Showing posts with label DPC. Show all posts
Showing posts with label DPC. Show all posts

Monday, December 26, 2016

Securitization in Qve

In the ordinary world it took years before industry learned about:

Securitization‌ is the financial practice of pooling various types of contractual debt, such as residential mortgages, commercial mortgages, auto loans, or credit card debt obligations, and selling said consolidated debt as pass-through securities, or collateralized mortgage obligation (CMOs) to various investors. The cash collected from the financial instruments underlying the security is paid to the various investors who had advance money for that right.  Wikipedia

This practice turns insurance into an Investment Practice rather than an Actuarial Service.  In fact, these practices in turn changed banking into a Retail Industry selling digital products.  If Technology were to become truly Green, many more industries would merge their services, but create a more functional application of power, energy, capitalization of virtual products and combined subscription services.  It would be a truly Virtual Marketplace.

Digital Energy could become a bios package as well allowing people to exceed ordinary standards.  So why argue with a new version of Quantum?



We noticed that smaller was better in terms of speed, at least in the Quantum world.  Smaller can negotiate curves and hurdles much better, passing through gates faster than anyone can blink.

If everything reached the META State of maximum sustainability, what would insurance companies insure?  Well, from the corners that industry has already turned, we can see that they would be underwriting the infrastructure and developing a retail means to insure delivery of a number of utility services. 



We keep pointing to finding those mechanics that meet the need within the Gap and learning to manage the field position to gain more leverage.

Who will underwrite Proxy Services and make up the industry requirements in Timing and Timeframes?  Typically, a loss of time is actuarially managed and at least for awhile that may still be a consideration.  A great number of things were learned after the wars brought about new products, one of them being that the real problems of money were in securing the stability of infrastructure.  We have a lot to learn about META Frames and new Quantum Systems. (We also want people to start to recognize branching numbers and their relationships. Just look at the first 2 or 3 digits and use sliding digits to see that the same numbers are at work throughout all of our examples like a map, these branch numbers point to the operations they perform.)




The start of something new has a lot of testing involved.  No one expects amazing overnight.  But who would insure ordinary material once they see what META Materials can do?

How do you build a Digital Power Plant?  Inner Space is waiting to be developed
It could be that power generation in general is ready for the next step in quantum digital production.

Also Read:
To Our Captain, Nothing We Do Must Fail



Disclaimer: Blog material is presented as the basis of discussion material and is not to be construed as advice, counsel or education, and may at times be misconstrued if read in a context different than the writer's intent. No portion of this blog has been knowingly reproduced. Any resemblance to a specific company or entity is purely coincidental







We are the Imagine Nation...building in Qve


When a new way of thinking comes along we have to think differently.  Some people have a gift of Imagination for new ways of working, building, thinking and accessing new content. 

A ONE System is not about a country or a brand, it's not about a color or a scheme, it's more about connecting like Islands in a Stream.   Music can inspire us to think differently and it tells us there are new worlds to conquer.  IT was Alexander's one complaint, when he finally got good at it, there was no place to take his skills to.  We know when it's time to ante up, the game changer is here.

Changing Schema in Quantum is like moving from old classics to new roles in a modern spin off; like watching reruns from the old ways we used to think.  We've done it before, like sliders we just moved into the new Windows, or just turned over a new leaf of the Apple system.  You don't have to have an apple fall on your head to tell you that gravity has changed.  But how do we work with it differently?  When things change put on a new hat and even if you feel foolish, learn something new.



It's like when you first get married and you can't remember where you live exactly, don't know what keys to use, can't remember where you put the cups and glasses, and have to learn everything all over again.  So take out something old and something new and learn to work with it differently.  IT may be borrowed but it needn't make you feel blue.



For instance the way we think about time will change.  You don't need to get tied up in knots, you already know how to think like this.  You can loop through a day and keep it all together, you can change roles like you change hats, and you can put new ideas together and get them to work.  Things take time tell the world to buzz off for awhile.  You don't have to answer the doorbell every time it rings.  You need a new set of priorities.




