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Immersion fluid refractive indices using prism minimum deviation techniques

  • Read more about Immersion fluid refractive indices using prism minimum deviation techniques

Origins and Applications of London Dispersion Forces and Hamaker Constants in Ceramics

  • Read more about Origins and Applications of London Dispersion Forces and Hamaker Constants in Ceramics

Synthesis, structural analysis, and self-assembly of phenylene ethynylene oligomers and their sub , and substituted derivat

  • Read more about Synthesis, structural analysis, and self-assembly of phenylene ethynylene oligomers and their sub , and substituted derivat

Local Optical Properties, Electron Densities, and London Dispersion Energies of Atomically Structured Grain Boundaries

  • Read more about Local Optical Properties, Electron Densities, and London Dispersion Energies of Atomically Structured Grain Boundaries

High-index immersion fluids enabling cost-effective single-exposure lithography for 32 nm half pitches

  • Read more about High-index immersion fluids enabling cost-effective single-exposure lithography for 32 nm half pitches

New perspectives on van der {Waals–London} interactions of materials. From planar interfaces to carbon nanotubes

  • Read more about New perspectives on van der {Waals–London} interactions of materials. From planar interfaces to carbon nanotubes

Optical properties of Teflon® {AF} amorphous fluoropolymers

  • Read more about Optical properties of Teflon® {AF} amorphous fluoropolymers

Spectral mixing formulations for van der {Waals–London} dispersion interactions between multicomponent carbon nanotubes

  • Read more about Spectral mixing formulations for van der {Waals–London} dispersion interactions between multicomponent carbon nanotubes

van der {Waals–London} dispersion interactions for optically anisotropic cylinders: Metallic and semiconducting single-wall carbon nanotubes

  • Read more about van der {Waals–London} dispersion interactions for optically anisotropic cylinders: Metallic and semiconducting single-wall carbon nanotubes

Calculating van der {Waals-London} dispersion spectra and Hamaker coefficients of carbon nanotubes in water from ab initio optical properties

  • Read more about Calculating van der {Waals-London} dispersion spectra and Hamaker coefficients of carbon nanotubes in water from ab initio optical properties

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Case School of Engineering
Campus Location:
Nord Hall
2095 Martin Luther King Jr Dr
Rm 500
Cleveland, OH 44106

Mailing Address:
10900 Euclid Ave.
Cleveland, Ohio 44106-7148

Phone: 216.368.4436

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