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1999, IEEE Press series on electromagnetic wave theory., ISBN 0780334280, Volume 10, xv, 378
"This invaluable book provides a comprehensive framework for the formulation and solution ofnumerous problems involving the radiation, reception, propagation,... 
Electro-acoustic transducers | Mathematical models | Green's functions | Electromagnetic fields | Time-domain analysis | Antennas (Electronics) | Fields, Waves and Electromagnetics
Book
2002, ISBN 9780471222903, 201
A practical new approach that brings together circuit theory and field theory for the practicing engineer To put it frankly, the traditional education of most... 
Electromagnetic fields | Electromagnetic interference | Electronic apparatus and appliances | Electronic circuits
eBook
1995, ISBN 0195058232, xxii, 482
This book looks at the application of engineering science and technology to biological cells and tissues that are electrically conducting and excitable. It... 
Electrophysiology | Biomagnetism | neuroscience | Bioelectricity | Lead field theory | Engineering science | Magnetic fields | Tissues | Electric fields | Biological cells
Book
2006, 2nd ed., ISBN 019505038X, xvi, 611
This text is the second edition of this book. It expands the widely acclaimed 1981 book, filling more gaps between EEG and the physical sciences. EEG opens a... 
Brain | Electroencephalography | Electric fields | Electric properties | neuroscience | Choice of reference | Power and coherence | Electrode placement | Conscious experience | Eeg | Scalp potentials | Synaptic action | Synaptic sources | Volume conduction
Book
6. Full Text Structures and dynamic properties of the LiPF6 electrolytic solution under electric fields – a theoretical study (Electronic supplementary information (ESI) available: Partial charges from COMPASS force fields, interaction binding energies between ETFEC, DTFEC and EC, DMC and DEC molecules calculated in terms of the compass force filed, DFT M06-2X and DFT B3LYP methods, the plots of mean square displacement (MSD) versus time curves at different temperatures and the diffusion coefficient versus temperature, radial distribution functions of the Li+⋯Ocarbonyl with free electric field, calculated Li+ ion mean coordination number, geometries of the first solvation of Li+ optimized by DFT, distribution of the Li-ligands clusters in the ternary and quaternary solvents, radial distribution functions of F–H and Oc–H, diffusion coefficient of Li+ in three electrolytes at 298 K and 318 K, the plots of density of simulated box and average molecular dipole moment μeversus time under electric field, the plots of radial distribution functions between Li+ and different species, and of the mean coordination numbers of Li+ for EC–DMC–DEC–ETFEC with electric fields, the plots of radial distribution functions between Li+ and different species, and of the mean coordination numbers of Li+ for EC–DMC–DEC–DTFEC with electric fields, the plots of mean-square displacement as a function of time and diffusion coefficient at different electric fields for Li+ and PF6−, size and direction of the dipole moments of all the solvent molecules displayed with electric fields, drift velocity and ion mobility of 1.0 M Li+ ion in EC under an external electric field at 318 K, drift velocity and ion mobility of 0.7 M Li+ ion in EC under an external electric field at 318 K, the mean diffusion coefficient of all the species in the solutions at different temperature, transference number for Li+ at varying temperatures, dipole moment of molecule under electric field; values of &z.bgrt; from booth model. See DOI: 10.1039/c9cp00561g)
Physical Chemistry Chemical Physics : PCCP, ISSN 1463-9076, 01/2019, Volume 21, Issue 24, pp. 13186 - 13193
Fluorinated carbonates have attracted increasing attention in high-voltage lithium ion battery applications. Under free and electric fields, their... 
Electric contacts | Fluorine | Ionic mobility | Atomic properties | Ion charge | Carbonates | Diffusion | Diffusion coefficient | Permittivity | Electric fields | Distribution functions | Solvents | Dielectric strength | Computer simulation | Coordination numbers | Ions | Constants | High voltages | Field strength | Properties (attributes) | Solvation | Electrolytes | Dipole moments | Drift | Fluorination
Journal Article
2012, ISBN 9780521793018, Volume 9780521793018, xii, 568
The development of lasers capable of producing high-intensity pulses has opened a new area in the study of light-matter interactions. The corresponding laser... 
Physics | Electron-atom collisions | Floquet theory | Laser pulses, Ultrashort | Multiphoton processes | Multiphoton ionization
Book
IEEE Electron Device Letters, ISSN 0741-3106, 11/2016, Volume 37, Issue 11, pp. 1383 - 1386
A germanium-source vertical tunnel field-effect transistor with a field-enhanced high-κ layer (FEHL-VTFET) is proposed to improve the device performance. The... 
subthreshold slope | TFETs | Photonic band gap | Tunnel FET | field-enhancing engineering | Logic gates | Tunneling | Ions | steep-switching devices | Electric fields | Permittivity | ENGINEERING, ELECTRICAL & ELECTRONIC
Journal Article
Science, ISSN 0036-8075, 6/2006, Volume 312, Issue 5781, pp. 1780 - 1782
Using the freedom of design that metamaterials provide, we show how electromagnetic fields can be redirected at will and propose a design strategy. The... 
Phase velocity | Electromagnetism | Group velocity | Volume | Materials | Poyntings theorem | Cloaks | Reports | Magnetic fields | Electromagnetic fields | Electric fields | NEGATIVE INDEX | WAVES | METAMATERIALS | MULTIDISCIPLINARY SCIENCES | REFRACTION | Research | Analysis | Materials science
Journal Article
11. Full Text Simulations of 3-arm polyelectrolyte star brushes under external electric fields (Electronic supplementary information (ESI) available: Methodological details (Section I); snapshot of a row of 3-arm polyelectrolyte brushes under a stretching electric field (Fig. S1), brush center-of-mass height as a function of grafting density at different strengths of the external electric field for the neutral-stem PE brushes (Fig. S2), a comparison of the fraction of grafted chains in the up-state Rup and the population weight of grafted chains with their branching points above the mean height Hbp in response to external electric fields (Fig. S3), probability distributions of the angle αbranch formed by the two vectors connecting the branching point and the two free ends on the branches in each molecule at different strengths of external electric fields (Fig. S4), probability distributions of the angle αend at different strengths of external electric fields (Fig. S5), probability distributions of the free terminal monomers at different strengths of external electric fields at σg = 0.003 (Fig. S6), probability distributions of the charged monomers (a) and counterions (b) under different external electric fields for the neutral-stem brushes at low grafting density (Fig. S7); details of the derivation of the analytical self-consistent field theory (Section III), a schematic diagram of the Y-shaped neutral-stem brushes with a two-layered structure adopted in the approximate analytical model (Fig. S8). See DOI: 10.1039/c8sm02131g)
Soft Matter, ISSN 1744-683X, 01/2019, Volume 15, Issue 12, pp. 2560 - 2570
Langevin dynamics (LD) simulations have been performed to study the conformations and stratification of grafted three-arm polyelectrolyte (PE) stars in... 
Collapsing | Plasma | Brushes | Charging | Computer simulation | Self consistent fields | Chain branching | Polyelectrolytes | Chains | Density | Stems | Grafting | Monomers | Weight | Electrodes | Simulation | Mathematical analysis | Mathematical models | Field theory | Stratification | Electric fields
Journal Article
2012, ISBN 0123985056, ix, 102
In the study of Magnetic Positioning Equations, it is possible to calculate and create analytical expressions for the intensity of magnetic fields when the... 
Measurement | Magnetic fields | Mathematics | Magnetic fields - Mathematics
Book