A new spin on old classics will amaze you.  Things can be done rather smartly, don't believe that people won't do a good job.  Don't be afraid to set your sights on a whole new world.

Remember we are the Imagine Nation.  And like generations before us said:  you can be anything you need to be by working at IT.  A Virtual City is the work of everyone.

We know: Things are going to be different, we'll find our way together.




Also Read:




Disclaimer: Blog material is presented as the basis of discussion material and is not to be construed as advice, counsel or education, and may at times be misconstrued if read in a context different than the writer's intent. No portion of this blog has been knowingly reproduced. Any resemblance to a specific company or entity is purely coincidental



 







Monday, December 12, 2016

Outcomes in Qve Cube Production

DPC

Distributive Power Concepts

SRQEM: QLD Energy Machine 

Qve Cube


We found many things in our research about the Quantum Cube.  The basis of the way things ate made and the constructive use of dynamics that were here-to-fore unavailable as energy content is a major advancement in both work and recreation.  We can't precisely create a view of what that will mean to us, so we use some movie ideas to open up our thinking and share new content. Primarily because we think people will have to share mind and activity composition in an IA format, this view may be of more than one person working in combination.



Because of the rebuild of the underlying string base and the use of photosynthetic sciences in META materials, things with more beauty and lasting sustainability can be made.

Whereas we see our work with machines in a very "material" based effort, the Quantum Cube is a Virtual world where work is performed using programmable META based materials and string.


Because we have a mindset about what production is about we sometimes have a hard time seeing things in a different context. 



So part of the chore that we have is to explode the Cube View so that the multi-branch theory isn't just an internal mechanic but an external workable function.  People who work in IT already understand about trees and branches, connectors and other ideas.  But even they have trouble imagining how that could be a workable application that people could pick up out of the virtual glass composition and work with it, much less build with it. 

We need to take some ideas slowly while others may be impatient with our approach, we are appealing to a more general reader as well.  The first idea that we need to present is the idea of the Market Basket approach to products.  Looking at the kinds of things that could be done give us a better idea of the arrangements that may be required.

And we also want to point out that expressions like exploding the tree sound terrible, but they simply mean expanding the branches so we can observe them.  It may be that we listen to ideas like exploding a star (for example) and may not be hearing about it the right way.  There is a lot to the quantum based universe and schema to think about, including new language for some peoples.



 There are many different ways to view the type of requirements that come up in business.  How orders are arranged are based on the kind of product and the needs of the customers in the market. So you can see that when requirements are split there is a need to emulate how that composition will be derived.

We gave ourselves a series of tough problems to work on and we were surprised at how much was learned by performing these tasks.  Because it is a requirement to work with Multiple Cycles and strategies in Supply Chain, we gave ourselves some breathing room not to try to think about all of these things at once.  To solve a complex set of problems the correct groupings have to be considered strategically in order to arrive at the best solution.




We have to remember that mobility did not demand the thinking of 50 years ago to split in 1000 directions while inventing computing, but Quantum is a paradigm that really needs the work of multiple groups with different backgrounds.  In the above movie about an aging Intern, the one size fits all viewpoint was very difficult to manage and impacted everyone in a variety of ways.



In Quantum we don't just want to repackage it smaller, we want the content to come out of the box and into the branches where it can be moved and manipulated to co-ordinate a wide range of activities.  A ONE world system reminds everyone they are in a League that really only has ONE ballpark and everyone is a contributor.  But it is hard to realize that if your name is Apple or Microsoft.  Windows and Meta glass will have to shake hands with Apple and Google.  Cubes make IBM think differently about Oracle contents and SAP tree.  All of a sudden Ice and Soap and Manifold theory and Gates and a whole world of drone thinking leaves the business of spyware and becomes the means to elicit more productive ends. The networks may have to join hands.

