857 resultados para Design|Architecture
Resumo:
Ink on linen. Indicating location and type of plantings. Signed. 102 cm. x 47 cm. Scale: 1"=30' [from photographic copy by Lance Burgharrdt]
Resumo:
Ink on linen; location, type of planatings; signed. 88 x 80 cm. No scale. [from photographic copy by Lance Burgharrdt]
Resumo:
Ink on linen; location, type of plantings; signed. 97x39 cm. Scale: 1'"=10' [from photographic copy by Lance Burgharrdt]
Resumo:
Ink on linen; location, type, amount of plantings; baseball diamond, tennis courts, seats for area bounded by Ridgeland, Division and Elmwood; signed. 91x83 cm. Scale: 1"=20' [from photographic copy by Lance Burgharrdt]
Resumo:
Black ink on linen; signed. 116x76 cm. Scale: 1"=20' [from photographic copy by Lance Burgharrdt]
Resumo:
Red, black, ink on linen; plan, sections; pools, vases; location, type of planatings; signed. 90x35 cm. Scale: 1"=16' [from photographic copy by Lance Burgharrdt]
Resumo:
Red, balck ink on linen; location, type of plantings; residence by E. R. Liebert; signed. 51 x 55 cm. Scale: 1" = 10' [from photographic copy by Lance Burgharrdt]
Resumo:
Ink on linen; location, type of plantings; pool, footpaths, gardens; signed. 83 x 66 cm. Scale: 1" = 40' [from photographic copy by Lance Burgharrdt]
Resumo:
"12/17/86."
Resumo:
Mode of access: Internet.
Resumo:
Mode of access: Internet.
Resumo:
Thesis (Master's)--University of Washington, 2016-04
Resumo:
Thesis (Master's)--University of Washington, 2016-06
Resumo:
Thesis (Master's)--University of Washington, 2016-06
Resumo:
We calculate the electron exchange coupling for a phosphorus donor pair in silicon perturbed by a J-gate potential and the boundary effects of the silicon host geometry. In addition to the electron-electron exchange interaction we also calculate the contact hyperfine interaction between the donor nucleus and electron as a function of the varying experimental conditions. Donor separation, depth of the P nuclei below the silicon oxide layer and J-gate voltage become decisive factors in determining the strength of both the exchange coupling and hyperfine interaction-both crucial components for qubit operations in the Kane quantum computer. These calculations were performed using an anisotropic effective-mass Hamiltonian approach. The behaviour of the donor exchange coupling as a function of the parameters varied in this work provides relevant information for the experimental design of these devices.