4D Volumetric Models of Nanotech Energy Components

Forums Personal Topics Unbidden Thoughts 4D Volumetric Models of Nanotech Energy Components

This topic contains 12 replies, has 1 voice, and was last updated by  josh September 8, 2022 at 1:54 pm.

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  • #121386

    josh

    There is a 3D+time or 4D grid where every small area has some properties of antenna,transmitter,& battery (is capacitor an okay type of math model across signal types???)

  • #121387

    josh

    Q: Why is the theory unknown while applications are widely deployed?

    A: Most applications are directly or indirectly functioning using crude feedback control of stable systems. In that scenario, they can stumble towards desired goals without a detailed system model or any degree of optimization. Artisans can develop heuristic models & optimizations which stand out for specific performance characteristics.

  • #121388

    josh

    Q:The type of modeling you are suggesting is unusual for antenna work because the background noise is dynamic & rarely white noise.

    A: Yep. Model that too.

  • #121389

    josh

    Q: Most of this nanotech was built to create targeted harassment & disease via covert EMF and pneumatic firing. Interesting applications in near field audio, visual cortex stimulation, health therapeuctics/muscle tone regulation, brain stimulation, pleasure stimulation, etc are found side effects. Is there some way to promote only positive usage of theory?

    A: There is no way to promote only positive usage of theory. But promotion of theory for positive purpose is easier & the applications are valuable, and increasing the populations understanding of this major, major form of international spy military terrorism is beneficial for all. So the positive effects of peace research far outweight the negative ones.

  • #121396

    josh

    Q: Spatial topology for wireless & electrical topology, bridged by special connectors may be quite different, yielding different parts of the same location in more than one topology.

    A: Yes, good point. The long range connections are an element of design, but there speed may be far slower and less efficient than electricity. I expect there will be different types of thread that have different sorts of propagation properties when looked at a macro level. But are they similar or different at the level where each tiny speck of thread is a different cell? Some have metal like elements & most don’t…

    Let’s say that 4D reality is always present but a given configuration can add additional graph toplogy reality on top of that.

  • #121417

    josh

    From an engineering design/environment POV, a person can, for example, wear a powered radio controller on their wrist with different adaptive specializations for desk, car, sleep, etc. Their signal should be able to bully the signals from war criminals controlling indirectly through telecom & cable & lots of IoT leaps. At least that’s true in the area of near harassment & sabotage. IC communication to remote places over networks needs the cooperation of leagues of allies – e.g. GT routes & Virtual DNS vs. the routes of various military flavors.

  • #121675

    josh

    The following situation may be a common phenomena at the granularity of modeling:

    For a given volumetric unit, we have different numbers with different strength/potency rankings for representing i) total electron charge density in the volume, ii) the rate of charge release at various surfaces, iii) the rate at which internal storage of charge is made available at a given surface.

    Is there a way to use the same modeling techniques at both macro & lower level micro modeling of the same volumetric unit? That would probably be an ideal recipe in some cases. What all does it cover?

  • #121676

    josh

    Would be nice to get some early laboratory testing/confirmation of key models.

    To that end, who can suggest tight experimental setups for key compounds that are actually be used in the field – i.e. sample source, sample acquisition, lab & measurement setup, & data collection?

  • #121685

    josh

    Some possible modules for devOps of Harware/Silicon/Design mfg with IoT might include generalation to layout on 3D sculpted surfaces – adherence/glue, insulation, glue,layout,cover…repeat

    • #121689

      josh

      For motivation, include flexible fabric, wristbands, headbands, smart home automation, smart furniture, etc. as application domains – mostly low power without peformance demands.

      • #121690

        josh

        Goggles are also an important but tough area to consider. For GT, the priority is developing an interface that is harder to spy on from nearby objects or long range surveillance. But for a competitive market, the mobile computing performance is also potentially an issue alongside comfort. Designs can consider another unit somewhere else nearby on on the body – should it always be required?

  • #122161

    josh

    Side note: In IoT/Radar etc. people are interested in best guess reconstruction of a larger scale 4D volumetric field based on sensor readings & stored knowledge of the sampling context.

    Math applications can view the “How to analyze & engineer 4D fields” with transmitters & receivers as theory related to how to approach the ill-posed, statistically regularized problems of inverse construction from sensors & pingers at the sensor locations.

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