Browsing by Author "Ulloa Arizaga, Edgar Santiago"
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Item El software GeoGebra como recurso didáctico para la enseñanza de sólidos de revolución: una propuesta didáctica para la Facultad de Arquitectura de la Universidad de Cuenca(Universidad de Cuenca, 2024-07-10) Ulloa Arizaga, Edgar Santiago; Illescas Peña, Lourdes EugeniaThis research examined the impact caused by using a didactic sequence guide with the support of the GeoGebra software in teaching the applications of the definite integral, in the students of the subject of Mathematics 2 of the Architecture major of the University of Cuenca, during the academic period September 2023-February 2024. For this purpose, four didactic sequences were designed that try to cover all these topics, which were applied following a quasi-experimental methodology with a quantitative and correlational approach. We worked with two groups; Group 1 of the second semester was the control group and group 2 were the experimental group. Furthermore, as variables for this research, we worked with the student's academic performance and motivation. To collect the information, a knowledge test and a perception survey were used, which were validated using expert criteria. The conclusion was reached, after having done a statistical analysis such as the Student T test in conjunction with tests such as the Shapiro-Wilk and Levene, that the didactic sequences proposed with the help of GeoGebra improved the academic performance of the students in the group. experimental in relation to those in the control group and in turn increased the student's motivation since they were more predisposed to learn these topics.Item Optimización energética en una vivienda unifamiliar de Cuenca: automatización y domótica para sostenibilidad y eficiencia en recursos(Universidad de Cuenca, 2024-08-05) Astudillo Picón, Pedro Elián; González Hidrovo, Elián Oswaldo; Ulloa Arizaga, Edgar SantiagoWithin the management of a single-family home, there are four main objectives: real-time data monitoring and analysis, resource optimization, integration of home automation technology, and reduction of operational costs. The energy consumption of the current state of the home and a simulation with the implementation of passive architecture, and automation in the different electronic devices within it are analyzed. Software is used for energy simulation plus power and demand calculation for a more detailed analysis. The methodology employs a comparative causal approach. The process begins with different stages: data collection, energy bills, equipment and device count, power, energy consumption, and hours of use, simulation, comparison, and generation of recommendations. This work aims to serve as a guide for existing and future homes by providing information on how the implementation of passive architecture, and equipment automation positively influence electricity consumption costs. This approach ensures that the research is effective and grounded.
