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Titlebook: Aerosol Microphysics I; Particle Interaction William H. Marlow Book 1980 Springer-Verlag Berlin Heidelberg 1980 Absorption.Sorption.aerosol

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期刊全称Aerosol Microphysics I
期刊简称Particle Interaction
影响因子2023William H. Marlow
视频video
学科分类Topics in Current Physics
图书封面Titlebook: Aerosol Microphysics I; Particle Interaction William H. Marlow Book 1980 Springer-Verlag Berlin Heidelberg 1980 Absorption.Sorption.aerosol
影响因子The suggestion by Dr. Franklin S. Harris, Jr. , that these books be written arose pursuant to the editor‘s plaints that despite the implicitly or explicitly ack­ nowledged importance of both aerosols and particulate matter in innumerable domains of technology and human welfare, investigations of these subjects were generally not supported independently of the narrowest conceivable domains of their appli­ cations. Frank Harris, who has long been a contributor in one of the important domains of aerosol macrophysics, atmospheric optics, challenged the editor to elaborate his views. Ideally, they would have taken the form of a monograph; however, there is as yet an insufficient body of information to present a unified treatment. At the same time, substantial efforts are in progress in the component fields to hold the promise for the emergence of unifying elements which will even­ tually facilitate their presentation to be made with a high degree of integrity. There are numerous pertinent and systematic tie-ins between project-oriented aerosol work and basic physical investigations which are themselves quite closely akin to much classical and current work in physical science. The most s
Pindex Book 1980
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The Kinetics of Ultrafine Particles,difficult area of nucleation processes to explain the origin of most ufp. Analysis of the evolution in size, composition, space and time of ufp involves one with current problems in statistical mechanics, kinetic theory, probability theory, quantum chemistry, etc. One also encounters very difficult
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https://doi.org/10.1007/978-3-319-13635-6phase, which they do when they are not immobilized upon or within bulk matter, then they constitute the particulate (either liquid or solid) component of the condition of matter generally referred to as an aerosol. Among researchers in basic and applied studies in both the sciences and the fields of
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Convergence of Ergonomics and Design biological cells. The model of inelastic scattering described in this chapter assumes that the active molecules within a spherical particle can be represented by a classical oscillating electric dipole. The pumping field at the incident frequency at the location of the molecule is given by classica
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Banus Kam Leung Low,Alan Hoi Shou Chanal and physical structure. To provide the requisite perspective for understanding the importance of these compositionally dependent factors, the role of the gas is discussed. Classical electrostatic and multipolar forces and the thermodynamic setting for any interaction involving a particle are desc
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