Condition: New.
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Condition: As New. Unread book in perfect condition.
Language: English
Published by John Wiley & Sons Inc, New York, 2012
ISBN 10: 047066942X ISBN 13: 9780470669426
Seller: Grand Eagle Retail, Bensenville, IL, U.S.A.
First Edition
Hardcover. Condition: new. Hardcover. This book provides researchers and engineers in the imaging field with the skills they need to effectively deal with nonlinear inverse problems associated with different imaging modalities, including impedance imaging, optical tomography, elastography, and electrical source imaging. Focusing on numerically implementable methods, the book bridges the gap between theory and applications, helping readers tackle problems in applied mathematics and engineering. Complete, self-contained coverage includes basic concepts, models, computational methods, numerical simulations, examples, and case studies. Provides a step-by-step progressive treatment of topics for ease of understanding.Discusses the underlying physical phenomena as well as implementation details of image reconstruction algorithms as prerequisites for finding solutions to non linear inverse problems with practical significance and value. Includes end of chapter problems, case studies and examples with solutions throughout the book.Companion website will provide further examples and solutions, experimental data sets, open problems, teaching material such as PowerPoint slides and software including MATLAB m files. Essential reading for Graduate students and researchers in imaging science working across the areas of applied mathematics, biomedical engineering, and electrical engineering and specifically those involved in nonlinear imaging techniques, impedance imaging, optical tomography, elastography, and electrical source imaging This book provides researchers and engineers in the imaging field with the skills they need to effectively deal with nonlinear inverse problems associated with different imaging modalities, including impedance imaging, optical tomography, elastography, and electrical source imaging. Shipping may be from multiple locations in the US or from the UK, depending on stock availability.
Condition: As New. Unread book in perfect condition.
Condition: New. Brand new! Please provide a physical shipping address.
Language: English
Published by John Wiley & Sons Inc, 2012
ISBN 10: 047066942X ISBN 13: 9780470669426
Seller: Kennys Bookshop and Art Galleries Ltd., Galway, GY, Ireland
First Edition
Condition: New. This book provides researchers and engineers in the imaging field with the skills they need to effectively deal with nonlinear inverse problems associated with different imaging modalities, including impedance imaging, optical tomography, elastography, and electrical source imaging. Num Pages: 374 pages, Illustrations. BIC Classification: TTBM. Category: (P) Professional & Vocational. Dimension: 250 x 171 x 22. Weight in Grams: 718. . 2012. 1st Edition. Hardcover. . . . .
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Add to basketCondition: New.
Language: English
Published by John Wiley & Sons Inc, 2012
ISBN 10: 047066942X ISBN 13: 9780470669426
Seller: Kennys Bookstore, Olney, MD, U.S.A.
Condition: New. This book provides researchers and engineers in the imaging field with the skills they need to effectively deal with nonlinear inverse problems associated with different imaging modalities, including impedance imaging, optical tomography, elastography, and electrical source imaging. Num Pages: 374 pages, Illustrations. BIC Classification: TTBM. Category: (P) Professional & Vocational. Dimension: 250 x 171 x 22. Weight in Grams: 718. . 2012. 1st Edition. Hardcover. . . . . Books ship from the US and Ireland.
Language: English
Published by John Wiley & Sons Inc, New York, 2012
ISBN 10: 047066942X ISBN 13: 9780470669426
Seller: CitiRetail, Stevenage, United Kingdom
First Edition
Hardcover. Condition: new. Hardcover. This book provides researchers and engineers in the imaging field with the skills they need to effectively deal with nonlinear inverse problems associated with different imaging modalities, including impedance imaging, optical tomography, elastography, and electrical source imaging. Focusing on numerically implementable methods, the book bridges the gap between theory and applications, helping readers tackle problems in applied mathematics and engineering. Complete, self-contained coverage includes basic concepts, models, computational methods, numerical simulations, examples, and case studies. Provides a step-by-step progressive treatment of topics for ease of understanding.Discusses the underlying physical phenomena as well as implementation details of image reconstruction algorithms as prerequisites for finding solutions to non linear inverse problems with practical significance and value. Includes end of chapter problems, case studies and examples with solutions throughout the book.Companion website will provide further examples and solutions, experimental data sets, open problems, teaching material such as PowerPoint slides and software including MATLAB m files. Essential reading for Graduate students and researchers in imaging science working across the areas of applied mathematics, biomedical engineering, and electrical engineering and specifically those involved in nonlinear imaging techniques, impedance imaging, optical tomography, elastography, and electrical source imaging This book provides researchers and engineers in the imaging field with the skills they need to effectively deal with nonlinear inverse problems associated with different imaging modalities, including impedance imaging, optical tomography, elastography, and electrical source imaging. Shipping may be from our UK warehouse or from our Australian or US warehouses, depending on stock availability.
Gebunden. Condition: New. Imaging techniques in science, engineering and medicine have evolved to expand our ability to visualize the electrical and mechanical properties of materials inside an object in the form of a cross-sectional image. There have been numerous research efforts .
Language: English
Published by John Wiley & Sons Inc, New York, 2012
ISBN 10: 047066942X ISBN 13: 9780470669426
Seller: AussieBookSeller, Truganina, VIC, Australia
First Edition
Hardcover. Condition: new. Hardcover. This book provides researchers and engineers in the imaging field with the skills they need to effectively deal with nonlinear inverse problems associated with different imaging modalities, including impedance imaging, optical tomography, elastography, and electrical source imaging. Focusing on numerically implementable methods, the book bridges the gap between theory and applications, helping readers tackle problems in applied mathematics and engineering. Complete, self-contained coverage includes basic concepts, models, computational methods, numerical simulations, examples, and case studies. Provides a step-by-step progressive treatment of topics for ease of understanding.Discusses the underlying physical phenomena as well as implementation details of image reconstruction algorithms as prerequisites for finding solutions to non linear inverse problems with practical significance and value. Includes end of chapter problems, case studies and examples with solutions throughout the book.Companion website will provide further examples and solutions, experimental data sets, open problems, teaching material such as PowerPoint slides and software including MATLAB m files. Essential reading for Graduate students and researchers in imaging science working across the areas of applied mathematics, biomedical engineering, and electrical engineering and specifically those involved in nonlinear imaging techniques, impedance imaging, optical tomography, elastography, and electrical source imaging This book provides researchers and engineers in the imaging field with the skills they need to effectively deal with nonlinear inverse problems associated with different imaging modalities, including impedance imaging, optical tomography, elastography, and electrical source imaging. Shipping may be from our Sydney, NSW warehouse or from our UK or US warehouse, depending on stock availability.