The Qve Cube will eventually affect everyone and everything.  With everything divided up into separate buckets, it's very difficult to re-source anything.  There are too many hurdles.


 
But we took a look at what it would mean to have a Quantum Cube capability that had fully plexed outfitting and use from every side of the equation.  To build a Universe is beyond our imagination but not with the idea that the Owner of the Universe has been leading us all down this difficult avenue for a very long time.  The only way to feel good about it is to focus on the end game. Because as Wernher von Braun said: Nature {is led upon a path of} is about Adaptation, the power to Transform.



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Disclaimer: Blog material is presented as the basis of discussion material and is not to be construed as advice, counsel or education, and may at times be misconstrued if read in a context different than the writer's intent. No portion of this blog has been knowingly reproduced. Any resemblance to a specific company or entity is purely coincidental









Sunday, December 11, 2016

Measuring the Qve Cube for Conversion

Content/Index

DPC

Distributive Power Concepts

SRQEM: QLD Energy Machine 

Qve Cube


We spent a good deal of time studying the requirements for resizable cubes and conversion requirements and we realized that none of this would be possible if we were not discussing QLD Energy Concepts.

So let's define some of the terms we set into motion before we can discuss Time and Motion:

Use of  Unique Terms:

QLD:  a term referring to Quantum Lamb Dynamics which varies from QED or Quantum Electrodynamics (the anachronistic model for the present universe)

QEM:  an acronym for the QLD Energy Machine which produces the String base of all things produced in the Quantum Cube dynamic

Qve:  Quantum Virtual Emulation vs Quantum Virtual Simulation:  Emulation is used to define the requirements to produce a quantum, and to model the quantum with a dynamic model that may be similar but not essentially the same.  A static model can be applied or a series of changes to a static model can be applied to emulate the activity until a motivational model can be assembled.  Simulation on the other hand, is producing the action in a mode of Quantum.


We had begun our scoping requirements explaining how we were differentiating the cube and have explained mapping concepts.  But the key to our Quark based model is some unique qualities of the cube design in virtual that make a number of features possible:

  1. nesting of machines (with limitations) and object cubes
  2. tiering of levels, three are defined
  3. motivational speeds
  4. refined directional movements
  5. sizing, scaling and defining parametric organizations
  6. external and interior framing capabilities
  7. gini composition and drive
Using Supply Chain Theory we can see that parameters prevail in Time and Motion:





The thinking that we are using is being built upon from the work "customs" or process theory presently observed, although things may turn around for a different functional distribution, understanding these concepts are always part of making forward progress in an adaptive period of change.

What isn't always available is how the parameters play a part in the entire conversion process. This is why an active Scorecard is recommended because it defines metrics and KPI's to adjust the performance of the interior workings of controllable variables and the affect that the external variables are having on the conversion process.  Also the Portfolio process brings in the business state and conditions that prevail upon the funding requirements and resource capability.

The interplay of these facts sets up a dynamic within the process.  The significance factor drives the conversion in a progression based on a discrete time requirement. In order to make conversion, these are the factors that need to be observed for a specific product.

In QLD string the continuous refreshment that maintains the product is based on the same parameters.  There is not a gap between the servicing of the quantum basis and the NEMO requirement of the shell.   Because there is no degradation of service and no decoherence in the model, there is both permanence and sustainability in a planar configuration of quantum. Also the ability to park the Qbit and direct the energy enables activities and tensor relations.

What is a planar configuration of quantum?  A planar system is like a board present in a machine, such as the mother board.  A planar system presents flat mechanics and very few if any moving parts.  The more state configured the system is, the more likely it is to maintain time and motion without interruption.  String generation is in continuous demand and always pays back immediately.  But until mastery of virtual machines is gained, such performance metrics may not reflect advanced capability.  In other words we may have a low efficiency until we have mastered the process according to the learning curve and demand should not be quite so imposed at first in a new process.

