Una Introducción a los presupuestos conservativos
Keywords:
Budget, Conservation, Energy, Climate
Abstract
This paper presents links between the concept of Budget from Economics to Physics, from a simple domestic view to the energy budget in Physics, and shows its relationship with conservation. We address the issue of Earth’s energy budget.
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References
1. Hecht, E., Energy Conservation Simplified, Phys. Teach. 46, 77, 2008. doi: 10.1119/1.2834526
2. Moreno, J., Can mechanical energyvanish into thin air?, American Journal of Physics 86, 220, 2018. doi: 10.1119/1.5019022
3. Rodríguez Gómez, J.M., F. Carlesso, L.E. Vieira, L. Da Silva, A irradiância solar: conceitos básicos, Revista Brasileira de Ensino de Física, vol. 40, no 3, e3312, 2018. DOI: dx.doi.org/10.1590/1806-9126-RBEF-2017-0342
4. Khavrus V., and I. Shelevytsky, Geometry and the physics of seasons, Phys. Educ. 47, 680, 2012. doi:10.1088/0031-9120/47/6/680
5. Karabanov, O., J.C. St. John, andW. Chameides, Planets on the table: A laboratory experiment on radiation and
planetary effective-temperature concepts, American Journal of Physics, 76, 692, 2008. doi: 10.1119/1.2894524
6. Ribeiro, C.I., Blackbody Radiation from an Incandescent Lamp, The Physics Teacher 52, 371, 2014. doi: 10.1119/1.4893096
7. Trenberth, K.E., J.T. Fasullo, and J. Kiehl, EARTH’S GLOBAL ENERGY BUDGET, Bulletin of the American Meteorological Society, March, 1-13, 2009. DOI:10.1175/2008BAMS2634.1
8. Wild, M., A. Ohmura, C. Schär, G. Müller, D. Folini, M. Schwarz, M. Z. Hakuba, and A. Sanchez-Lorenzo, The Global Energy Balance Archive (GEBA) version 2017: a database for worldwide measured surface energy fluxes, Earth Syst. Sci. Data, 9, 601–613, 2017. doi.org/10.5194/essd-9-601-2017
9. García-Cueto, R., N. Santillán-Soto, Z. Haro-Rincón and S. Ojeda-Benítez, Parameterization of net radiation in an arid city of northwestern Mexico. Atmósfera 28 (2), 71-82, 2015. doi: 10.20937/ATM.2015.28.02.01
10. Zuluaga, C.F., A. Avila-Diaz, F.B. Justino, A.B. Wilson, Climatology and trends of downward shortwave radiation over Brazil, Atmospheric Research, 250, 2021.
doi.org/10.1016/j.atmosres.2020.105347
11. Read, P.L., J. Barstow, B. Charnay, S. Chelvaniththilan, P.G.J. Irwin, S. Knight, S. Lebonnois, S.R. Lewis, J. Mendonc, and L. Montaboneb, Global energy budgets and ‘Trenberth diagrams’ for the climates of terrestrial and gas giant planets, Q. J. R. Meteorol. Soc. 142: 703–720, 2016. DOI:10.1002/qj.2704
12. Schwartz, S.E., Resource Letter GECC-2: The Greenhouse Effect and Climate Change: The Intensified Greenhouse Effect, American Journal of Physics 86, 565, 2018. doi: 10.1119/1.5045574
13. Garduño, R., El veleidoso clima (Fondo de Cultura Económica, Colección la ciencia para todos no. 127, México D.F., 1998), p. 21-80.
14. Donohoe, A., & Battisti, D.S., Atmospheric and Surface Contributions to Planetary Albedo, Journal of Climate, 24 (16), 4402-4418, 2011. doi.org/10.1175/2011JCLI3946.1
2. Moreno, J., Can mechanical energyvanish into thin air?, American Journal of Physics 86, 220, 2018. doi: 10.1119/1.5019022
3. Rodríguez Gómez, J.M., F. Carlesso, L.E. Vieira, L. Da Silva, A irradiância solar: conceitos básicos, Revista Brasileira de Ensino de Física, vol. 40, no 3, e3312, 2018. DOI: dx.doi.org/10.1590/1806-9126-RBEF-2017-0342
4. Khavrus V., and I. Shelevytsky, Geometry and the physics of seasons, Phys. Educ. 47, 680, 2012. doi:10.1088/0031-9120/47/6/680
5. Karabanov, O., J.C. St. John, andW. Chameides, Planets on the table: A laboratory experiment on radiation and
planetary effective-temperature concepts, American Journal of Physics, 76, 692, 2008. doi: 10.1119/1.2894524
6. Ribeiro, C.I., Blackbody Radiation from an Incandescent Lamp, The Physics Teacher 52, 371, 2014. doi: 10.1119/1.4893096
7. Trenberth, K.E., J.T. Fasullo, and J. Kiehl, EARTH’S GLOBAL ENERGY BUDGET, Bulletin of the American Meteorological Society, March, 1-13, 2009. DOI:10.1175/2008BAMS2634.1
8. Wild, M., A. Ohmura, C. Schär, G. Müller, D. Folini, M. Schwarz, M. Z. Hakuba, and A. Sanchez-Lorenzo, The Global Energy Balance Archive (GEBA) version 2017: a database for worldwide measured surface energy fluxes, Earth Syst. Sci. Data, 9, 601–613, 2017. doi.org/10.5194/essd-9-601-2017
9. García-Cueto, R., N. Santillán-Soto, Z. Haro-Rincón and S. Ojeda-Benítez, Parameterization of net radiation in an arid city of northwestern Mexico. Atmósfera 28 (2), 71-82, 2015. doi: 10.20937/ATM.2015.28.02.01
10. Zuluaga, C.F., A. Avila-Diaz, F.B. Justino, A.B. Wilson, Climatology and trends of downward shortwave radiation over Brazil, Atmospheric Research, 250, 2021.
doi.org/10.1016/j.atmosres.2020.105347
11. Read, P.L., J. Barstow, B. Charnay, S. Chelvaniththilan, P.G.J. Irwin, S. Knight, S. Lebonnois, S.R. Lewis, J. Mendonc, and L. Montaboneb, Global energy budgets and ‘Trenberth diagrams’ for the climates of terrestrial and gas giant planets, Q. J. R. Meteorol. Soc. 142: 703–720, 2016. DOI:10.1002/qj.2704
12. Schwartz, S.E., Resource Letter GECC-2: The Greenhouse Effect and Climate Change: The Intensified Greenhouse Effect, American Journal of Physics 86, 565, 2018. doi: 10.1119/1.5045574
13. Garduño, R., El veleidoso clima (Fondo de Cultura Económica, Colección la ciencia para todos no. 127, México D.F., 1998), p. 21-80.
14. Donohoe, A., & Battisti, D.S., Atmospheric and Surface Contributions to Planetary Albedo, Journal of Climate, 24 (16), 4402-4418, 2011. doi.org/10.1175/2011JCLI3946.1
Published
2021-09-24
How to Cite
Morett, S., & Herrera, E. (2021). Una Introducción a los presupuestos conservativos. Contactos, Revista De Educación En Ciencias E Ingeniería, (121), 6-12. Retrieved from https://contactos.izt.uam.mx/index.php/contactos/article/view/136
Section
Artículos