Difference between revisions of "Products of gem-gum-tec"

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(''speculativity warning!'') <br>
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{{speculative}}
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[[File:Box_full_of_future_technology.jpg|400px|thumb|right|This box is full of things made with future technology. While we can see some rough things most details remain censored.]]
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This page is about what products could become a reality once 
 +
[[crystolecule metamaterial technology]] has been reached.
  
Note: The potential applications listed here should '''only''' be taken as '''motivation''' for the development of [[Main Page|APM]].<br>It should '''not''' be taken '''too seriously''' since this compilation will be very incomplete and in parts probably quite wrong.<br> Do not intermix the questionable feasability of the here presented example aplications with the rather sound feasability of [[technology level III]].<br> For those of the presented prospective technologies that will become possible it will be thanks to smart combinations of the expectable new materials.
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= Some disclaimers and notes =
  
previous: [[technology level III]] <br>
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The potential applications listed here
next: [[most speculative potential applications]]<br>
+
* should '''only''' be taken '''as motivation''' for targeted development towards [[gemstone metamaterial technology]] and
 +
* should '''not''' be taken '''too seriously''' since this collection of examples will be very incomplete and in parts probably quite wrong.
  
 +
Beware of intermixing:
 +
* the questionable feasibility of the here presented example application ideas with
 +
* the rather sound feasibility of [[gemstone metamaterial technology|crystolecule metamaterial technology]].
  
 +
Smart combinations of the [[gemstone based metamaterial]]s are the basis for all the prospective technologies presented here.
 +
 +
Once basic [[gemstone based metamaterial]] manufacturing capabilities are reached, development into the vast space of possible products will actually only be at its very beginning. <br>
 +
[[A lot more programming work]] will be necessary ''after'' [[gemstone metamaterial on-chip factories]] have arrived.
  
 
= List of potential applications  =
 
= List of potential applications  =
  
For in depth discussion of individual technologies please go to the [[general discussion]] page or create a dedicated page and link to it from here.  
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In depth discussion of individual technologies can be found on the hyperlinked dedicated pages. <br>
 +
Some things may be found on the [[general discussion]] page.
  
Note: the levels of likelyhood are perceived rather subjective.<br>This is a bit problematic for a wiki but theres a need for this classification.  
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Note: the levels of likelihood are perceived rather subjective and blurry.<br>
 +
This is a bit problematic but there seems to be a need for classification.
  
== Industrial  ==
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== Mobile ==
  
=== very high likelyhood<br>  ===
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* See: [[Mobile robotic device]]s
  
*fully automatic miniature greenhouses -&gt; reduction of land usage
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== Industrial  ==
*metal free means of transport
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*supercomputers in glasses and contact lenses
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*dynamically adjustable glasses and gratis hearing aids
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*no more chains on bikes and motorcycles
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*extremely good thermal isolation for housesenorm (thermos flask level)<br>
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*a lot better prosthetics
+
  
