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Y-O-F vernier structures

Y-Pd-Sn, partial isothermal section at 1070 K.

Y-plants field-cultivated in Tsukuba until December.

Y-Plot and Z-Plot for a CPEp with a freely chosen Gvar 0.1 . a 0.4 ,

Y-Re-Si, isothermal section at 800 C the equilibria involving the compound ReSi are metastable. 1 YRe4Si2, 2

Y-shaped DMAs as potential building blocks for DNA dendrimers. Y-shaped DNA with sticky ends

Y-shaped nanotubes are readymade transistors. New research suggests that tiny tubes of carbon crafted into the shape of a Y could revolutionize the computer industry. The work has shown that Y-shaped carbon nanotubes are easily made and act as remarkably efficient electronic transistors - the toggles used to control the flow of electrons through computer circuits. But the nanotransistors are just a few hundred milUonths of a meter in size - roughly 100 times smaller than the components used in today s microprocessors. They could, therefore, be used to create microchips several orders of magnitude more powerful than the ones used in computers today, with no increase in chip size

Y-Si-B, isothermal section at 800 C region YB,2-Si-B is proposed.

Y-tube olfactometer according to Geier and Boeckh.

Y-type jet generated by a jet micromixer.

Y-type Langmuir-Blodgett film deposition onto a hydrophilic substrate

Y-type Langmuir-Blodgett film deposition onto a hydrophobic substrate

Y-type Langmuir-Blodgettfilm deposition.

Y-type micromixers

Y-type strainer pressure drops

Y-type strainers

Y-Unsaturated Carboxylates from Dichloroacetals and Allylsilanes.

Y-V-Al, partial isothermal section at 770 K .

Y0 dependence for CMC and Xanthan solutions from ,

Y1 adrenocortical cells in culture. Y1 mouse adrenocortical tumor cells

Y123—Prl23 interfaces under different growth conditions along the c-axis pulling direction

Y203-containing Si3N4 oxidized for 97 h at 1300 C in dry oxygen showing crystalline yttria silicate formed on oxide surface by migration of yttria impurities into the scale.

Y203-Th02 phase diagram. After Sibieude and Foex , The dashed line incorporates the results of Jorgensen and Anderson and Greskovich and Chernoc , Reprinted by permission of Eisevier Science Publishers BV.

Y2O3 aerogel made by the method of Gash and dried by the CO2 supercritical method B. TEM micrograph of the aerogel in A. D. Technical modeling of a local domain in an oxide aerogel, inspired from local zones in the TEM micrographs B. and C.

Y2O3-AI2O3 phase diagram. After Noguchi and Mizuno , Reprinted by permission of the American Ceramic Society.



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