How human mathematical intelligence and intellectual range play a role in morse law
all starting at the same IC beginning in 1974
10,000nm wide
The race to 1 zeta flop
level 1 - first main intel CPU
level 2 - first main intel CPU
level 3 - first main intel CPU
level 4 - first main intel CPU
level 5 - first main intel CPU
level 6 - first main intel CPU
level 7 - first main intel CPU
level 8 - first main intel CPU
1975 morse law in gear
1980
level 1 - Fast advanced RISC down to consumer domain, decent Convolutional AI, quite optimal string 3d graphics and inter-polygonal curve surfacing, reasonable global illumination, nice efficient physics modelling and great maths tools, AI accelerator chips and other accelerator chip and quantum and photonic research well under way for computing, Development environment more programming dynamic efficiency down to base machine code from a more advanced assembly language ,research, 400nm at 1024x common efficiency use. A workable green battery in research, Massive server based internet already connected to 200,000,000 people. collective might 16 Peta flops, first txt to b&w regulate sketch generator and a lot of AI work for better animations, modelling and simulations, social networking and youtube like platform.
level 2 - Good RISC chip, less AI advancement, Advanced efficient use of triangular polygon graphics good work towards good graphics extensions first graphics cards go on sale, 40,000,000 top people connected to a reasonable range of server space, good maths tools, 800nm 256x common efficiency use. collective might 2 PFlops, not bad chat bots.
level 3 Reasonable RISC, less advanced AI, good efficient use of polygon graphics reasonable work toward extending and making the graphics better especially for the time being for hollywood, Server Network 20,000,000 people, 0.6 PFlops 1MicroM, not to bad chat bots 128X common efficiency
level 4 Reasonable less advanced RISC, less advanced AI, efficient use of polygon graphics some not to bad work toward extending and making the graphics better especially for costly compute work in hollywood, 6,000,000 people connected, hollywood doing some first movies with computers quite a good range, 100 TFLOP's, 1 microM, okish chat bots. 64x common efficiency
level 5 - Basic well developed and Standardised RISC, less advanced AI, good use of polygon graphics not amazingly efficient a good bit of work to get some more movies look a little less reasonable for hollywood, okish chat bots, 4,000,000 connected, 1microM, 30 TFLOP's. okish chatbot but not that impressive. 32x common efficiency.
level 6 - Standardised RISC, less advanced AI, decent use of polygon graphics and some ok hollywood movies good for the times not amazing, 3,500,000 connected, 1.5MicroM, 8TFLOP. 16x common efficiency
level 7 - Reasonable RISC research with basic RISC available to consumers, some not to bad use of polygon graphics hollywood investigating the future of movies with computers, AI research early but moving ok, widows like OS popular, 3,000,000 connected, 1.4 TFLOP's, 1.8MicroM common. 4x common efficiency
level 8 - Basic RISC a few years away, Basic AI research, 800,000 people connected, very early polygon and 3d graphics research hollywood may experiment a little tater they are not that convinced yet, 2.8MicroM, 60 Gflops. 1x common efficiency
1985
level 1 - 180nm, 800PFlops, early optical speed ups and great progress in AI and Photonic quantum computing research for the day, Reasonable green battery on sale and full producible, great 3d graphics, Cloud computing on a large scale, connected 1.4 billion people full 4096x common efficiency, Brilliant compilers and coders and superb maths Research, mother data trait library and reasonable multi mind dynamic bot creation. strong vr research.
level 2 - 340nm, 80 PFLOP's, early optical speed up research going well quantum computing research good for the times, nice movies and games industry budding,400,000,000 connected,...
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