=== high likelyhood<br> ===
+
=== very high likelyhood  ===
  
*open source AP 3D printer in key tag format  
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* fully automatic (and dirt cheap) miniature greenhouses -&gt; reduction of land usage
*superstreets including (solar cells, energy transport, microcompnent redistribution, ...)  
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* metal free means of transport – (no molybdenum containing car frames needed; [[mossanite]] based mechanical metamaterial instead)
*very comfortable suits with passive thermoregulation over a wide range of ambient temperature
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* supercomputers in glasses and contact lenses – or rather these devices connecting to low power hyper-computers in smartphone format
*extreme high buildings - whatever they may be for  
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* dynamically adjustable glasses and gratis hearing aids
*mid sized private windwheels -&gt; construction bans expectable
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* better alternative to open macroscale chains on bikes and motorcycles - (see: [[mechanical energy transmission cables]])
 +
* extremely good [[thermal isolation]] for houses (thermos flask level)<br>
 +
* a lot better prosthetics – pretty much indistinguishably from actual body-parts (if so desired)  
 +
* very high density data storage – reliable for geological time scales
 +
* [http://en.wikipedia.org/wiki/Gauge_block gauge blocks] with lengths known down to the atom (thermal expansion ...) – well cosmic rays may spoil it over some time
 +
* gauge masses known to the single atom (good video: [http://www.youtube.com/watch?v=ZMByI4s-D-Y]) - [[isotope separation]] needs to be done
 +
* digital replacement for paper (equally thin and similar in look and feel) that gets widely adopted – highly crease resistant; bright passive color
 +
* excessively (digitally) adjustable tables, cupboards, shelfs, chairs, ...
 +
* nice cutlery - self resharpening – transparent blades (maybe with [[endorsements|moving colorful iridescent marble like endorsements]] inside.
 +
* safer gas pipes - gas transported in microcapsules - (or energy transported via entropical storage solutions that freeze rather than go BOOM in case of big damage)
 +
* [[robust metamaterial balloons|balloons]] that work without helium or hydrogen as lifting gas –  a vaccum supported by filligree (bendable but not breakable) internal structures – the math for this works out it seems
  
=== medium likelyhood<br> ===
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=== high likelyhood  ===
  
*cheap dynamically changable buildings and rooms -&gt; dust free construction
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'''Infrastructure as encountered everyday:'''
*almost inaudible planes
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* open source AP 3D printer in many sizes like key tag format, size of a smart phone, laser printer, cupboard, garage or bigger <br>See: [[Form factors of gem-gum factories]] 
*flood and tsunami stopper flaps (defense against the forces of nature)
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* [[upgraded street infrastructure]] including (roofs with [[diamondoid solar cells|solar cells]], [[Mechanical energy transmission cables|energy transport]], [[Global microcomponent redistribution system|microcomponent redistribution]], ...)
*a giant number of solar energy collecting and CO2 reducing buoys or [[micro airships]]  
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* maybe a lot more mid sized private wind-wheels; if it gets out of hand them legal constraints may be to expect (?)
*significantly improved transportation network -&gt; strong cultural mixing
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* other styles of wind-wheels – [[medium movers]] sail type??
*rapid expansion of spaceflight - asteroids - space sports - interplanetary spaceflight
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* extremely high buildings - whatever they may be for (just because we can?, space pier?, ??)
*private laboratoy for everyone
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*a new artform of techno-plants
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*a [[global microcomponent redistribution system]]
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=== questionable<br> ===
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'''Cryogenics at home:'''
 +
* non electrical [[diamondoid heat pump system|quasi solid state heat pumps]] capable to generate cryogenic temperatures easily anytime anywhere (NOT referring to ulltra-low temperatures like the milli-kelvin range). Well ecapsuled for safety. <br>That eventually could allow for small portable optical quantum computers. And certainly allows doing something with for supercoductors.
  
* super fast vacuum trains
+
'''[[Gem gum suit]]s for people:'''
* Utility Fog als: furniture, crash-cushions, mellable computer interface, wheelchair cloud, ...
+
* very comfortable suits with passive thermo-regulation over a wide range of ambient temperature
* sliding windows to other places in the walls by drag-n-drop
+
* skintight [[AP suit|adaptive isolation clothing]] like a second skin possibly with remote tactile feedback and body cleaning function – (note [[design levels|functional composition limitation]])
 +
* slightly thicker suits to survive in all types of weather Earth to offer over prolonged periods of time. Even after our CO<sub>2</sub> escalation.
 +
'''Equipment for survival in the wilderness:'''
 +
* [[minimal survival pack]]: a super-isolating tent as housing, water, and raw sugar – all synthesized from "thin" air and sunlight. <br> – (maybe more types of food than just sugar, see: [[synthesis of food]])
  
=== very questionable<br>  ===
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'''Mining and recycling:'''
 +
* local waste water treatment in your own basement – likely to be done but not easy to do (See: [[Atomically precise disassembly]])
 +
* semi miniaturized oil refinement - likely to be done but not easy to do
  
