Partitioning a Many-Dimensional Containment Space
| AUTHOR | Concoyle, Martin |
| PUBLISHER | Trafford Publishing (01/14/2014) |
| PRODUCT TYPE | Paperback (Paperback) |
Description
This book is an introduction to the simple math patterns used to describe fundamental, stable, spectral-orbital physical systems (represented as discrete hyperbolic shapes). The containment set has many dimensions, and these dimensions possess macroscopic geometric properties (which are discrete hyperbolic shapes). Thus, it is a description that transcends the idea of materialism (i.e., it is higher-dimensional), and it can also be used to model a life-form as a unified, high-dimension, geometric construct, which generates its own energy and which has a natural structure for memory, where this construct is made in relation to the main property of the description being the spectral properties of both material systems and of the metric-spaces that contain the material systems, where material is simply a lower dimension metric-space and where both material components and metric-spaces are in resonance with the containing space.
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Product Format
Product Details
ISBN-13:
9781490723686
ISBN-10:
1490723684
Binding:
Paperback or Softback (Trade Paperback (Us))
Content Language:
English
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Page Count:
794
Carton Quantity:
5
Product Dimensions:
7.50 x 1.58 x 9.25 inches
Weight:
2.95 pound(s)
Country of Origin:
US
Subject Information
BISAC Categories
Reference | General
Reference | General
Reference | General
Descriptions, Reviews, Etc.
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This book is an introduction to the simple math patterns used to describe fundamental, stable, spectral-orbital physical systems (represented as discrete hyperbolic shapes). The containment set has many dimensions, and these dimensions possess macroscopic geometric properties (which are discrete hyperbolic shapes). Thus, it is a description that transcends the idea of materialism (i.e., it is higher-dimensional), and it can also be used to model a life-form as a unified, high-dimension, geometric construct, which generates its own energy and which has a natural structure for memory, where this construct is made in relation to the main property of the description being the spectral properties of both material systems and of the metric-spaces that contain the material systems, where material is simply a lower dimension metric-space and where both material components and metric-spaces are in resonance with the containing space.
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