Implementación de modelos cuánticos biofísicos para el proceso fotosintético de la planta de Theobroma cacao Clon Luker 40
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The description of photosynthesis has been discussed widely and at length from the perspective of different areas of human knowledge, however, although various aspects and conditions have been established for this process, the lack of knowledge is still extensive; this is how the assimilation of it has been quantified, obtaining various variants in its description. In this work, the measurement of photosynthesis in Luker 40 clone cocoa trees was carried out, with different variations in the composition of RGB LED light emission: (R=34%, G=33%, B=33%), (R =70%, G=15%, B=15%), (R=15%, G=70%, B=15%) and (R=15%, G=15%, B=70%) issued by the accessory camera to the IRGA CIRAS 3 equipment with which the assimilation of . An analysis and comparison was carried out of the model proposed by the biologist Zi-Piao Ye, and the quadratic, rectangular hyperbolic and non-rectangular hyperbolic models, most used for the description of the process. The results demonstrate that the modified hyperbolic model is the one that models the photosynthesis of this cocoa clone with the best fit and presents greater consistency in the various light scenarios.
