had largely solved the bothersome cosmic ray problem, but not completely. The Station still needed several layers of various materials separating layers of water: purified water, saline water, and even natural ocean water (complete with marine life). The materials were the new super ultralight, ultra-strong, meta-metallic nano-hybrid transparent and translucent composites. Each layer was extremely thick and blocked a significant percentage of the harmful cosmic rays, but the water was still required to complete the job as well as to supply the huge space station with drinking water, protein (from fish), fuel production, waste management, and so on.]

© All rights reserved, with the exceptions given on the home page. In short, feel free to use this material in any public URL with “.com”, or “.edu” domains for non-profit purposes. Please link back to whatever you reference.