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Campbell

Another pioneer, Ishbel Grace MacNaughton Campbell,23 was to fill a similar role to Steele, but at University College, Southampton. Campbell was bom in 1906, and graduated from St. Andrews with a B.Sc. in 1927 and a Ph.D. in 1931. She then spent a year at Cornell University, New York, where she held one of the first Commonwealth Fellowships awarded to a woman. [Pg.269]

On her return, Campbell accepted a Lectureship in Chemistry at Swanley Horticultural College. In 1936, she joined Bedford College as a Demonstrator and Teacher, before making her final move in 1938 to University College, Southampton, first as Lecturer and later as Reader of the University of Southampton.24 [Pg.270]

Hocking noted also that Campbell provided students with a sense of community  [Pg.270]

During the Second World War, despite heavy air attacks on the town, teaching continued, with evening classes for part-time students being transferred to weekends. Spare time was spent on research into chemical warfare. [Pg.270]

While at Southampton, Campbell undertook a tremendous quantity of research, primarily on organometallic compounds of groups V and VI. A total of 19 publications resulted from her work at Southampton between 1945 and 1966 15 with her as [Pg.270]


The course of a surface reaction can in principle be followed directly with the use of various surface spectroscopic techniques plus equipment allowing the rapid transfer of the surface from reaction to high-vacuum conditions see Campbell [232]. More often, however, the experimental observables are the changes with time of the concentrations of reactants and products in the gas phase. The rate law in terms of surface concentrations might be called the true rate law and the one analogous to that for a homogeneous system. What is observed, however, is an apparent rate law giving the dependence of the rate on the various gas pressures. The true and the apparent rate laws can be related if one assumes that adsorption equilibrium is rapid compared to the surface reaction. [Pg.724]

Madey T E, Guan J, Nien C-H, Dong C-Z, Tao H-S and Campbell R A 1996 Faceting induced by ultrathin metal films on W(111) and Mo(111) structure, reactivity, and electronic properties Surf. Rev. Lett. 3 1315... [Pg.318]

Campbell R A and Goodman D W 1992 A new design for a multitechnique ultrahigh vacuum surface analysis chamber with high-pressure capabilities Rev. Sc/. Instrum. 63 172... [Pg.955]

James A M, Kowaiczyk P, Langlois E, Campbell M D, Ogawa A and Simard B 1994 Resonant two photon ionization spectroscopy of the molecules Nb, and Nb2 J. Chem. Rhys. 101 4485... [Pg.2403]

Campbell E B and Hertel I V 1992 Molecular beam studies of fullerenes Carbon 8 1157-65... [Pg.2425]

Teligmann R C, Krawez N, Lin S-H, Campbell E E B and Hertel I V 1996 Endohedral fullerene produotion Nature 382 407... [Pg.2437]

Campbell E E B, Couris S, Fanti M, Kououmas E, Krawez N and Zerbetto F 1999 Third-order susoeptibility of Li Cg2Adv. Mater. 11 405-8... [Pg.2437]

Crockett R G M, Campbell A J and Ahmed F R 1990 Structure and molecular-orientation of tetramethoxy-tetraoctoxy phthalocyaninato-polysiloxane Langmuir-Blodgett-films Po/yme/ 31 602-8... [Pg.2634]

Campbell S A 1996 The Science and Engineering of Microelectronic Fabrication (New York Oxford University Press)... [Pg.2897]

This approximation is a special case of the Baker-Campbell-Hausdorff lemma for additional discu.ssion and extensions to more general classes of methods. [Pg.353]

Price category contact Platforms Cray, SGI, RS/6000 Contact information Oxford Molecular Group, Inc. 2105 South Bascom Ave., Suite 200 Campbell, CA 95008 (800) 876-9994 http / / www.oxmol.com/ products oxmol.com... [Pg.332]

Y. Speight and H. C. Campbell, eds.. Fumes and Gases in the WeldingEnvironment, American Welding Society, Miami, Fla., 1979. [Pg.350]

Danly and C. R. Campbell, Monsanto Chemical Intermediates Company. [Pg.247]

A. W. Campbell and R. P. Engelke, "The Diameter Effect in High Density Explosives," in 6th Symposium (International) on Detonation ACE-221, ONR, Dept, of Navy, Arlington, Va., 1977. [Pg.26]


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Baker Campbell Hausdorf Theorem

Baker-Campbell-Hausdorff

Baker-Campbell-Hausdorff expansion

Baker-Campbell-Hausdorff formula

Baker-Campbell-Hausdorff series

Campbell Brown

Campbell Diagram

Campbell Soup Company

Campbell and Flores

Campbell farm

Campbell glycol solutions

Campbell method

Campbell solutions

Campbell test apparatus

Campbell timing model

Campbell, Colin

Campbell, James

Campbell, Jane

Campbell, John

Campbell, Joseph

Campbell, Lily

Campbell, Marion

Campbell, Norman

Campbell, Walter

Campbell-Dontula model

Campbell-Spalding Model

Campbell’s Soup

Campbell’s degree of rate control

Campbell’s model

Campbell’s theorem

Chemical Effects of Nuclear Activation I. G. Campbell

Comparison of the Modified Campbell-Dontula Model with Experimental Data

Craig, Campbell

Fesser-Bishop-Campbell model

Fletcher-Campbell

Hoch-Campbell aziridine synthesis

Hoch-Campbell reaction

Modified Campbell-Dontula Model

Soup Cans, 200 Campbell

Synthesis Campbell

The Campbell model

Typical Campbell Diagram

Yamamuro-Penumadu-Campbell Model

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