A requirement of an agile and adaptive process is to keep up service in spite of change-ups or new technological requirements.  This means that tooling, moving, changing and driving the machine has to leave appropriate compositional space to move in new objects and make replacements.  But it is also to possible to use a clone copy of the machine.

Since everything is affecting the performance of the machine it is important to recognize that a continuous flow process is required throughout the cycle of order to delivery.   But many things can happen even in a very good quantum process of virtual builds that can upset that schedule.

One obvious answer is when the vendor discontinues an integral part or material.  Since we are in the META state you would think we could just make more.  But something may have occurred in the new presentation of material that wasn't there before, and this may not suit your product.  So there is a continual lookout for the things that may interrupt service.



You can notice that there is an inference to I^7 which indicates the more advanced level of quantum.  Historic storytelling has made note of many such references including a new stone which is unquarried and not of "human" origin.  We expect this is the quark composition and underlying lattice strategy (string basis).  Further there are references to glass, potential, remote string capability and a "nations" level of participation in a leaf and tree taxonomy and photosynthetic arrangement.  This is now in the scientific forefront of quantum advantage.

There are a number of Time parameters and motion constants present in the analysis carried forward from layering these concepts.  Rather than dwelling on the details of all the numbers, lets note the midpoint of 212 is down from a roughed in midpoint of 214 and a specified midpoint of 213.  From a spin constant of 2 we are still working.

But now we should take a look again at the cube measures.


In terms of the spatial relations of the cube to the bridge we can now see that we are at a midpoint of 211 and that is a triangulation measure.  211 + 19 = 230 T&M remainder.

So we now know that many parameters exist that define this kind of production.  And we have become aware of a predominant number of factors which reproduce themselves in branching numbers.  These numbers can be mapped and tied back to the Pascal pyramid defining the cube arrangement.



We see this adaptation like a very directed source of engineering progress made across the span of discovery and certainly within the last 100 years.   We hope that you will agree with us that these circumstances are quite a circumference around the inferential knowledge acquired and still progressing. 

We still have many topics to discuss in additional detail of which manifold engineering is still one of the best.  People think all of this is alien, and yet there are people all over the world versed in timelines and manifolds, yet they may be questioning why.

We learned to frame the production in a progression and complete the cube in a conversion process in more than one kind of production; we did this on a theoretical mathematical basis obviously.  But that is the start of seeing how it could work.




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Disclaimer: Blog material is presented as the basis of discussion material and is not to be construed as advice, counsel or education, and may at times be misconstrued if read in a context different than the writer's intent. No portion of this blog has been knowingly reproduced. Any resemblance to a specific company or entity is purely coincidental






















Unique Concepts of the Qve Cube

Content/Index

DPC

Distributive Power Concepts

SRQEM: QLD Energy Machine 

Qve Cube


What is Specific about the Qve Cube:

The Qve or Quantum Virtual Emulation of the Cube is quite a different out of the box way to think.   Redefining and remapping the Cube will begin to surface content that is now buried within enterprise software and confined process.  That is certainly an immediate benefit however:

Surfacing Content is a continuous chore.  With each new adaptive layer of discovery, new content is demanded from beneath the chores of tasking.  This eye to the agile and adaptive concept of Qve is the singular contribution of time based engineering. But from studying this type of Quantum, an individual can begin to see how much work there is involved in the process of defining specialty products.


  The continuous remapping requirements of both the inner cube and the outer cube may suggest that different models will be required.  So modeling is a very serious need in specifying the cube.

There are multiple considerations related to defining Spaces, Frames and Cube content.  All of this becomes virtual to the degree it can occupy an entire room or more.

Matrix definitions become a reindexing consideration of regenerating design applications virtually.  Just because we can't do everything now is know reason to dispute or refrain from stretching the requirements.

There can be no more VECTORs approach to specifications.  CONFIGURATORS are the better consideration in dealing with all Qve requirements.  It is no longer possible to design only a side of an object or surface VIEW.
Qve is always in multi-VIEW performance.

