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LOW-CARBON PRINCIPLES AND SUSTAINABILITY RELATIONS OF THE RUBIK’S CUBE LAYER BY LAYER SOLUTION METHOD

Fogarassy, Csaba and Bakosné Böröcz, Mária and Rashad, Saleh Mohammed and Zsarnóczai J., Sándor (2014) LOW-CARBON PRINCIPLES AND SUSTAINABILITY RELATIONS OF THE RUBIK’S CUBE LAYER BY LAYER SOLUTION METHOD. JOURNAL OF CENTRAL EUROPEAN GREEN INNOVATION, 2 (4). pp. 29-52.

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Abstract

The various sustainability logics can be synchronised with the 3×3×3 Rubik’s Cube’s solution algorithms, and the relations of the cube’s sides define a planning strategy that provides a new scientific approach for renewable investment planning. We theoretically evaluated the various solution processes, and paralell sustainable investment planning levels following the solution levels and stages of the cube. After these various level-evaluations, we made „low-carbon interpretation” summaries. To show the various states of the cube, and to attach an explanation to the low-carbon interpretations, we used the Online Ruwix Cube Solver program. By solving the cube, we imitated the process of project development, meaning the road from complete disorder to the state of complete order. The complete state of equilibrium for Rubik’s Cube is the solved state. It’s not coincidence, that when someone sees a cube in disorder, their first idea is to solve it, since the desired state is the cube which has only single-colour sides. Rubik’s Cube has inherent harmony even in its colour setting, the choice of colours by the developer was intended, and the neighboring logic of colours is not the work of coincidence. Without the mistification of the cube, we can state that it alredy has an inherent and colorful harmony even in its visual appeal, that makes us suggest a seamless logic and perfect logic supports its construction. During the theoretical process analysis, the goal of demonstrating the various rotations was to show what kinds of cube interactions are supposed behind the advancement from state to state, meaning which cubes’/attributes’ effects on each other we have to analyse during the rotation process. We didn’t define the exact locations and interactions for these during the research, but the division of the process to phases did happen, and we also synced the solution phases to the mechanisms of project development.

Item Type: Article
Subjects: H Social Sciences / társadalomtudományok > H Social Sciences (General) / társadalomtudomány általában
H Social Sciences / társadalomtudományok > HB Economic Theory / közgazdaságtudomány
Q Science / természettudomány > QA Mathematics / matematika
SWORD Depositor: MTMT SWORD
Depositing User: MTMT SWORD
Date Deposited: 03 Apr 2015 07:55
Last Modified: 03 Apr 2015 07:55
URI: http://real.mtak.hu/id/eprint/23444

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