*non biological replacement body for deceased.  
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'''Nuclear:'''
*successful terraforming
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* [[isotope separation|seperation]] of isotopes by mass – testing by frequency-tuning / spinning / (shooting & deflecting ?) <br>– (Prospect of people becoming capable making nukes in their garage from some raw ore is not so nice ... Prospect of getting rid of nuclear waste 100% by re-feeding to transmutation is nice ...)
*inertial fusion reactors which are smaller than torodial ones can ever be such that they are suitable for spaceships
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* small scale laser based particle accelerators – [https://www.youtube.com/watch?v=LG1kVIIy2Ok (video)] – See: [[Optical_particle_accelerators]]
  
... and many more<br>
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=== medium likelihood  ===
  
== Medical<br> ==
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* cheap dynamically changeable buildings and rooms - completely modular housing => dust free construction ([[architectural engineering]])
 +
* almost inaudible planes - see: [[medium movers]]
 +
* really big flood and tsunami stopper that always are retracted (except tests) and do not obstruct the view to the sea – (defense against the forces of nature)
 +
* a giant number of solar energy collecting and CO2 reducing [[mobile carbon dioxide collector buoy]]s or [[mobile carbon dioxide collector balloon]]s
 +
* significantly improved transportation network -&gt; strong cultural mixing
 +
* rapid expansion of spaceflight - asteroids - space sports - interplanetary spaceflight
 +
* a quite extensive private laboratory becoming affordable for everyone who desires one
 +
* a new art-form of [[techno plants|techno-plants]]
 +
* a [[global microcomponent redistribution system]]
 +
* [[chemical energy transmission]] slowly but surely replacing our current electric network (See also: [[mechanical energy transmission cables]])
 +
* [[rocket engines and AP technology|rocket engines]] made out of of or upgraded to [[gemstone metamaterial technology]]
 +
* a compact [[high culture re-spawning pack]]. Basically a small chip left in some geocache that allows re-spawning a good part of technology even if all else gets destroyed. A computer game like "save point" just for the entirety of real human technology. See: [[Disaster proof]]
 +
* the simpler forms of injectable robotic medical devices - (e.g. the "respirocyte" - an oxygen tanker)
 +
* convincingly sun emulating lamps: high intensity, point at the virtual "sky" yet parallel light-rays, proper spectrum
  
Developments in medicine tend to require more scientific discoveries (e.g. the undertanding of the interaction of the bodies proteins) often making [[http://en.wikipedia.org/wiki/Exploratory_engineering exploratory engineering]] impossible.
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=== questionable  ===
  
Technology Level 0 and I will also advance in a direction of biosystem improvement ([[technology path µ]]). Wether and how T.Level III machines will wield those more bio-mimetic tools is an question that will remain open for quite some time since this question it in essence goes backward the technology levels into the yet unknown gap.  
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* super fast vacuum trains (needs to run straight for global scale distances -> legal issues)
 +
* [[utility fog|Utility fog]] as: furniture, crash-cushions, malleable computer interface, wheelchair cloud, ... (specialized solutions may be preferred)
 +
* sliding windows to other places in the walls by drag-n-drop – quite interesting but maybe not too useful in most cases
 +
* '''[[most speculative potential applications]]'''
 +
* the more complex forms of injectable robotic medical devices (results of [[non mechanical technology path]] need to be mixed in)
 +
* and many more ...
  
*respirocytes<br>
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== Medical ==
  
= List of new materials / base technologies  =
+
{{Template: Biased}}
  
Like mentioned above those highly complex applications will only become possible through the smart combination of the set of newly available materials with novel properties.<br>This list is less speculative and more incomplete.  
+
Developments in medicine tend to require more scientific discoveries (e.g. the understanding of the interaction of the bodies proteins) often making [[http://en.wikipedia.org/wiki/Exploratory_engineering exploratory engineering]] over longer stretches into the future impossible.  
  