Thinking about a smaller machine running a larger machine is the best way to always consider Qve, but it may be quite multiplexed.  An Intelligent Artiface run by the User can be considered a great way to pack and to unpack contents, identify branches and connectors and many other features.

We did some out of the box thinking with our Proxy Girl IA seeing that she would have to run manifold features for us and observe the production activities.  We also had presented the case for our "Snoopy Skaters" to be our Active content manipulators.

We did some mathematical thinking on this topic just to understand the ideas.  Below we will identify some of this.

There are many different mapping techniques involved in this theory, both topological and topographical.

We noticed that time is used so many different ways, that time buckets are always remapping.   This theory of wrapping timelines and manifold design around the process is an important discussion.

Next we need to mention that <pipes and string> go together like <particles and tubes> and <glass and shields>.  So all requirements have bounds and frame considerations that must incorporate this idea.




We carefully configured our model to capture various views.  And within these views we tried to incorporate some iconic thinking.  But our model should not hinder a more correct consideration of the requirements.  More will become known and  our initial views will be superceded quickly.  Our thinking is not from product specification but from mathematical reference and could be quite different.


We had also begun to map Pascal in the Fibonacci tradition, but obviously the matrix of connectors should be mathematically originated.  What we learned from integrating graphics enabled us to identify the branch logic of each rung.


The advantage of layering models and generating views that enable terms and inferences to be relational can not be overestimated.  But the less obvious advantage of virtual objects in simple form  is that they can be picked up and moved like an image.  Moving a machine is a more serious consideration.  Content movement and replacement is a very big consideration but this kind of content is an app that carries with it a subscription to the Qve Virtual City.

We had to actually model the movement and transition of machines.  This topic we will save for another blog.

The Production Cube



We are not focusing on any superhero capabilities, but instead we are looking at views of virtual configurations that make us think in META realistic terms.  We think using models from historic icons or science fiction are great ways to incorporate motionable objects and time based considerations into the scheme.  Here we were looking at the breaker patterns and encryption ideas.  We used some graphical methods here worth mentioning. We used it to create the remote activation operations for our proxy girl idea.

In QLD Energy there are no conflicts as described in our last blog to prevent a smooth operating result.  However, as we will note, Time and Motion is a difficult emulation and simulation (to be discussed at a later date.)

We had used a workday basis calendar movement to work through critical path thinking in the past and we used this here to remind ourselves that the backfield is always in motion.  But not only that we saw it as a very good plotting device.

We used graphics all of the time to make objects that correlate to our model.  The ability to interpolate, graph, formulate and execute functions based on graphics should all be available content.  Because there is so much motionable Qve content, we found that when programming the timing of our machine could be correlated with the video and gave a very good demonstration of how long a process would take.  This can become a good instrument for scale.

Here we found that we had to create production that moved much faster to meet requirements and this is how we learned about production clock in graphical emulation.  We are quantum beginners but it taught us a great deal to build a process and clock it, then try to beat the speed by using an agile correlated set of timelines to build the process.

We had to create several standard arrays related to proxy girl, we found our posts and correlated everything back to our original QLD model.  But as we moved along we found that the more we had to build in a basket a series of products, the more our timing had to be correlated to a more refined scale.  Soon while we had developed an agile build with three co-ordinated timelines, in order to achieve the required conversion and scale, we had to move to the manifold arrangement.

We learned about the theory of the Clock, and the fact that by standardizing the clock all of our referential standards had to be in sync.  Here there will be no substitute for the ISO qualification of all metric requirements.  Because in order to fit the larger build of Utilities, the requirements need to be planned authoritatively.

Learning also needs to be step by step as it is new to mostly everyone.  So our work is really no substitute for starting at the beginning.  But our work constitutes an overview of the scoping out of initial ideas about Qve.  Media only alludes to the future, and ideas change.  Looking backward time and motion, the daisy rho pattern and the cube all share a virtual place in a city.




