dor_id: 26082

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590.#.#.d: Cada artículo es evaluado mediante una revisión ciega única. Los revisores son externos nacionales e internacionales.

510.0.#.a: Consejo Nacional de Ciencia y Tecnología (CONACyT), Sistema Regional de Información en Línea para Revistas Científicas de América Latina, el Caribe, España y Portugal (Latindex), Scientific Electronic Library Online (SciELO), Red de Revistas Científicas de América Latina y El Caribe, España y Portugal (RedALyC), Organización de Estados Iberoamericanos (CREDI), Actualidad Iberoamericana de Chile, Red Iberomericana de Innovación y Conocimiento Científico (REDIB), Science Direct, Directory of Open Acces Journals, Indice de Revistas Latinoamericanas en Ciencias (Periódica), Bibliografía Latinoamericana (Biblat), Índice Internacional de Revistas Actualidad Iberoamericana (CIT)

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336.#.#.a: Artículo

351.#.#.6: http://www.revistas.unam.mx/index.php/ingenieria/index

351.#.#.b: Ingeniería, Investigación y Tecnología

351.#.#.a: Artículos

harvesting_group: RevistasUNAM

270.1.#.p: Revistas UNAM. Dirección General de Publicaciones y Fomento Editorial, UNAM en revistas@unam.mx

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856.4.0.u: http://www.revistas.unam.mx/index.php/ingenieria/article/view/32237/29654

100.1.#.a: Gómez Aguilar, F.; Rosales García, J.; Guía Calderón, M.; Bernal Alvarado, J.

524.#.#.a: Gómez Aguilar, F., et al. (2012). Analysis of Equivalent Circuits for Cells: A Fractional Calculus Approach. Ingeniería Investigación y Tecnología; Vol 13, No 3, 2012. Recuperado de https://repositorio.unam.mx/contenidos/26082

245.1.0.a: Analysis of Equivalent Circuits for Cells: A Fractional Calculus Approach

502.#.#.c: Universidad Nacional Autónoma de México

561.1.#.a: Facultad de Ingeniería, UNAM

264.#.0.c: 2012

264.#.1.c: 2012-06-21

653.#.#.a: Electrical impedance; fractional calculus; fractional capacitor; electrical impedance; fractional calculus; fractional capacitor

506.1.#.a: La titularidad de los derechos patrimoniales de esta obra pertenece a las instituciones editoras. Su uso se rige por una licencia Creative Commons BY-NC-ND 4.0 Internacional, https://creativecommons.org/licenses/by-nc-nd/4.0/legalcode.es, fecha de asignación de la licencia 2012-06-21, para un uso diferente consultar al responsable jurídico del repositorio por medio del correo electrónico marciaglez@dirfing.unam.mx

884.#.#.k: http://www.revistas.unam.mx/index.php/ingenieria/article/view/32237

001.#.#.#: oai:ojs.phoenicis.tic.unam.mx:article/32237

041.#.7.h: spa

520.3.#.a: Fractional order systems are considered by many mathematicians the systems of the XXi century. The reason is that nature has proved to be best described in terms of systems composed of fractional order derivatives. This emerging area of research is slowly gaining more strength in engineering, biochemistry, medicine, biophysics, among others. This paper presents an analysis in the frequency domain equivalent of cellular systems described by equations of integer and fractional order; it also carries out an analysis in time domain in order to display the memory capacity of fractional systems. it presents the fractional differential equations equivalent models and simulations comparing integer and fractional order. fractional order systems are considered by many mathematicians the systems of the XXi century. The reason is that nature has proved to be best described in terms of systems composed of fractional order derivatives. This emerging area of research is slowly gaining more strength in engineering, biochemistry, medicine, biophysics, among others. This paper presents an analysis in the frequency domain equivalent of cellular systems described by equations of integer and fractional order; it also carries out an analysis in time domain in order to display the memory capacity of fractional systems. it presents the fractional differential equations equivalent models and simulations comparing integer and fractional order.

773.1.#.t: Ingeniería Investigación y Tecnología; Vol 13, No 3 (2012)

773.1.#.o: http://www.revistas.unam.mx/index.php/ingenieria/index

046.#.#.j: 2021-08-03 00:00:00.000000

022.#.#.a: ISSN impreso: 1405-7743

310.#.#.a: Trimestral

264.#.1.b: Facultad de Ingeniería, UNAM

758.#.#.1: http://www.revistas.unam.mx/index.php/ingenieria/index

handle: 00bde27500703462

harvesting_date: 2019-02-06 00:00:00.0

856.#.0.q: application/pdf

245.1.0.b: Analysis of Equivalent Circuits for Cells: A Fractional Calculus Approach

last_modified: 2021-08-12 16:00:00

license_url: https://creativecommons.org/licenses/by-nc-nd/4.0/legalcode.es

license_type: by-nc-nd

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Artículo

Analysis of Equivalent Circuits for Cells: A Fractional Calculus Approach

Gómez Aguilar, F.; Rosales García, J.; Guía Calderón, M.; Bernal Alvarado, J.

Facultad de Ingeniería, UNAM, publicado en Ingeniería, Investigación y Tecnología, y cosechado de Revistas UNAM

Licencia de uso

Procedencia del contenido

Cita

Gómez Aguilar, F., et al. (2012). Analysis of Equivalent Circuits for Cells: A Fractional Calculus Approach. Ingeniería Investigación y Tecnología; Vol 13, No 3, 2012. Recuperado de https://repositorio.unam.mx/contenidos/26082

Descripción del recurso

Autor(es)
Gómez Aguilar, F.; Rosales García, J.; Guía Calderón, M.; Bernal Alvarado, J.
Tipo
Artículo de Investigación
Área del conocimiento
Ingenierías
Título
Analysis of Equivalent Circuits for Cells: A Fractional Calculus Approach
Fecha
2012-06-21
Resumen
Fractional order systems are considered by many mathematicians the systems of the XXi century. The reason is that nature has proved to be best described in terms of systems composed of fractional order derivatives. This emerging area of research is slowly gaining more strength in engineering, biochemistry, medicine, biophysics, among others. This paper presents an analysis in the frequency domain equivalent of cellular systems described by equations of integer and fractional order; it also carries out an analysis in time domain in order to display the memory capacity of fractional systems. it presents the fractional differential equations equivalent models and simulations comparing integer and fractional order. fractional order systems are considered by many mathematicians the systems of the XXi century. The reason is that nature has proved to be best described in terms of systems composed of fractional order derivatives. This emerging area of research is slowly gaining more strength in engineering, biochemistry, medicine, biophysics, among others. This paper presents an analysis in the frequency domain equivalent of cellular systems described by equations of integer and fractional order; it also carries out an analysis in time domain in order to display the memory capacity of fractional systems. it presents the fractional differential equations equivalent models and simulations comparing integer and fractional order.
Tema
Electrical impedance; fractional calculus; fractional capacitor; electrical impedance; fractional calculus; fractional capacitor
Idioma
spa
ISSN
ISSN impreso: 1405-7743

Enlaces