Fractional Calculus in Medical and Health Science
Herausgeber: Kumar, Devendra; Singh, Jagdev
Fractional Calculus in Medical and Health Science
Herausgeber: Kumar, Devendra; Singh, Jagdev
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This book covers applications of fractional calculus used for medical and health science.
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This book covers applications of fractional calculus used for medical and health science.
Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Produktdetails
- Produktdetails
- Verlag: Taylor & Francis Ltd (Sales)
- Seitenzahl: 250
- Erscheinungstermin: 9. Oktober 2024
- Englisch
- Abmessung: 234mm x 156mm x 14mm
- Gewicht: 376g
- ISBN-13: 9780367514129
- ISBN-10: 0367514125
- Artikelnr.: 71581960
- Verlag: Taylor & Francis Ltd (Sales)
- Seitenzahl: 250
- Erscheinungstermin: 9. Oktober 2024
- Englisch
- Abmessung: 234mm x 156mm x 14mm
- Gewicht: 376g
- ISBN-13: 9780367514129
- ISBN-10: 0367514125
- Artikelnr.: 71581960
Devendra Kumar is an Assistant Professor in the Department of Mathematics, University of Rajasthan, Jaipur-302004, Rajasthan, India. He did his Master of Science (M.Sc.) in Mathematics and Ph.D. in Mathematics from University of Rajasthan, India. He primarily teaches the subjects like real and complex analysis, functional analysis, integral equations and special functions in post-graduate level course in mathematics. His area of interest is Mathematical Modelling, Special Functions, Fractional Calculus, Applied Functional Analysis, Nonlinear Dynamics, Analytical and Numerical Methods. He has published two books: Engineering Mathematics-I (2008), Engineering Mathematics-II (2013). His works have been published in the Nonlinear Dynamics, Chaos Solutions & Fractals, Physical A, Journal of Computational and Nonlinear Dynamics, Applied Mathematical Modelling, Entropy, Advances in Nonlinear Analysis, Romanian Reports in Physics, Applied Mathematics and Computation, Chaos and several other peer-reviewed international journals. His 130 research papers have been published in various Journals of repute with h-index of 30. He has attained a number of National and International Conferences and presented several research papers. He has also attended Summer Courses, Short Terms Programs and Workshops. Jagdev Singh is an Associate Professor in the Department of Mathematics, JECRC University, Jaipur-303905, Rajasthan, India. He did his Master of Science (M.Sc.) in Mathematics and Ph.D. in Mathematics from University of Rajasthan, India. He primarily teaches the subjects like mathematical modeling, real analysis, functional analysis, integral equations and special functions in post-graduate level course in mathematics. His area of interest is Mathematical Modelling, Mathematical Biology, Fluid Dynamics, Special Functions, Fractional Calculus, Applied Functional Analysis, Nonlinear Dynamics, Analytical and Numerical Methods. He has published three books: Advance Engineering Mathematics (2007), Engineering Mathematics-I (2008), Engineering Mathematics-II (2013). His works have been published in the Nonlinear Dynamics, Chaos Solutions & Fractals, Physica A, Journal of Computational and Nonlinear Dynamics, Applied Mathematical Modelling, Entropy, Advances in Nonlinear Analysis, Romanian Reports in Physics, Applied Mathematics and Computation, Chaos and several other peer-reviewed international journals. His 120 research papers have been published in various Journals of repute with h-index of 30. He has attained a number of National and International Conferences and presented several research papers. He has also attended Summer Courses, Short Terms Programs and Workshops.
1. Image edge detection using fractional conformable derivatives in
Liouville-Caputo sense for medical image processing 2. WHO child growth
standards modelling by variable-, fractional-order difference equation 3.
Fractional Calculus Approach in SIRS-SI Model for Malaria Disease with
Mittag-Leffler Law 4. Mathematical modelling and analysis of fractional
epidemic models using derivative with exponential kernel 5. Fractional
order mathematical model for cell cycle of tumour cell 6. Fractional Order
Model of Transmission Dynamics of HIV/AIDS with Effect of Weak CD4+ T-cells
7. Fractional dynamics of HIV-AIDS and cryptosporidiosis with lognormal
distribution 8. A Fractional Mathematical Model to Study the Effect of
Buffer and Endoplasmic Reticulum on Cytosolic Calcium Concentration in
Nerve Cells 9. Fractional SIR epidemic model of childhood disease with
Mittag-Leffler memory
Liouville-Caputo sense for medical image processing 2. WHO child growth
standards modelling by variable-, fractional-order difference equation 3.
Fractional Calculus Approach in SIRS-SI Model for Malaria Disease with
Mittag-Leffler Law 4. Mathematical modelling and analysis of fractional
epidemic models using derivative with exponential kernel 5. Fractional
order mathematical model for cell cycle of tumour cell 6. Fractional Order
Model of Transmission Dynamics of HIV/AIDS with Effect of Weak CD4+ T-cells
7. Fractional dynamics of HIV-AIDS and cryptosporidiosis with lognormal
distribution 8. A Fractional Mathematical Model to Study the Effect of
Buffer and Endoplasmic Reticulum on Cytosolic Calcium Concentration in
Nerve Cells 9. Fractional SIR epidemic model of childhood disease with
Mittag-Leffler memory
1. Image edge detection using fractional conformable derivatives in
Liouville-Caputo sense for medical image processing 2. WHO child growth
standards modelling by variable-, fractional-order difference equation 3.
Fractional Calculus Approach in SIRS-SI Model for Malaria Disease with
Mittag-Leffler Law 4. Mathematical modelling and analysis of fractional
epidemic models using derivative with exponential kernel 5. Fractional
order mathematical model for cell cycle of tumour cell 6. Fractional Order
Model of Transmission Dynamics of HIV/AIDS with Effect of Weak CD4+ T-cells
7. Fractional dynamics of HIV-AIDS and cryptosporidiosis with lognormal
distribution 8. A Fractional Mathematical Model to Study the Effect of
Buffer and Endoplasmic Reticulum on Cytosolic Calcium Concentration in
Nerve Cells 9. Fractional SIR epidemic model of childhood disease with
Mittag-Leffler memory
Liouville-Caputo sense for medical image processing 2. WHO child growth
standards modelling by variable-, fractional-order difference equation 3.
Fractional Calculus Approach in SIRS-SI Model for Malaria Disease with
Mittag-Leffler Law 4. Mathematical modelling and analysis of fractional
epidemic models using derivative with exponential kernel 5. Fractional
order mathematical model for cell cycle of tumour cell 6. Fractional Order
Model of Transmission Dynamics of HIV/AIDS with Effect of Weak CD4+ T-cells
7. Fractional dynamics of HIV-AIDS and cryptosporidiosis with lognormal
distribution 8. A Fractional Mathematical Model to Study the Effect of
Buffer and Endoplasmic Reticulum on Cytosolic Calcium Concentration in
Nerve Cells 9. Fractional SIR epidemic model of childhood disease with
Mittag-Leffler memory