The Production Cube is a formal arrangement that exists in a Virtual paradigm.  Everything built and made has to fit the requirements.  So a cube that gives you access to the production staging, assembly and placement of objects is very important.  And a correlated cube that gives you access to the manifold is important.  We don't know how many timelines can run inside the production, but we only ever considered three.

Interestingly in this version of Quantum, all of the fusion elements can run on the production timeline and be set to fuse the objects or machines that are being made in a solid state virtual configuration.

The Production Cube is defined by a series of arrays determined on the basis of placement at the time of production.


The Timeline Approach vs The Manifold Approach

When do you use a Timeline vs a Manifold?  We discovered that objects can use a Timeline Approach when they are not part of a subassembly and do not require immediate use (which should be rare).  In that case it would be better to parm them onto another Order.

However, VRD or producing a basket of products within a specified distribution requirement can lead to the requirement for a manifold process.  In agile production delivery we considered the use of three timelines, and this will be discussed in another blog.

We took a considerable time studying the manifold and the requirements for moving, transitioning and delivering machines and products on a manifold based on mappings.  An example of this is below and will be discussed in detail in a later blog.

To technical people saying that we increased our production manifold by 5+ clocks is not stated correctly because you have 1 clock and you move to a position on the manifold that gives you a magnitude or power of scale correction to the speed of the production.  But to try to emphasize that you can cut off that much time from a project in Qve we stated in a plain vernacular way what most people would think about.

There is a lot of planning and thinking in Quantum Production but the ability to create products that conform to agile and adaptive requirements in a subscriber service, the opportunities are tremendous to consider working in an interesting industry in terms of systems, operations,
productions, or craft.



Unique to the Qve Cube is the ability to produce 1d, 2d, 3d, 4d, 5d, 6d, 7d, and 8d productions. See a specific blog on this topic at a later date.
read also:


Disclaimer: Blog material is presented as the basis of discussion material and is not to be construed as advice, counsel or education, and may at times be misconstrued if read in a context different than the writer's intent. No portion of this blog has been knowingly reproduced. Any resemblance to a specific company or entity is purely coincidental



























Delving into the Theory of QLD and Power Intelligence

Content/Index
Distributive Power Concepts: Unified Theory and Quonics

DPC Features

Quonics and the Unified Theory explained as a Feature
of Power Intelligent Quantum Science; Photosynthesis and Green Technology


What is Power Intelligence?

Power Intelligence is the use of power in a distributed format that creates maximum efficiency, maximum functional performance, low maintenance and risk, with greater output than input.  The ideal is Potential and perpetual motion continuity and sustainability.

What is Distributive Power?

Distributive Power is the capability to generate power from a grid of energy deliverables.  The construction of Green Technologies is the ability to generate energy digitally for delivery on a server.  The underlying technology relates to Nanotechnology.


Is there Current Science Developed around this Topic?

Yes, much of the work of the latter half of the 20th century was moving toward lighter metals and green technology but the scientific endeavors to actually produce it are just now coming into the forefront.


What implications does this Technology have for the Future?

The use of Quantum Capabilities promises a plethora of capability in the areas of Science, Technology and Architectural development. The ability to repackage energy on quantum dots allows for this energy to be
focused precisely to building and design spectrums.  META materials allows unique capabilities for developing specific virtual design glasses for building virtual cubes and machines that can be used to devise production of multi-View and multi-dimensional venues.

Photosynthetic cells promise the ability to generate 3d objects but also to build complex objects from layered imaging.

Content packaging and Digital delivery systems will be the application design performance spectrum for many years, as the techniques become more complex.

This will cause Media Modes to gain in the forefront of industrial process.

Various types of Modeling will be required in terms of Quantum emulation and later simulation. 

We see this developing into a Virtual City configuration with industrial centers for machine development and subscription.  Subscribing to an actual machine production of objects in the Flat Cloud will be the Supply chain for Business in a quantum based economy.

