The use of electromagnetic waves is rapidly increasing in wireless communications and biomedical engineering, highlighting the need to study their interactions with human tissues. Previous studies, however, have not reached a consensus on how different electromagnetic frequencies affect biological tissue layers at both the cellular and thermal levels. This study aims to analyze near-field electromagnetic absorption in layered biological tissues, with a focus on the thyroid gland, which is highly exposed due to its anterior location in the neck. A one-dimensional multilayer tissue model representing the thyroid region was developed, incorporating accurate dielectric properties, including permittivity, conductivity, and density, based on data from the Italian National Research Council.
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Taschenbuch. Condition: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -The use of electromagnetic waves is rapidly increasing in wireless communications and biomedical engineering, highlighting the need to study their interactions with human tissues. Previous studies, however, have not reached a consensus on how different electromagnetic frequencies affect biological tissue layers at both the cellular and thermal levels. This study aims to analyze near-field electromagnetic absorption in layered biological tissues, with a focus on the thyroid gland, which is highly exposed due to its anterior location in the neck. A one-dimensional multilayer tissue model representing the thyroid region was developed, incorporating accurate dielectric properties, including permittivity, conductivity, and density, based on data from the Italian National Research Council. 100 pp. Englisch. Seller Inventory # 9786209600715
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Paperback. Condition: new. Paperback. The use of electromagnetic waves is rapidly increasing in wireless communications and biomedical engineering, highlighting the need to study their interactions with human tissues. Previous studies, however, have not reached a consensus on how different electromagnetic frequencies affect biological tissue layers at both the cellular and thermal levels. This study aims to analyze near-field electromagnetic absorption in layered biological tissues, with a focus on the thyroid gland, which is highly exposed due to its anterior location in the neck. A one-dimensional multilayer tissue model representing the thyroid region was developed, incorporating accurate dielectric properties, including permittivity, conductivity, and density, based on data from the Italian National Research Council. This item is printed on demand. Shipping may be from our UK warehouse or from our Australian or US warehouses, depending on stock availability. Seller Inventory # 9786209600715
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Taschenbuch. Condition: Neu. This item is printed on demand - Print on Demand Titel. Neuware -The use of electromagnetic waves is rapidly increasing in wireless communications and biomedical engineering, highlighting the need to study their interactions with human tissues. Previous studies, however, have not reached a consensus on how different electromagnetic frequencies affect biological tissue layers at both the cellular and thermal levels. This study aims to analyze near-field electromagnetic absorption in layered biological tissues, with a focus on the thyroid gland, which is highly exposed due to its anterior location in the neck. A one-dimensional multilayer tissue model representing the thyroid region was developed, incorporating accurate dielectric properties, including permittivity, conductivity, and density, based on data from the Italian National Research Council.VDM Verlag, Dudweiler Landstraße 99, 66123 Saarbrücken 100 pp. Englisch. Seller Inventory # 9786209600715
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Taschenbuch. Condition: Neu. nach der Bestellung gedruckt Neuware - Printed after ordering - The use of electromagnetic waves is rapidly increasing in wireless communications and biomedical engineering, highlighting the need to study their interactions with human tissues. Previous studies, however, have not reached a consensus on how different electromagnetic frequencies affect biological tissue layers at both the cellular and thermal levels. This study aims to analyze near-field electromagnetic absorption in layered biological tissues, with a focus on the thyroid gland, which is highly exposed due to its anterior location in the neck. A one-dimensional multilayer tissue model representing the thyroid region was developed, incorporating accurate dielectric properties, including permittivity, conductivity, and density, based on data from the Italian National Research Council. Seller Inventory # 9786209600715
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