Isbn: 9786208422103 - numerical simulation of emr on human heart tissue: numerical simulation of thermal effect of electromagnetic radiation on the human heart tissue using fdtd method (8 resultados)

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  • Idioma: Inglés

    Editorial: LAP LAMBERT Academic Publishing, 2025

    6208422108 / 9786208422103

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    Librería: California Books, Miami, FL, Estados Unidos de AmericaCalifornia Books

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    Editorial: KS Omniscriptum Publishing, 2025

    6208422108 / 9786208422103

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    Librería: PBShop.store US, Wood Dale, IL, Estados Unidos de AmericaPBShop.store US

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    PAP. Condición: New. New Book. Shipped from UK. Established seller since 2000.

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    Editorial: KS Omniscriptum Publishing, 2025

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    Librería: PBShop.store UK, Fairford, GLOS, Reino UnidoPBShop.store UK

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    PAP. Condición: New. New Book. Shipped from UK. Established seller since 2000.

  • Idioma: Inglés

    Editorial: LAP LAMBERT Academic Publishing, 2025

    6208422108 / 9786208422103

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    Librería: Ria Christie Collections, Uxbridge, Reino UnidoRia Christie Collections

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    Condición: New. In English.

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    Idioma: Inglés

    Editorial: LAP LAMBERT Academic Publishing, 2025

    6208422108 / 9786208422103

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    Librería: preigu, Osnabrück, Alemaniapreigu

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    Taschenbuch. Condición: Neu. Numerical Simulation of EMR on Human Heart Tissue | Numerical Simulation of thermal effect of Electromagnetic radiation on the human heart tissue using FDTD method | Khitam Elwasife (u. a.) | Taschenbuch | Englisch | 2025 | LAP LAMBERT Academic Publishing | EAN 9786208422103 | Verantwortliche Person für die EU: preigu GmbH & Co. KG, Lengericher Landstr. 19, 49078 Osnabrück, mail[at]preigu[dot]de | Anbieter: preigu.

  • Idioma: Inglés

    Editorial: LAP LAMBERT Academic Publishing Jan 2025, 2025

    6208422108 / 9786208422103

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    Librería: BuchWeltWeit Ludwig Meier e.K., Bergisch Gladbach, AlemaniaBuchWeltWeit Ludwig Meier e.K.

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    Taschenbuch. Condición: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -This book aims to present a Numerical Simulation of the effect of Electromagnetic radiation on the human heart tissue and to explore the effect of different frequencies In the electromagnetic spectrum( 900MHz, 1800MHz, 2400MHz) on Specific absorption rate (SAR), power density, the distribution of electromagnetic fields by Matlab program, and Finite-Difference Time-Domain (FDTD) method in 1D. We found that the heart tissue reacts more at 900 MHz compared to 1800 MHz and 2400 MHz, and the tissue absorption is higher at the lower frequency. Also, a mathematical analysis of electromagnetic radiation heating equations in a one-dimensional one-layer model has been discussed by numerically calculating the transient bioheat transfer equation and Maxwell's equations by using the finite difference method to predict the effects of thermal physics properties on the transient temperature of human heart tissue. the effects of various parameters on the temperature increase in the human heart tissue were considered such as electric field, magnetic field, thicknesses, and thermal conductivity of heart tissue. We found that the frequency most affecting the tissue is 900MHz. 84 pp. Englisch.

  • Idioma: Inglés

    Editorial: LAP LAMBERT Academic Publishing Jan 2025, 2025

    6208422108 / 9786208422103

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    Librería: buchversandmimpf2000, Emtmannsberg, BAYE, Alemaniabuchversandmimpf2000

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    Taschenbuch. Condición: Neu. This item is printed on demand - Print on Demand Titel. Neuware -This book aims to present a Numerical Simulation of the effect of Electromagnetic radiation on the human heart tissue and to explore the effect of different frequencies In the electromagnetic spectrum( 900MHz, 1800MHz, 2400MHz) on Specific absorption rate (SAR), power density, the distribution of electromagnetic fields by Matlab program, and Finite-Difference Time-Domain (FDTD) method in 1D. We found that the heart tissue reacts more at 900 MHz compared to 1800 MHz and 2400 MHz, and the tissue absorption is higher at the lower frequency. Also, a mathematical analysis of electromagnetic radiation heating equations in a one-dimensional one-layer model has been discussed by numerically calculating the transient bioheat transfer equation and Maxwell's equations by using the finite difference method to predict the effects of thermal physics properties on the transient temperature of human heart tissue. the effects of various parameters on the temperature increase in the human heart tissue were considered such as electric field, magnetic field, thicknesses, and thermal conductivity of heart tissue. We found that the frequency most affecting the tissue is 900MHz.VDM Verlag, Dudweiler Landstraße 99, 66123 Saarbrücken 84 pp. Englisch.

  • Idioma: Inglés

    Editorial: LAP LAMBERT Academic Publishing, 2025

    6208422108 / 9786208422103

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    Librería: AHA-BUCH GmbH, Einbeck, AlemaniaAHA-BUCH GmbH

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    EUR 84,63

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    Taschenbuch. Condición: Neu. nach der Bestellung gedruckt Neuware - Printed after ordering - This book aims to present a Numerical Simulation of the effect of Electromagnetic radiation on the human heart tissue and to explore the effect of different frequencies In the electromagnetic spectrum( 900MHz, 1800MHz, 2400MHz) on Specific absorption rate (SAR), power density, the distribution of electromagnetic fields by Matlab program, and Finite-Difference Time-Domain (FDTD) method in 1D. We found that the heart tissue reacts more at 900 MHz compared to 1800 MHz and 2400 MHz, and the tissue absorption is higher at the lower frequency. Also, a mathematical analysis of electromagnetic radiation heating equations in a one-dimensional one-layer model has been discussed by numerically calculating the transient bioheat transfer equation and Maxwell's equations by using the finite difference method to predict the effects of thermal physics properties on the transient temperature of human heart tissue. the effects of various parameters on the temperature increase in the human heart tissue were considered such as electric field, magnetic field, thicknesses, and thermal conductivity of heart tissue. We found that the frequency most affecting the tissue is 900MHz.