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160413s2016 enka ob 001 0 eng d |
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|a YDXCP
|b eng
|e pn
|c YDXCP
|d OCLCO
|d CN3GA
|d OCLCO
|d OCLCF
|d UIU
|d MYG
|d BUF
|d EBLCP
|d KNOVL
|d OCLCQ
|d IDB
|d NRC
|d MERUC
|d OCLCQ
|d OCLCO
|d CEF
|d RRP
|d OCLCQ
|d OCLCO
|d LVT
|d OCLCQ
|d OCLCO
|d OCLCQ
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|d OCLCO
|d OCLCQ
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|d OCLCQ
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|a 946788599
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|a 9781613531792
|q (electronic bk.)
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|a 1613531796
|q (electronic bk.)
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|a 9781523102327
|q (electronic bk.)
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|a 1523102322
|q (electronic bk.)
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|z 9781613531754
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|z 1613531753
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|a (OCoLC)946606274
|z (OCoLC)946788599
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|a TK6565.A6
|b E47 2016
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0 |
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|a 621.382/4
|2 22
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049 |
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|a UAMI
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100 |
1 |
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|a Elsherbeni, Atef Z.,
|e author.
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245 |
1 |
4 |
|a The finite-difference time-domain for electromagnetics :
|b with MATLAB simulations /
|c Atef Elsherbeni and Veysel Demir.
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250 |
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|a Second edition.
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264 |
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1 |
|a Stevenage :
|b Institution of Engineering and Technology,
|c 2016.
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300 |
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|a 1 online resource
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336 |
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|a text
|b txt
|2 rdacontent
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|a computer
|b c
|2 rdamedia
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338 |
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|a online resource
|b cr
|2 rdacarrier
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490 |
1 |
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|a ACES Series on Computaional Electromagnetics and Engineering
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505 |
0 |
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|a List of figures; List of tables; Preface; Acknowledgements; 1. Introduction to FDTD; 1.1. The finite-difference time-domain method basic equations; 1.2. Approximation of derivatives by finite differences; 1.3. FDTD updating equations for three-dimensional problems; 1.4. FDTD updating equations for two-dimensional problems; 1.5. FDTD updating equations for one-dimensional problems; 1.6. Exercises; 2. Numerical stability and dispersion; 2.1. Numerical stability; 2.2. Numerical dispersion; 2.3. Exercises; 3. Building objects in the Yee grid; 3.1. Definition of objects.
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|a 3.2. Material approximations3.3. Subcell averaging schemes for tangential and normal components; 3.4. Defining objects snapped to the Yee grid; 3.5. Creation of the material grid; 3.6. Improved eight-subcell averaging; 3.7. Exercises; 4. Active and passive lumped elements; 4.1. FDTD updating equations for lumped elements; 4.2. Definition, initialization, and simulation of lumped elements; 4.3. Simulation examples; 4.4. Exercises; 5. Source waveforms and time to frequency domain transformation; 5.1. Common source waveforms for FDTD simulations.
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|a 5.2. Definition and initialization of source waveforms for FDTD simulations5.3. Transformation from time domain to frequency domain; 5.4. Simulation examples; 5.5. Exercises; 6. S-Parameters; 6.1. Scattering parameters; 6.2. S-Parameter calculations; 6.3. Simulation examples; 6.4. Exercises; 7. Perfectly matched layer absorbing boundary; 7.1. Theory of PML; 7.2. PML equations for three-dimensional problem space; 7.3. PML loss functions; 7.4. FDTD updating equations for PML and MATLAB implementation; 7.5. Simulation examples; 7.6. Exercises; 8. Advanced PML formulations.
