Properties of structurally stabilized anil-type nematic liquid crystals
Electro-optical and high contrast properties of structurally stabilized anil-type nematic liquid crystals in display devices
Engineering topics
Publications and source records attributed to Labes, M. M..
Electro-optical and high contrast properties of structurally stabilized anil-type nematic liquid crystals in display devices
Molecular dipole moments-electric field interaction induction of cholesteric liquid crystal transition to nematic phase
Electric and magnetic field effects on structure and properties of cholesteric liquid crystals
Cholesteryl chloride-cholesteryl myristate /CM/ mixture liquid crystal molecular and helical axes orientation from dielectric constant change measurements in magnetic fields
Optical rotatory power measurement for compensated cholesteric liquid crystal helical structure to observe thermally induced inversion and electric field perturbations
Electric field effects on dielectric properties and molecular arrangements of cholesteric liquid crystals with temperature dependent helical pitch
Electric field effects on dielectric properties and molecular arrangements of cholesteric liquid crystals
Electric field strength and helix pitch in induced cholesteric-nematic phase transitions, noting activation energy for charge carrier production
Electric field control of growth rates of insulating organic crystals from vapor phase
Charge carrier transport, viscosity, and diffusion in liquid crystals to determine effect of weak electric and magnetic fields on biological systems