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* Nanotechnical Atomic Imaging Software Development * * Chip Design Software Builds*................................................................................ *The Solution to the Schrodinger Wave Equation*
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 Softicon 5.0 G4 
 General (4X) Corporation Build Infotool 1        4 pp.          P-306.6               $50.00
 
      Corporate manufacturing of material energy field modeling MAVCAM software at
  the picoyoctometric scale will have a major advance with the G4 corporate system of
  consoles for management of 3D video chip model builds.  This system operates by an array
  of 16 CRQT Studios with 112 Netslates and 784 Workslates.  A G4 owner may choose
  special build features.  This G4 is intended to build nanoelectronic physics modeling chip design software.
       The build will be a very large scale project intended to give a higher level of science with glossy 3D video
  products.  The system will have ~8 separate management consoles for basic management, specialized Softicon
  shell tasks, and CRQT.net operations.  Below find a list of topics presented in the G4 Build Infotool 1.
       A complete guide to picoyoctometric MAVCAM, molecular or material animated video computer assisted
  modeling, is found in The Crystalon Door, which spells out the type of build needed for the science portions of 
  consoles.  This build is intended to produce picoyocto technical IC chip design software. 
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                     G4 General Corporation (4X)

                  MAVCAM Build Console System

                                Build Infotool1

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                   The G4 Console System is a planned software

    system which should be capable of semiautomated 

    management for ULSIC chip design software projects.  G4

    will produce MAVCAM of highly advanced, glossy commercial

    qualities.

 

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    Infotool 1 Topics

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    1.   Discounts on copyrights and patent rights.

    2.   Project dimensions.

    3.   Infotool includes infotools for SSW 1,2,3,4.

    4.   How a G4 works with Symmecon.

    5.   Commercial matters, product vending plan.

    6.   Flexibility of G4 build.

    7.   Superscreen operations.

    8.   How the full array of Softicon 1- 5 build systems will

           be assembled into one G4 console system.

    9.   The routinization of semiautomated hitech

           innovation at the picoyocto technical scale for 

           ultrascience and ultraengineering.

  10.   The scope of G4 MAVCAM as a synergistic 

           online and fixed media commercial event.

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  11.   How quality control fits in.

  12.   The direction of future Symmecon product lines.

  13.   Unification of science data marketing.

  14.   Advertising campaign event scheduling factor.

  15.   CRQT.net interface for G4 as a wide option.

  16.   Some ideas on G4 structured management.

 

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          Build for the G4 is a very large, difficult project in which the

    basic unit of the intended console system's output will be 3D

    animated interactive video atomic models.  This system should

    be designed to maximize the video modules' compatibility with

    existing IC chip design software and IC chip analysis software.

 

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     IC Chip Modeling as a Task of Femtotechnical

    Electron Imaging with Attotechnical Thermic

    Electron Topology

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            Transistorized silicon-based semiconductor integrated

   circuit chip design software enters a next generation of IC

   modeling with G4 megacomputing.  The 3D model of an

   integrated nanocircuit operated by electrons will have

   ultramagnification by GT integral MAVCAM to deliver the

   onscreen interactive imagery which electrical engineers can

   apply to solve design details at the pico or femtoscale.

 

            Each volume of a silicon wafer nanocircuit's component

   junctions, or film core material, may be examined by 3D

   ultraview to compare data for point mapping of nanophysics

   design detail.  A current or pulse of electrons should be modeled

   accurately enough to observe that flow in femtotechnical slow- 

   motion video as it travels through any junction or region.

   The unified relative quantum video display allows study of the   

   quantized heat fields of an IC chip as they build up at vulnerable 

   locales.

 

            This femtothermal tint is an important design feature, and 

   MAVCAM imaging should also display electron cutaway views 

   with picoyoctoscale thermic tints of quantum detail.  An image 

   quality of this RQT sort is capable of giving screen views for the 

   positrons, negative electric charge densities, and magnetic field

   topologies as animated video 3D scenes with data index panels

   in the sidebar.  A microchip's internal volme can be modeled to 

   examine single photon emergences and absorptions with the 

   femtoscale thermal, magnetic and electron waveparticle

   femtophysics details needed to design the next generation of IC 

   switches and other components.

 

           The IC chip modeling task of femtotechnical electron

   imaging with attotechnical thermic electron topology is

   achievable by Symmecon MAVCAM Softicon G4 planning.

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