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505 |
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|a 8.1. Formulation of CPML8.2. The CPML algorithm; 8.3. CPML parameter distribution; 8.4. MATLAB implementation of CPML in the three-dimensional FDTD method; 8.5. Simulation examples; 8.6. CPML in the two-dimensional FDTD method; 8.7. MATLAB implementation of CPML in the two-dimensional FDTD method; 8.8. Auxiliary differential equation PML; 8.9. Exercises; 9. Near-field to far-field transformation; 9.1. Implementation of the surface equivalence theorem; 9.2. Frequency domain near-field to far-field transformation; 9.3. MATLAB implementation of near-field to far-field transformation.
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|a 9.4. Simulation examples9.5. Exercises; 10. Thin-wire modeling; 10.1. Thin-wire formulation; 10.2. MATLAB implementation of the thin-wire formulation; 10.3. Simulation examples; 10.4. An improved thin-wire model; 10.5. MATLAB implementation of the improved thin-wire formulation; 10.6. Simulation example; 10.7. Exercises; 11. Scattered field formulation; 11.1. Scattered field basic equations; 11.2. The scattered field updating equations; 11.3. Expressions for the incident plane waves; 11.4. MATLAB implementation of the scattered field formulation; 11.5. Simulation examples; 11.6. Exercises.
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|a This book introduces the powerful Finite-Difference Time-Domain method to students and interested researchers and readers. An effective introduction is accomplished using a step-by-step process that builds competence and confidence in developing complete working codes for the design and analysis of various antennas and microwave devices.
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590 |
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|a Knovel
|b ACADEMIC - Electrical & Power Engineering
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590 |
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|a Knovel
|b ACADEMIC - General Engineering & Project Administration
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630 |
0 |
0 |
|a MATLAB.
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630 |
0 |
7 |
|a MATLAB.
|2 fast
|0 (OCoLC)fst01365096
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650 |
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0 |
|a Antenna radiation patterns.
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650 |
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0 |
|a Electromagnetic waves.
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650 |
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0 |
|a Antennas (Electronics)
|
650 |
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0 |
|a Numerical analysis
|x Computer programs.
|
650 |
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6 |
|a Diagrammes de rayonnement d'une antenne.
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650 |
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6 |
|a Ondes électromagnétiques.
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650 |
|
6 |
|a Antennes (Électronique)
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650 |
|
7 |
|a electromagnetic radiation.
|2 aat
|
650 |
|
7 |
|a Antenna radiation patterns.
|2 fast
|0 (OCoLC)fst00810037
|
650 |
|
7 |
|a Antennas (Electronics)
|2 fast
|0 (OCoLC)fst00810043
|
650 |
|
7 |
|a Electromagnetic waves.
|2 fast
|0 (OCoLC)fst00906574
|
650 |
|
7 |
|a Numerical analysis
|x Computer programs.
|2 fast
|0 (OCoLC)fst01041276
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650 |
|
7 |
|a computational electromagnetics.
|2 inspect
|
650 |
|
7 |
|a electromagnetic wave scattering.
|2 inspect
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650 |
|
7 |
|a finite difference time-domain analysis.
|2 inspect
|
650 |
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7 |
|a graphics processing units.
|2 inspect
|
650 |
|
7 |
|a lumped parameter networks.
|2 inspect
|
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7 |
|a numerical stability.
|2 inspect
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650 |
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7 |
|a S-parameters.
|2 inspect
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650 |
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|a time-frequency analysis.
|2 inspect
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700 |
1 |
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|a Demir, Veysel,
|d 1974-
|e author.
|
776 |
0 |
8 |
|i Print version:
|z 9781613531754
|z 1613531753
|w (OCoLC)896854515
|
830 |
|
0 |
|a ACES series on computational electromagnetics and engineering.
|
856 |
4 |
0 |
|u https://appknovel.uam.elogim.com/kn/resources/kpFDTDMEM7/toc
|z Texto completo
|
938 |
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|a EBL - Ebook Library
|b EBLB
|n EBL4504057
|
938 |
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|a YBP Library Services
|b YANK
|n 12943238
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994 |
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|a 92
|b IZTAP
|