6 research outputs found

    Hábitos saludables desde la educación física en los estudiantes del grado décimo del colegio san Rafael de Copacabana

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    Este proyecto, tiene como objetivo generar condiciones propicias para el mejoramiento de la calidad de vida de la comunidad educativa, promoviendo hábitos saludables en los aspectos nutricionales, higiénicos, físicos, psicológicos y de manejo del tiempo, mediante la implementación de estrategias educativas orientadas al logro de una escuela saludable.This project aims to generate conditions conducive to the improvement of the quality of life of the educational community, promoting healthy habits in nutritional, hygienic, physical, psychological and time management aspects, through the implementation of educational strategies aimed at achieving of a healthy school

    Hábitos saludables desde la educación física en los estudiantes del grado décimo del colegio san Rafael de Copacabana

    Get PDF
    Este proyecto, tiene como objetivo generar condiciones propicias para el mejoramiento de la calidad de vida de la comunidad educativa, promoviendo hábitos saludables en los aspectos nutricionales, higiénicos, físicos, psicológicos y de manejo del tiempo, mediante la implementación de estrategias educativas orientadas al logro de una escuela saludable.This project aims to generate conditions conducive to the improvement of the quality of life of the educational community, promoting healthy habits in nutritional, hygienic, physical, psychological and time management aspects, through the implementation of educational strategies aimed at achieving of a healthy school

    Radiation and Dust Sensor for Mars Environmental Dynamic Analyzer Onboard M2020 Rover

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    32 pags., 26 figs., 3 tabs. -- This article belongs to the Section Remote SensorsThe Radiation and Dust Sensor is one of six sensors of the Mars Environmental Dynamics Analyzer onboard the Perseverance rover from the Mars 2020 NASA mission. Its primary goal is to characterize the airbone dust in the Mars atmosphere, inferring its concentration, shape and optical properties. Thanks to its geometry, the sensor will be capable of studying dust-lifting processes with a high temporal resolution and high spatial coverage. Thanks to its multiwavelength design, it will characterize the solar spectrum from Mars' surface. The present work describes the sensor design from the scientific and technical requirements, the qualification processes to demonstrate its endurance on Mars' surface, the calibration activities to demonstrate its performance, and its validation campaign in a representative Mars analog. As a result of this process, we obtained a very compact sensor, fully digital, with a mass below 1 kg and exceptional power consumption and data budget features.This work has been funded with the help of the Spanish National Research, Development and Innovation Program, through the grants RTI2018-099825-B-C31, ESP2016-80320-C2-1-R and ESP2014-54256-C4-3-R. DT acknowledges the financial support from the Comunidad de Madrid for an “Atracción de Talento Investigador” grant (2018-T2/TIC10500). ASL is supported by Grant PID2019-109467GB-I00 funded by MCIN/AEI/10.13039/501100011033/ and by Grupos Gobierno Vasco IT1366-19. The US co-authors performed their work under sponsorship from NASA’s Mars 2020 project, from the Game Changing Development program within the Space Technology Mission Directorate, and from the Human Exploration and Operations Directorate.Peer reviewe

    Erratum to: Guidelines for the use and interpretation of assays for monitoring autophagy (3rd edition) (Autophagy, 12, 1, 1-222, 10.1080/15548627.2015.1100356

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    Guidelines for the use and interpretation of assays for monitoring autophagy (3rd edition)

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