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Orthogonal tensor (hypercube) assumes independent axes. Shear into parallelotope (hyper-rhomboid) models entangled dimensions. The shear angle encodes correlation strength; the Gram matrix of the shear IS the compression dictionary. 6 stack mappings: - PIST n-D: Cartesian → Bundle → Radial = hypercube → rhomboid → collapsed - Topological state machine: transition = shear on state tensor - N-D Gene Hypothesis: gene = n-D rhomboid, 3D structure = projection shadow - FAMM: preshaped delay = sheared time-domain rhomboid - OAC: latent cavity in sheared rhomboid space - Waveprobe: curvature = local shear angle of coordinate basis 3 compression interpretations + information gravity metric tensor
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747 B
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11 lines
747 B
Text
created: 20260507000000000
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modified: 20260507000000000
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tags: ResearchStack Hardware Compute Motherboard
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title: Motherboard Computational Substrate
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type: text/vnd.tiddlywiki
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! Motherboard Computational Substrate
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The motherboard computational substrate concept (`5-Applications/scripts/motherboard_computational.py`) treats the motherboard itself as a programmable computational fabric. Every bus, trace, and interface becomes an addressable compute resource. Integrates with the [[HDMI Compute Fabric]] for display-as-compute, the [[ASIC Topology]] for die-level routing, and PCIe computational controller for bus-level computation. Part of the hardware-as-compute strategy.
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Durable Source: `5-Applications/scripts/motherboard_computational.py`
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