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- liquid crystal devices 11 Treffer
- liquid crystals 11 Treffer
- optoelectronic switching 8 Treffer
- information display systems 5 Treffer
- anisotropy 4 Treffer
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45 weitere Werte:
- mathematical models 4 Treffer
- nematic liquid crystals 4 Treffer
- polarizers (light) 4 Treffer
- polymers 4 Treffer
- light sources 3 Treffer
- liquid crystal displays -- design & construction 3 Treffer
- optoelectronic switches 3 Treffer
- polarization (electricity) 3 Treffer
- schlieren methods (optics) 3 Treffer
- spectrum analysis 3 Treffer
- switching theory 3 Treffer
- electric fields 2 Treffer
- electrooptics 2 Treffer
- liquid crystal display manufacturing 2 Treffer
- liquid crystal films 2 Treffer
- optical bistability 2 Treffer
- optical properties of nematic liquid crystals 2 Treffer
- polymer liquid crystals 2 Treffer
- active matrix displays 1 Treffer
- bistable devices 1 Treffer
- crystal optics 1 Treffer
- crystalline electric field 1 Treffer
- crystallography 1 Treffer
- dielectric properties of nematic liquid crystals 1 Treffer
- electric double layer 1 Treffer
- electric lighting 1 Treffer
- electrodes 1 Treffer
- electromagnetic fields 1 Treffer
- energy consumption 1 Treffer
- ferromagnetic materials 1 Treffer
- field theory (physics) 1 Treffer
- flat panel displays 1 Treffer
- interfaces (physical sciences) 1 Treffer
- interference (light) 1 Treffer
- lithography 1 Treffer
- magnetic fields 1 Treffer
- metal organic chemical vapor deposition 1 Treffer
- microcontact printing 1 Treffer
- molecules 1 Treffer
- nanolithography 1 Treffer
- nanotechnology 1 Treffer
- nanowires 1 Treffer
- nickel 1 Treffer
- optical properties 1 Treffer
- optical spectroscopy 1 Treffer
Publikation
Sprache
20 Treffer
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In: Journal of Applied Physics, Jg. 99 (2006-06-01), Heft 11, S. 113101-113106Online academicJournalZugriff:
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In: Journal of Applied Physics, Jg. 105 (2009-04-01), Heft 7, S. 074508-74508Online academicJournalZugriff:
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In: Journal of Applied Physics, Jg. 73 (1993-04-15), S. 3744-3748Online academicJournalZugriff:
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In: Journal of Applied Physics, Jg. 59 (1986-05-01), S. 3087-3090Online academicJournalZugriff:
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In: Journal of Applied Physics, Jg. 56 (1984-07-15), S. 263-272Online academicJournalZugriff:
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In: Journal of Applied Physics, Jg. 55 (1984-05-15), S. 3846-3855Online academicJournalZugriff:
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In: Applied Physics Letters, Jg. 86 (2005-01-17), Heft 3, S. 031108-31108Online academicJournalZugriff:
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In: Applied Physics Letters, Jg. 81 (2002-08-19), Heft 8, S. 1432-1434Online academicJournalZugriff:
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In: Applied Physics Letters, Jg. 80 (2002-01-21), Heft 3, S. 374-376Online academicJournalZugriff:
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In: Applied Physics Letters, Jg. 74 (1999-06-06), Heft 23, S. 3477-3479Online academicJournalZugriff:
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In: Applied Physics Letters, Jg. 74 (1999-02-08), Heft 6, S. 803-805Online academicJournalZugriff:
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In: Applied Physics Letters, Jg. 73 (1998-11-16), Heft 20, S. 2881-2883Online academicJournalZugriff:
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In: Journal of Applied Physics, Jg. 102 (2007-09-15), Heft 6, S. 063501-63501Online academicJournalZugriff:
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In: Journal of Applied Physics, Jg. 101 (2007-02-01), Heft 3, S. 033131-33131Online academicJournalZugriff:
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In: Applied Physics Letters, Jg. 92 (2008-04-28), Heft 17, S. 171105-171105Online academicJournalZugriff:
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In: Applied Physics Letters, Jg. 91 (2007-07-09), Heft 2, S. 023507-23507Online academicJournalZugriff:
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In: Applied Physics Letters, Jg. 89 (2006-08-21), Heft 8, S. 081130-81130Online academicJournalZugriff:
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In: Applied Physics Letters, Jg. 88 (2006-02-06), Heft 6, S. 061110-61110Online academicJournalZugriff:
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In: Applied Physics Letters, Jg. 87 (2005-11-21), Heft 1, S. 011108-11108Online academicJournalZugriff:
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In: Applied Physics Letters, Jg. 90 (2007-03-26), Heft 13, S. 1-3Online academicJournalZugriff: