C Specific heat at constant pressure p D Displacement field D Diffusion coefficient d D Orifice diameter E Electric field E Electron charge F Force G Acceleration due to gravity I Current J Current flux K Conductivity k Boltzmann constant B L Atomizer geometry: length from electrode tip to orifice plane i L Atomizer geometry : length of orifice channel o P Polarization Q Flow rate/Heat flux Q Charge r Atomizer geometry : electrode tip radius p T Time T Temperature U Velocity V Voltage W Energy X Distance Nomenclature (Greek) Thermal expansion coefficient ? Permittivity ? Permutation operator ? ijk Ion mobility ? VI Nomenclature Debye length ? D ? Dynamic viscosity ? Mass density Surface tension ? T Electrical conductivity ? ? Timescale ? Vorticity Nomenclature (Subscripts) Reference state ? o Cartesian tensor notation ? ijk Volume density (? per unit volume) ? v Surface density (? per unit area) ? s Linear density (? per unit length) ? l ’critical’ state ? c Bulk mean injection ? inj Nomenclature (Superscripts) Time or ensemble averaged ? Contents Contents 1 Introduction................................................................... 1 1.1 Introduction and Scope.................................................. 1 1.2 Organization.............................................................. 3 2 Electrostatics, Electrohydrodynamic Flow, Coupling and Instability.................................................................. 5 2.1 Electrostatics.............................................................. 5 2.1.1 The Coulomb Force............................................. 5 2.1.2 Permittivity...................................................... 6 2.1.3 Conductors, Insulators, Dielectrics and Polarization........ 6 2.1.4 Gauss’s Law...................................................... 8 2.2 Mobility and Charge Transport........................................ 10 2.2.1 Introduction...................................................... 10
"Sinopsis" puede pertenecer a otra edición de este libro.
This short reference brings together several different branches of science and engineering and applies the knowledge to a chosen application: Charge Injection Systems. As such, the book provides a reasonably complete reference to the physical principles, the experimental and theoretical work, and also the to technology development both past and present. Overall the book gives a broad overview to the entire subject, picking the relevant information from the fields of electrostatics, fluid mechanics and engineering technology.
The book is pitched at the technically literate level, for instance technical people in industry and graduate level students in science and engineering. It provides the reader with a basic introduction to the physical principles and references to established texts are given to provide a complete picture. Relevant material from the relevant academic fields are covered, but maintaining a focus on the theme of the book, namely: 'how do charge injection systems work'
Charge Injection Systems is written for workers both in academic research and in industry.
"Sobre este título" puede pertenecer a otra edición de este libro.
Librería: Universitätsbuchhandlung Herta Hold GmbH, Berlin, Alemania
X, 196 p. Hardcover. Versand aus Deutschland / We dispatch from Germany via Air Mail. Einband bestoßen, daher Mängelexemplar gestempelt, sonst sehr guter Zustand. Imperfect copy due to slightly bumped cover, apart from this in very good condition. Stamped. Heat and Mass Transfer. Sprache: Englisch. Nº de ref. del artículo: 1822JB
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Librería: moluna, Greven, Alemania
Condición: New. Dieser Artikel ist ein Print on Demand Artikel und wird nach Ihrer Bestellung fuer Sie gedruckt. Provides a complete overview on physical principles, the experimental and theoretical workGives a complete picture of the knowledge relevant to electrostatically assisted atomization of electrically insulating liquids, from fundamentals to applica. Nº de ref. del artículo: 5043058
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