Again: the sorteing is rather subjective.<br>
+
Technology Level 0 and I will also advance in a direction of biosystem improvement ([[technology path µ]]). Whether and how T.Level III machines will wield those more bio-mimetic tools is an question that will remain open for quite some time since this question it in essence goes backward the technology levels into the yet unknown gap.  
  
=== low effort  ===
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* respirocytes<br>
 +
* ...
  
*molecular filters
+
----
*macroscopic [[infinitesimal bearings|super-bearings]] (one can only see a speed gradient)<br>  
+
To see how applications can be used to solve pressing problems of our time go to the [[opportunities]] page. <br>
*anisotropic material properties (e.g. scissoring mechanisms material)
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Can one or more potential [http://en.wikipedia.org/wiki/Killer_application killer apps] be identified?
  
=== medium effort  ===
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= Navigation =
  
*[[artificial motor-muscles|artificial muscles]] with higher power densities than todays combustion engines<br>
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* previous: [[technology level III]]
*absolutely silent super strong [[macro motionless pumps|pumps]] ("pumping material" - no movable parts are visible with the naked eye) "air accelerators"?
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* pre-products: [[gemstone based metamaterial]]s
*[[energy storage cells|cells]] for the direct conversion from mechanical to chemical energy and vice versa ([[chemomechanical converters]]).
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* next: [[most speculative potential applications]]
*super-fast shearing [[stratified shearing valves|valves]]
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*material structuring into [[microcomponents]] for recycling and recomposition
+
  
=== high effort<br>  ===
+
= Related =
  
*"elastic diamond" (made possible through the implementation as a semi active [[metamaterial]])
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* [[The look of our environment]] - {{speculativity warning}}
* materials with choosable / adjustable [//en.wikipedia.org/wiki/Stress%E2%80%93strain_curve stress-strain diagram] ([[emulated elastoplasticity]])
+
* [[Effects on our daily lives]] - {{speculativity warning}}
*actively self cleaning surfaces (no stupid lotus effect meant here) ([[macroscopic shell cleaning]])
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* [[Exciting super far term visions for gemstone metamaterial technology]]
*self repairing materials and self repairing macroscopic machine parts - no decay through weather or root growth ([[microcomponent damage cropout]])
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* [[Story scenarios]]
* .... and many more
+
  
=Further notes=
 
  
Obviously we are not at a final goal at [[technology level III]]. It's just the beginning.<br>Some people are tempted to say it would be "takeing over for god" when we start placing atoms how we want them, but it is not.<br>We still need material resources (mining) time (building) energy (plants) and land (to store all that stuff) and most importantly<br>some smart people to make plans for good atomic arrangements and further expand the class of accessible arrangements.
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[[Category:Technology level III]]

Latest revision as of 15:52, 27 August 2023

This article is speculative. It covers topics that are not straightforwardly derivable from current knowledge. Take it with a grain of salt. See: "exploratory engineering" for what can be predicted and what not.
This box is full of things made with future technology. While we can see some rough things most details remain censored.

This page is about what products could become a reality once crystolecule metamaterial technology has been reached.

Some disclaimers and notes

The potential applications listed here

  • should only be taken as motivation for targeted development towards gemstone metamaterial technology and
  • should not be taken too seriously since this collection of examples will be very incomplete and in parts probably quite wrong.

Beware of intermixing:

Smart combinations of the gemstone based metamaterials are the basis for all the prospective technologies presented here.

Once basic gemstone based metamaterial manufacturing capabilities are reached, development into the vast space of possible products will actually only be at its very beginning.
A lot more programming work will be necessary after gemstone metamaterial on-chip factories have arrived.

List of potential applications

In depth discussion of individual technologies can be found on the hyperlinked dedicated pages.
Some things may be found on the general discussion page.

Note: the levels of likelihood are perceived rather subjective and blurry.
This is a bit problematic but there seems to be a need for classification.

