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| File Information |
| Description |
A table 10x10 are 100 elements. Each element has inside one of 19 letters. With the null combination are 2000 possibilities. The XZ table (bidimensional monitor plane) and the letter in TY dimension are a 3D with 2000 possible combinations. In the program this is a visual matrix 25x80, like a minimum consolle. Of 2000 elements only one element is at up level, the others 1999 elements are at down level. The up element is in position (1,1). All this is a static frame obtained with a double for loop. With a repetition of it 2000 times is obtained a cube of 2000^2 elements. The program has no input. The execution program show the XZ movement of the up element from position (1,1) to position (10,10). The inanimated XZ movement is imaginary and it is reality inside perceptive system. The inanimated TY movement is reality, is the time execution program and it is 2000 steps. The perceptive TY movement is imaginary, are 2000 steps of execution program because the emotive TY movement is reality.
Formulas:
80 inanimated TY = 79 perceptive X + 1 perceptive Z
80 inanimated TY = 80 perceptive XZ
1999 inanimated TY = 1999 perceptive XZ
1999 inanimated TY = 79*25 perceptive X + 24 perceptive Z
2000 inanimated TY = 1999 perceptive XZ + 1 inanimated TY
2000 inanimated TY = 1999 perceptive XZ + 1 emotive TY
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| Acknowledgements |
This submission has inspired the following:
perception
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| MATLAB release |
MATLAB 6.1 (R12.1)
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