Examples of using Electroactive in English and their translations into German
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Political
Electroactive polymers for wave power plants.
Amperometric detection- analyzing electroactive compounds.
Album: Electroactive A futuristic and dynamic track.
Study of the microbial ecology of electroactive microbial cultures.
Electroactive enzymatic compounds: Lowering the limits of detection!
This property renderssilicones particularly attractive for the following key electroactive technologies.
Electroactive polymers(EAPs) have been researched at the IFF for a decade now.
This is an essential part of the electroactive polymer that converts mechanical energy into electrical power.
Electroactive polymer sensors are able to measure the pressure as well as pressure changes.
How can the intrinsic microscopic properties of electroactive polymers(EAPs) be reproducibly transferred to macroscopic, convertible systems?
Electroactive polymers, or EAPs, are polymers that exhibit a change in size or shape when stimulated by an electric field.
Detection is based on a universal property of all analytes anddoes not require the presence of a chromophoric group, electroactive group, etc.
Immobilization of electroactive bacteria on different electrode materials.
Album: Electroactive beat-driven electronic track with synths and positive vibe. 02:53.
In this project, a flow cell for the simultaneous detection of electroactive biofilms with impedance spectroscopy and confocal laser scanning microscopy was developed.
Since electroactive polymers convert mechanical into electrical energy, silicone films are also suitable for use in sensors.
In the previous project, a flow cell for the simultaneous detection of electroactive biofilms with impedance spectroscopy and confocal laser scanning microscopy was developed.
Based on an electroactive polymer(EAP) from Fraunhofer LBF, the thin loudspeaker integrated into the window frame now eliminates these disadvantages and is also very inexpensive to produce.
Applications for piezoelectric, electroactive, photo-, thermo- and electrochromic polymers are currently under development.
Low-maintenance generators based on electroactive polymers made of ELASTOSIL® Film can transform the power of ocean waves into energy.
Dielectric elastomers belong to the family of electroactive polymers(EAPs), which change their shape when electricity is applied, thereby converting electrical energy to mechanical energy.