Mobile

Industrial

very high likelyhood

  • fully automatic (and dirt cheap) miniature greenhouses -> reduction of land usage
  • metal free means of transport – (no molybdenum containing car frames needed; mossanite based mechanical metamaterial instead)
  • supercomputers in glasses and contact lenses – or rather these devices connecting to low power hyper-computers in smartphone format
  • dynamically adjustable glasses and gratis hearing aids
  • better alternative to open macroscale chains on bikes and motorcycles - (see: mechanical energy transmission cables)
  • extremely good thermal isolation for houses (thermos flask level)
  • a lot better prosthetics – pretty much indistinguishably from actual body-parts (if so desired)
  • very high density data storage – reliable for geological time scales
  • gauge blocks with lengths known down to the atom (thermal expansion ...) – well cosmic rays may spoil it over some time
  • gauge masses known to the single atom (good video: [1]) - isotope separation needs to be done
  • digital replacement for paper (equally thin and similar in look and feel) that gets widely adopted – highly crease resistant; bright passive color
  • excessively (digitally) adjustable tables, cupboards, shelfs, chairs, ...
  • nice cutlery - self resharpening – transparent blades (maybe with moving colorful iridescent marble like endorsements inside.
  • safer gas pipes - gas transported in microcapsules - (or energy transported via entropical storage solutions that freeze rather than go BOOM in case of big damage)
  • balloons that work without helium or hydrogen as lifting gas – a vaccum supported by filligree (bendable but not breakable) internal structures – the math for this works out it seems

high likelyhood

Infrastructure as encountered everyday:

Cryogenics at home:

  • non electrical quasi solid state heat pumps capable to generate cryogenic temperatures easily anytime anywhere (NOT referring to ulltra-low temperatures like the milli-kelvin range). Well ecapsuled for safety.
    That eventually could allow for small portable optical quantum computers. And certainly allows doing something with for supercoductors.

Gem gum suits for people:

  • very comfortable suits with passive thermo-regulation over a wide range of ambient temperature
  • skintight adaptive isolation clothing like a second skin possibly with remote tactile feedback and body cleaning function – (note functional composition limitation)
  • slightly thicker suits to survive in all types of weather Earth to offer over prolonged periods of time. Even after our CO2 escalation.

Equipment for survival in the wilderness:

  • minimal survival pack: a super-isolating tent as housing, water, and raw sugar – all synthesized from "thin" air and sunlight.
    – (maybe more types of food than just sugar, see: synthesis of food)

Mining and recycling:

  • local waste water treatment in your own basement – likely to be done but not easy to do (See: Atomically precise disassembly)
  • semi miniaturized oil refinement - likely to be done but not easy to do

Nuclear:

  • seperation of isotopes by mass – testing by frequency-tuning / spinning / (shooting & deflecting ?)
    – (Prospect of people becoming capable making nukes in their garage from some raw ore is not so nice ... Prospect of getting rid of nuclear waste 100% by re-feeding to transmutation is nice ...)
  • small scale laser based particle accelerators – (video) – See: Optical_particle_accelerators

medium likelihood

questionable

  • super fast vacuum trains (needs to run straight for global scale distances -> legal issues)
  • Utility fog as: furniture, crash-cushions, malleable computer interface, wheelchair cloud, ... (specialized solutions may be preferred)
  • sliding windows to other places in the walls by drag-n-drop – quite interesting but maybe not too useful in most cases
  • most speculative potential applications
  • the more complex forms of injectable robotic medical devices (results of non mechanical technology path need to be mixed in)
  • and many more ...

Medical

Template:Biased

Developments in medicine tend to require more scientific discoveries (e.g. the understanding of the interaction of the bodies proteins) often making [exploratory engineering] over longer stretches into the future impossible.

Technology Level 0 and I will also advance in a direction of biosystem improvement (technology path µ). Whether and how T.Level III machines will wield those more bio-mimetic tools is an question that will remain open for quite some time since this question it in essence goes backward the technology levels into the yet unknown gap.

  • respirocytes
  • ...

To see how applications can be used to solve pressing problems of our time go to the opportunities page.
Can one or more potential killer apps be identified?

Navigation

Related