We may feel that one day we may be within the META state, but for now let us consider the Proxy idea and while we point to the BIOS changes, we do so tentatively.  For now it is interesting but not well specified.




What kind of Bios is Required?

We have some content developed on Bios but are not experts in the field, and others can describe all of these features with more focus and acuity.   The primary characteristic of the bios is that it must match the environment with perfect encryption characteristics.

However, we can offer some content here: complexity of bios requirements warns against oversimplification of processes.  But there is a specific set of requirements for adaptations to eliminate elements from the eventual paradigm of a new string composition.  We believe that history has been moving towards this change to a Quantum QLD particle string basis that is an energy based composition. But the bios is based on a protein synthesis in a photoelectric type of cell that is non-aerobic in its operative characteristics. We're not overly conscious of our bios and metabolic requirements except transitionally.





Our views on the subject generate some controversy, however, we ask that you take a holistic view to the content theory and decide if forensic attributes of various requirements indicate this historic theme.  Scientific content although brief is devised to recognize a layering of multiple techniques over time.  The primary benefit is sustainability and adaptation.

How would a system use the bios?

The stem approach to the bios recognizes Proxies as the best method to develop processes that incorporate persons and workflow.

What gauge and structure is QLD Energy String devised?

Qld energy is devised on the basis of the nano packaged flat atom which promotes the continues Rho motion of electrons around the shell.  This bios generation would be variable among objects but conceptually distinguishable from persons based on chirality and other complex basis. The Rho shell arrangement is called the Lamb shift and eliminates power input from the equation. The quark valence theory is a premise of unreadable gauge but also no energy signature, producing a highly secure and quantum verifiable system, controlled and delivered by accessible area and function.

What benefit does repackaging content offer?

The primary reason for format changes is always to bring another level of adaptation to the forefront.  But applying the right kind of packaging can offer the benefit of anticipating adaptation and providing for changes in recognition of future requirements.

Will new Quantum Production Capability offer active and personal participation?

The processor capability of intelligences and active requirements for quantum based skills suggest a great deal of work to develop a realism of effect in the quality of all production objects and venues.

What other features are part of the new Virtual Quantum based Cube?

Time and Motion requirements are the key features which change the Space-time theory to componentization of both a manifold delivery system with gates and a series of activity based compositions that generate Cube functionality and multi View production capability.


We have tested the idea of modeling in both a timeline format for agile production and in a manifold format for agile adaptation and we find that the process is more capable at higher speeds and smaller scales.  We will continue to discuss these models throughout our discussion.

What makes the capability of QLD more conducive to a refined level of production?

Eliminating friction and the need for a firewall, and driving ambient energies with quark level manipulations (quonics) creates the ability to develop very refined and intricate devices, including highly prized composite lens.  The ability to generate Discovery capabilities with human intelligences and activities make moving towards a different universal spectrum a leveragable concept.

How does the Unified Theory work?


The idea of using Intelligent Design to prosper the new Quantum is based on eliminating what would be hard wired features like gravity and using soft motivational techniques for parking and gridding such as in the case of containers, frames and structural architecture that is also Virtual but requiring different characteristics of secure performance.

Quonics can work as drivers in the same technique as applications work to perform functions such as turning, tuning and refining products.  Various types of Cube configurations come into use to perform all kinds of tasks both in terms of manifold delivery and activity rendering.

What other features do empty shells offer to QLD Sciences?



Empty shells can produce the EFFECT of the original atom or molecular combination, giving the appearance or deliver an approach to creating an effect like water.

This makes QLD Energy an activity based paradigm in the Quantum Cube.

Our use of modeling techniques allowed us to demonstrate the programmability of the ideas.



Disclaimer: Blog material is presented as the basis of discussion material and is not to be construed as advice, counsel or education, and may at times be misconstrued if read in a context different than the writer's intent. No portion of this blog has been knowingly reproduced. Any resemblance to a specific company or entity is purely coincidental