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by
Yu, Kuo-Tsung. author.
Format:
Excerpt:
Introduction to Computational Mass Transfer With Applications to Chemical Engineering / Yu, Kuo
by
Davies, J. T. (John Tasman), 1924-1987.
ScienceDirect http://www.sciencedirect.com/science/book/9780122060564
Format:
Excerpt:
formation in monolayers; Penetration into monolayers; References; Chapter 7. MASS TRANSFER ACROSS INTERFACES
by
Wu, Victoria Dee, author.
Format:
Excerpt:
), gas chromatography-mass spectrometry (GC-MS) with both electron impact and proton transfer chemical
by
McCabe, Andrew J., author.
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Excerpt:
of T* electron transfer and energy transfer, respectively. DOM composition was characterized using
by
Eley, D. D.
Format:
Excerpt:
. Introduction; II. The Measurement of Reaction Rate; III. Mass Transfer in Heterogeneous Catalysis; IV. Ideal
by
Mittal, Nitish, author.
Format:
Excerpt:
and diffusion based transport through zeolite layer, factors such as mass transfer through the porous
by
Commodore, Juliette Joan, author.
Format:
Excerpt:
includes an extensive study of the effects on electron transfer dissociation (ETD) mass spectrometry of
by
Sun, Tong, author.
Format:
Excerpt:
mass-transfer rate, high signal-to-noise ratio and extremely fine spatial resolution of electrochemical
by
Kwuak, Mooson.
ScienceDirect http://www.sciencedirect.com/science/book/9780120085200
Format:
Excerpt:
Heat Transfer; IV. Heat Transfer between Gas and Particles; V. Mass Transfer; Notation; References
by
Mullen, Rachel A., author.
Format:
Excerpt:
antibiotics, and whether ARG transfer from soil to plant had occurred. Antimicrobial analysis was done using





